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A Novel Microbialite-Associated Phototrophic Chloroflexi Lineage Exhibiting a Quasi-Clonal Pattern along Depth

机译:一种新型微生物相关的光营养氯咯曲线沿着深度展示准克隆图案

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摘要

Chloroflexales (Chloroflexi) are typical members of the anoxygenic photosynthesizing component of microbial mats and have mostly been characterized from communities associated to hot springs. Here, we report the assembly of five metagenome-assembled genomes (MAGs) of a novel lineage of Chloroflexales found in mesophilic lithifying microbial mats (microbialites) in Lake Alchichica (Mexico). Genomic and phylogenetic analyses revealed that the bins shared 92% of their genes, and these genes were nearly identical despite being assembled from samples collected along a depth gradient (1–15 m depth). We tentatively name this lineage Candidatus Lithoflexus mexicanus. Metabolic predictions based on the MAGs suggest that these chlorosome-lacking mixotrophs share features in central carbon metabolism, electron transport, and adaptations to life under oxic and anoxic conditions, with members of two related lineages, Chloroflexineae and Roseiflexineae. Contrasting with the other diverse microbialite community members, which display much lower genomic conservation along the depth gradient, Ca. L. mexicanus MAGs exhibit remarkable similarity. This might reflect a particular flexibility to acclimate to varying light conditions with depth or the capacity to occupy a very specific spatial ecological niche in microbialites from different depths. Alternatively, Ca. L. mexicanus may also have the ability to modulate its gene expression as a function of the local environmental conditions during diel cycles in microbialites along the depth gradient.
机译:氯红曲面(氯咯曲线)是微生物垫的偶氮光合作用组分的典型成员,主要是从与温泉相关的社区的特征。在这里,我们报告了五种聚糖组组装的基因组(Mags)的组装在艾尔奇卡岛(墨西哥湖)中发现的嗜苯胺锂化微生物垫(Microbialites)中发现的氯红曲面的新谱系。基因组和系统发育分析显示,尽管从沿着深度梯度(1-15米深度)收集的样品组装,但这些基因几乎相同。我们暂时姓名这个谱系Candidatus Lithoflexus Mexicanus。基于MAG的代谢预测表明,这些缺乏混合的混合物在中央碳代谢,电子运输和对氧缺氧条件下的适应性,以及两种相关谱系,氯昔克莱氏素和玫瑰花克莱氏植物的适应性。与其他不同的微生物部队社区成员形成对比,沿着深度梯度,沿着深度梯度显示得出更低的基因组保护。 L. Mexicanus Mags表现出显着的相似性。这可能反映了一种特殊的灵活性,以适应不同的光线条件,深度或能力占据来自不同深度的微生物岩中的非常特异的空间生态学利基。或者,加利福尼亚州。 L. Mexicanus还可以具有在沿着深度梯度的微生物液中的二氧化硅循环期间作为局部环境条件的函数调节其基因表达的能力。

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