Specialized Microbiome of a Halophyte and its Role in Helping Non-Host Plants to Withstand Salinity

生物 微生物群 盐生植物 根际 耐盐性 系统发育多样性 系统发育树 蛋白质细菌 植物 盐度 嗜盐菌 生态学 16S核糖体RNA 细菌 基因 遗传学
作者
Zhilin Yuan,Irina S. Druzhinina,Jessy Labbé,Regina S. Redman,Yuan Qin,Russell J. Rodriguez,Chu‐Long Zhang,Gerald A. Tuskan,Fu‐Cheng Lin
出处
期刊:Scientific Reports [Springer Nature]
卷期号:6 (1) 被引量:225
标识
DOI:10.1038/srep32467
摘要

Abstract Root microbiota is a crucial determinant of plant productivity and stress tolerance. Here, we hypothesize that the superior halo-tolerance of seepweed Suaeda salsa is tightly linked to a specialized belowground microbiome. To test this hypothesis, we performed a phylogenetic trait-based framework analysis based on bacterial 16S rRNA gene and fungal nuclear rRNA internal transcribed spacer profiling. Data showed that the dominant α-proteobacteria and γ-proteobacteria communities in bulk soil and root endosphere tend to be phylogenetically clustered and at the same time exhibit phylogenetic over-dispersion in rhizosphere. Likewise, the dominant fungal genera occurred at high phylogenetic redundancy. Interestingly, we found the genomes of rhizospheric and endophytic bacteria associated with S. salsa to be enriched in genes contributing to salt stress acclimatization, nutrient solubilization and competitive root colonization. A wide diversity of rhizobacteria with similarity to known halotolerant taxa further supported this interpretation. These findings suggest that an ecological patterned root-microbial interaction strategy has been adopted in S. salsa system to confront soil salinity. We also demonstrated that the potential core microbiome members improve non-host plants growth and salt tolerance. This work provides a platform to improve plant fitness with halophytes-microbial associates and novel insights into the functions of plant microbiome under salinity.
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