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首页> 外文期刊>Jardin Botanico de Madrid. Anales >Ribosomal ITS diversity among the European species of the genus Hydnum (Hydnaceae)
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Ribosomal ITS diversity among the European species of the genus Hydnum (Hydnaceae)

机译:欧洲绣球属(Hydnaceae)之间的核糖体ITS多样性

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Several morphological species of the genus Hydnum L. are known to occur in Europe, but little molecular evidence exists to confirm the exact number and delimitation of the species. The present study seeks to investigate the genus Hydnum through sequence analysis of the nuclear ribosomal ITS regions and through morphological studies. The DNA sequences phylogenetic analysis revealed high diversity among the ITS region sequences in H. repandum (two clades) and H. rufescens (six clades) while the specimens of H. albidum, H. umbilicatum and H. ellipsosporum formed one and clearly separated clade per morphological species. Phylogenetic distances among the recognised species and the obtained morphologically unsupported clades are comparable and support the idea of several new, yet undescribed species. The intraspecific variability in the sequence data among phylogenetic species is generally low. Detailed morphological analysis of putative informative morphological characteristics could not support any of the observed non-monophyletic DNA-sequences clades within H. repandum or H. rufescens , and the proper use of names is not yet clear. Similar intraspecific variation has also been observed in many other ectomycorrhizal genera and could be explained by intensive speciation within variable groups under the influence of various factors (niche effect, ectomycorrhizal partner selection).
机译:Hydnum L.属的几种形态学种已知在欧洲发生,但几乎没有分子证据可以证实该种的确切数目和范围。本研究旨在通过核糖体ITS区域的序列分析和形态学研究来调查绣球属。 DNA序列系统发育分析显示,Rep。H. repandum(两个进化枝)和R. rufescens(六个进化枝)的ITS区序列之间具有高度多样性,而H. albidum,H。umbilicatum和H. ellipsosporum的标本形成一个且明显分离的进化枝每个形态学物种。已知物种与获得的形态上不受支持的进化枝之间的系统发生距离是可比的,并且支持几种新的但尚未描述的物种的想法。系统发育物种之间序列数据的种内变异性通常较低。推定的信息学形态特征的详细形态学分析不能支持观察到的H. repandum或H. rufescens中的任何非一元性DNA序列进化枝,并且名称的正确使用尚不清楚。在许多其他外生菌根属中也观察到了相似的种内变异,并且可以通过在各种因素(利基效应,外生菌根伴侣选择)的影响下在可变群体中进行密集的物种形成来解释。

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