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首页> 外文期刊>Mycologia >Distinct phylogeographic structure recognized within Desmazierella acicola
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Distinct phylogeographic structure recognized within Desmazierella acicola

机译:Desmazierella acicola中公认的独特的植物学结构

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摘要

Desmazierella acicola (anamorph Verticicladium trifidum, Chorioactidaceae) represents a frequent colonizer of pine needles in litter. Considering the global diversity and distribution of pine species, we expected different phylogenetic lineages to exist in different geographical and climatic areas inhabited by these hosts. We compared DNA sequence data with phenotypic characteristics (morphology of the anamorph and growth at three different temperatures) of 43 strains isolated mostly from pine and also spruce needle litter sampled in various geographical areas. Analyses of ITS rDNA recovered eight geographically structured lineages. Fragments of genes for the translation elongation factor 1-alpha, and the second largest subunit of RNA polymerase II reproduced similar lineages, although not all of them were monophyletic. The similarity in ITS sequences among the clade with samples from Continental-Atlantic Europe and four other clades was lower than 95%. Several lineages exhibit also a tendency toward host specificity to a particular pine species. Growth tests at different temperatures indicated a different tolerance to specific climatic conditions in different geographic areas. However, the surveyed phenotypic characteristics also showed high variation within lineages, most evident in the morphology of the anamorph. Until a morphological study of the teleomorph is carried out, all of these lineages should be treated as distinct populations within a single species.
机译:Desmazierella acicola(无定形黄萎病菌,绒毛膜科)代表了凋落物中松针的常见定居者。考虑到松树物种的全球多样性和分布,我们预计在这些寄主居住的不同地理和气候区域中将存在不同的系统发育谱系。我们将DNA序列数据与主要从松树中分离出的43个菌株的表型特征(无性形貌和在三个不同温度下的生长)进行了比较,并在不同地理区域采样了云杉针叶凋落物。 ITS rDNA的分析回收了八个地理结构的谱系。翻译延伸因子1-α的基因片段和RNA聚合酶II的第二大亚基可复制相似的谱系,尽管并非所有的谱系都是单系的。进化枝与欧洲大陆大西洋的样本和其他四个进化枝之间的ITS序列相似性低于95%。几个谱系也表现出对特定松树物种具有宿主特异性的趋势。在不同温度下的生长测试表明,不同地理区域对特定气候条件的耐受性不同。但是,所调查的表型特征在谱系中也显示出很高的变异性,在无性型的形态学中最明显。在对远形体进行形态学研究之前,所有这些谱系都应被视为单个物种内的不同种群。

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