Orange microorganisms, probably algae, on soil that was recently under snowpack in the Cispus Basin of the Goat Rocks Wilderness, Gifford Pinchot Nati Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/orange-microorganisms-probably-algae-on-soil-that-was-recently-under-snowpack-in-the-cispus-basin-of-the-goat-rocks-wilderness-gifford-pinchot-nati-image369190884.html
RF2CCJ2MM–Orange microorganisms, probably algae, on soil that was recently under snowpack in the Cispus Basin of the Goat Rocks Wilderness, Gifford Pinchot Nati
Study of microbial ecosystems: Microscopy helps study the interactions of microorganisms in microbial ecosystems, such as soil or aquatic deposits. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/study-of-microbial-ecosystems-microscopy-helps-study-the-interactions-of-microorganisms-in-microbial-ecosystems-such-as-soil-or-aquatic-deposits-image564104121.html
RF2RNN4FN–Study of microbial ecosystems: Microscopy helps study the interactions of microorganisms in microbial ecosystems, such as soil or aquatic deposits.
Soil bacteria as a source of malacidin antibiotics, conceptual illustration. Malacidins are recently discovered antibiotics produced by soil bacteria. They are active against multidrug-resistant pathogens, such as methicillin-resistant Staphylococcus aureus (MRSA). Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/soil-bacteria-as-a-source-of-malacidin-antibiotics-conceptual-illustration-malacidins-are-recently-discovered-antibiotics-produced-by-soil-bacteria-they-are-active-against-multidrug-resistant-pathogens-such-as-methicillin-resistant-staphylococcus-aureus-mrsa-image189003310.html
RFMYDRJ6–Soil bacteria as a source of malacidin antibiotics, conceptual illustration. Malacidins are recently discovered antibiotics produced by soil bacteria. They are active against multidrug-resistant pathogens, such as methicillin-resistant Staphylococcus aureus (MRSA).
Micro-organisms in the soil working like an industry. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-micro-organisms-in-the-soil-working-like-an-industry-74194158.html
RME8KRBA–Micro-organisms in the soil working like an industry.
inflated fileclam, inflated lima (Lima inflata), opened on sandy seafloor, filtering microorganisms out of the water with its many tentacles Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-inflated-fileclam-inflated-lima-lima-inflata-opened-on-sandy-seafloor-76012437.html
RMEBJJHW–inflated fileclam, inflated lima (Lima inflata), opened on sandy seafloor, filtering microorganisms out of the water with its many tentacles
The sunlight shines on the soil. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/the-sunlight-shines-on-the-soil-image568376724.html
RF2T0KP8M–The sunlight shines on the soil.
Mould growing on a soil in the flower pot with the house plant. Young hoya plant in humid environment. Fungus disease. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/mould-growing-on-a-soil-in-the-flower-pot-with-the-house-plant-young-hoya-plant-in-humid-environment-fungus-disease-image337297512.html
RF2AGN6BM–Mould growing on a soil in the flower pot with the house plant. Young hoya plant in humid environment. Fungus disease.
Female hands holding soil on green grass background, top view. Earth day concept. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/female-hands-holding-soil-on-green-grass-background-top-view-earth-day-concept-image593399297.html
RF2WDBJT1–Female hands holding soil on green grass background, top view. Earth day concept.
with seedlings of cucumbers in pots with potting soil, weeds have grown that are pulled out by a man's hand Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/with-seedlings-of-cucumbers-in-pots-with-potting-soil-weeds-have-grown-that-are-pulled-out-by-a-mans-hand-image417121334.html
RF2F6HEEE–with seedlings of cucumbers in pots with potting soil, weeds have grown that are pulled out by a man's hand
Banana tree. Composting process with organic matter, microorganisms and earthworms. Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/banana-tree-composting-process-with-organic-matter-microorganisms-and-earthworms-image433073465.html
RF2G4G5HD–Banana tree. Composting process with organic matter, microorganisms and earthworms.
