Results 31 to 40 of about 29,740 (250)
Investigating rhizosphere dynamics and plant-microbe interactions to alleviate environmental stress
Soil acts as a crucial reservoir for both nutrients and microorganisms, hosting a wide range of microbial communities essential for ecosystem health. Particularly noteworthy are the interactions between plants and these microbes in the rhizosphere, as ...
Jameel M. AL-KHAYRI, Tahir KHAN
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The Polygonum sibiricum (Laxm.) Tzvelev, an important herbal species used to protect seawalls, has a solid resistance to salinity and alkali and can grow on alkali spots in saline–alkali soils.
Liping Zhao +4 more
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Pathogenic fungi cause economic loss to many crops including strawberry, highlighting the need for control using sustainable eco-friendly strategies. Earthworm casts effectively reduce the occurrence of soil-borne diseases.
Xingyue Wang +10 more
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Impact of Parthenium hysterophorus L. invasion on soil fungal communities in the Yellow River Delta
Purpose As an invasive plant, Parthenium hysterophorus severely impacts the ecological environment of the Yellow River Delta and reduces biodiversity in the invaded areas. The effects of P.
Lixin Gong +5 more
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Plant Nutrient Resource Use Strategies Shape Active Rhizosphere Microbiota Through Root Exudation
Plant strategies for soil nutrient uptake have the potential to strongly influence plant–microbiota interactions, due to the competition between plants and microorganisms for soil nutrient acquisition and/or conservation.
Julien P. Guyonnet +12 more
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The response of sugar beet rhizosphere micro-ecological environment to continuous cropping
Continuous cropping can lead to increased soil-borne diseases of sugar beet (Beta vulgaris L.), resulting in a reduction in its yield quality. However, our understanding of the influence of continuous cropping on sugar beet-associated microbial community is limited and their interactions remain unclear.
Rufei Cui +17 more
openaire +3 more sources
IntroductionEnhancing root development can profoundly reshape rhizosphere symbioses that influence nutrient uptake and plant growth. However, the mechanisms linking root optimization, rhizosphere microbial assembly, and nutrient dynamics in flue-cured ...
Linyi Yu +7 more
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Although plants of the genus Pennisetum can accelerate the removal of atrazine from its rhizosphere, the roles played by this plant in adjusting the soil environment and soil microorganism properties that might contribute to pollutant removal are ...
Bo Cao +6 more
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When a master transcription factor (TF) is lost, bacteria can rapidly rewire gene regulatory networks by co‐opting related regulators. Using experimental evolution in Pseudomonas fluorescens, we show that TF promiscuity (low‐level, non‐cognate binding) provides the raw material for rewiring. Successful co‐option follows a predictable hierarchy governed
Tiffany B. Taylor, Alan M. Rice
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The rhizosphere soil properties and microbial communities of Lilium tsingtauense, an endangered wild plant, have not been examined in previous studies.
Boda Liu +8 more
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