Thines Marco, Telle Sabine, Choi Young-Joon, Tan Yu Pei, Shivas Roger G
Integrative Fungal Research (IPF), Georg-Voigt-Str. 14-16, D-60325 Frankfurt am Main, Germany;; Biodiversity and Climate Research Centre (BiK-F), Georg-Voigt-Str. 14-16, D-60325 Frankfurt am Main, Germany; Senckenberg Gesellschaft für Naturkunde, Senckenberganlage 25, D-60325 Frankfurt am Main, Germany; Goethe University, Faculty of Biosciences, Institute of Ecology, Evolution and Diversity, May-von-Laue-Str. 9, D-60483 Frankfurt am Main, Germany.
Integrative Fungal Research (IPF), Georg-Voigt-Str. 14-16, D-60325 Frankfurt am Main, Germany;; Biodiversity and Climate Research Centre (BiK-F), Georg-Voigt-Str. 14-16, D-60325 Frankfurt am Main, Germany.
IMA Fungus. 2015 Dec;6(2):483-91. doi: 10.5598/imafungus.2015.06.02.12. Epub 2015 Nov 25.
So far 19 genera of downy mildews have been described, of which seven are parasitic to grasses. Here, we introduce a new genus, Baobabopsis, to accommodate two distinctive downy mildews, B. donbarrettii sp. nov., collected on Perotis rara in northern Australia, and B. enneapogonis sp. nov., collected on Enneapogon spp. in western and central Australia. Baobabopsis donbarrettii produced both oospores and sporangiospores that are morphologically distinct from other downy mildews on grasses. Molecular phylogenetic analyses showed that the two species of Baobabopsis occupied an isolated position among the known genera of graminicolous downy mildews. The importance of the Poaceae for the evolution of downy mildews is highlighted by the observation that more than a third of the known genera of downy mildews occur on grasses, while more than 90 % of the known species of downy mildews infect eudicots.
到目前为止,已描述了19个霜霉属,其中7个寄生于禾本科植物。在此,我们引入一个新属——猴面包霜霉属(Baobabopsis),以容纳两种独特的霜霉:新种巴雷特猴面包霜霉(B. donbarrettii sp. nov.),采集于澳大利亚北部的稀有显子草(Perotis rara);以及新种九顶草猴面包霜霉(B. enneapogonis sp. nov.),采集于澳大利亚西部和中部的九顶草属(Enneapogon spp.)植物。巴雷特猴面包霜霉产生的卵孢子和游动孢子囊孢子在形态上与其他禾本科霜霉不同。分子系统发育分析表明,猴面包霜霉属的这两个物种在已知的禾本科霜霉属中占据着一个孤立的位置。超过三分之一的已知霜霉属出现在禾本科植物上,而超过90%的已知霜霉物种感染双子叶植物,这一观察结果凸显了禾本科对霜霉进化的重要性。