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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Nuclear DNA content and floral evolution in Silene latifolia
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Nuclear DNA content and floral evolution in Silene latifolia

机译:阔叶银心核DNA含量和花的进化

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Nuclear DNA content shows extensive intraspecific variation in plants, attributable to changes in levels of repetitive DNA, Since its discovery, repetitive DNA often has been regarded as 'junk' or selfish DNA with little or no evolutionary significance at the individual level, except possibly a deleterious role stemming from its over-replication. However, recent works have pointed out that repetitive DNA may have an important impact on phenotypic selection through local or general modifications of gene expression. Phenotypic evolution has typically been studied using quantitative genetic techniques that treat underlying genetic effects as variance components. In previous work, we identified an among population negative correlation between nuclear DNA content variation, attributable to repetitive DNA, and calyx diameter, a phenotypic character with obvious ecological importance, in Silene latifolia. In the present study, we established a negative genetic relation between an AT-biased flow cytometricmeasure of nuclear DNA content and calyx diameter across lineages that had been subjected to selection for increases or decreases in calyx diameter. This finding suggests that new attention should be directed toward repetitive DNA as a basis for phenotypic variation and evolution.
机译:核DNA含量表明植物中种内物种的广泛差异,归因于重复DNA含量的变化。自发现以来,重复DNA通常被视为“垃圾”或自私的DNA,在个体水平上几乎没有或没有进化意义,除了可能由于过度复制而产生的有害作用。但是,最近的工作指出,重复的DNA可能通过基因表达的局部或一般修饰对表型选择产生重要影响。通常使用定量遗传技术研究表型进化,该技术将潜在的遗传效应视为变异成分。在先前的工作中,我们确定了硅谷阔叶莲中核DNA含量变化(归因于重复DNA)与花萼直径之间的负相关关系,花萼直径是具有明显生态学意义的表型特征。在本研究中,我们建立了一个AT偏向核细胞DNA含量的流式细胞术测量值与跨系的花萼直径之间的负遗传关系,这些谱系已经针对花萼直径的增大或减小进行了选择。这一发现表明,应将新的注意力转向作为表型变异和进化基础的重复DNA。

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