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Genome-wide screening of Saccharomyces cerevisiae genes required to foster tolerance towards industrial wheat straw hydrolysates

机译:全基因组筛选酿酒酵母基因的筛选,以提高其对工业小麦秸秆水解产物的耐受性

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摘要

The presence of toxic compounds derived from biomass pre-treatment in fermentation media represents an important drawback in second-generation bio-ethanol production technology and overcoming this inhibitory effect is one of the fundamental challenges to its industrial production. The aim of this study was to systematically identify, in industrial medium and at a genomic scale, the Saccharomyces cerevisiae genes required for simultaneous and maximal tolerance to key inhibitors of lignocellulosic fermentations. Based on the screening of EUROSCARF haploid mutant collection, 242 and 216 determinants of tolerance to inhibitory compounds present in industrial wheat straw hydrolysate (WSH) and in inhibitor-supplemented synthetic hydrolysate were identified, respectively. Genes associated to vitamin metabolism, mitochondrial and peroxisomal functions, ribosome biogenesis and microtubule biogenesis and dynamics are among the newly found determinants of WSH resistance. Moreover, PRS3, VMA8, ERG2, RAV1 and RPB4 were confirmed as key genes on yeast tolerance and fermentation of industrial WSH.
机译:在发酵培养基中源自生物质预处理的有毒化合物的存在代表了第二代生物乙醇生产技术的一个重要缺点,克服这种抑制作用是其工业生产的基本挑战之一。这项研究的目的是在工业培养基中和在基因组规模上系统地鉴定同时和最大耐受木质纤维素发酵关键抑制剂所需的酿酒酵母基因。在筛选EUROSSCARF单倍体突变体集合的基础上,分别确定了对工业化麦草水解产物(WSH)和抑制剂补充的合成水解产物中存在的抑制性化合物的耐受性的决定因素242和216。与维生素代谢,线粒体和过氧化物酶体功能,核糖体生物发生以及微管生物发生和动力学有关的基因是新发现的WSH耐药性的决定因素。此外,PRS3,VMA8,ERG2,RAV1和RPB4被确认为酵母耐受性和工业WSH发酵的关键基因。

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