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首页> 外文期刊>Journal of Plant Research >Chromosomal Evolution in the Genus Brachyscome (Asteraceae, Astereae): Statistical Tests Regarding Correlation Between Changes in Karyotype and Habit Using Phylogenetic Information
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Chromosomal Evolution in the Genus Brachyscome (Asteraceae, Astereae): Statistical Tests Regarding Correlation Between Changes in Karyotype and Habit Using Phylogenetic Information

机译:短节律属(菊科,Astereae)中的染色体进化:利用系统发育信息对核型和习性之间的相关性进行统计检验

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Karyotype analyses were carried out on 73 taxa of Brachyscome and 8 taxa of its allied genera, Australian Astereae. Statistical tests regarding correlations between changes in chromosome number, total chromosome length, mean chromosome length, karyotypic asymmetry and chromosome length heterogeneity and changes in habit were performed based on the matK molecular phylogenetic tree. The reductions in chromosome number and total chromosome length, and the increases in mean chromosome length, chromosome length heterogeneity and karyotypic asymmetry were found to be correlated with the change in habit from perennial to annual. A reduction in total chromosome length is favored to shorten the mitotic cell cycle and to produce smaller cells conducive to more rapid development of smaller annuals under the time-limited environment. Stepwise dysploidal reductions in chromosome number were achieved through the translocation of large chromosome segments onto other chromosomes, followed by the loss of a centromere, resulting in one fewer linkage group and one fewer haploid chromosome. The correlations between the dysploidal reduction in chromosome number and the increases in mean chromosome length, length heterogeneity and asymmetry in karyotype can be attributed to this mode of chromosomal change. These changes occurred independently in several different lineages in Brachyscome.
机译:进行了核型的分析,其中包括短毛孢子虫的73个分类单元和其同属澳大利亚紫苑的8个分类单元。基于matK分子系统树,对染色体数目,总染色体长度,平均染色体长度,平均染色体长度,核型不对称性和染色体长度异质性与习惯变化之间的相关性进行统计检验。发现染色体数目和总染色体长度的减少,以及平均染色体长度,染色体长度异质性和核型不对称性的增加与从多年生到一年生的习惯变化相关。总染色体长度的减少有利于缩短有丝分裂细胞周期并产生较小的细胞,从而有利于在限时环境下较小的年生植物的快速发育。通过将大染色体区段转移到其他染色体上,逐步减少染色体数,从而减少了着丝粒,从而减少了一个连接基团和一个单倍体染色体。染色体数目的二倍体减少与核型的平均染色体长度增加,长度异质性和不对称性之间的相关性可以归因于这种染色体改变模式。这些变化独立发生在Brachyscome中的几个不同谱系中。

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