Ancestral niche separation and evolutionary rate differentiation between sister marine flavobacteria lineages

生物 利基 生态位 突变率 谱系(遗传) 进化生物学 进化速率 生态位分化 生态学 系统发育学 遗传学 基因 栖息地
作者
Chun‐Xu Xue,Hao Zhang,Heyu Lin,Ying Sun,Danli Luo,Yongjie Huang,Xiao‐Hua Zhang,Haiwei Luo
出处
期刊:Environmental Microbiology [Wiley]
卷期号:22 (8): 3234-3247 被引量:8
标识
DOI:10.1111/1462-2920.15065
摘要

Marine flavobacteria are specialists for polysaccharide degradation. They dominate in habitats enriched with polysaccharides, but are also prevalent in pelagic environments where polysaccharides are less available. These niches are likely occupied by distinct lineages, but evolutionary processes underlying their niche differentiation remain elusive. Here, genomic analyses and physiological assays indicate that the sister flavobacteria lineages Leeuwenhoekiella and Nonlabens likely explore polysaccharide-rich macroalgae and polysaccharide-poor pelagic niches respectively. Phylogenomic analyses inferred that the niche separation likely occurred anciently and coincided with increased sequence evolutionary rate in Nonlabens compared with Leeuwenhoekiella. Further analyses ruled out the known mechanisms likely driving evolutionary rate acceleration, including reduced selection efficiency, decreased generation time and increased mutation rate. In particular, the mutation rates were determined using an unbiased experimental method, which measures the present-day populations and may not reflect ancestral populations. These data collectively lead to a new hypothesis that an ancestral and transient mutation rate increase resulted in evolutionary rate increase in Nonlabens. This hypothesis was supported by inferring that gains and losses of genes involved in SOS response, a mechanism known to drive transiently increased mutation rate, coincided with evolutionary rate acceleration. Our analyses highlight the evolutionary mechanisms underlying niche differentiation of flavobacteria lineages.

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