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The genome sequence of the commercially cultivated mushroom Agrocybe aegerita reveals a conserved repertoire of fruiting-related genes and a versatile suite of biopolymer-degrading enzymes

机译:商业化种植的蘑菇菇(Agrocybe aegerita)的基因组序列揭示了与结果相关的基因的保守组成,以及一套多功能的生物聚合物降解酶。

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Agrocybe aegerita is an agaricomycete fungus with typical mushroom features, which is commercially cultivated for its culinary use. In nature, it is a saprotrophic or facultative pathogenic fungus causing a white-rot of hardwood in forests of warm and mild climate. The ease of cultivation and fructification on solidified media as well as its archetypal mushroom fruit body morphology render A. aegerita a well-suited model for investigating mushroom developmental biology. Here, the genome of the species is reported and analysed with respect to carbohydrate active genes and genes known to play a role during fruit body formation. In terms of fruit body development, our analyses revealed a conserved repertoire of fruiting-related genes, which corresponds well to the archetypal fruit body morphology of this mushroom. For some genes involved in fruit body formation, paralogisation was observed, but not all fruit body maturation-associated genes known from other agaricomycetes seem to be conserved in the genome sequence of A. aegerita. In terms of lytic enzymes, our analyses suggest a versatile arsenal of biopolymer-degrading enzymes that likely account for the flexible life style of this species. Regarding the amount of genes encoding CAZymes relevant for lignin degradation, A. aegerita shows more similarity to white-rot fungi than to litter decomposers, including 18 genes coding for unspecific peroxygenases and three dye-decolourising peroxidase genes expanding its lignocellulolytic machinery. The genome resource will be useful for developing strategies towards genetic manipulation of A. aegerita, which will subsequently allow functional genetics approaches to elucidate fundamentals of fruiting and vegetative growth including lignocellulolysis.
机译:Agrocybe aegerita是一种具有典型蘑菇特征的琼脂菌真菌,已商业化种植以用于烹饪。在自然界中,它是腐生或兼性的病原性真菌,在温暖和温和的气候森林中引起硬木白腐。易于在固化培养基上培养和果糖化,以及其原型蘑菇果的形态,使A. aegerita成为研究蘑菇发育生物学的理想模型。在此,针对碳水化合物活性基因和已知在子实体形成过程中起作用的基因,报告并分析了该物种的基因组。就子实体的发育而言,我们的分析显示了与子实体相关的基因的保守组成,与该蘑菇的原型子实体形态非常吻合。对于某些与子实体形成有关的基因,可以观察到旁系同源,但并非所有从其他琼脂菌属中获知的与子实体成熟相关的基因似乎都在aegerae的基因组序列中保守。在裂解酶方面,我们的分析表明,生物聚合物降解酶的用途广泛,这很可能解释了该物种的灵活生活方式。关于与木质素降解相关的编码CAZymes的基因数量,A。aegerita与白腐真菌相比,与凋落物分解物具有更大的相似性,包括18个编码非特异性过氧化酶的基因和三个扩大其木质纤维素分解机制的染料脱色过氧化物酶基因。基因组资源将有助于制定对A. aegerita进行遗传操作的策略,随后将允许采用功能遗传学方法阐明结果和包括木质纤维素分解在内的营养生长的基本原理。

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