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Phylogenetic relationships among diploid Aegilops species inferred from 5S rDNA units

机译:从5S rDNA单元推断出的二倍体节肢动物物种之间的亲缘关系

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Relationships among the currently recognized 11 diploid species within the genus Aegilops have been investigated. Sequence similarity analysis, based upon 363 sequenced 5S rDNA clones from 44 accessions plus 15 sequences retrieved from GenBank, depicted two unit classes labeled the long AE1 and short AE1. Several different analytical methods were applied to infer relationships within haplomes, between haplomes and among the species, including maximum parsimony and maximum likelihood analyses of consensus sequences, "total evidence" phylogeny analysis and "matrix representation with parsimony" analysis. None were able to depict suites of markers or unit classes that could discern among the seven haplomes as is observed among established haplomes in other genera within the tribe Triticeae; however, most species could be separated when displayed on gene trees. These results suggest that the haplomes currently recognized are so refined that they may be relegated as sub-haplomes or haplome variants. Amblyopyrum shares the same 5S rDNA unit classes with the diploid Aegilops species suggesting that it belongs within the latter. Comparisons of the Aegilops sequences with those of Triticum showed that the long AE1 unit class of Ae. tauschii shared the clade with the equivalent long D1 unit class, i.e., the putative D haplome donor, but the short AE1 unit class did not. The long AE1 unit class but not the short, of Ae. speltoides and Ae. searsii both share the clade with the previously identified long {S1 and long G1 unit classes meaning that both Aegilops species can be equally considered putative B haplome donors to tetraploid Triticum species. The semiconserved nature of the nontranscribed spacer in Aegilops and in Triticeae in general is discussed in view that it may have originated by processes of incomplete gene conversion or biased gene conversion or birth-and-death evolution.
机译:已经研究了埃及伊蚊属中目前公认的11种二倍体物种之间的关系。序列相似性分析基于来自44个种质的363个测序5S rDNA克隆以及从GenBank检索到的15个序列,描述了标记为长AE1和短AE1的两个单元类别。应用了几种不同的分析方法来推断单倍体之间,单倍体之间以及物种之间的关系,包括最大简约性和共有序列的最大似然分析,“全部证据”系统发育分析和“带有简约性的矩阵表示”分析。没有一个能够描绘出可以在七个单倍体中辨别的标记或单位类别的套件,正如在黑小麦部落其他属中已建立的单倍体中所观察到的那样;然而,大多数物种在基因树上展示时可以分离。这些结果表明,目前公认的单倍体是如此精致,以至于它们可能会沦为亚群或单倍体变体。斜纹夜蛾与二倍体Aegilops种类具有相同的5S rDNA单元类别,表明它属于后者。 Aegilops序列与小麦的序列比较表明,Ae属于长AE1单位类别。 tauschii与等长的D1单元类(即推定的D单倍体供体)共享进化枝,但短的AE1单元类却没有。 AE1的长AE1单位类别,但不短。 speltoides和Ae。 searsii都具有先前确定的长{S1和长G1单位类别的进化枝,这意味着两个Aegilops物种都可以等同地视为四倍体Triticum物种的推定B单倍体供体。鉴于其可能起源于不完全的基因转化或偏向的基因转化或生与死的进化过程,因此讨论了在埃及菊和黑麦属中非转录间隔区的半保守性质。

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