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首页> 外文期刊>Molecular phylogenetics and evolution >Incongruent plastid and nuclear DNA phylogenies reveal ancient intergeneric hybridization in Pilosella hawkweeds (Hieracium, Cichorieae, Asteraceae)
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Incongruent plastid and nuclear DNA phylogenies reveal ancient intergeneric hybridization in Pilosella hawkweeds (Hieracium, Cichorieae, Asteraceae)

机译:质体和核DNA的系统发育不一致,揭示了霍乱皮氏菌(紫薇,Ci草科,菊科)中古老的属间杂交。

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摘要

Phylogenetic relationships for Hieracium subgen. Pilosella were inferred from chloroplast (trnT-trnL, matK) and nuclear (ITS) sequence data. Chloroplast markers revealed the existence of two divergent haplotype groups within the subgenus that did not correspond to presumed relationships. Furthermore, chloroplast haplotypes of the genera Hispidella and Andryala nested each within one of these groups. In contrast, ITS data were generally in accord with morphology and other evidence and were therefore assumed to reflect the true phylogeny. They revealed a sister relationship between Pilosella and Hispidella and a joint clade of Hieracium subgenera Hieracium and Chionoracium (Stenotheca) while genus Andryala represented a third major lineage of the final ingroup cluster. Detailed analysis of trnT-trnL character state evolution along the ITS tree suggested two intergeneric hybridization events between ancestral lineages that resulted in cytoplasmic transfer (from Hieracium/Chionoracium to Pilosella, and from the introgressed Pilosella lineage to Andryala). These chloroplast capture events, the first of which involved a now extinct haplotype, are the most likely explanation for the observed incongruencies between plastid and nuclear DNA markers. (c) 2006 Elsevier Inc. All rights reserved.
机译:Hi亚基因的系统发生关系。从叶绿体(trnT-trnL,matK)和核(ITS)序列数据推断出小球藻。叶绿体标记显示亚属内存在两个不同的单倍型组,这与推测的关系不符。此外,Hispidella和Andryala属的叶绿体单倍型嵌套在这些组之一中。相反,ITS数据通常符合形态和其他证据,因此被认为反映了真实的系统发育。他们揭示了Pilosella和Hispidella之间的姐妹关系,以及Hieracium亚属Hieracium和Chionoracium(Stenotheca)的联合进化枝,而Andryala属则代表了最终群体的第三大血统。沿ITS树对trnT-trnL字符状态演变的详细分析表明,祖先谱系之间发生了两次基因间杂交事件,导致了细胞质转移(从Hieracium / Chionoracium到Pilosella,以及从渐渗的Pilosella谱系到Andryala)。这些叶绿体捕获事件,首先涉及现已灭绝的单倍型,最可能解释了质体和核DNA标记之间的不一致。 (c)2006 Elsevier Inc.保留所有权利。

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