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本土核心微生物组在支持植物生长方面的优势。

Superiority of native soil core microbiomes in supporting plant growth.

机构信息

State Key Laboratory of Tree Genetics and Breeding, Nanjing Forestry University, Nanjing, 210037, China.

Key Laboratory of Soil Environment and Pollution Remediation, Institute of Soil Science, Chinese Academy of Sciences, Nanjing, 210008, China.

出版信息

Nat Commun. 2024 Aug 4;15(1):6599. doi: 10.1038/s41467-024-50685-3.

Abstract

Native core microbiomes represent a unique opportunity to support food provision and plant-based industries. Yet, these microbiomes are often neglected when developing synthetic communities (SynComs) to support plant health and growth. Here, we study the contribution of native core, native non-core and non-native microorganisms to support plant production. We construct four alternative SynComs based on the excellent growth promoting ability of individual stain and paired non-antagonistic action. One of microbiome based SynCom (SC2) shows a high niche breadth and low average variation degree in-vitro interaction. The promoting-growth effect of SC2 can be transferred to non-sterile environment, attributing to the colonization of native core microorganisms and the improvement of rhizosphere promoting-growth function including nitrogen fixation, IAA production, and dissolved phosphorus. Further, microbial fertilizer based on SC2 and composite carrier (rapeseed cake fertilizer + rice husk carbon) increase the net biomass of plant by 129%. Our results highlight the fundamental importance of native core microorganisms to boost plant production.

摘要

本土核心微生物组为支持食品供应和植物产业提供了独特的机会。然而,在开发支持植物健康和生长的合成群落(SynCom)时,这些微生物组往往被忽视。在这里,我们研究了本土核心、本土非核心和非本土微生物对支持植物生产的贡献。我们基于单个菌株和配对非拮抗作用的优异促生长能力构建了四个替代的 SynCom。基于微生物组的 SynCom(SC2)在体外相互作用中表现出高生态位广度和低平均变化度。SC2 的促生长作用可以转移到非无菌环境中,这归因于本土核心微生物的定殖和根际促生长功能的改善,包括固氮、IAA 生产和溶解磷。此外,基于 SC2 和复合载体(菜籽饼肥+稻壳炭)的微生物肥料使植物的净生物量增加了 129%。我们的结果强调了本土核心微生物对提高植物产量的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ce7/11297980/cae0860c6dc6/41467_2024_50685_Fig1_HTML.jpg

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