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玉米田间研究揭示了根系在植物生长过程中微生物区系和代谢变化的相关性。

Maize Field Study Reveals Covaried Microbiota and Metabolic Changes in Roots over Plant Growth.

机构信息

Department of Plant Microbe Interactions, Max Planck Institute for Plant Breeding Research, Cologne, Germany.

Institute of Geography, Department of Geosciences, Faculty of Mathematics and Natural Sciences, University of Cologne, Cologne, Germany.

出版信息

mBio. 2022 Apr 26;13(2):e0258421. doi: 10.1128/mbio.02584-21. Epub 2022 Mar 8.

Abstract

Plant roots are colonized by microorganisms from the surrounding soil that belong to different kingdoms and form a multikingdom microbial community called the root microbiota. Despite their importance for plant growth, the relationship between soil management, the root microbiota, and plant performance remains unknown. Here, we characterize the maize root-associated bacterial, fungal, and oomycetal communities during the vegetative and reproductive growth stages of four maize inbred lines and the ; phosphate transporter mutant. These plants were grown in two long-term experimental fields under four contrasting soil managements, including phosphate-deficient and -sufficient conditions. We showed that the maize root-associated microbiota is influenced by soil management and changes during host growth stages. We identified stable bacterial and fungal root-associated taxa that persist throughout the host life cycle. These taxa were accompanied by dynamic members that covary with changes in root metabolites. We observed an inverse stable-to-dynamic ratio between root-associated bacterial and fungal communities. We also found a host footprint on the soil biota, characterized by a convergence between soil, rhizosphere, and root bacterial communities during reproductive maize growth. Our study reveals the spatiotemporal dynamics of the maize root-associated microbiota and suggests that the fungal assemblage is less responsive to changes in root metabolites than the bacterial community. Plant roots are inhabited by microbial communities called the root microbiota, which supports plant growth and health. We show in a maize field study that the root microbiota consists of stable and dynamic members. The dynamics of the microbial community appear to be driven by changes in the metabolic state of the roots over the life cycle of maize.

摘要

植物根系被周围土壤中的微生物定植,这些微生物属于不同的生物界,形成了一个多生物界的微生物群落,称为根微生物群。尽管它们对植物生长很重要,但土壤管理、根微生物群和植物性能之间的关系仍然未知。在这里,我们描述了四个玉米自交系和一个磷转运突变体在营养生长和生殖生长阶段的玉米根相关细菌、真菌和卵菌群落。这些植物在两个长期实验田中生长,在四个不同的土壤管理条件下,包括缺磷和磷充足的条件。我们表明,玉米根相关微生物群受土壤管理和宿主生长阶段变化的影响。我们确定了稳定的与根相关的细菌和真菌分类群,它们在宿主的整个生命周期中都存在。这些分类群伴随着与根代谢物变化相关的动态成员。我们观察到与根相关的细菌和真菌群落之间稳定到动态的比例呈反比。我们还发现了土壤生物群的宿主足迹,其特征是在生殖玉米生长过程中,土壤、根际和根细菌群落之间的趋同。我们的研究揭示了玉米根相关微生物群的时空动态,并表明真菌群落对根代谢物变化的反应不如细菌群落敏感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1fc9/9040757/af0011f9a4a7/mbio.02584-21-f001.jpg

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