Diversity and biogeography of plant phyllosphere bacteria are governed by latitude‐dependent mechanisms

叶圈 非生物成分 生物 生态学 元社区 微生物群 纬度 分类单元 寄主(生物学) 群落结构 生物扩散 地理 细菌 人口 生物信息学 遗传学 人口学 大地测量学 社会学
作者
Zihui Wang,Yuan Jiang,Minhua Zhang,Chengjin Chu,Yongfa Chen,Shuai Fang,Guangze Jin,Mingxi Jiang,Juyu Lian,Yanpeng Li,Yu Liu,Keping Ma,Xiangcheng Mi,Xiujuan Qiao,Xihua Wang,Xugao Wang,Han Xu,Wanhui Ye,Li Zhu,Yong‐Guan Zhu,Fangliang He,Steven W. Kembel
出处
期刊:New Phytologist [Wiley]
卷期号:240 (4): 1534-1547
标识
DOI:10.1111/nph.19235
摘要

Predicting and managing the structure and function of plant microbiomes requires quantitative understanding of community assembly and predictive models of spatial distributions at broad geographic scales. Here, we quantified the relative contribution of abiotic and biotic factors to the assembly of phyllosphere bacterial communities, and developed spatial distribution models for keystone bacterial taxa along a latitudinal gradient, by analyzing 16S rRNA gene sequences from 1453 leaf samples taken from 329 plant species in China. We demonstrated a latitudinal gradient in phyllosphere bacterial diversity and community composition, which was mostly explained by climate and host plant factors. We found that host-related factors were increasingly important in explaining bacterial assembly at higher latitudes while nonhost factors including abiotic environments, spatial proximity and plant neighbors were more important at lower latitudes. We further showed that local plant-bacteria associations were interconnected by hub bacteria taxa to form metacommunity-level networks, and the spatial distribution of these hub taxa was controlled by hosts and spatial factors with varying importance across latitudes. For the first time, we documented a latitude-dependent importance in the driving factors of phyllosphere bacteria assembly and distribution, serving as a baseline for predicting future changes in plant phyllosphere microbiomes under global change and human activities.
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