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大陆尺度解析微生物组网络解开了茶树叶片内稳态之谜。

Continental scale deciphering of microbiome networks untangles the phyllosphere homeostasis in tea plant.

机构信息

Department of Tea Science, Zhejiang University, Hangzhou 310058, China.

College of Environmental and Natural Resource Sciences, Zhejiang Provincial Key Laboratory of Agricultural Resources and Environment, Zhejiang University, Hangzhou 310058, China; Acid Sulfate Soils Centre, School of Biological Sciences, The University of Adelaide, Adelaide 5005, Australia.

出版信息

J Adv Res. 2023 Feb;44:13-22. doi: 10.1016/j.jare.2022.04.002. Epub 2022 Apr 16.

Abstract

INTRODUCTION

Assembly and co-occurrence of the host co-evolved microbiota are essential ecological and evolutionary processes, which is not only crucial for managing individual plant fitness but also ecological function. However, understanding of the microbiome assembly and co-occurrence in higher plants is not well understood. The tea plant was shown to contribute the forest fitness due to the microbiome assembled in the phyllosphere; the landscape of microbiome assembly in the tea plants and its potential implication on phyllosphere homestasis still remains untangled.

OBJECTIVES

This study aimed to deciphering of the microbiome networks of the tea plants at a continental scale. It would provide fundamental insights into the factors driving the microbiome assembly, with an extended focus on the resilience towards the potential pathogen in the phyllosphere.

METHODS

We collected 225 samples from 45 locations spanning approximately 2000-km tea growing regions across China. By integration of high-throughput sequencing data, physicochemical properties profiling and bioinformatics analyses, we investigated continental scale microbiome assembly and co-occurrence in the tea plants. Synthetic assemblages, interaction assay and RT-qPCR were further implemented to analyze the microbial interaction indexed in phyllosphere.

RESULTS

A trade-off between stochastic and deterministic processes in microbiomes community assembly was highlighted. Assembly processes were dominated by deterministic processes in bulk and rhizosphere soils, and followed by stochastic processes in roots and leaves with amino acids as critical drivers for environmental selection. Sphingobacteria and Proteobacteria ascended from soils to leaves to sustain a core leaf taxa. The core taxa formed a close association with a prevalent foliar pathogen in the co-occurrence network and significantly attenuated the expression of a set of essential virulence genes in pathogen.

CONCLUSION

Our study unveils the mechanism underpinning microbiome assembly in the tea plants, and a potential implication of the microbiome-mediated resilience framework on the phyllosphere homeostasis.

摘要

简介

宿主共进化微生物组的组装和共同发生是至关重要的生态和进化过程,这不仅对管理个体植物的适应性至关重要,而且对生态功能也至关重要。然而,人们对高等植物微生物组的组装和共同发生的理解还不够深入。研究表明,由于叶际微生物组的组装,茶树为森林适应性做出了贡献;然而,茶树叶际微生物组的组装格局及其对叶际同型性的潜在影响仍未得到解决。

目的

本研究旨在破译茶树的微生物组网络,从大陆尺度上深入了解驱动微生物组组装的因素,重点关注叶际潜在病原体的恢复力。

方法

我们从中国约 2000 公里的茶叶种植区的 45 个地点收集了 225 个样本。通过整合高通量测序数据、理化性质分析和生物信息学分析,我们研究了中国茶叶种植区大陆尺度上的微生物组组装和共同发生。进一步实施了人工合成组装、相互作用测定和 RT-qPCR 分析,以分析叶际微生物相互作用。

结果

微生物组群落组装中随机和确定性过程之间存在权衡。在根际土壤和根系中,以确定性过程为主导,在叶片中则以随机过程为主导,而氨基酸是环境选择的关键驱动因素。鞘氨醇杆菌和变形菌从土壤上升到叶片,以维持叶片核心分类群。核心分类群与叶际普遍流行的病原菌在共生网络中形成密切关联,并显著减弱了病原菌中一组关键毒力基因的表达。

结论

本研究揭示了茶树微生物组组装的机制,以及微生物组介导的恢复力框架对叶际同型性的潜在影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba8d/9936419/8316478e661c/ga1.jpg

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