生物扩散
盐度
生态学
微生物种群生物学
壁炉试验
群落结构
航程(航空)
β多样性
物种分布
地理距离
生物
环境科学
栖息地
人口
生物化学
遗传学
人口学
材料科学
社会学
细菌
基因
复合材料
遗传变异
作者
Jian Yang,Hongchen Jiang,Hailiang Dong,Yongqin Liu
标识
DOI:10.1007/s11427-018-9525-9
摘要
Despite recent interest in microbial diversity and community structure of lakes across various spatial scales, a global biogeographic distribution pattern and its controlling factors have not been fully disclosed. Here, we compiled and analyzed 88,334,735 environmental 16S rRNA sequences from 431 lakes across a wide range of geographical distance and environmental conditions (in particular, salinity, 0–373.3 g L–1). Our results showed that lake sediments inhabit significantly (ANOVA: P P =0.001) correlated with geographic distance, salinity, and pH. Statistical analyses based on neutral community and null models indicated that stochastic processes may play predominant roles in shaping the microbial biogeographic distribution patterns in the studied global lake waters. The dispersal-related stochasticity (e.g., homogenizing dispersal) exhibited a stronger influence on the distribution of microbial community in freshwater lakes than in saline lakes. Overall, this work expands our understanding of the impact of geographic distance, environmental conditions, and stochastic processes on microbial distribution in global lakes.
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