Colorful soil cracked in the river with red water, this environment is studied by NASA due to its resemblance to Mars Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/colorful-soil-cracked-in-the-river-with-red-water-this-environment-is-studied-by-nasa-due-to-its-resemblance-to-mars-image218330424.html
RFPK5PK4–Colorful soil cracked in the river with red water, this environment is studied by NASA due to its resemblance to Mars
soil microbes under the microscope. microorganisms with fungus in compost Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/soil-microbes-under-the-microscope-microorganisms-with-fungus-in-compost-image575295765.html
RF2TBXYH9–soil microbes under the microscope. microorganisms with fungus in compost
Risk of pathogenic microorganisms that are nested at the base of the mushrooms not washed by the soil, such as bacteria, molds, protozoa and visrus. H Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/risk-of-pathogenic-microorganisms-that-are-nested-at-the-base-of-the-mushrooms-not-washed-by-the-soil-such-as-bacteria-molds-protozoa-and-visrus-h-image502015858.html
RF2M4MP9P–Risk of pathogenic microorganisms that are nested at the base of the mushrooms not washed by the soil, such as bacteria, molds, protozoa and visrus. H
Biological soil crust (lichen species Diploschistes diacapsis) in the Tabernas Desert Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/biological-soil-crust-lichen-species-diploschistes-diacapsis-in-the-tabernas-desert-image368079288.html
RF2CARCTT–Biological soil crust (lichen species Diploschistes diacapsis) in the Tabernas Desert
Otzberg, Germany. 19th Sep, 2016. Almost like in Spring, the blooming Canola plants are yellow mustard colour on a field in Otzberg, Germany, 19 September 2016. Yellow mustard is used as to cover crops to protect against dehydration and wind erosion of the soil and it ensures the living conditions for microorganisms and the existence of humus. Photo: Frank Rumpenhorst/dpa/Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-otzberg-germany-19th-sep-2016-almost-like-in-spring-the-blooming-canola-120610636.html
RMH0682M–Otzberg, Germany. 19th Sep, 2016. Almost like in Spring, the blooming Canola plants are yellow mustard colour on a field in Otzberg, Germany, 19 September 2016. Yellow mustard is used as to cover crops to protect against dehydration and wind erosion of the soil and it ensures the living conditions for microorganisms and the existence of humus. Photo: Frank Rumpenhorst/dpa/Alamy Live News
Backyard compost pile covered with hay to speed up the composting process Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-backyard-compost-pile-covered-with-hay-to-speed-up-the-composting-140270779.html
RFJ45TPK–Backyard compost pile covered with hay to speed up the composting process
Mud pots, a form of acidic hot springs located east of Lake Myvatn in Iceland Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/mud-pots-a-form-of-acidic-hot-springs-located-east-of-lake-myvatn-in-iceland-image341637344.html
RF2ARPWWM–Mud pots, a form of acidic hot springs located east of Lake Myvatn in Iceland
3d rendering of streptomyces and geosmin molecules, geosmin contributes to the distinctive earthy odor. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/3d-rendering-of-streptomyces-and-geosmin-molecules-geosmin-contributes-to-the-distinctive-earthy-odor-image625850367.html
RF2YA5XER–3d rendering of streptomyces and geosmin molecules, geosmin contributes to the distinctive earthy odor.
There is a lot of discarded garbage in the meadows, fields and forests Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/there-is-a-lot-of-discarded-garbage-in-the-meadows-fields-and-forests-image468257880.html
RF2J5PYKM–There is a lot of discarded garbage in the meadows, fields and forests
Orange microorganisms, probably algae, on soil that was recently under snowpack in the Cispus Basin of the Goat Rocks Wilderness, Gifford Pinchot Nati Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/orange-microorganisms-probably-algae-on-soil-that-was-recently-under-snowpack-in-the-cispus-basin-of-the-goat-rocks-wilderness-gifford-pinchot-nati-image369190355.html
RF2CCJ21R–Orange microorganisms, probably algae, on soil that was recently under snowpack in the Cispus Basin of the Goat Rocks Wilderness, Gifford Pinchot Nati
Environmental monitoring: Petri dishes can be used to collect and analyze samples from environmental sources such as soil, water, or air The dishes ca Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/environmental-monitoring-petri-dishes-can-be-used-to-collect-and-analyze-samples-from-environmental-sources-such-as-soil-water-or-air-the-dishes-ca-image595155064.html
RF2WG7JA0–Environmental monitoring: Petri dishes can be used to collect and analyze samples from environmental sources such as soil, water, or air The dishes ca
Soil bacteria as a source of malacidin antibiotics, conceptual illustration. Malacidins are recently discovered antibiotics produced by soil bacteria. They are active against multidrug-resistant pathogens, such as methicillin-resistant Staphylococcus aureus (MRSA). Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/soil-bacteria-as-a-source-of-malacidin-antibiotics-conceptual-illustration-malacidins-are-recently-discovered-antibiotics-produced-by-soil-bacteria-they-are-active-against-multidrug-resistant-pathogens-such-as-methicillin-resistant-staphylococcus-aureus-mrsa-image189003307.html
RFMYDRJ3–Soil bacteria as a source of malacidin antibiotics, conceptual illustration. Malacidins are recently discovered antibiotics produced by soil bacteria. They are active against multidrug-resistant pathogens, such as methicillin-resistant Staphylococcus aureus (MRSA).
Children gardening, with a close up of the soil and bacteria. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-children-gardening-with-a-close-up-of-the-soil-and-bacteria-74194125.html
RME8KRA5–Children gardening, with a close up of the soil and bacteria.
Kennedy Space Center Biomedical Scientist Yuliya Farris prepares the Dynamics of Microbiomes in Space (DynaMoS) experiment inside a laboratory at the Florida spaceport’s Space Station Processing Facility on July 11, 2022. The DynaMoS experiment will launch on SpaceX’s 25th cargo resupply services mission to examine how microgravity affects metabolic interactions in communities of soil microbes. This will help NASA understand the function of soil microorganisms in space versus on Earth and how they can be used to enhance plant growth for crew consumption during long-duration missions to the Moo Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/kennedy-space-center-biomedical-scientist-yuliya-farris-prepares-the-dynamics-of-microbiomes-in-space-dynamos-experiment-inside-a-laboratory-at-the-florida-spaceports-space-station-processing-facility-on-july-11-2022-the-dynamos-experiment-will-launch-on-spacexs-25th-cargo-resupply-services-mission-to-examine-how-microgravity-affects-metabolic-interactions-in-communities-of-soil-microbes-this-will-help-nasa-understand-the-function-of-soil-microorganisms-in-space-versus-on-earth-and-how-they-can-be-used-to-enhance-plant-growth-for-crew-consumption-during-long-duration-missions-to-the-moo-image485277529.html
RM2K5E8C9–Kennedy Space Center Biomedical Scientist Yuliya Farris prepares the Dynamics of Microbiomes in Space (DynaMoS) experiment inside a laboratory at the Florida spaceport’s Space Station Processing Facility on July 11, 2022. The DynaMoS experiment will launch on SpaceX’s 25th cargo resupply services mission to examine how microgravity affects metabolic interactions in communities of soil microbes. This will help NASA understand the function of soil microorganisms in space versus on Earth and how they can be used to enhance plant growth for crew consumption during long-duration missions to the Moo
Great colorful pools of the Upper Geyser Basin of Yellowstone NP, USA Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/great-colorful-pools-of-the-upper-geyser-basin-of-yellowstone-np-usa-image449973711.html
RF2H4221K–Great colorful pools of the Upper Geyser Basin of Yellowstone NP, USA
Selective focus on mould growing on a soil in the flower pot with the house plant in humid environment. Fungus disease in houseplant. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/selective-focus-on-mould-growing-on-a-soil-in-the-flower-pot-with-the-house-plant-in-humid-environment-fungus-disease-in-houseplant-image355788122.html
RF2BJRFAJ–Selective focus on mould growing on a soil in the flower pot with the house plant in humid environment. Fungus disease in houseplant.
