Fenestelloid clades of the Cucurbitariaceae.

IF 9.5 1区 生物学 Q1 MYCOLOGY
Persoonia Pub Date : 2020-06-01 Epub Date: 2019-05-27 DOI:10.3767/persoonia.2020.44.01
W M Jaklitsch, H Voglmayr
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引用次数: 0

Abstract

Fresh collections and their ascospore and conidial isolates backed up by type studies and molecular phylogenetic analyses of a multigene matrix of partial nuSSU-, complete ITS, partial LSU rDNA, rpb2, tef1 and tub2 sequences were used to evaluate the boundaries and species composition of Fenestella and related genera of the Cucurbitariaceae. Eight species, of which five are new, are recognised in Fenestella s.str., 13 in Parafenestella with eight new species and two in the new genus Synfenestella with one new species. Cucurbitaria crataegi is combined in Fenestella, C. sorbi in Synfenestella, Fenestella faberi and Thyridium salicis in Parafenestella. Cucurbitaria subcaespitosa is distinct from C. sorbi and combined in Neocucurbitaria. Fenestella minor is a synonym of Valsa tetratrupha, which is combined in Parafenestella. Cucurbitaria marchica is synonymous with Parafenestella salicis, Fenestella bavarica with S. sorbi, F. macrospora with F. media, and P. mackenziei is synonymous with P. faberi, and the latter is lectotypified. Cucurbitaria sorbi, C. subcaespitosa and Fenestella macrospora are lecto- and epitypified, Cucurbitaria crataegi, Fenestella media, F. minor and Valsa tetratrupha are epitypified in order to stabilise the names in their phylogenetic positions. A neotype is proposed for Thyridium salicis. A determinative key to species is given. Asexual morphs of fenestelloid fungi are phoma-like and do not differ from those of other representatives of the Cucurbitariaceae. The phylogenetic structure of the fenestelloid clades is complex and can only be resolved at the species level by protein-coding genes, such as rpb2, tef1 and tub2. All fungal species studied here occur, as far as has been possible to determine, on members of Diaporthales, most frequently on asexual and sexual morphs of Cytospora.

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Abstract Image

Abstract Image

葫芦科的类Fenestelloid分支。
通过对新鲜采集物及其腹孢子和分生孢子分离物进行类型研究,并对由部分 nuSSU-、完整 ITS、部分 LSU rDNA、rpb2、tef1 和 tub2 序列组成的多基因矩阵进行分子系统学分析,对葫芦科 Fenestella 属和相关属的边界和物种组成进行了评估。在 Fenestella s.str.中发现了 8 个种,其中 5 个为新种;在 Parafenestella 中发现了 13 个种,其中 8 个为新种;在新属 Synfenestella 中发现了 2 个种,其中 1 个为新种。Cucurbitaria crataegi 被归入 Fenestella 属,C. sorbi 被归入 Synfenestella 属,Fenestella faberi 和 Thyridium salicis 被归入 Parafenestella 属。Cucurbitaria subcaespitosa 与 C. sorbi 区分开来,并归入 Neocucurbitaria。Fenestella minor 是 Valsa tetratrupha 的异名,合并到 Parafenestella 中。Cucurbitaria marchica 与 Parafenestella salicis 同义,Fenestella bavarica 与 S. sorbi 同义,F. macrospora 与 F. media 同义,P. mackenziei 与 P. faberi 同义,后者已进行了分类。Cucurbitaria sorbi、C. subcaespitosa 和 Fenestella macrospora 是同义词,Cucurbitaria crataegi、Fenestella media、F. minor 和 Valsa tetratrupha 是同义词,以便将这些名称稳定在其系统发育位置上。提出了 Thyridium salicis 的新原型。给出了物种的确定键。番杏属真菌的无性形态类似噬菌体,与葫芦科的其他代表真菌没有区别。蕨类真菌支系的系统发育结构复杂,只能通过 rpb2、tef1 和 tub2 等蛋白质编码基因在物种水平上加以解决。本文研究的所有真菌物种都出现在 Diaporthales 的成员身上,其中最常见的是细胞孢子属(Cytospora)的无性和有性形态。
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来源期刊
Persoonia
Persoonia MYCOLOGY-
CiteScore
17.70
自引率
5.50%
发文量
10
审稿时长
3 months
期刊介绍: Persoonia aspires to publish papers focusing on the molecular systematics and evolution of fungi. Additionally, it seeks to advance fungal taxonomy by employing a polythetic approach to elucidate the genuine phylogeny and relationships within the kingdom Fungi. The journal is dedicated to disseminating high-quality papers that unravel both known and novel fungal taxa at the DNA level. Moreover, it endeavors to provide fresh insights into evolutionary processes and relationships. The scope of papers considered encompasses research articles, along with topical and book reviews.
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