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从金龟子科蜣螂及其幼虫肠道中筛选和分离木聚糖分解丝状真菌

Screening and Isolation of Xylanolytic Filamentous Fungi from the Gut of Scarabaeidae Dung Beetles and Dung Beetle Larvae.

作者信息

Makulana Livhuwani, La Grange Daniel C, Moganedi Kgabo L M, Mert Marlin J, Phasha Nkateko N, Jansen van Rensburg Elbert L

机构信息

Department of Biochemistry, Microbiology and Biotechnology, University of Limpopo, Limpopo Provice, Private Bag X1106, Sovenga 0727, South Africa.

出版信息

Microorganisms. 2024 Feb 22;12(3):445. doi: 10.3390/microorganisms12030445.

Abstract

Research on renewable biotechnology for renewable biofuel applications has reached new heights. This is highlighted by extensive biomining for novel enzymes to reduce the production costs from animal and insect gut microbiomes. This study explored the diversity and composition of hemicellulolytic fungi in the gut microbiota from dung beetles of the family Scarabaeidae (, and ). Two hundred and twenty-two filamentous fungi were isolated, purified and identified using rDNA sequencing of the ITS and D1/D2 regions. The fungal isolates were assigned to 12 genera and 25 species. Fungi associated with the genus was in abundance, with predominantly isolated. Isolates that produced more than 3 U/mL of xylanase activity were evaluated further. The highest xylanase activity was of 23.6 and 23.5 U/mL for L1XYL9 ( larvae) and AB2A3 (), respectively. Phylogeny of the fungal strains with xylanolytic activity was analysed using ITS rDNA sequences and revealed close genetic relatedness between isolates from the different dung beetle species. Fungal genera commonly found in the gut of both adult beetles and larvae included , . The results obtained in this study suggest that the gut of Scarabaeidae dung beetles in South Africa is a rich source of xylanolytic fungi.

摘要

用于可再生生物燃料应用的可再生生物技术研究已达到新高度。从动物和昆虫肠道微生物群中广泛挖掘新型酶以降低生产成本就凸显了这一点。本研究探索了金龟子科(Scarabaeidae)蜣螂肠道微生物群中半纤维素分解真菌的多样性和组成。使用ITS和D1/D2区域的rDNA测序分离、纯化并鉴定了222株丝状真菌。这些真菌分离株被归为12个属和25个种。与 属相关的真菌数量众多,其中 主要被分离出来。对木聚糖酶活性超过3 U/mL的分离株进行了进一步评估。L1XYL9( 幼虫)和AB2A3( )的木聚糖酶活性最高,分别为23.6和23.5 U/mL。使用ITS rDNA序列分析了具有木聚糖分解活性的真菌菌株的系统发育,结果显示不同蜣螂物种的分离株之间存在密切的遗传相关性。在成虫和幼虫肠道中常见的真菌属包括 、 。本研究获得的结果表明,南非金龟子科蜣螂的肠道是木聚糖分解真菌的丰富来源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dec4/10971965/553e281aa278/microorganisms-12-00445-g001.jpg

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