美国亚利桑那州东南部三叶麻黄(麻黄科,麻属植物)光合茎中三个独特的Preussia(孢子囊科)

Q2 Agricultural and Biological Sciences
Dustin C. Sandberg, Mariana Del Olmo-Ruiz, Brooke E. Sykes, David Ozro Woods, A. Arnold
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引用次数: 0

摘要

对美国亚利桑那州东南部麻属植物(麻黄科)光合茎相关的可培养内生真菌的多样性和群落组成进行了调查,发现许多菌株在形态上与Preussia属成员(Sporormiaceae, Pleosporales, Dothideomycetes, Ascomycota)一致。Preussia(包括直到最近才被分类为Sporormiella的物种)包括粪便,土壤和植物栖息菌株,在世界范围内具有相当大的多样性。我们使用形态学证据和系统发育分析(核糖体内部转录间隔段和5.8s基因,核糖体大亚基的邻近D1-D2区域,以及菌株亚群的翻译延伸因子1- α, EF1-a)来确定作为内生菌出现在三叶松中Preussia中间枝的独特成员。其中包括p.a arizonica sp. nov.,它也作为内生菌出现在该地区的其他植物中,以及p.a elegans sp. nov.,迄今为止只在三叶草中发现。我们还提出了与木木桐属(Preussia lignicola)有亲缘关系的Preussia mariae sp. nov.,但根据形态学和EF1-a数据可区分。我们的分析表明,目前已知的几种普氏菌具有代表物种复合体的潜力,这些复合体应该通过分析额外的位点和进一步的内生菌取样来解决,这可能提供了在活的植物组织中发生的菌株之间的生态联系,并且可能是共生的或土壤居住的真菌。更广泛地说,我们的工作扩展了已知的地理范围、宿主使用和普雷西亚的多样性,特别是在干旱地区。结合以往的工作,我们的研究也为新描述的物种的次生代谢物的假设提供了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Three distinctive Preussia (Sporormiaceae) from photosynthetic stems of Ephedra trifurca (Ephedraceae, Gnetophyta) in southeastern Arizona, USA
A survey of the diversity and community composition of culturable endophytic fungi associated with photosynthetic stems of the gnetophyte Ephedra trifurca (Ephedraceae) in southeastern Arizona, USA, yielded numerous isolates that are consistent morphologically with members of the genus Preussia (Sporormiaceae, Pleosporales, Dothideomycetes, Ascomycota). Preussia (including species until recently classified within Sporormiella) include dung-, soil-, and plant-inhabiting strains with considerable diversity worldwide. We used morphological evidence and phylogenetic analyses (nuclear ribosomal internal transcribed spacers and 5.8s gene, the adjacent D1-D2 region of the nuclear ribosomal large subunit, and for a subset of strains, the translation elongation factor 1-alpha, EF1-a) to identify distinctive members of the Preussia intermedia clade occurring as endophytes in E. trifurca. These include P. arizonica sp. nov., which also occurs as an endophyte in other plants of the region, and P. elegans sp. nov., which has been found only in E. trifurca to date. We also propose Preussia mariae sp. nov., allied phylogenetically with Preussia lignicola but distinguishable on the basis of morphology and EF1-a data. Our analyses illustrate the potential for several currently recognized species of Preussia to represent species complexes that should be resolved by analyses of additional loci and by further sampling of endophytes, which may provide an ecological connection among strains occurring within living plant tissues and as coprophilous or soil-inhabiting fungi. More broadly, our work expands the known geographic scope, host use, and diversity of Preussia, especially in arid lands. In conjunction with previous work, our study also provides the basis for hypotheses regarding secondary metabolites of the newly described species.
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来源期刊
Plant and Fungal Systematics
Plant and Fungal Systematics Agricultural and Biological Sciences-Plant Science
CiteScore
2.40
自引率
0.00%
发文量
2
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