composting with a quick compost and conventionally with compost pile Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/composting-with-a-quick-compost-and-conventionally-with-compost-pile-image345942582.html
RF2B2R186–composting with a quick compost and conventionally with compost pile
Weeds sprouted in seedlings due to poor quality, untreated and poor soil dysfunction. Nettle and cucumber plants grow from a mixture of biohumus and h Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/weeds-sprouted-in-seedlings-due-to-poor-quality-untreated-and-poor-soil-dysfunction-nettle-and-cucumber-plants-grow-from-a-mixture-of-biohumus-and-h-image416907940.html
RF2F67P98–Weeds sprouted in seedlings due to poor quality, untreated and poor soil dysfunction. Nettle and cucumber plants grow from a mixture of biohumus and h
Planting leek. Composting process with organic matter, microorganisms and earthworms. Fallen leaves on the ground. Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/planting-leek-composting-process-with-organic-matter-microorganisms-and-earthworms-fallen-leaves-on-the-ground-image433203021.html
RF2G4P2TD–Planting leek. Composting process with organic matter, microorganisms and earthworms. Fallen leaves on the ground.
Soil bacteria microscopic 3D illustration closeup Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/soil-bacteria-microscopic-3d-illustration-closeup-image395795087.html
RF2DYX0JR–Soil bacteria microscopic 3D illustration closeup
soil microbes under the microscope. microorganisms with fungus in compost Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/soil-microbes-under-the-microscope-microorganisms-with-fungus-in-compost-image575313003.html
RF2TBYNGY–soil microbes under the microscope. microorganisms with fungus in compost
mold in the soil in indoor plants in a pot Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/mold-in-the-soil-in-indoor-plants-in-a-pot-image363406706.html
RF2C36GXX–mold in the soil in indoor plants in a pot
Layer of biological soil crust (lichen species Diploschistes diacapsis) on the topsoil in the Tabernas Desert Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/layer-of-biological-soil-crust-lichen-species-diploschistes-diacapsis-on-the-topsoil-in-the-tabernas-desert-image368079289.html
RF2CARCTW–Layer of biological soil crust (lichen species Diploschistes diacapsis) on the topsoil in the Tabernas Desert
Some of the tallest biological soil crust I have seen in Nevada. This castle was nearly 3' tall. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/some-of-the-tallest-biological-soil-crust-i-have-seen-in-nevada-this-castle-was-nearly-3-tall-image186240153.html
RFMPYY61–Some of the tallest biological soil crust I have seen in Nevada. This castle was nearly 3' tall.
Mould growing on a soil in the flower pot with the plant Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/mould-growing-on-a-soil-in-the-flower-pot-with-the-plant-image230616587.html
RFRB5DPK–Mould growing on a soil in the flower pot with the plant
field researcher biologist examines a sample of soil in a test tube against a dry marsh Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/field-researcher-biologist-examines-a-sample-of-soil-in-a-test-tube-against-a-dry-marsh-image265116858.html
RFWB9376–field researcher biologist examines a sample of soil in a test tube against a dry marsh
3d rendering of streptomyces and geosmin molecules, geosmin contributes to the distinctive earthy odor. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/3d-rendering-of-streptomyces-and-geosmin-molecules-geosmin-contributes-to-the-distinctive-earthy-odor-image625850361.html
RF2YA5XEH–3d rendering of streptomyces and geosmin molecules, geosmin contributes to the distinctive earthy odor.
Orange microorganisms, probably algae, on soil that was recently under snowpack in the Cispus Basin of the Goat Rocks Wilderness, Gifford Pinchot Nati Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/orange-microorganisms-probably-algae-on-soil-that-was-recently-under-snowpack-in-the-cispus-basin-of-the-goat-rocks-wilderness-gifford-pinchot-nati-image369190385.html
RF2CCJ22W–Orange microorganisms, probably algae, on soil that was recently under snowpack in the Cispus Basin of the Goat Rocks Wilderness, Gifford Pinchot Nati
Bokashi fermenting and composting method. Composting in kitchen with EM Effective Microorganisms which are impregnated on the wheat bran to ferment fo Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/bokashi-fermenting-and-composting-method-composting-in-kitchen-with-em-effective-microorganisms-which-are-impregnated-on-the-wheat-bran-to-ferment-fo-image499833438.html
RF2M15AJ6–Bokashi fermenting and composting method. Composting in kitchen with EM Effective Microorganisms which are impregnated on the wheat bran to ferment fo
Soil bacteria as a source of malacidin antibiotics, conceptual illustration. Malacidins are recently discovered antibiotics produced by soil bacteria. They are active against multidrug-resistant pathogens, such as methicillin-resistant Staphylococcus aureus (MRSA). Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/soil-bacteria-as-a-source-of-malacidin-antibiotics-conceptual-illustration-malacidins-are-recently-discovered-antibiotics-produced-by-soil-bacteria-they-are-active-against-multidrug-resistant-pathogens-such-as-methicillin-resistant-staphylococcus-aureus-mrsa-image189003304.html
RFMYDRJ0–Soil bacteria as a source of malacidin antibiotics, conceptual illustration. Malacidins are recently discovered antibiotics produced by soil bacteria. They are active against multidrug-resistant pathogens, such as methicillin-resistant Staphylococcus aureus (MRSA).
