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首页> 外文期刊>Applied Microbiology >Proteomic Characterization of Lignocellulolytic Enzymes Secreted by the Insect-Associated Fungus Daldinia decipiens oita, Isolated from a Forest in Northern Japan
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Proteomic Characterization of Lignocellulolytic Enzymes Secreted by the Insect-Associated Fungus Daldinia decipiens oita, Isolated from a Forest in Northern Japan

机译:昆虫相关真菌Daldinia decipiens大分分泌的木质纤维素溶解酶的蛋白质组学表征,从日本北部森林中分离出来

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Wood-devastating insects utilize their symbiotic microbes with lignocellulose-degrading abilities to extract energy from recalcitrant woods. It is well known that free-living lignocellulose-degrading fungi secrete various carbohydrate-active enzymes (CAZymes) to degrade plant cell wall components, mainly cellulose, hemicellulose, and lignin. However, CAZymes from insect-symbiotic fungi have not been well documented except for a few examples. In this study, an insect-associated fungus, Daldinia decipiens oita, was isolated as a potential symbiotic fungus of female Xiphydria albopicta captured from Hokkaido forest. This fungus was grown in seven different media containing a single carbon source, glucose, cellulose, xylan, mannan, pectin, poplar, or larch, and the secreted proteins were identified by liquid chromatography-tandem mass spectrometry (LC-MS/MS). A total of 128 CAZymes, including domains of 92 glycoside hydrolases, 15 carbohydrate esterases, 5 polysaccharide lyases, 17 auxiliary activities, and 11 carbohydrate-binding modules, were identified, and these are involved in degradation of cellulose and hemicellulose but not lignin. Together with the results of polysaccharide-degrading activity measurements, we concluded that D. decipiens oita tightly regulates the expression of these CAZymes in response to the tested plant cell wall materials. Overall, this study described the detailed proteomic approach of a woodwasp-associated fungus and revealed that the new isolate, D. decipiens oita, secretes diverse CAZymes to efficiently degrade lignocellulose in the symbiotic environment.IMPORTANCE Recent studies show the potential impacts of insect symbiont microbes on biofuel application with regard to their degradation capability of a recalcitrant plant cell wall. In this study, we describe a novel fungal isolate, D. decipiens oita, as a single symbiotic fungus from the Xiphydria woodwasp found in the northern forests of Japan. Our detailed secretome analyses of D. decipiens oita, together with activity measurements, reveal that this insect-associated fungus exhibits high and broad activities for plant cell wall material degradation, suggesting potential applications within the biomass conversion industry for plant mass degradation.
机译:木材毁灭性昆虫利用它们的共生微生物,具有木质纤维素降解能力,从顽固的树林中提取能量。众所周知,自由活的木质纤维素降解真菌分泌各种碳水化合物 - 活性酶(官僚),以降解植物细胞壁组分,主要是纤维素,半纤维素和木质素。然而,除了几个例子外,来自昆虫共生真菌的辛夫尚未得到很好的记录。在本研究中,昆虫相关的真菌Daldinia Decipiens大分被分离为从北海道森林捕获的女性Xiphydria Albopicta的潜在共生真菌。该真菌在七种不同培养基中生长,含有单一碳源,葡萄糖,纤维素,木聚糖,甘露素,果胶,杨树或落叶松,并通过液相色谱 - 串联质谱(LC-MS / MS)鉴定分泌的蛋白质。鉴定了总共128个辛酸,包括92个糖苷水解酶的结构域,15个碳水化合物酯酶,5个多糖裂解酶,17个辅助活性和11个碳水化合物结合模块,并且这些纤维素和半纤维素的降解但不是木质素。与多糖降解活性测量的结果一起,我们得出结论,D. Decipiens大分响应于测试的植物细胞壁材料而严格调节这些婴儿的表达。总体而言,这项研究描述了木壁相关真菌的详细蛋白质组学方法,并揭示了新的孤立,D. Dipipiens大分,分泌多种巨石,以有效降解共生环境中的木质纤维素。最近的研究表明昆虫共生微生物的潜在影响关于顽固植物细胞壁降解能力的生物燃料应用。在这项研究中,我们描述了一种新型真菌孤立,D. Decipiens大分,作为来自日本北森林的Xiphydria Woodwasp的单一共生真菌。我们的详细分析D. Dipipiens Oita以及活性测量,揭示这种昆虫相关的真菌对植物细胞壁材料降解表现出高和广泛的活动,表明植物质量降解的生物质转化行业内的潜在应用。

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