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Phylogenetic reassessment of the Chaetomium globosum species complex

机译:球毛壳属物种复合体的系统发育重估

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摘要

Chaetomium globosum, the type species of the genus, is ubiquitous, occurring on a wide variety of substrates, in air and in marine environments. This species is recognised as a cellulolytic and/or endophytic fungus. It is also known as a source of secondary metabolites with various biological activities, having great potential in the agricultural, medicinal and industrial fields. On the negative side, C. globosum has been reported as an air contaminant causing adverse health effects and as causal agent of human fungal infections. However, the taxonomic status of C. globosum is still poorly understood. The contemporary species concept for this fungus includes a broadly defined morphological diversity as well as a large number of synonymies with limited phylogenetic evidence. The aim of this study is, therefore, to resolve the phylogenetic limits of C. globosum s.str. and related species. Screening of isolates in the collections of the CBS-KNAW Fungal Biodiversity Centre (The Netherlands) and the China General Microbiological Culture Collection Centre (China) resulted in recognising 80 representative isolates of the C. globosum species complex. Thirty-six species are identified based on phylogenetic inference of six loci, supported by typical morphological characters, mainly ascospore shape. Of these, 12 species are newly described here. Additionally, C. cruentum, C. mollipilium, C. rectum, C. subterraneum and two varieties of C. globosum are synonymised under C. globosum s.str., and six species are resurrected, i.e. C. angustispirale, C. coarctatum, C. cochliodes, C. olivaceum, C. spiculipilium and C. subglobosum. Chaetomium ascotrichoides is segregated from C. madrasense and the genus name Chaetomidium is rejected. Five species, including C. globosum s.str., are typified here to stabilise their taxonomic status. A further evaluation of the six loci used in this study as potential barcodes indicated that the 28S large subunit (LSU) nrDNA and the internal transcribed spacer regions and intervening 5.8S nrRNA (ITS) gene regions were unreliable to resolve species, whereas β-tubulin (tub2) and RNA polymerase II second largest subunit (rpb2) showed the greatest promise as DNA barcodes for differentiating Chaetomium species. This study provides a starting point to establish a more robust classification system for Chaetomium and for the Chaetomiaceae.
机译:球形毛毛虫(Chaetomium globosum)是一种普遍存在的物种,广泛存在于空气和海洋环境中的各种基质上。该物种被认为是纤维素分解和/或内生真菌。它也被称为具有各种生物活性的次生代谢物的来源,在农业,医药和工业领域具有巨大的潜力。不利的一面是,据报道球孢梭菌是一种空气污染物,会对健康造成不利影响,并且是人类真菌感染的病原体。但是,对球孢梭菌的分类状态仍然知之甚少。这种真菌的现代物种概念包括广泛定义的形态学多样性,以及大量的具有有限系统发育证据的同义词。因此,本研究的目的是解决球孢梭菌的系统发育限制。和相关物种。在CBS-KNAW真菌生物多样性中心(荷兰)和中国通用微生物培养物收集中心(中国)的馆藏中进行了筛选,结果鉴定出80个代表性的球孢梭菌菌种。根据六个位点的系统发育推断,鉴定出36种,并得到典型的形态特征(主要是子囊形)的支持。其中,这里新描述了12种。此外,C。globosum s.str。是C. cruentum,C。mollipilium,C。直肠,C。subboneum和两个变种C. globosum的同义词,并且复活了六个物种,即C. angustispirale,C。coarctatum, C.cochliodes,C.olivaceum,C.spiculipilium和C.subglobosum。 Chaetomium ascotrichoides与C. madrasense隔离,Chaetomidium属被拒绝。为了稳定其生物分类地位,这里对五个物种(包括球孢梭菌)进行了分类。对该研究中用作潜在条形码的六个基因座的进一步评估表明,28S大亚基(LSU)nrDNA和内部转录的间隔区以及5.8S nrRNA(ITS)基因区不可靠地分辨物种,而β-微管蛋白(tub2)和RNA聚合酶II的第二大亚基(rpb2)具有最大的前景,可用于区分Chaetomium物种的DNA条码。这项研究提供了一个起点,可以建立一个更强大的毛毡苔科和毛毡科的分类系统。

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