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核心根细菌有助于唐古特山莨菪植物生长和天仙子胺积累。

A core root bacteria contribute to plant growth and anisodine accumulation of Anisodus tanguticus.

机构信息

CAS Key Laboratory of Tibetan Medicine Research, Northwest Institute of Plateau Biology, Xining, 810008, China.

University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

BMC Plant Biol. 2023 Dec 19;23(1):655. doi: 10.1186/s12870-023-04690-1.

Abstract

BACKGROUND

Although it is well recognized that core root microorganisms contribute to plant health and productivity, little is known about their role to the accumulation of secondary metabolites. The roots of Anisodus tanguticus, a traditional herbal medication utilized by Tibetan medicine, are rich in tropane alkaloids. We collected wild A. tanguticus populations throughout a 1500 km transect on the Qinghai-Tibetan Plateau.

RESULTS

Our results showed that despite sampling at a distance of 1500 km, the root of A. tanguticus selectively recruits core root bacteria. We obtained 102 root bacterial core OTUs, and although their number only accounted for 2.99% of the total, their relative abundance accounted for 73% of the total. Spearman correlation and random forest analyses revealed that the composition of core root microbiomes was related to anisodine contents, aboveground biomass and nitrogen contents of Anisodus tanguticus. Among them, the main role is played by Rhizobacter, Variovorax, Polaromonas, and Mycobacterium genus that are significantly enriched in roots. Functional prediction by FAPROTAX showed that nitrogen-cycling microorganisms and pathogenic bacteria are strongly associated with anisodine contents, aboveground biomass and nitrogen contents of Anisodus tanguticus.

CONCLUSIONS

Our findings show that the root selectively recruits core root bacteria and revealed that the core microbiomes and microbial functions potentially contributed to the anisodine contents, aboveground biomass and nitrogen contents of the plant. This work may increase our understanding of the interactions between microorganisms and plants and improve our ability to manage root microbiota to promote sustainable production of herbal medicines.

摘要

背景

尽管人们已经认识到核心根微生物对植物的健康和生产力有贡献,但它们在次生代谢物积累中的作用却知之甚少。藏药中使用的传统草药土木香的根富含托烷生物碱。我们在青藏高原的 1500 公里横断面上采集了野生土木香种群。

结果

尽管我们在 1500 公里的距离进行了采样,但土木香的根选择性地招募了核心根细菌。我们获得了 102 个根细菌核心 OTUs,尽管它们的数量仅占总数的 2.99%,但其相对丰度却占总数的 73%。Spearman 相关和随机森林分析表明,核心根微生物组的组成与天仙子胺含量、土木香地上生物量和氮含量有关。其中,根瘤菌、鞘氨醇单胞菌、极性单胞菌和分枝杆菌属起主要作用,它们在根中明显富集。通过 FAPROTAX 进行功能预测表明,氮循环微生物和病原菌与天仙子胺含量、土木香地上生物量和氮含量密切相关。

结论

我们的研究结果表明,根选择性地招募了核心根细菌,并揭示了核心微生物组及其功能可能有助于植物中天仙子胺含量、地上生物量和氮含量的增加。这项工作可能会提高我们对微生物和植物相互作用的认识,并提高我们管理根微生物群以促进草药可持续生产的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7587/10729362/1e21d7538353/12870_2023_4690_Fig7_HTML.jpg

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