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首页> 外文期刊>Journal of Plant Research >Genetic variation and evolution of the alpine bamboos (Poaceae : Bambusoideae) using DNA sequence data
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Genetic variation and evolution of the alpine bamboos (Poaceae : Bambusoideae) using DNA sequence data

机译:利用DNA序列数据分析高山竹(禾本科:竹科)的遗传变异和进化。

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摘要

Difficulties in phylogenetic reconstruction are common within the woody bamboos due to their unique life cycles, a lack of morphological characters and even an absence of molecular evidence. The genetic variability and population structure of the bamboos are also poorly understood which impedes their exploitation via breeding. In this paper, ITS sequence data were used to examine the degree of genetic variation within the alpine bamboos and to explore their phylogeny. Twenty-three species representing three genera, Thamnocalamus, Fargesia and Yushania, of the alpine bamboos and one species of Ampelocalamus as an outgroup were studied. The results indicated that Thamnocalamus spathiflorus var. crassinodus and the Fargesia spathacea clade form the basal groups but bootstrap support was weak. Among the rest of the species, including species previously placed in Fargesia (plus Borinda) and Yushania, the F. yunnanensis subclade and the F. communis subclade were recognized but internal support for such groups was again low. The result indicated that, Fargesia and Yushania as delimited by morphological characters, are not monophyletic in the ITS phylogeny and require further resolution. We revealed relatively high levels of genetic variability in the alpine bamboos and showed that the ITS region could be used to improve generic delimitation of the woody bamboos in general.
机译:由于其独特的生命周期,缺乏形态特征甚至缺乏分子证据,因此在系统发育重建中的困难在木质竹子中很常见。人们对竹子的遗传变异性和种群结构也知之甚少,这阻碍了它们通过繁殖进行利用。在本文中,ITS序列数据用于检查高山竹子内遗传变异的程度并探讨其系统发育。研究了代表高寒竹子的三属,阔角类,Fargesia和Yushania的二十三个物种,以及一组作为双胞胎属的美洲猿。结果表明,Thmnocalamus spathiflorus var。 crassinodus和Fargesia spathacea进化枝形成基群,但自举支持较弱。在其余物种中,包括以前放置在Fargesia(加上Borinda)和Yushania的物种中,云南F.subclade和F.communis subclade被认可,但是对此类群体的内部支持仍然很低。结果表明,Fargesia和Yushania受形态学特征的界定,在ITS系统发育上不是单系的,需要进一步的解决。我们揭示了高山竹林中较高的遗传变异水平,并表明ITS区域通常可用于改善木质竹林的通用定界。

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