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Genome Sequencing of the Pyruvate-producing Strain Candida glabrata CCTCC M202019 and Genomic Comparison with Strain CBS138

机译:丙酮酸生产菌株光滑念珠菌CCTCC M202019的基因组测序和与菌株CBS138的基因组比较

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Candida glabrata CCTCC M202019 as an industrial yeast strain that is widely used to produce α-oxocarboxylic acid. Strain M202019 has been proven to have a higher pyruvate-producing capacity than the reference strain CBS138. To characterize the genotype of the M202019 strain, we generated a draft sequence of its genome, which has a size of 12.1?Mbp and a GC content of 38.47%. Evidence accumulated during genome annotation suggests that strain M202019 has strong capacities for glucose transport and pyruvate biosynthesis, defects in pyruvate catabolism, as well as variations in genes involved in nutrient and dicarboxylic acid transport, oxidative phosphorylation, and other relevant aspects of carbon metabolism, which might promote pyruvate accumulation. In addition to differences in its central carbon metabolism, a genomic analysis revealed genetic differences in adhesion metabolism. Forty-nine adhesin-like proteins of strain M202019 were identified classified into seven subfamilies. Decreased amounts of adhesive proteins, and deletions or changes of low-complexity repeats and functional domains might lead to lower adhesion and reduced pathogenicity. Further virulence experiments validated the biological safety of strain M202019. Analysis of the C. glabrata CCTCC M202019 genome sequence provides useful insights into its genetic context, physical characteristics, and potential metabolic capacity.
机译:光滑念珠菌CCTCC M202019作为工业酵母菌株,被广泛用于生产α-氧代羧酸。事实证明,菌株M202019具有比参考菌株CBS138高的丙酮酸生产能力。为了表征M202019菌株的基因型,我们生成了其基因组的草图序列,其大小为12.1?Mbp,GC含量为38.47%。基因组注释期间积累的证据表明,菌株M202019具有强大的葡萄糖转运和丙酮酸生物合成能力,丙酮酸分解代谢缺陷以及涉及营养物和二羧酸转运的基因变异,氧化磷酸化以及碳代谢的其他相关方面,可能会促进丙酮酸的积累。除了中心碳代谢的差异外,基因组分析还揭示了粘附代谢的遗传差异。鉴定出菌株M202019的四十九个粘附素样蛋白,分为七个亚家族。黏着蛋白的减少,低复杂度重复序列和功能域的缺失或改变可能导致黏着力降低和致病性降低。进一步的毒力实验验证了菌株M202019的生物安全性。对光滑毛孢菌CCTCC M202019基因组序列的分析提供了对其遗传背景,物理特征和潜在代谢能力的有用见解。

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