An up-close detail of the fascinating and complex patterns created by geothermal activity in Grand Prismatic Spring Overlook in Yellowstone Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/an-up-close-detail-of-the-fascinating-and-complex-patterns-created-by-geothermal-activity-in-grand-prismatic-spring-overlook-in-yellowstone-image598623730.html
RF2WNWJJX–An up-close detail of the fascinating and complex patterns created by geothermal activity in Grand Prismatic Spring Overlook in Yellowstone
Marci Garcia, a research associate at NASA’s Kennedy Space Center in Florida, examines some of the science tubes that make up the Dynamics of Microbiomes in Space (DynaMoS) experiment inside a laboratory at the Space Station Processing Facility on July 11, 2022. The DynaMoS experiment will launch on SpaceX’s 25th cargo resupply services mission to examine how microgravity affects metabolic interactions in communities of soil microbes. This will help NASA understand the function of soil microorganisms in space versus on Earth and how they can be used to enhance plant growth for crew consumption Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/marci-garcia-a-research-associate-at-nasas-kennedy-space-center-in-florida-examines-some-of-the-science-tubes-that-make-up-the-dynamics-of-microbiomes-in-space-dynamos-experiment-inside-a-laboratory-at-the-space-station-processing-facility-on-july-11-2022-the-dynamos-experiment-will-launch-on-spacexs-25th-cargo-resupply-services-mission-to-examine-how-microgravity-affects-metabolic-interactions-in-communities-of-soil-microbes-this-will-help-nasa-understand-the-function-of-soil-microorganisms-in-space-versus-on-earth-and-how-they-can-be-used-to-enhance-plant-growth-for-crew-consumption-image485289968.html
RM2K5ET8G–Marci Garcia, a research associate at NASA’s Kennedy Space Center in Florida, examines some of the science tubes that make up the Dynamics of Microbiomes in Space (DynaMoS) experiment inside a laboratory at the Space Station Processing Facility on July 11, 2022. The DynaMoS experiment will launch on SpaceX’s 25th cargo resupply services mission to examine how microgravity affects metabolic interactions in communities of soil microbes. This will help NASA understand the function of soil microorganisms in space versus on Earth and how they can be used to enhance plant growth for crew consumption
Marthalen, Switzerland, 20th May 2024: A poor meadow in the Zurich wine country. Habitat for all kinds of microorganisms.(Photo by Andreas Haas/dieBil Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/marthalen-switzerland-20th-may-2024-a-poor-meadow-in-the-zurich-wine-country-habitat-for-all-kinds-of-microorganismsphoto-by-andreas-haasdiebil-image615066202.html
RM2XMJK62–Marthalen, Switzerland, 20th May 2024: A poor meadow in the Zurich wine country. Habitat for all kinds of microorganisms.(Photo by Andreas Haas/dieBil
Mould growing on a soil in the flower pot with the house plant. Young hoya plant in humid environment. Fungus disease. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/mould-growing-on-a-soil-in-the-flower-pot-with-the-house-plant-young-hoya-plant-in-humid-environment-fungus-disease-image337297514.html
RF2AGN6BP–Mould growing on a soil in the flower pot with the house plant. Young hoya plant in humid environment. Fungus disease.
El Tatio geyser field landscapes, Atacama, Chile Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/el-tatio-geyser-field-landscapes-atacama-chile-image366383071.html
RF2C8259K–El Tatio geyser field landscapes, Atacama, Chile
during the fire, all vegetation and small animals burned down, the top layer of soil with microorganisms and plant seeds was damaged, only large root Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/during-the-fire-all-vegetation-and-small-animals-burned-down-the-top-layer-of-soil-with-microorganisms-and-plant-seeds-was-damaged-only-large-root-image460364689.html
RF2HMYBT1–during the fire, all vegetation and small animals burned down, the top layer of soil with microorganisms and plant seeds was damaged, only large root
Planting manioc. Composting process with organic matter, microorganisms and earthworms. Fallen leaves on the ground. Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/planting-manioc-composting-process-with-organic-matter-microorganisms-and-earthworms-fallen-leaves-on-the-ground-image433203023.html
RF2G4P2TF–Planting manioc. Composting process with organic matter, microorganisms and earthworms. Fallen leaves on the ground.
