All soil microbial communities articles
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NewsSoil bacteria protect wheat from pathogenic fungus
New research shows that, when inoculated into the soil, bacterial species can alter the soil microbiome and protected plants from a fungus that causes root rot.
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NewsBurying crop residues deeper could help protect maize from ear rot and mycotoxins
A new study has found that incorporating maize straw deeper into the soil can substantially reduce maize ear rot and harmful mycotoxin contamination while creating a healthier soil environment.
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NewsNative microbial team helps acidic soil recover while boosting crop growth
Researchers have developed a small, carefully selected community of native soil bacteria that can reduce acid stress while helping plants access essential nutrients.
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NewsMapping plant-fungus symbiosis, cell by cell.
Scientists have produced the first high-resolution, cell-by-cell map of how tomato roots respond to colonization by arbuscular mycorrhizal fungi, a partnership which help plants absorb nutrients from the soil.
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NewsRewetting severely wildfire-affected peatlands could deliver unexpected climate benefits
Researchers have found that severely burned peatlands, when rewetted, emit dramatically less methane than unburned or mildly burned ones, suggesting that areas already degraded by wildfire could become prime candidates for accelerated restoration.
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NewsResearchers visualise underground fungal networks in 3D
Researchers have visualized the complex network of plant roots and mycorrhizal fungi in soil in three dimensions for the first time.
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NewsWarming boosts bacterial denitrification, suppresses fungal pathways in paddy soils
A new study could change climate prediction models by enabling region-specific, microbe-targeted strategies to mitigate greenhouse gas emissions from agricultural ecosystems.
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NewsMicrobe–fertilizer pair cuts greenhouse soil emissions
A new study shows that inoculating organic fertilizers with denitrifying bacterium, especially when paired with mushroom residue organic manure, reduces N₂O emissions by reshaping the soil microbiome.
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NewsBiochar helps paddy soils lock away carbon by reshaping microbial life underground
A new study reveals that straw and biochar both increase soil organic carbon, but biochar stores carbon more efficiently by guiding soil microbes toward stable carbon formation.
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NewsMicrobes reveal how tillage shapes soil carbon storage
A new study on maize fields in Jilin Province, China, found adding organic carbon sources on top of straw had different effects on the organic carbon in the topsoil in comparison to the subsoil.
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NewsNanozeolite-coupled biochar fertilizer may help bamboo forest soils hold on to carbon
A new study finds that a biochar-based phosphate fertilizer can reduce soil carbon loss and lower the temperature sensitivity of carbon decomposition in Moso bamboo forests.
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NewsGlobal map of mycorrhizal fungi reveals true scale of underground networks
Researchers have produced the first global maps visualising the distribution and mass of the Earth’s arbuscular mycorrhizal fungal networks, revealing the true scale of this underground fungal infrastructure.
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NewsFungi help biochar and compost lock more carbon in nutrient-poor urban soils
A new field study shows that soil fungi can determine whether urban greenspace amendments build long-term soil carbon or accelerate carbon consumption.
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NewsTwo types of biochar help alfalfa survive salty soils
A new study shows that carefully designed biochar can guide plant metabolism and reshape beneficial microbial communities around the roots to help reduce stress from saline-alkali soil.
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NewsMore attention should be paid to the health of deep soil in low-yield farmland
A recent study identified that a higher soil health index in low-yielding fields may be an important factor to maintain wheat yield as food demand grows rapidly.
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NewsInvasive plants drive homogenization of soil microbial communities across U.S.
A new study found that invasive plants are doing more than just taking over landscapes, they are also changing the soil beneath them.