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Glycolysis as a determinant of genome and proteome composition of different extremophilic archaea species

机译:糖醇分解为不同鼻尖古物学组成的基因组和蛋白质组组成的决定因素

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The archaea represents primitive earth dwellers confined mostly to very specialized and extreme habitats, and probably have evolved very early in the history of earth. Glycolysis is an excellent example of convergent evolution in archaea whereby a diversity of glucose degradation schemes exist. This study aims to unravel the strategies employed by different extremophilic species of archaea at the nucleotide and amino acid level to structure a genome as well as proteome, emphasizing particularly, on the glycolytic pathway of monosaccharide oxidation considering its antiquity and early appearance in evolution. We have tried to find out if linear sugar oxidation pathways like glycolysis in all its modified versions have somehow directed genome structuring in the extremophilic archaea. The study of comparative codon usage blueprint and codon pair preference might enable us to scrutinize the fact whether these organisms share any common codon or amino acid utilization outline or, this is entirely a function of their niche specific lifestyle.
机译:在古表示主要是局限在非常特殊和极端生境的原始地球居民,而且很可能已经在地球的历史上很早就演变。糖酵解是趋同进化的古生菌中一个很好的例子,由此葡萄糖降解方案的多样性存在。本研究旨在解开通过在核苷酸和氨基酸水平古菌不同嗜极物种用来构建基因组以及蛋白质组的策略,特别强调,在单糖的氧化的考虑它的古老和早期出现在进化糖酵解途径。我们试图找出是否像它的所有修改版本糖酵解直链糖氧化途径在一定程度上将直接基因组结构的嗜极古。对比密码子使用的蓝图和密码子对偏好的研究可能使我们仔细检查其实这些生物是否共享任何共同的密码子或氨基酸的利用率轮廓或者,这完全是他们的利基特定生活方式的功能。

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