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根系表型性状与根际细菌群落相互作用的研究进展

Insights into the Interactions Between Root Phenotypic Traits and the Rhizosphere Bacterial Community.

作者信息

Zeng Weiai, Wang Zhenhua, Xiao Yansong, Teng Kai, Cao Zhihui, Cai Hailin, Liu Yongjun, Yin Huaqun, Cao Peijian, Tao Jiemeng

机构信息

Changsha Tobacco Company of Hunan Province, Changsha, 410021, China.

Zhangjiajie Tobacco Company of Hunan Province, Zhangjiajie, 427000, China.

出版信息

Curr Microbiol. 2022 Apr 30;79(6):176. doi: 10.1007/s00284-022-02870-0.

Abstract

The root phenotypic traits have been considered as important factors in shaping the rhizosphere microbiome and regulating plant growth. However, the relationships between root phenotypic traits and the rhizosphere bacterial community remain unclear. We investigated two fields with different developing tobacco roots by a long-term positioning test in Hengshi. The well-developed root system (WDR) showed much more superiority in root phenotypic traits, including total root length, total projection area, surface area, and root tip number, than the underdeveloped root system. The specific root traits in WDR provided more ecological niches for the rhizosphere microorganisms, contributing to a more diverse microbial community and a more complex microbial network. The total root length and root tip number were the key factors shaping bacterial communities in the rhizosphere. In turn, the phyla Acidobacteria and Bacteroidetes might play vital roles in modifying root development and promoting plant growth according to their positive correlation with root phenotypic traits. Linking root phenotypic traits to the microbiome may enhance our understanding of rhizospheric interactions and their roles in developing rhizosphere ecosystems.

摘要

根系表型性状被认为是塑造根际微生物群和调节植物生长的重要因素。然而,根系表型性状与根际细菌群落之间的关系仍不清楚。我们通过在衡石进行的长期定位试验,对两个具有不同发育阶段烟草根系的田地进行了调查。发育良好的根系(WDR)在根系表型性状方面表现出更大的优势,包括总根长、总投影面积、表面积和根尖数量,优于发育不良的根系。WDR中的特定根系性状为根际微生物提供了更多的生态位,有助于形成更多样化的微生物群落和更复杂的微生物网络。总根长和根尖数量是塑造根际细菌群落的关键因素。反过来,酸杆菌门和拟杆菌门可能根据它们与根系表型性状的正相关关系,在调节根系发育和促进植物生长方面发挥重要作用。将根系表型性状与微生物群联系起来,可能会增强我们对根际相互作用及其在根际生态系统发育中作用的理解。

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