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Distribution and diversity of enzymes for polysaccharide degradation in fungi

机译:真菌多糖降解酶的分布与多样性

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摘要

Abstract Fungi are important polysaccharide degraders in the environment and for biotechnology. Here, the increasing number of sequenced fungal genomes allowed for systematic identification of genes and proteins involved in polysaccharide degradation in 218 fungi. Globally, 9,003 sequences for glycoside hydrolases and lytic polysaccharide mono-oxygenases targeting cellulose, xylan, and chitin, were identified. Although abundant in most lineages, the distribution of these enzymes is variable even between organisms from the same genus. However, most fungi are generalists possessing several enzymes for polysaccharide deconstruction. Most identified enzymes were small proteins with simple domain organization or eventually consisted of one catalytic domain associated with a non-catalytic accessory domain. Thus unlike bacteria, fungi's ability to degrade polysaccharides relies on apparent redundancy in functional traits and the high frequency of lytic polysaccharide mono-oxygenases, as well as other physiological adaptation such as hyphal growth. Globally, this study provides a comprehensive framework to further identify enzymes for polysaccharide deconstruction in fungal genomes and will help identify new strains and enzymes with potential for biotechnological application.
机译:摘要真菌是环境中的重要多糖降解和生物技术。这里,越来越多的测序真菌基因组允许系统鉴定在218次真菌中参与多糖降解的基因和蛋白质。在全球范围内,鉴定了靶向纤维素,木聚糖和甲壳素的甘氨酸水解酶和含甘油酯多糖的9,003序列。虽然大多数谱系中丰富,但即使在来自相同属的生物之间,这些酶的分布也是可变的。然而,大多数真菌是具有几种用于多糖解构的酶的通用酶。大多数鉴定的酶是具有简单结构域组织的小蛋白质,或者最终由一个与非催化辅助域相关的一种催化结构域组成。因此,与细菌不同,真菌降解多糖的能力依赖于功能性状的表观冗余和裂解多糖单氧酶的高频率,以及其他生理适应,例如亚酚醛生长。在全球范围内,本研究提供了全面的框架,以进一步识别真菌基因组中多糖解构的酶,并有助于识别新的菌株和具有生物技术应用潜力的酶。

著录项

  • 作者

    Renaud Berlemont;

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  • 年度 2017
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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