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Differences in Postmating Transcriptional Responses between Conspecific and Heterospecific Matings in Drosophila

机译:在果蝇在果蝇中的特异性和异孢子聚合物聚合物之间的审查反应的差异

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摘要

In many animal species, females undergo physiological and behavioral changes after mating. Some of these changes are driven by male-derived seminal fluid proteins and are critical for fertilization success. Unfortunately, our understanding of the molecular interplay between female and male reproductive proteins remains inadequate. Here, we analyze the postmating response in a Drosophila species that has evolved strong gametic incompatibility with its sister species; Drosophila novamexicana females produce only ∼1% fertilized eggs in crosses with Drosophila americana males, compared to ∼98% produced in within-species crosses. This incompatibility is likely caused by mismatched male and female reproductive molecules. In this study, we use short-read RNA sequencing to examine the evolutionary dynamics of female reproductive genes and the postmating transcriptome response in crosses within and between species. First, we found that most female reproductive tract genes are slow-evolving compared to the genome average. Second, postmating responses in con- and heterospecific matings are largely congruent, but heterospecific matings induce expression of additional stress-response genes. Some of those are immunity genes that are activated by the Imd pathway. We also identify several genes in the JAK/STAT signaling pathway that are induced in heterospecific, but not conspecific mating. While this immune response was most pronounced in the female reproductive tract, we also detect it in the female head and ovaries. These results show that the female’s postmating transcriptome-level response is determined in part by the genotype of the male, and that divergence in male reproductive genes and/or traits can have immunogenic effects on females.
机译:在许多动物物种中,女性在交配后经历生理和行为变化。其中一些变化由男性衍生的精液蛋白驱动,对施肥成功至关重要。不幸的是,我们对雌性和雄性生殖蛋白质之间的分子相互作用的理解仍然不足。在这里,我们分析了果蝇物种中的疗程响应,这些果蝇与其姐妹种类发展强大的游戏不相容;迪罗斯科省Novamexicana女性仅生产果蝇的十字架〜1%的鸡蛋,而在物种内部产生的〜98%相比。这种不相容性可能是由不匹配的男性和女性生殖分子引起的。在这项研究中,我们使用短读取的RNA测序来检查雌性生殖基因的进化动力学和物种内部交叉中的尿素转录组反应。首先,与基因组平均水平相比,我们发现大多数女性生殖道基因正在缓慢地发展。其次,在基本上是一致的,但异质聚合物的后疗法诱导额外应激反应基因的表达。其中一些是由IMD途径激活的免疫基因。我们还识别jak / stat信令途径中的几个基因,这些途径在异质特异性,但不是未共度的交配。虽然这种免疫反应在女性生殖道中最明显,但我们也在女性头部和卵巢中检测到它。这些结果表明,女性的后药转录组水平响应是部分通过雄性的基因型确定,并且雄性生殖基因和/或特征的发散可以对女性具有免疫原因。

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