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Polyploidy and other changes at chromosomal level and in genome size: Its role in systematics and evolution exemplified by some genera of Anthemideae and Cardueae (Asteraceae)

机译:多倍体和其他在染色体水平和基因组大小上的变化:其在系统和进化中的作用以花美科和Card科的一些属为例证。

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摘要

Polyploidy is one of the major evolutionary forces in plants and in particular in the largest angiosperm family, the Asteraceae. This chromosome set multiplication directly impacts the nuclear DNA contents, in terms of variation at holoploid and monoploid levels. Other karyological changes such as aneuploidy or dysploidy might produce genome size alterations as well, therefore playing also a relevant role as evolutionary forces. All these factors may promote speciation, thus having systematic implications. In this paper we review the mechanisms associated with genome size variation, as well as their evolutionary consequences at phylogenetic, systematic and even taxonomic levels. To do so, C-values and chromosome numbers have been compiled and complemented with other molecular cytogenetic data to be discussed within their respective molecular phylogenetic frameworks. The case studies come from several genera of the Asteraceae belonging to tribes Anthemideae (Artemisia) and Cardueae (Cheirolophus, Echinops and members of Rhaponticum group), which cover a wide range of life strategies (e.g., life cycles, ecology, geographical distribution).
机译:多倍体是植物特别是最大的被子植物菊科中的主要进化力之一。就全倍体和单倍体水平的变异而言,这种染色体组倍增直接影响核DNA含量。其他形变(如非整倍性或二倍体)也可能导致基因组大小改变,因此也起着进化作用的作用。所有这些因素都可能促进物种形成,因此具有系统的含义。在本文中,我们回顾了与基因组大小变异相关的机制,以及它们在系统发育,系统甚至分类学水平上的进化结果。为此,已经汇编了C值和染色体数,并与其他分子细胞遗传学数据进行了补充,以便在其各自的分子系统发育框架内进行讨论。案例研究来自菊科(Artemisia)和Cardueae(Cheirolophus,Echinops和Rhaponticum组成员)的菊科的几个属,它们涵盖了广泛的生命策略(例如生命周期,生态,地理分布)。

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