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The preceding root system drives the composition and function of the rhizosphere microbiome

机译:前面的根系系统驱动根际微生物组的组成和功能

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BACKGROUND:The soil environment is responsible for sustaining most terrestrial plant life, yet we know surprisingly little about the important functions carried out by diverse microbial communities in soil. Soil microbes that inhabit the channels of decaying root systems, the detritusphere, are likely to be essential for plant growth and health, as these channels are the preferred locations of new root growth. Understanding the microbial metagenome of the detritusphere, and how it responds to agricultural management such as crop rotations and soil tillage, is vital for improving global food production.RESULTS:This study establishes an in-depth soil microbial gene catalogue based on the living-decaying rhizosphere niches in a cropping soil. The detritusphere microbiome regulates the composition and function of the rhizosphere microbiome to a greater extent than plant type: rhizosphere microbiomes of wheat and chickpea were homogenous (65-87% similarity) in the presence of decaying root (DR) systems but were heterogeneous (3-24% similarity) where DR was disrupted by tillage. When the microbiomes of the rhizosphere and the detritusphere interact in the presence of DR, there is significant degradation of plant root exudates by the rhizosphere microbiome, and genes associated with membrane transporters, carbohydrate and amino acid metabolism are enriched.CONCLUSIONS:The study describes the diversity and functional capacity of a high-quality soil microbial metagenome. The results demonstrate the contribution of the detritusphere microbiome in determining the metagenome of developing root systems. Modifications in root microbial function through soil management can ultimately govern plant health, productivity and food security.
机译:背景:土壤环境负责维持大多数陆地植物生活,但我们对土壤中不同微生物社区进行的重要功能令人惊讶地令人惊讶。土壤微生物栖息腐烂根系的渠道,Detritusphere可能对植物生长和健康有必要,因为这些渠道是新的根本生长的首选位置。了解Detritusphere的微生物偏见,以及如何响应农作物旋转和土壤耕作,对改善全球食品生产至关重要。结果:本研究建立了基于生活腐烂的深度土壤微生物基因目录在裁剪土壤中的根际际。 Detritusphere Microbiome在更大程度上调节根际微生物组的组成和功能,而不是植物类型:小麦和鹰嘴豆的根际微生物体在腐烂的根(DR)系统存在下均匀(65-87%相似性),但是异质(3 -24%相似之处)博士被耕作中断。当根际和碎屑渣的微生物在博士的存在下相互作用时,通过根际微生物组渗出植物根部的显着降解,富含膜转运蛋白,碳水化合物和氨基酸代谢的基因。结论:该研究描述了高质量土壤微生物偏见的多样性和功能能力。结果证明了Detritusphere Microbiome在确定显影根系的偏见中的贡献。通过土壤管理改进根微生物功能最终可以控制植物健康,生产力和粮食安全。

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