Microorganisms in agriculture circle infographic template Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/microorganisms-in-agriculture-circle-infographic-template-image456585697.html
RF2HER7M1–Microorganisms in agriculture circle infographic template
soil microbes under the microscope. microorganisms with fungus in compost Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/soil-microbes-under-the-microscope-microorganisms-with-fungus-in-compost-image575294974.html
RF2TBXXH2–soil microbes under the microscope. microorganisms with fungus in compost
mold in the soil in indoor plants in a pot Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/mold-in-the-soil-in-indoor-plants-in-a-pot-image363144402.html
RF2C2PJAX–mold in the soil in indoor plants in a pot
Microorganisms, Canyonland, Utah, USA Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-microorganisms-canyonland-utah-usa-29659760.html
RMBM7394–Microorganisms, Canyonland, Utah, USA
Bacteria, Print, Bacteria are a type of biological cell. They constitute a large domain of prokaryotic microorganisms. Typically a few micrometres in length, bacteria have a number of shapes, ranging from spheres to rods and spirals. Bacteria were among the first life forms to appear on Earth, and are present in most of its habitats. Bacteria inhabit soil, water, acidic hot springs, radioactive waste, and the deep portions of Earth's crust. Bacteria also live in symbiotic and parasitic relationships with plants and animals. Most bacteria have not been characterised, and only about 27 percent Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/bacteria-print-bacteria-are-a-type-of-biological-cell-they-constitute-a-large-domain-of-prokaryotic-microorganisms-typically-a-few-micrometres-in-length-bacteria-have-a-number-of-shapes-ranging-from-spheres-to-rods-and-spirals-bacteria-were-among-the-first-life-forms-to-appear-on-earth-and-are-present-in-most-of-its-habitats-bacteria-inhabit-soil-water-acidic-hot-springs-radioactive-waste-and-the-deep-portions-of-earths-crust-bacteria-also-live-in-symbiotic-and-parasitic-relationships-with-plants-and-animals-most-bacteria-have-not-been-characterised-and-only-about-27-percent-image328667429.html
RM2A2M2JD–Bacteria, Print, Bacteria are a type of biological cell. They constitute a large domain of prokaryotic microorganisms. Typically a few micrometres in length, bacteria have a number of shapes, ranging from spheres to rods and spirals. Bacteria were among the first life forms to appear on Earth, and are present in most of its habitats. Bacteria inhabit soil, water, acidic hot springs, radioactive waste, and the deep portions of Earth's crust. Bacteria also live in symbiotic and parasitic relationships with plants and animals. Most bacteria have not been characterised, and only about 27 percent
Mould growing on a soil in the flower pot with the plant Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/mould-growing-on-a-soil-in-the-flower-pot-with-the-plant-image231183124.html
RFRC38C4–Mould growing on a soil in the flower pot with the plant
field researcher biologist examines a sample of soil in a test tube against a dry marsh Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/field-researcher-biologist-examines-a-sample-of-soil-in-a-test-tube-against-a-dry-marsh-image266308096.html
RFWD7AKC–field researcher biologist examines a sample of soil in a test tube against a dry marsh
3d rendering of streptomyces and geosmin molecules, geosmin contributes to the distinctive earthy odor. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/3d-rendering-of-streptomyces-and-geosmin-molecules-geosmin-contributes-to-the-distinctive-earthy-odor-image625850347.html
RF2YA5XE3–3d rendering of streptomyces and geosmin molecules, geosmin contributes to the distinctive earthy odor.
RF2CARCTX–Biological soil crust (lichen Diploschistes sp.) growing on gypsum crystals
Orange microorganisms, probably algae, on soil that was recently under snowpack in the Cispus Basin of the Goat Rocks Wilderness, Gifford Pinchot Nati Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/orange-microorganisms-probably-algae-on-soil-that-was-recently-under-snowpack-in-the-cispus-basin-of-the-goat-rocks-wilderness-gifford-pinchot-nati-image369191061.html
RF2CCJ2Y1–Orange microorganisms, probably algae, on soil that was recently under snowpack in the Cispus Basin of the Goat Rocks Wilderness, Gifford Pinchot Nati
Bokashi fermenting and composting method. Composting in kitchen with EM Effective Microorganisms which are impregnated on the wheat bran to ferment fo Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/bokashi-fermenting-and-composting-method-composting-in-kitchen-with-em-effective-microorganisms-which-are-impregnated-on-the-wheat-bran-to-ferment-fo-image499833344.html
RF2M15AET–Bokashi fermenting and composting method. Composting in kitchen with EM Effective Microorganisms which are impregnated on the wheat bran to ferment fo
Soil bacteria as a source of malacidin antibiotics, conceptual illustration. Malacidins are recently discovered antibiotics produced by soil bacteria. They are active against multidrug-resistant pathogens, such as methicillin-resistant Staphylococcus aureus (MRSA). Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/soil-bacteria-as-a-source-of-malacidin-antibiotics-conceptual-illustration-malacidins-are-recently-discovered-antibiotics-produced-by-soil-bacteria-they-are-active-against-multidrug-resistant-pathogens-such-as-methicillin-resistant-staphylococcus-aureus-mrsa-image189003312.html
RFMYDRJ8–Soil bacteria as a source of malacidin antibiotics, conceptual illustration. Malacidins are recently discovered antibiotics produced by soil bacteria. They are active against multidrug-resistant pathogens, such as methicillin-resistant Staphylococcus aureus (MRSA).
