Rapid Evolution of Assortative Fertilization between Recently Allopatric Species of Drosophila.

Yasir H Ahmed-Braimah, Bryant F McAllister
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引用次数: 21

Abstract

The virilis group of Drosophila represents a relatively unexplored but potentially useful model to investigate the genetics of speciation. Good resolution of phylogenetic relationships and the ability to obtain fertile hybrid offspring make the group especially promising for analysis of genetic changes underlying reproductive isolation separate from hybrid sterility and inviability. Phylogenetic analyses reveal a close relationship between the sister species, Drosophila americana and D. novamexicana, yet excepting their contemporary allopatric distributions, factors that contribute to reproductive isolation between this species pair remain uncharacterized. A previous report has shown reduced progeny numbers in laboratory crosses between the two species, especially when female D. novamexicana are crossed with male D. americana. We show that the hatch rate of eggs produced from heterospecific matings is reduced relative to conspecific matings. Failure of eggs to hatch, and consequent reduction in hybrid progeny number, is caused by low fertilization success of heterospecific sperm, thus representing a postmating, prezygotic incompatibility. Following insemination, storage and motility of heterospecific sperm is visibly compromised in female D. novamexicana. Our results provide evidence for a mechanism of reproductive isolation that is seldom reported for Drosophila species, and indicate the rapid evolution of postmating, prezygotic reproductive barriers in allopatry.

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近期异域果蝇物种间配种受精的快速进化。
果蝇的阳刚体群代表了一个相对未被探索但潜在有用的模型来研究物种形成的遗传学。系统发育关系的良好解决和获得可育杂交后代的能力使该群体特别有希望分析与杂交不育和不育分离的生殖隔离的遗传变化。系统发育分析揭示了姐妹种美洲果蝇和新美洲果蝇之间的密切关系,但除了它们在当代的异域分布外,导致这对物种之间生殖隔离的因素尚未确定。先前的一份报告显示,在两个物种之间的实验室杂交中,后代数量减少,特别是当雌性新美西卡蝇与雄性美洲卡蝇杂交时。我们发现异种交配产生的卵的孵化率相对于同种交配降低。由于异种精子的受精成功率低,导致卵子孵化失败,从而导致杂交后代数量减少,因此代表了交配后,合子前不相容。在授精后,异种精子的储存和活力明显降低。我们的研究结果为果蝇物种的生殖隔离机制提供了证据,这一机制很少被报道,并表明了异种生殖中交配后、合子前的生殖屏障的快速进化。
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