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Temperature-dependent trophic associations modulate soil bacterial communities along latitudinal gradients

生物 营养水平 生态学 地球微生物学 微生物生态学 细菌 环境生物技术 遗传学
作者
Xing Huang,Jianjun Wang,Kenneth Dumack,Karthik Anantharaman,Bin Ma,Yan He,Weiping Liu,Hongjie Di,Yong Li,Jianming Xu
出处
期刊:The ISME Journal [Springer Nature]
卷期号:18 (1) 被引量:8
标识
DOI:10.1093/ismejo/wrae145
摘要

Understanding the environmental and biological mechanisms shaping latitudinal patterns in microbial diversity is challenging in the field of ecology. Although multiple hypotheses have been proposed to explain these patterns, a consensus has rarely been reached. Here, we conducted a large-scale field survey and microcosm experiments to investigate how environmental heterogeneity and putative trophic interactions (exerted by protist-bacteria associations and T4-like virus-bacteria associations) affect soil bacterial communities along a latitudinal gradient. We found that the microbial latitudinal diversity was kingdom dependent, showing decreasing, clumped, and increasing trends in bacteria, protists, and T4-like viruses, respectively. Climatic and edaphic drivers played predominant roles in structuring the bacterial communities; the intensity of the climatic effect increased sharply from 30°N to 32°N, whereas the intensity of the edaphic effect remained stable. Biotic associations were also essential in shaping the bacterial communities, with protist-bacteria associations showing a quadratic distribution, whereas virus-bacteria associations were significant only at high latitudes. The microcosm experiments further revealed that the temperature component, which is affiliated with climate conditions, is the primary regulator of trophic associations along the latitudinal gradient. Overall, our study highlights a previously underestimated mechanism of how the putative biotic interactions influence bacterial communities and their response to environmental gradients.
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