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首页> 外文期刊>BMC Genomics >Genome sequence and transcriptome analyses of the thermophilic zygomycete fungus Rhizomucor miehei
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Genome sequence and transcriptome analyses of the thermophilic zygomycete fungus Rhizomucor miehei

机译:嗜热合子真菌Rhizomucor miehei的基因组序列和转录组分析

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Background The zygomycete fungi like Rhizomucor miehei have been extensively exploited for the production of various enzymes. As a thermophilic fungus, R. miehei is capable of growing at temperatures that approach the upper limits for all eukaryotes. To date, over hundreds of fungal genomes are publicly available. However, Zygomycetes have been rarely investigated both genetically and genomically. Results Here, we report the genome of R. miehei CAU432 to explore the thermostable enzymatic repertoire of this fungus. The assembled genome size is 27.6-million-base (Mb) with 10,345 predicted protein-coding genes. Even being thermophilic, the G?+?C contents of fungal whole genome (43.8%) and coding genes (47.4%) are less than 50%. Phylogenetically, R. miehei is more closerly related to Phycomyces blakesleeanus than to Mucor circinelloides and Rhizopus oryzae. The genome of R. miehei harbors a large number of genes encoding secreted proteases, which is consistent with the characteristics of R. miehei being a rich producer of proteases. The transcriptome profile of R. miehei showed that the genes responsible for degrading starch, glucan, protein and lipid were highly expressed. Conclusions The genome information of R. miehei will facilitate future studies to better understand the mechanisms of fungal thermophilic adaptation and the exploring of the potential of R. miehei in industrial-scale production of thermostable enzymes. Based on the existence of a large repertoire of amylolytic, proteolytic and lipolytic genes in the genome, R. miehei has potential in the production of a variety of such enzymes.
机译:背景技术诸如米根霉(Rhizomucor miehei)的合子真菌已被广泛地用于生产各种酶。作为嗜热真菌,R。miehei能够在接近所有真核生物上限的温度下生长。迄今为止,已有数百种真菌基因组公开可用。然而,很少有人从基因和基因组上研究合子菌。结果在这里,我们报告了R. miehei CAU432的基因组,以探索该真菌的热稳定酶库。组装的基因组大小为2760万碱基(Mb),其中包含10345个预测的蛋白质编码基因。即使是嗜热的,真菌全基因组的Gα+ΔC含量(43.8%)和编码基因(47.4%)也小于50%。从系统发育上看,R。miehei与Byysleanus拟南芥比与Mucor circinelloides和Rhizopus oryzae更近。 miehei的基因组包含大量编码分泌型蛋白酶的基因,这与miehei作为蛋白酶的丰富生产者的特征是一致的。 R. miehei的转录组谱显示,负责降解淀粉,葡聚糖,蛋白质和脂质的基因被高度表达。结论美黑麦芽孢杆菌的基因组信息将有助于将来的研究,以更好地了解真菌嗜热适应的机制,并探索美黑麦芽孢杆菌在工业规模生产热稳定酶中的潜力。基于基因组中存在大量的淀粉分解,蛋白水解和脂解基因,miehei在生产各种此类酶方面具有潜力。

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