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Genome sequence of the insect pathogenic fungus?Cordyceps militaris, a valued traditional chinese medicine

机译:昆虫病原性真菌的基因组序列?虫草(Cordyceps militaris),一种有价值的中药

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Background: Species in the ascomycete fungal genus Cordyceps have been proposed to be the teleomorphs of Metarhizium species. The latter have been widely used as insect biocontrol agents. Cordyceps species are highly prized for use in traditional Chinese medicines, but the genes responsible for biosynthesis of bioactive components, insect pathogenicity and the control of sexuality and fruiting have not been determined. Results: Here, we report the genome sequence of the type species Cordyceps militaris. Phylogenomic analysis suggests that different species in the Cordyceps/Metarhizium genera have evolved into insect pathogens independently of each other, and that their similar large secretomes and gene family expansions are due to convergent evolution. However, relative to other fungi, including Metarhizium spp., many protein families are reduced in C. militaris, which suggests a more restricted ecology. Consistent with its long track record of safe usage as a medicine, the Cordyceps genome does not contain genes for known human mycotoxins. We establish that C. militaris is sexually heterothallic but, very unusually, fruiting can occur without an opposite mating-type partner. Transcriptional profiling indicates that fruiting involves induction of the Zn2Cys6-type transcription factors and MAPK pathway; unlike other fungi, however, the PKA pathway is not activated. Conclusions: The data offer a better understanding of Cordyceps biology and will facilitate the exploitation of medicinal compounds produced by the fungus.
机译:背景:虫草菌属冬虫夏草属的物种已被认为是变种的变种。后者已被广泛用作昆虫生物防治剂。虫草菌种在传统中药中备受推崇,但尚未确定负责生物活性成分的生物合成,昆虫致病性以及控制性和结果的基因。结果:在这里,我们报告了Cord虫草类型种的基因组序列。系统生物学分析表明,冬虫夏草/ Metarhizium属中的不同物种已彼此独立地进化为昆虫病原体,并且它们相似的大型分泌组和基因家族扩展是由于趋同进化而引起的。但是,相对于其他真菌,包括Metarhizium spp。,鱼C. militaris中的许多蛋白质家族都减少了,这表明其生态受到更多限制。冬虫夏草基因组与其长期作为药物安全使用的记录一致,不包含已知的人类霉菌毒素基因。我们确定,C。militaris在性上是异源的,但非常不寻常的是,在没有相反交配型伴侣的情况下也可能发生结实。转录谱分析结果表明结果涉及Zn2Cys6型转录因子和MAPK途径的诱导。但是,与其他真菌不同,PKA途径没有被激活。结论:这些数据可以更好地了解冬虫夏草的生物学特性,并有助于利用真菌产生的药用化合物。

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