An up-close detail of the fascinating and complex patterns created by geothermal activity in Grand Prismatic Spring Overlook in Yellowstone Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/an-up-close-detail-of-the-fascinating-and-complex-patterns-created-by-geothermal-activity-in-grand-prismatic-spring-overlook-in-yellowstone-image598623728.html
RF2WNWJJT–An up-close detail of the fascinating and complex patterns created by geothermal activity in Grand Prismatic Spring Overlook in Yellowstone
Seen here are science tubes containing soil and soil microbes for the Dynamics of Microbiomes in Space (DynaMoS) experiment after they’ve been prepared for flight to the International Space Station inside the Space Station Processing Facility at NASA’s Kennedy Space Center in Florida on July 11, 2022. The DynaMoS experiment will launch on SpaceX’s 25th cargo resupply services mission to examine how microgravity affects metabolic interactions in communities of soil microbes. This will help NASA understand the function of soil microorganisms in space versus on Earth and how they can be used to e Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/seen-here-are-science-tubes-containing-soil-and-soil-microbes-for-the-dynamics-of-microbiomes-in-space-dynamos-experiment-after-theyve-been-prepared-for-flight-to-the-international-space-station-inside-the-space-station-processing-facility-at-nasas-kennedy-space-center-in-florida-on-july-11-2022-the-dynamos-experiment-will-launch-on-spacexs-25th-cargo-resupply-services-mission-to-examine-how-microgravity-affects-metabolic-interactions-in-communities-of-soil-microbes-this-will-help-nasa-understand-the-function-of-soil-microorganisms-in-space-versus-on-earth-and-how-they-can-be-used-to-e-image485272786.html
RM2K5E2AX–Seen here are science tubes containing soil and soil microbes for the Dynamics of Microbiomes in Space (DynaMoS) experiment after they’ve been prepared for flight to the International Space Station inside the Space Station Processing Facility at NASA’s Kennedy Space Center in Florida on July 11, 2022. The DynaMoS experiment will launch on SpaceX’s 25th cargo resupply services mission to examine how microgravity affects metabolic interactions in communities of soil microbes. This will help NASA understand the function of soil microorganisms in space versus on Earth and how they can be used to e
Marthalen, Switzerland, 20th May 2024: A poor meadow in the Zurich wine country. Habitat for all kinds of microorganisms.(Photo by Andreas Haas/dieBil Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/marthalen-switzerland-20th-may-2024-a-poor-meadow-in-the-zurich-wine-country-habitat-for-all-kinds-of-microorganismsphoto-by-andreas-haasdiebil-image615066229.html
RM2XMJK71–Marthalen, Switzerland, 20th May 2024: A poor meadow in the Zurich wine country. Habitat for all kinds of microorganisms.(Photo by Andreas Haas/dieBil
Selective focus on mould growing on a soil in the flower pot with the house plant. Young ivy plant in humid environment. Fungus disease in cissus hous Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/selective-focus-on-mould-growing-on-a-soil-in-the-flower-pot-with-the-house-plant-young-ivy-plant-in-humid-environment-fungus-disease-in-cissus-hous-image355788126.html
RF2BJRFAP–Selective focus on mould growing on a soil in the flower pot with the house plant. Young ivy plant in humid environment. Fungus disease in cissus hous
El Tatio geyser field landscapes, Atacama, Chile Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/el-tatio-geyser-field-landscapes-atacama-chile-image366382911.html
RF2C8253Y–El Tatio geyser field landscapes, Atacama, Chile
taking care of the future harvest when growing seedlings watering, weeding and removing weeds from pots with seedlings of peppers or other nightshades Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/taking-care-of-the-future-harvest-when-growing-seedlings-watering-weeding-and-removing-weeds-from-pots-with-seedlings-of-peppers-or-other-nightshades-image417034582.html
RF2F6DFT6–taking care of the future harvest when growing seedlings watering, weeding and removing weeds from pots with seedlings of peppers or other nightshades
Tomato tree. Composting process with organic matter, microorganisms and earthworms. Fallen leaves on the ground. Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/tomato-tree-composting-process-with-organic-matter-microorganisms-and-earthworms-fallen-leaves-on-the-ground-image433069755.html
RF2G4G0TY–Tomato tree. Composting process with organic matter, microorganisms and earthworms. Fallen leaves on the ground.
Microorganisms in agriculture blue and white onboarding template Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/microorganisms-in-agriculture-blue-and-white-onboarding-template-image456805191.html
RF2HF57K3–Microorganisms in agriculture blue and white onboarding template
soil microbes under the microscope. microorganisms with fungus in compost Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/soil-microbes-under-the-microscope-microorganisms-with-fungus-in-compost-image575303940.html
RF2TBYA18–soil microbes under the microscope. microorganisms with fungus in compost
Contaminated by microorganisms water flow in the summe. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/contaminated-by-microorganisms-water-flow-in-the-summe-image214755633.html
RFPDAY01–Contaminated by microorganisms water flow in the summe.
Microorganisms, Canyonland, Utah, USA Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-microorganisms-canyonland-utah-usa-29652924.html
RMBM6PH0–Microorganisms, Canyonland, Utah, USA
Cryptogamic soil comprising microbes that bind the soil structure together Canyonlands Utah USA Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-cryptogamic-soil-comprising-microbes-that-bind-the-soil-structure-10655276.html
RMA336PN–Cryptogamic soil comprising microbes that bind the soil structure together Canyonlands Utah USA
Soil analysis, study of composition of substances and microorganisms in ground layer structure sample. Scientists in laboratory. Bioengineering and Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/soil-analysis-study-of-composition-of-substances-and-microorganisms-in-ground-layer-structure-sample-scientists-in-laboratory-bioengineering-and-image545080353.html
RF2PJPFFD–Soil analysis, study of composition of substances and microorganisms in ground layer structure sample. Scientists in laboratory. Bioengineering and
man ecologist or biologist examines a sample of soil in a test tube against a dry marsh Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/man-ecologist-or-biologist-examines-a-sample-of-soil-in-a-test-tube-against-a-dry-marsh-image265116835.html
RFWB936B–man ecologist or biologist examines a sample of soil in a test tube against a dry marsh
3d rendering of streptomyces and geosmin molecules, geosmin contributes to the distinctive earthy odor. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/3d-rendering-of-streptomyces-and-geosmin-molecules-geosmin-contributes-to-the-distinctive-earthy-odor-image625850353.html
RF2YA5XE9–3d rendering of streptomyces and geosmin molecules, geosmin contributes to the distinctive earthy odor.
