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Isolation, characterization and transcriptome analysis of a novel Antarctic Aspergillus sydowii strain MS-19 as a potential lignocellulosic enzyme source

机译:新型南极曲霉MS-19菌株的分离,鉴定和转录组分析作为潜在的木质纤维素酶源

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With the growing demand for fossil fuels and the severe energy crisis, lignocellulose is widely regarded as a promising cost-effective renewable resource for ethanol production, and the use of lignocellulose residues as raw material is remarkable. Polar organisms have important value in scientific research and development for their novelty, uniqueness and diversity. In this study, a fungus Aspergillus sydowii MS-19, with the potential for lignocellulose degradation was screened out and isolated from an Antarctic region. The growth profile of Aspergillus sydowii MS-19 was measured, revealing that Aspergillus sydowii MS-19 could utilize lignin as a sole carbon source. Its ability to synthesize low-temperature lignin peroxidase (Lip) and manganese peroxidase (Mnp) enzymes was verified, and the properties of these enzymes were also investigated. High-throughput sequencing was employed to identify and characterize the transcriptome of Aspergillus sydowii MS-19. Carbohydrate-Active Enzymes (CAZyme)-annotated genes in Aspergillus sydowii MS-19 were compared with those in the brown-rot fungus representative species, Postia placenta and Penicillium decumbens. There were 701CAZymes annotated in Aspergillus sydowii MS-19, including 17 cellulases and 19 feruloyl esterases related to lignocellulose-degradation. Remarkably, one sequence annotated as laccase was obtained, which can degrade lignin. Three peroxidase sequences sharing a similar structure with typical lignin peroxidase and manganese peroxidase were also found and annotated as haem-binding peroxidase, glutathione peroxidase and catalase-peroxidase. In this study, the fungus Aspergillus sydowii MS-19 was isolated and shown to synthesize low-temperature lignin-degrading enzymes: lignin peroxidase (Lip) and manganese peroxidase (Mnp). These findings provide useful information to improve our understanding of low-temperature lignocellulosic enzyme production by polar microorganisms and to facilitate research and applications of the novel Antarctic Aspergillus sydowii strain MS-19 as a potential lignocellulosic enzyme source.
机译:随着对化石燃料需求的增长和严峻的能源危机,木质纤维素被广泛认为是用于乙醇生产的有希望的具有成本效益的可再生资源,并且木质纤维素残留物作为原料的使用是显着的。极地生物的新颖性,独特性和多样性在科学研究和开发中具有重要的价值。在这项研究中,从南极地区筛选并分离了具有木糖纤维素降解潜能的sydowii sydowii MS-19真菌。测量了米曲霉MS-19的生长概况,揭示了米曲霉MS-19可以利用木质素作为唯一的碳源。验证了其合成低温木质素过氧化物酶(Lip)和锰过氧化物酶(Mnp)酶的能力,并研究了这些酶的性质。高通量测序被用于鉴定和表征Sydowii sydowii MS-19的转录组。将sydowii sydowii MS-19中带糖活性酶(CAZyme)注释的基因与褐腐真菌代表性物种Postia placenta和Penillillium decumbens的基因进行了比较。在Sydowii sydowii MS-19中注释了701个CAZyme,包括与木质纤维素降解有关的17个纤维素酶和19个阿魏酸酯酶。显着地,获得了一种注释为漆酶的序列,其可以降解木质素。还发现了三个与典型的木质素过氧化物酶和锰过氧化物酶具有相似结构的过氧化物酶序列,并标注为血红素结合过氧化物酶,谷胱甘肽过氧化物酶和过氧化氢酶过氧化物酶。在这项研究中,分离了真菌sydowii sydowii MS-19,并显示出可合成低温木质素降解酶:木质素过氧化物酶(Lip)和锰过氧化物酶(Mnp)。这些发现提供了有用的信息,以增进我们对极性微生物低温木质纤维素酶生产的理解,并有助于研究和应用新型南极曲霉菌株MS-19作为潜在的木质纤维素酶来源。

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