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Biodiversity in sulfur metabolism in hemiascomycetous yeasts

机译:半果糖酵母中硫代谢的生物多样性

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The evolution of the metabolism of sulfur compounds among yeast species was investigated. Differences between species were observed in the cysteine biosynthesis pathway. Most yeast species possess two pathways leading to cysteine production, the transsulfuration pathway and the O-acetyl-serine (OAS) pathway, with the exception of Saccharomyces cerevisiae and Candida glabrata, which only display the transsulfuration pathway, and Schizosaccharomyces pombe, which only have the OAS pathway. An examination of the components of the regulatory network in the different species shows that it is conserved in all the species analyzed, as its central component Met4p was shown to keep its functional domains and its partners were present. The analysis of the presence of genes involved in the catabolic pathway shows that it is evolutionarily conserved in the sulfur metabolism and leads us to propose a role for two gene families which appeared to be highly conserved. This survey has provided ways to understand the diversity of sulfur metabolism products among yeast species through the reconstruction of these pathways. This diversity could account for the difference in metabolic potentialities of the species with a biotechnological interest.
机译:研究了酵母物种中硫化合物代谢的演变。在半胱氨酸生物合成途径中观察到物种之间的差异。大多数酵母物种具有导致半胱氨酸生成的两条途径,即转硫途径和O-乙酰丝氨酸(OAS)途径,除了酿酒酵母和光滑念珠菌(仅显示转硫途径)和裂殖酵母(Schizosaccharomyces pombe)仅具有OAS途径。对不同物种中调节网络组成部分的检查表明,它在所有分析的物种中都是保守的,因为它的主要组成部分Met4p被证明保留其功能域,并且其伙伴也存在。对涉及分解代谢途径的基因的存在情况的分析表明,它在硫代谢中是进化保守的,这使我们提出了两个基因家族的作用,这些家族看来是高度保守的。这项调查提供了通过重建这些途径了解酵母物种中硫代谢产物多样性的方法。这种多样性可以解释具有生物技术利益的物种在代谢潜力方面的差异。

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