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A sex-chromosome mutation in Silene latifolia

机译:阔叶银耳中的性染色体突变

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摘要

Silene latifolia is dioecious, yet rare hermaphrodites have been found, and such natural mutants can provide valuable insight into genetic mechanisms. Here, we describe a hermaphrodite-inducing mutation that is almost certainly localized to the gynoecium-suppression region of the Y chromosome in S. latifolia. The mutant Y chromosome was passed through the megaspore, and the presence of two X chromosomes was not necessary for seed development in the parent. This result supports a lack of degeneration of the Y chromosome in S. latifolia, consistent with the relatively recent formation of the sex chromosomes in this species. When crossed to wild-type plants, hermaphrodites performed poorly as females, producing low seed numbers. When hermaphrodites were pollen donors, the sex ratio of offspring they produced through crosses was biased towards females. This suggests that hermaphroditic S. latifolia would fail to thrive and potentially explains the rarity of hermaphrodites in natural populations of S. latifolia. These results indicate that the Y chromosome in Silene latifolia remains very similar to the X, perhaps mostly differing in the primary sex determination regions.
机译:阔叶银耳雌雄异株,但已发现稀有的雌雄同体,此类天然突变体可为遗传机制提供有价值的见解。在这里,我们描述了诱导雌雄同体的突变,该突变几乎可以肯定地定位于S. latifolia中Y染色体的妇科生殖抑制区域。突变的Y染色体穿过大孢子,并且两个X染色体的存在对于亲本种子的发育不是必需的。该结果支持在S. latifolia中缺乏Y染色体的变性,这与该物种中性染色体的相对较新的形成相一致。当与野生型植物杂交时,雌雄同体的雌性表现较差,种子数量少。当雌雄同体作为花粉供体时,它们通过杂交产生的后代的性别比例偏向雌性。这表明雌雄同体的S. latifolia将不能繁衍生息,并有可能解释了在自然的S. latifolia种群中雌雄同体的稀有性。这些结果表明,Silene latifolia中的Y染色体与X染色体非常相似,可能在主要性别决定区域中存在很大差异。

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