close up of white mold growing on soil in the flower pot, excessive watering and damp soil encourage mold growth Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/close-up-of-white-mold-growing-on-soil-in-the-flower-pot-excessive-watering-and-damp-soil-encourage-mold-growth-image485872617.html
RF2K6DBDD–close up of white mold growing on soil in the flower pot, excessive watering and damp soil encourage mold growth
Organic waste in the garden Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/organic-waste-in-the-garden-image367023439.html
RF2C93A3Y–Organic waste in the garden
Bokashi fermenting and composting method. Composting in kitchen with EM Effective Microorganisms which are impregnated on the wheat bran to ferment fo Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/bokashi-fermenting-and-composting-method-composting-in-kitchen-with-em-effective-microorganisms-which-are-impregnated-on-the-wheat-bran-to-ferment-fo-image499833550.html
RF2M15AP6–Bokashi fermenting and composting method. Composting in kitchen with EM Effective Microorganisms which are impregnated on the wheat bran to ferment fo
Container of microbial inoculants Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/container-of-microbial-inoculants-image597539185.html
RF2WM4795–Container of microbial inoculants
An up-close detail of the fascinating and complex patterns created by geothermal activity in Grand Prismatic Spring Overlook in Yellowstone Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/an-up-close-detail-of-the-fascinating-and-complex-patterns-created-by-geothermal-activity-in-grand-prismatic-spring-overlook-in-yellowstone-image598623639.html
RF2WNWJFK–An up-close detail of the fascinating and complex patterns created by geothermal activity in Grand Prismatic Spring Overlook in Yellowstone
Kennedy Space Center Biomedical Scientist Yuliya Farris prepares the Dynamics of Microbiomes in Space (DynaMoS) experiment inside a laboratory at the Florida spaceport’s Space Station Processing Facility on July 11, 2022. The DynaMoS experiment will launch on SpaceX’s 25th cargo resupply services mission to examine how microgravity affects metabolic interactions in communities of soil microbes. This will help NASA understand the function of soil microorganisms in space versus on Earth and how they can be used to enhance plant growth for crew consumption during long-duration missions to the Moo Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/kennedy-space-center-biomedical-scientist-yuliya-farris-prepares-the-dynamics-of-microbiomes-in-space-dynamos-experiment-inside-a-laboratory-at-the-florida-spaceports-space-station-processing-facility-on-july-11-2022-the-dynamos-experiment-will-launch-on-spacexs-25th-cargo-resupply-services-mission-to-examine-how-microgravity-affects-metabolic-interactions-in-communities-of-soil-microbes-this-will-help-nasa-understand-the-function-of-soil-microorganisms-in-space-versus-on-earth-and-how-they-can-be-used-to-enhance-plant-growth-for-crew-consumption-during-long-duration-missions-to-the-moo-image485288716.html
RM2K5EPKT–Kennedy Space Center Biomedical Scientist Yuliya Farris prepares the Dynamics of Microbiomes in Space (DynaMoS) experiment inside a laboratory at the Florida spaceport’s Space Station Processing Facility on July 11, 2022. The DynaMoS experiment will launch on SpaceX’s 25th cargo resupply services mission to examine how microgravity affects metabolic interactions in communities of soil microbes. This will help NASA understand the function of soil microorganisms in space versus on Earth and how they can be used to enhance plant growth for crew consumption during long-duration missions to the Moo
Christies of Fochabers, Garden Growing Area, Fochabers, Moray, UK. 12th June, 2023. This is a French Company Machine by CM Regero Industries at work Steam Disinfecting in the large planting area of Christies where baby plants are grown. Credit: JASPERIMAGE/Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/christies-of-fochabers-garden-growing-area-fochabers-moray-uk-12th-june-2023-this-is-a-french-company-machine-by-cm-regero-industries-at-work-steam-disinfecting-in-the-large-planting-area-of-christies-where-baby-plants-are-grown-credit-jasperimagealamy-live-news-image555089430.html
RM2R72E6E–Christies of Fochabers, Garden Growing Area, Fochabers, Moray, UK. 12th June, 2023. This is a French Company Machine by CM Regero Industries at work Steam Disinfecting in the large planting area of Christies where baby plants are grown. Credit: JASPERIMAGE/Alamy Live News
Selective focus on mould growing on a soil in the flower pot with the house plant. Young ivy plant in humid environment. Fungus disease in cissus hous Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/selective-focus-on-mould-growing-on-a-soil-in-the-flower-pot-with-the-house-plant-young-ivy-plant-in-humid-environment-fungus-disease-in-cissus-hous-image355183004.html
RF2BHRYF8–Selective focus on mould growing on a soil in the flower pot with the house plant. Young ivy plant in humid environment. Fungus disease in cissus hous
El Tatio geyser field landscapes, Atacama, Chile Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/el-tatio-geyser-field-landscapes-atacama-chile-image366382990.html
RF2C8256P–El Tatio geyser field landscapes, Atacama, Chile
weed - nettles in a pot with paprika seedlings Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/weed-nettles-in-a-pot-with-paprika-seedlings-image417034295.html
RF2F6DFDY–weed - nettles in a pot with paprika seedlings
Planting Planting coin tree . Composting process with organic matter, microorganisms and earthworms. Fallen leaves on the ground. Conceptual Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/planting-planting-coin-tree-composting-process-with-organic-matter-microorganisms-and-earthworms-fallen-leaves-on-the-ground-conceptual-image243889744.html
RFT4P3T0–Planting Planting coin tree . Composting process with organic matter, microorganisms and earthworms. Fallen leaves on the ground. Conceptual
Microorganisms in agriculture green onboarding mobile app screen Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/microorganisms-in-agriculture-green-onboarding-mobile-app-screen-image456031165.html
RF2HDX0B9–Microorganisms in agriculture green onboarding mobile app screen
soil microbes under the microscope. microorganisms with fungus in compost Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/soil-microbes-under-the-microscope-microorganisms-with-fungus-in-compost-image575300790.html
RF2TBY60P–soil microbes under the microscope. microorganisms with fungus in compost
Contaminated by microorganisms water flow in the summe. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/contaminated-by-microorganisms-water-flow-in-the-summe-image214755634.html
RFPDAY02–Contaminated by microorganisms water flow in the summe.
