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Transcriptomic analysis of diverse green sulfur phototrophic bacteria.

机译:各种绿色硫光养细菌的转录组学分析。

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摘要

The Chlorobi consist mostly of anoxygenic photosynthetic microbes which are present in a wide variety of anoxic illuminated environments. While Cba. tepidum has been the model organism for Chlorobi for the last 15 years, it is not representative of the diversity of this clade. To connect the results of experiments on Cba. tepidum to other Chlorobi, comparative transcriptomics with two other strains, Chlorobium phaeobacteroides BS-1 and Chlorobium chlorochromatii CaD3, was used to identify conserved and unique genes with interesting patterns of expression. RNA-seq was used to quantify expression of the entire genome and differentially expressed genes were identified under various conditions expected to alter cellular physiology: i.e. electron donor switching or energy limitation. This global view of expression facilitated identification of genes that may be involved in poorly understood cellular processes. In Cba. tepidum, a total of seven RNA-seq libraries were sequenced, representing growth using three different electron donors. This allowed the identification of 376 protein coding genes, or 16% of the genes in the genome, that are differentially expressed between two or more libraries. To verify the predicted functional role of differentially expressed gene's products, further research is required. To this end, I made a deletion strain of one of these genes, CT1276, which encodes a hypothetical protein that is a member of protein superfamily that also contains the nitrogen fixation cofactor biosynthesis proteins NifX and NifB. This mutant was investigated for changes in sulfide tolerance, but no significant differences could be detected. The transcriptome data set for Chlorobium phaeobacteroides BS-1 includes libraries representative of growth under low light and high light, which allows for comparison of gene expression under two different energy regimes, and identification of novel adaptations for low light flux. The transcriptome data set for Chlorobium chlorochromatii CaD3 contains two libraries representing growth as part of a symbiosis and as a free living organism, which indicates several genes that may be involved in maintenance of the consortium. Transcriptomic methods have allowed insight into the physiology of Chlorobi, and resulted in data sets that can continue to be mined for many years for targets for further investigation.
机译:绿藻主要由在多种缺氧照明环境中存在的产氧光合微生物组成。虽然CBA。在过去的15年中,温热菌一直是克洛比的典型生物,它不能代表该进化枝的多样性。连接Cba的实验结果。与其他Chlorobi相比,Tempidum与其他两株菌株Chlorobium phaeobacteroides BS-1和Chlorobium chlorochromatii CaD3的比较转录组学被用于鉴定具有有趣表达模式的保守且独特的基因。 RNA-seq用于量化整个基因组的表达,并在预期会改变细胞生理的各种条件下鉴定出差异表达的基因:即电子供体转换或能量限制。这种表达的整体观点促进了可能参与了解程度不高的细胞过程的基因的鉴定。在Cba。在三联体中,总共对七个RNA-seq文库进行了测序,代表使用三个不同的电子供体的生长。这允许鉴定在两个或更多个文库之间差异表达的376个蛋白质编码基因或基因组中的基因的16%。为了验证差异表达基因产物的预测功能作用,需要进一步的研究。为此,我制作了其中一个基因的缺失菌株CT1276,该菌株编码一种假设的蛋白质,该蛋白质是蛋白质超家族的成员,还包含固氮辅助因子生物合成蛋白质NifX和NifB。研究了该突变体对硫化物耐受性的变化,但是未检测到显着差异。 Phlorobium phaeobacteroides BS-1的转录组数据集包括代表弱光和强光下生长的文库,它可以比较两种不同能量方案下的基因表达,并鉴定出针对低光通量的新适应方法。绿藻(Chlorobium chlorochromatii)CaD3的转录组数据集包含两个文库,它们代表作为共生的一部分和作为游离生物的生长,这表明可能与该财团的维护有关的几个基因。转录组学方法使人们能够深入了解Chlorobi的生理学,并产生了可以继续开采多年的数据集,以作为进一步研究的目标。

著录项

  • 作者

    Eddie, Brian J.;

  • 作者单位

    University of Delaware.;

  • 授予单位 University of Delaware.;
  • 学科 Biology Genetics.;Biology Bioinformatics.;Biology Microbiology.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 370 p.
  • 总页数 370
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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