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首页> 外文期刊>The ISME journal emultidisciplinary journal of microbial ecology >Niche-directed evolution modulates genome architecture in freshwater Planctomycetes
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Niche-directed evolution modulates genome architecture in freshwater Planctomycetes

机译:利基定向演进在淡水平坦霉菌中调节基因组结构

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摘要

Freshwater environments teem with microbes that do not have counterparts in culture collections or genetic data available in genomic repositories. Currently, our apprehension of evolutionary ecology of freshwater bacteria is hampered by the difficulty to establish organism models for the most representative clades. To circumvent the bottlenecks inherent to the cultivation-based techniques, we applied ecogenomics approaches in order to unravel the evolutionary history and the processes that drive genome architecture in hallmark freshwater lineages from the phylum Planctomycetes. The evolutionary history inferences showed that sediment/soil Planctomycetes transitioned to aquatic environments, where they gave rise to new freshwater-specific clades. The most abundant lineage was found to have the most specialised lifestyle (increased regulatory genetic circuits, metabolism tuned for mineralization of proteinaceous sinking aggregates, psychrotrophic behaviour) within the analysed clades and to harbour the smallest freshwater Planctomycetes genomes, highlighting a genomic architecture shaped by niche-directed evolution (through loss of functions and pathways not needed in the newly acquired freshwater niche).
机译:淡水环境与在基因组储存库中没有培养收集或遗传数据的微生物的淡水环境。目前,我们对淡水细菌进化生态的担忧受到了最困难的困难,为最具代表性的林业建立有机体模型。为了规避基于培养的技术固有的瓶颈,我们应用了生态学方法,以解开进化历史和驱动来自Phylum Planctomycetes的标志淡水谱系中的基因组结构的过程。进化历史推论表明,沉积物/土壤平面症过渡到水生环境,在那里他们产生了新的淡水特异性植物。发现最丰富的血统具有最专业的生活方式(增加监管遗传电路,在分析的植物中占蛋白质沉淀物聚集体,心理营养行为的矿化,心理营养行为的矿化,含有最小的淡水Pancterycetes基因组织,突出了由利基形状的基因组结构 - 在新收购的淡水利基中,通过丧失功能和途径的丧失的进化(通过不需要的函数和途径)。

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    Biol Ctr CAS Inst Hydrobiol Dept Aquat Microbial Ecol Na Sadkach 702-7 Ceske Budejovice 37005 Czech Republic;

    Biol Ctr CAS Inst Hydrobiol Dept Aquat Microbial Ecol Na Sadkach 702-7 Ceske Budejovice 37005 Czech Republic;

    Biol Ctr CAS Inst Hydrobiol Dept Aquat Microbial Ecol Na Sadkach 702-7 Ceske Budejovice 37005 Czech Republic;

    Biol Ctr CAS Inst Hydrobiol Dept Aquat Microbial Ecol Na Sadkach 702-7 Ceske Budejovice 37005 Czech Republic;

    Biol Ctr CAS Inst Hydrobiol Dept Aquat Microbial Ecol Na Sadkach 702-7 Ceske Budejovice 37005 Czech Republic;

    Biol Ctr CAS Inst Hydrobiol Dept Aquat Microbial Ecol Na Sadkach 702-7 Ceske Budejovice 37005 Czech Republic;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微生物学;
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