澳大利亚金合欢属(Uromycladium,Pucciniales)的成胆锈的多样性。

IF 9.5 1区 生物学 Q1 MYCOLOGY
Persoonia Pub Date : 2018-12-01 Epub Date: 2018-05-16 DOI:10.3767/persoonia.2018.40.09
C Doungsa-Ard, A R McTaggart, A D W Geering, R G Shivas
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引用次数: 17

摘要

据报道,在100多种Acacia植物上,以及与之密切相关的植物属Falcotaria、Racsperma和Paraserianthes上,都发现了温花尾霉。先前的研究表明,温花被藻可能代表一个宿主特异性的、隐蔽的物种的复合体。根据核核糖体DNA的小亚单位、内部转录间隔区和大亚单位区域以及线粒体细胞色素c氧化酶亚单位3的串联数据集,确定了79个尾虫分支标本之间的系统发育关系。本研究表明,金合欢的寄主范围仅限于‘A’地区的金合欢属。双宽吻群的sensu Chapman&Maslin(1992)。在A.ligulata上的一个特佩里目的表型被指定为该名称的应用创建一个稳定的分类学。根据寄主偏好、形态和系统发育物种的概念,描述了尾虫分支属的16个新种。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Diversity of gall-forming rusts (<i>Uromycladium</i>, <i>Pucciniales</i>) on <i>Acacia</i> in Australia.

Diversity of gall-forming rusts (<i>Uromycladium</i>, <i>Pucciniales</i>) on <i>Acacia</i> in Australia.

Diversity of gall-forming rusts (<i>Uromycladium</i>, <i>Pucciniales</i>) on <i>Acacia</i> in Australia.

Diversity of gall-forming rusts (Uromycladium, Pucciniales) on Acacia in Australia.

Uromycladium tepperianum has been reported on over 100 species of Acacia, as well as on the closely related plant genera, Falcataria, Racosperma and Paraserianthes. Previous studies have indicated that U. tepperianum may represent a complex of host-specific, cryptic species. The phylogenetic relationships between 79 specimens of Uromycladium were determined based on a concatenated dataset of the Small Subunit, the Internal Transcribed Spacer and the Large Subunit regions of nuclear ribosomal DNA, and the mitochondrial cytochrome c oxidase subunit 3. This study showed that the host range of U. tepperianum s.str. was restricted to species of Acacia in the 'A. bivenosa group' sensu Chapman & Maslin (1992). An epitype of U. tepperianum on A. ligulata is designated to create a stable taxonomy for the application of this name. Sixteen novel species of Uromycladium are described, based on host preference, morphology and a phylogenetic species concept.

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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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