Microorganisms, Canyonland, Utah, USA Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-microorganisms-canyonland-utah-usa-29659751.html
RMBM738R–Microorganisms, Canyonland, Utah, USA
Decaying tree leaf Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/decaying-tree-leaf-image522530455.html
RF2NA38WY–Decaying tree leaf
Soil Science line icons collection. Soil, Geology, Biology, Chemistry, Physics, Nutrients, Fertility vector and linear illustration. Erosion,Texture Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/soil-science-line-icons-collection-soil-geology-biology-chemistry-physics-nutrients-fertility-vector-and-linear-illustration-erosiontexture-image547051194.html
RF2PP09AJ–Soil Science line icons collection. Soil, Geology, Biology, Chemistry, Physics, Nutrients, Fertility vector and linear illustration. Erosion,Texture
brown mushrooms surrounded by green grass Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/brown-mushrooms-surrounded-by-green-grass-image575245124.html
RF2TBTK0M–brown mushrooms surrounded by green grass
3d rendering of streptomyces and geosmin molecules, geosmin contributes to the distinctive earthy odor. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/3d-rendering-of-streptomyces-and-geosmin-molecules-geosmin-contributes-to-the-distinctive-earthy-odor-image625850358.html
RF2YA5XEE–3d rendering of streptomyces and geosmin molecules, geosmin contributes to the distinctive earthy odor.
close up of white mold growing on soil in the flower pot, excessive watering and damp soil encourage mold growth Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/close-up-of-white-mold-growing-on-soil-in-the-flower-pot-excessive-watering-and-damp-soil-encourage-mold-growth-image485871526.html
RF2K6DA2E–close up of white mold growing on soil in the flower pot, excessive watering and damp soil encourage mold growth
Organic waste in the garden on the compost Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/organic-waste-in-the-garden-on-the-compost-image425136916.html
RF2FKJJD8–Organic waste in the garden on the compost
Bokashi fermenting and composting method. Composting in kitchen with EM Effective Microorganisms which are impregnated on the wheat bran to ferment fo Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/bokashi-fermenting-and-composting-method-composting-in-kitchen-with-em-effective-microorganisms-which-are-impregnated-on-the-wheat-bran-to-ferment-fo-image499833417.html
RF2M15AHD–Bokashi fermenting and composting method. Composting in kitchen with EM Effective Microorganisms which are impregnated on the wheat bran to ferment fo
Hverir, also known as the Namafjall Geothermal Area, is located near Northeast Iceland and contains smoking fumaroles such as this one Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/hverir-also-known-as-the-namafjall-geothermal-area-is-located-near-northeast-iceland-and-contains-smoking-fumaroles-such-as-this-one-image341637428.html
RF2ARPX0M–Hverir, also known as the Namafjall Geothermal Area, is located near Northeast Iceland and contains smoking fumaroles such as this one
Kennedy Space Center Biomedical Scientist Yuliya Farris (left) prepares the Dynamics of Microbiomes in Space (DynaMoS) experiment inside a laboratory at the Florida spaceport’s Space Station Processing Facility on July 11, 2022. The DynaMoS experiment will launch on SpaceX’s 25th cargo resupply services mission to examine how microgravity affects metabolic interactions in communities of soil microbes. This will help NASA understand the function of soil microorganisms in space versus on Earth and how they can be used to enhance plant growth for crew consumption during long-duration missions to Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/kennedy-space-center-biomedical-scientist-yuliya-farris-left-prepares-the-dynamics-of-microbiomes-in-space-dynamos-experiment-inside-a-laboratory-at-the-florida-spaceports-space-station-processing-facility-on-july-11-2022-the-dynamos-experiment-will-launch-on-spacexs-25th-cargo-resupply-services-mission-to-examine-how-microgravity-affects-metabolic-interactions-in-communities-of-soil-microbes-this-will-help-nasa-understand-the-function-of-soil-microorganisms-in-space-versus-on-earth-and-how-they-can-be-used-to-enhance-plant-growth-for-crew-consumption-during-long-duration-missions-to-image485291335.html
RM2K5EX1B–Kennedy Space Center Biomedical Scientist Yuliya Farris (left) prepares the Dynamics of Microbiomes in Space (DynaMoS) experiment inside a laboratory at the Florida spaceport’s Space Station Processing Facility on July 11, 2022. The DynaMoS experiment will launch on SpaceX’s 25th cargo resupply services mission to examine how microgravity affects metabolic interactions in communities of soil microbes. This will help NASA understand the function of soil microorganisms in space versus on Earth and how they can be used to enhance plant growth for crew consumption during long-duration missions to
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