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嗜热真菌的分子系统发育。

A molecular phylogeny of thermophilic fungi.

机构信息

Centre for Structural and Functional Genomics, Concordia University, Montreal, Quebec, Canada.

出版信息

Fungal Biol. 2012 Apr;116(4):489-502. doi: 10.1016/j.funbio.2012.01.010. Epub 2012 Feb 8.

Abstract

Sequences from 86 fungal genomes and from the two outgroup genomes Arabidopsis thaliana and Drosophila melanogaster were analyzed to construct a robust molecular phylogeny of thermophilic fungi, which are potentially rich sources of industrial enzymes. To provide experimental reference points, growth characteristics of 22 reported thermophilic or thermotolerant fungi, together with eight mesophilic species, were examined at four temperatures: 22 °C, 34 °C, 45 °C, and 55 °C. Based on the relative growth performances, species with a faster growth rate at 45 °C than at 34 °C were classified as thermophilic, and species with better or equally good growth at 34 °C compared to 45 °C as thermotolerant. We examined the phylogenetic relationships of a diverse range of fungi, including thermophilic and thermotolerant species, using concatenated amino acid sequences of marker genes mcm7, rpb1, and rpb2 obtained from genome sequencing projects. To further elucidate the phylogenetic relationships in the thermophile-rich orders Sordariales and Eurotiales, we used nucleotide sequences from the nuclear ribosomal small subunit (SSU), the 5.8S gene with internal transcribed spacers 1 and 2 (ITS 1 and 2), and the ribosomal large subunit (LSU) to include additional species for analysis. These phylogenetic analyses clarified the position of several thermophilic taxa. Thus, Myriococcum thermophilum and Scytalidium thermophilum fall into the Sordariales as members of the Chaetomiaceae, Thermomyces lanuginosus belongs to the Eurotiales, Malbranchea cinnamomea is a member of the Onygenales, and Calcarisporiella thermophila is assigned to the basal fungi close to the Mucorales. The mesophilic alkalophile Acremonium alcalophilum clusters with Verticillium albo-atrum and Verticillium dahliae, placing them in the recently established order Glomerellales. Taken together, these data indicate that the known thermophilic fungi are limited to the Sordariales, Eurotiales, and Onygenales in the Ascomycota and the Mucorales with possibly an additional order harbouring C. thermophila in the basal fungi. No supporting evidence was found for thermophilic species belonging to the Basidiomycota.

摘要

从 86 个真菌基因组和两个外群基因组拟南芥和黑腹果蝇中提取序列,构建了一个耐热真菌的稳健分子系统发育树,这些真菌是工业酶的潜在丰富来源。为了提供实验参考点,对 22 种已报道的耐热或嗜热真菌以及 8 种嗜温种的生长特性在四个温度下进行了研究:22°C、34°C、45°C 和 55°C。基于相对生长性能,将在 45°C 比 34°C 生长速度更快的物种分类为嗜热菌,而在 34°C 比 45°C 生长更好或同样良好的物种分类为耐热菌。我们使用来自基因组测序项目的标记基因 mcm7、rpb1 和 rpb2 的氨基酸序列对包括耐热和耐热物种的多种真菌的系统发育关系进行了检查。为了进一步阐明在富含 Sordariales 和 Eurotiales 的目之间的系统发育关系,我们使用了核核糖体小亚基 (SSU)、包含内部转录间隔区 1 和 2 的 5.8S 基因(ITS 1 和 2)和核糖体大亚基 (LSU) 的核苷酸序列,将更多的物种纳入分析。这些系统发育分析澄清了几个耐热分类群的位置。因此,嗜热真菌 Myriococcum thermophilum 和 Scytalidium thermophilum 归入 Sordariales,是 Chaetomiaceae 的成员,Thermomyces lanuginosus 属于 Eurotiales,Malbranchea cinnamomea 是 Onygenales 的成员,而 Calcarisporiella thermophila 被分配到接近 Mucorales 的基础真菌。嗜温性嗜碱菌 Acremonium alcalophilum 与 Verticillium albo-atrum 和 Verticillium dahliae 聚类,将它们归入最近成立的 Glomerellales 目。总之,这些数据表明,已知的耐热真菌仅限于子囊菌门的 Sordariales、Eurotiales 和 Onygenales 以及可能包含 C. thermophila 的另一个目,在基础真菌中。没有发现属于担子菌门的耐热物种的支持证据。

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