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首页> 外文期刊>Genetical Research >'Junk' DNA and phenotypic evolution in Silene section Siphonomorpha
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'Junk' DNA and phenotypic evolution in Silene section Siphonomorpha

机译:Silene形节亚纲中的“垃圾” DNA和表型进化

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One of the long-standing mysteries in genomic evolution is the observation that much of the genome is composed of repetitive DNA, resulting in inter- and intraspecific variation in nuclear DNA content. Our discovery of a negative correlation between nuclear DNA content and flower size in Silene latifolia has been supported by our subsequent investigation of changes in DNA content as a correlated response to selection on flower size. Moreover, we have observed a similar trend across a range of related dioecious species in Silene sect. Elisanthe. Given the presence of sex chromosomes in dioecious Silene species, and the tendency of sex chromosomes to accumulate repetitive DNA, it seems plausible that dioecious species undergo genomic evolution in ways that differ from what one might expect in hermaphroditic species. Specifically, we query whether the observed relationship between nuclear DNA content and flower size observed in dioecious Silene is a peculiarity of sex chromosome evolution. In the present study we investigated nuclear DNA content and flower size variation in hermaphroditic species of Silene sect. Siphonomorpha, as close relatives of the dioecious species studied previously. Although the nuclear DNA contents of these species were lower than those for species in sect. Elisanthe, there was still significant intra- as well as interspecific variation in nuclear DNA content. Flower size variation was found among species of sect. Siphonomorpha for petal claw and petal limb lengths, but not for calyx diameter. This last trait varies extensively in sect. Elisanthe, in part due to sex-specific selection. A negative correlation with nuclear DNA content was found across populations for petal limb length, but not for other floral dimensions. We conclude that impacts of nuclear DNA content on phenotypic evolution do manifest themselves in hermaphroditic species, so that the effects observed in sect. Elisanthe, and particularly in S. latifolia, while perhaps amplified by the genomic impacts of sex chromosomes, are not limited to dioecious taxa.
机译:在基因组进化中长期存在的谜团之一是观察到,许多基因组由重复的DNA组成,导致核DNA含量发生种间和种内变异。后来我们对DNA含量变化的研究作为对花朵大小选择的相关反应,支持了我们发现阔叶银心中核DNA含量与花朵大小之间呈负相关的发现。此外,我们在Silene教派的一系列相关雌雄异株中也观察到了类似的趋势。艾丽珊考虑到雌雄异体的物种中存在性染色体,以及性染色体积累重复性DNA的趋势,似乎雌雄异体的物种经历基因组进化的方式可能不同于雌雄同体的物种。具体来说,我们质疑在雌雄异体的硅烯中观察到的核DNA含量与花朵大小之间的关系是否是性染色体进化的特殊性。在本研究中,我们调查了Silene雌雄同体物种的核DNA含量和花朵大小变化。虹吸虫,是雌雄异株的近亲,以前曾研究过。尽管这些物种的核DNA含量低于该物种的核DNA含量。 Elisanthe,核内DNA含量仍然存在明显的种内和种间差异。在该种之间发现花的大小变化。虹吸壶用于花瓣的爪和花瓣的肢体长度,但不适用于花萼直径。最后一个特征在不同教派中差异很大。伊丽莎白(Elisanthe),部分是由于特定性别的选择。在整个种群中,发现花瓣四肢的长度与核DNA含量呈负相关,而其他花的尺寸则没有。我们得出的结论是,核DNA含量对表型进化的影响确实在雌雄同体的物种中表现出来,因此在该教派中观察到的影响。 Elisanthe,特别是在S. latifolia中,虽然可能被性染色体的基因组影响所放大,但并不限于雌雄异体的分类群。

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