Two new species of the Peronospora belbahrii species complex, Pe. choii sp. nov. and Pe. salviae-pratensis sp. nov., and a new host for Pe. salviae-officinalis.

Fungal systematics and evolution Pub Date : 2020-12-01 Epub Date: 2020-03-03 DOI:10.3114/fuse.2020.06.03
M Hoffmeister, S Ashrafi, M Thines, W Maier
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引用次数: 4

Abstract

The downy mildew species parasitic to Mentheae are of particular interest, as this tribe of Lamiaceae contains a variety of important medicinal plants and culinary herbs. Over the past two decades, two pathogens, Peronospora belbahrii and Pe. salviae-officinalis have spread globally, impacting basil and common sage production, respectively. In the original circumscription of Pe. belbahrii, the downy mildew of coleus (Plectranthus scutellarioides) was ascribed to this species in the broader sense, but subtle differences in morphological and molecular phylogenetic analyses using two genes suggested that this pathogen would potentially need to be assigned to a species of its own. In the present study, Peronospora species causing downy mildew on members of the Mentheae, including clary sage (Salvia sclarea), meadow sage (S. pratensis), basil (Ocimum basilicum), ground ivy (Glechoma hederacea) and coleus (Plectranthus scutellarioides) were studied using light microscopy and molecular phylogenetic analyses based on six loci (ITS rDNA, cox1, cox2, ef1a, hsp90 and β-tubulin) to clarify the species boundaries in the Pe. belbahrii species complex. The downy mildew on Salvia pratensis is shown to be distinct from Pe. salviae-officinalis and closely related to Pe. glechomae, and is herein described as a new species, Pe. salviae-pratensis. The downy mildew on S. sclarea was found to be caused by Pe. salviae-officinalis. This is of phytopathological importance, because meadow sage thus does not play a role as inoculum source for common sage in the natural habitat of the former in Europe and Asia, while clary sage probably does. The multi-gene phylogeny revealed that the causal agent of downy mildew on coleus is distinct from Pe. belbahrii on basil, and is herein described as a new taxon, Pe. choii.

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贝尔巴赫霜霉属复合体的两个新种,Pe。崔伊水产公司十一月和佩。丹参11 月,以及 Pe 的新主人。鼠尾草
寄生于薄荷科的霜霉菌是特别有趣的,因为这个部落的Lamiaceae包含各种重要的药用植物和烹饪草本植物。在过去的二十年里,两种病原体,Peronospora belbahrii和Pe。鼠尾草(Salviae-officinalis)已在全球蔓延,分别影响罗勒和鼠尾草的生产。在Pe的原始边界中。coleus (Plectranthus scutellarioides)的霜霉病belbahrii在更广泛的意义上属于这个物种,但使用两个基因进行形态学和分子系统发育分析的细微差异表明,这种病原体可能需要被分配到一个单独的物种。本文采用光镜技术和基于ITS rDNA、cox1、cox2、ef1a、hsp90和β-微管蛋白6个位点的分子系统发育分析,对鼠尾草(Salvia sclarea)、草叶鼠尾草(S. pratensis)、罗勒(Ocimum basilicum)、地常春藤(Glechoma hederacea)和花青草(Plectranthus scutellarioides)等Mentheae科植物发生霜霉病的Peronospora种进行了研究。Belbahrii物种复合体。在草原鼠尾草霜霉病显示不同于Pe。鼠尾草,与鼠尾草密切相关。本文将其描述为一个新种。salviae-pratensis。菌丝体上的霜霉病是由Pe引起的。salviae-officinalis。这在植物病理学上是重要的,因为草甸鼠尾草在欧洲和亚洲的自然栖息地不能作为普通鼠尾草的接种源,而鼠尾草可能可以。多基因系统发育表明,大肠霜霉病的致病因子不同于Pe。belbahrii在罗勒上,并在此描述为一个新的分类单元,Pe。choii。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
7.30
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