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长期干旱会对水稻根系微生物组产生持久的组成变化。

Prolonged drought imparts lasting compositional changes to the rice root microbiome.

机构信息

Department of Plant Biology, University of California, Davis, Davis, CA, USA.

Department of Plant Pathology, University of California, Davis, Davis, CA, USA.

出版信息

Nat Plants. 2021 Aug;7(8):1065-1077. doi: 10.1038/s41477-021-00967-1. Epub 2021 Jul 22.

Abstract

Microbial symbioses can mitigate drought stress in crops but harnessing these beneficial interactions will require an in-depth understanding of root microbiome responses to drought cycles. Here, by detailed temporal characterization of root-associated microbiomes of rice plants during drought stress and recovery, we find that endosphere communities remained compositionally altered after rewatering, with prolonged droughts leading to decreased resilience. Several endospheric Actinobacteria were significantly enriched during drought and for weeks after rewatering. Notably, the most abundant endosphere taxon during this period was a Streptomyces, and a corresponding isolate promoted root growth. Additionally, drought stress disrupted the temporal dynamics of late-colonizing microorganisms, permanently altering the normal successional trends of root microbiota. These findings reveal that severe drought results in enduring impacts on rice root microbiomes, including enrichment of taxonomic groups that could shape the recovery response of the host, and have implications relevant to drought protection strategies using root microbiota.

摘要

微生物共生可以减轻作物的干旱胁迫,但要利用这些有益的相互作用,需要深入了解根系微生物组对干旱周期的反应。在这里,通过详细的时间特征描述,我们发现,在干旱胁迫和恢复期间,水稻根系相关微生物组的组成在重新浇水后仍然发生了改变,而且长时间的干旱会导致恢复力下降。在干旱期间和重新浇水后的数周内,几种内生放线菌显著富集。值得注意的是,在此期间最丰富的内生分类群是链霉菌,相应的分离株促进了根的生长。此外,干旱胁迫破坏了后期定殖微生物的时间动态,永久改变了根系微生物组的正常演替趋势。这些发现表明,严重的干旱会对水稻根系微生物组产生持久的影响,包括丰富可能影响宿主恢复反应的分类群,这对利用根系微生物组的干旱保护策略具有重要意义。

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