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首页> 外文期刊>Annals of Botany >Genome size variation and species relationships in Hieracium sub-genus Pilosella (Asteraceae) as inferred by flow cytometry
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Genome size variation and species relationships in Hieracium sub-genus Pilosella (Asteraceae) as inferred by flow cytometry

机译:流式细胞仪推断山茱Pi亚属(菊科)的基因组大小变化和物种关系

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摘要

Background and Aims Hieracium sub-genus Pilosella (hawkweeds) is a taxonomically complicated group of vascular plants, the structure of which is substantially influenced by frequent interspecific hybridization and polyploidization. Two kinds of species, 'basic' and 'intermediate' (i.e. hybridogenous), are usually recognized. In this study, genome size variation was investigated in a representative set of Central European hawkweeds in order to assess the value of such a data set for species delineation and inference of evolutionary relationships. Methods Holoploid and monoploid genome sizes (C- and Cx-values) were determined using propidium iodide flow cytometry for 376 homogeneously cultivated individuals of Hieracium sub-genus Pilosella, including 24 species (271 individuals), five recent natural hybrids (seven individuals) and experimental F-1 hybrids from four parental combinations (98 individuals). Chromosome counts were available for more than half of the plant accessions. Base composition (proportion of AT/GC bases) was cytometrically estimated in 73 individuals. Key Results Seven different ploidy levels (2x-8x) were detected, with intraspecific ploidy polymorphism (up to four different cytotypes) occurring in 11 wild species. Mean 2C-values varied approx. 4.3-fold from 3.53 pg in diploid H. hoppeanum to 15.30 pg in octoploid H. brachiatum. 1Cx-values ranged from 1.72 pg in H. pilosella to 2.16 pg in H. echioides (1.26-fold). The DNA content of (high) polyploids was usually proportional to the DNA values of their diploid/low polyploid counterparts, indicating lack of processes altering genome size (i.e. genome down-sizing). Most species showed constant nuclear DNA amounts, exceptions being three hybridogenous taxa, in which introgressive hybridization was suggested as a presumable trigger for genome size variation. Monoploid genome sizes of hybridogenous species were always between the corresponding values of their putative parents. In addition, there was a good congruency between actual DNA estimates and theoretical values inferred from putative parental combinations and between DNA values of experimental F-1 hybrids and corresponding established hybridogenous taxa. Conclusions Significant differences in genome size between hawkweed species from hybridogenous lineages involving the small-genome H. pilosella document the usefulness of nuclear DNA content as a supportive marker for reliable delineation of several of the most problematic taxa in Hieracium sub-genus Pilosella (including classification of borderline morphotypes). In addition, genome size data were shown to have a good predictive value for inferring evolutionary relationships and genome constitution (i.e. putative parental combinations) in hybridogenous species.
机译:背景和目的山萝亚种Pilosella(hawkweeds)是一组分类复杂的维管植物,其结构受频繁的种间杂交和多倍化的影响。通常认识到两种物种,“基本”和“中间”(即杂种)。在这项研究中,对一组具有代表性的中欧霍乱植物进行了基因组大小变异研究,以评估该数据集对物种描述和进化关系推断的价值。方法使用碘化丙啶流式细胞术测定了376个均质培养的Pilosella亚属Hilos的个体的全异倍体和Cx值(C-值和Cx值),包括24个物种(271个个体),五个最近的自然杂种(七个个体)和来自四个亲本组合(98个个体)的实验性F-1杂种。超过一半的植物种可获得染色体计数。用细胞计数法对73名个体的碱基组成(AT / GC碱基的比例)进行了估计。关键结果检测到七种不同的倍性水平(2x-8x),在11种野生物种中发生种内倍性多态性(最多四种不同的细胞型)。平均2C值变化约。从二倍体H. Hoppeanum中的3.53 pg到八倍体臂状曲霉中的15.30 pg的4.3倍。 1Cx值的范围从pilosella中的1.72 pg到echioides中的2.16 pg(1.26倍)。 (高)多倍体的DNA含量通常与其二倍体/低多倍体对应物的DNA值成正比,表明缺乏改变基因组大小的过程(即基因组缩小)。大多数物种显示出恒定的核DNA量,除了三个杂种类群外,其中渐渗杂交被认为是基因组大小变异的可能诱因。杂种物种的单倍体基因组大小始终在其推定亲本的相应值之间。此外,在实际的DNA估计值与从推定的亲本组合推断出的理论值之间以及在实验性的F-1杂种和相应的已建立的杂种类群的DNA值之间具有良好的一致性。结论涉及小基因组H. pilosella的杂种谱系中的杂草物种之间基因组大小的显着差异证明,核DNA含量可作为可靠地标出Hieracium Pilosella亚属(包括分类)中几个最有问题的分类单元的支持标记边界形态类型)。另外,显示出基因组大小数据对于推断杂种中的进化关系和基因组组成(即推定的亲本组合)具有良好的预测价值。

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