2023
DOI: 10.1016/j.envpol.2023.122337
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Triple-transgenic soybean in conjunction with glyphosate drive patterns in the rhizosphere microbial community assembly

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Cited by 2 publications
(1 citation statement)
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“…These recruited microorganisms have important functions in reducing Al toxicity in plants through various mechanisms, such as nitrogen fixation, phosphorus dissolution, and the production of hormones [67]. Compared with the wild-type plants, triple-transgenic soybean plants with insect-resistant, glyphosate-tolerant, and drought-resistant varieties exhibit a different α diversity and β diversity in their root microbiota [68]. Notably, significant variations exist not only between plant species but also within different varieties of a single species regarding rhizosphere bacterial communities.…”
Section: Interaction and Influence Between Bacteria And Plantsmentioning
confidence: 99%
“…These recruited microorganisms have important functions in reducing Al toxicity in plants through various mechanisms, such as nitrogen fixation, phosphorus dissolution, and the production of hormones [67]. Compared with the wild-type plants, triple-transgenic soybean plants with insect-resistant, glyphosate-tolerant, and drought-resistant varieties exhibit a different α diversity and β diversity in their root microbiota [68]. Notably, significant variations exist not only between plant species but also within different varieties of a single species regarding rhizosphere bacterial communities.…”
Section: Interaction and Influence Between Bacteria And Plantsmentioning
confidence: 99%