首页> 外文OA文献 >Genome-wide array-CGH analysis reveals YRF1 gene copy number variation that modulates genetic stability in distillery yeasts.
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Genome-wide array-CGH analysis reveals YRF1 gene copy number variation that modulates genetic stability in distillery yeasts.

机译:全基因组阵列-GGH分析显示YRF1基因拷贝数变异调节酿酒酵母的遗传稳定性。

摘要

Industrial yeasts, economically important microorganisms, are widely used in diverse biotechnological processes including brewing, winemaking and distilling. In contrast to a well-established genome of brewer's and wine yeast strains, the comprehensive evaluation of genomic features of distillery strains is lacking. In the present study, twenty two distillery yeast strains were subjected to electrophoretic karyotyping and array-based comparative genomic hybridization (array-CGH). The strains analyzed were assigned to the Saccharomyces sensu stricto complex and grouped into four species categories: S. bayanus, S. paradoxus, S. cerevisiae and S. kudriavzevii. The genomic diversity was mainly revealed within subtelomeric regions and the losses and/or gains of fragments of chromosomes I, III, VI and IX were the most frequently observed. Statistically significant differences in the gene copy number were documented in six functional gene categories: 1) telomere maintenance via recombination, DNA helicase activity or DNA binding, 2) maltose metabolism process, glucose transmembrane transporter activity; 3) asparagine catabolism, cellular response to nitrogen starvation, localized in cell wall-bounded periplasmic space, 4) siderophore transport, 5) response to copper ion, cadmium ion binding and 6) L-iditol 2- dehydrogenase activity. The losses of YRF1 genes (Y' element ATP-dependent helicase) were accompanied by decreased level of Y' sequences and an increase in DNA double and single strand breaks, and oxidative DNA damage in the S. paradoxus group compared to the S. bayanus group. We postulate that naturally occurring diversity in the YRF1 gene copy number may promote genetic stability in the S. bayanus group of distillery yeast strains.
机译:工业酵母是经济上重要的微生物,已广泛用于各种生物技术过程,包括酿造,酿酒和蒸馏。与啤酒厂和葡萄酒酵母菌株的成熟基因组相反,酿酒厂菌株的基因组特征缺乏综合评价。在本研究中,对22个酒厂酵母菌株进行了电泳核型分析和基于阵列的比较基因组杂交(array-CGH)。所分析的菌株被归类为Saccharomyces sensu stricto复合体,并分为四个物种类别:巴彦链球菌,悖论链球菌,酿酒酵母和库氏酵母菌。基因组多样性主要在亚端粒区域内揭示,最常观察到染色体I,III,VI和IX片段的丢失和/或获得。在六个功能基因类别中记录了基因拷贝数的统计学显着差异:1)通过重组维持端粒,DNA解旋酶活性或DNA结合; 2)麦芽糖代谢过程,葡萄糖跨膜转运蛋白活性; 3)天冬酰胺分解代谢,对氮饥饿的细胞反应,位于细胞壁结合的周质空间中; 4)铁载体运输; 5)对铜离子,镉离子结合的反应;以及6)L-糖醇2-脱氢酶活性。与S.bayanus相比,S。paradoxus组中YRF1基因的丢失(Y'元素依赖ATP的解旋酶)伴随着Y'序列水平的降低和DNA双链和单链断裂的增加,以及氧化性DNA损伤。组。我们假定YRF1基因拷贝数的自然发生的多样性可能会促进酿酒酵母菌株的S.bayanus组的遗传稳定性。

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