Postzygotic Isolation Evolves before Prezygotic Isolation between Fresh and Saltwater Populations of the Rainwater Killifish, Lucania parva.

Genevieve M Kozak, Arthur B Rudolph, Beatrice L Colon, Rebecca C Fuller
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引用次数: 23

Abstract

Divergent natural selection has the potential to drive the evolution of reproductive isolation. The euryhaline killifish Lucania parva has stable populations in both fresh water and salt water. Lucania parva and its sister species, the freshwater L. goodei, are isolated by both prezygotic and postzygotic barriers. To further test whether adaptation to salinity has led to the evolution of these isolating barriers, we tested for incipient reproductive isolation within L. parva by crossing freshwater and saltwater populations. We found no evidence for prezygotic isolation, but reduced hybrid survival indicated that postzygotic isolation existed between L. parva populations. Therefore, postzygotic isolation evolved before prezygotic isolation in these ecologically divergent populations. Previous work on these species raised eggs with methylene blue, which acts as a fungicide. We found this fungicide distorts the pattern of postzygotic isolation by increasing fresh water survival in L. parva, masking species/population differences, and underestimating hybrid inviability.

Abstract Image

Abstract Image

Abstract Image

雨水鳉鱼淡水种群与咸水种群合子分离前的合子后分离演化。
分歧性自然选择有可能推动生殖隔离的进化。广盐鳉在淡水和咸水中都有稳定的种群。小Lucania parva和它的姊妹种,淡水L. goodei,被合子前和合子后屏障隔离。为了进一步测试对盐度的适应是否导致了这些隔离屏障的进化,我们通过淡水和咸水种群的杂交测试了L. parva的早期生殖隔离。我们没有发现合子前分离的证据,但杂交存活率的降低表明在L. parva群体之间存在合子后分离。因此,在这些生态分化的种群中,合子后分离先于合子前分离进化。之前对这些物种的研究是用亚甲基蓝来饲养卵的,亚甲基蓝是一种杀菌剂。我们发现,这种杀菌剂通过增加L. parva的淡水存活率、掩盖物种/种群差异和低估杂交的无活力来扭曲合子后分离的模式。
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