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Hox 基因 Abd-B 在雄性附腺中的新功能调控果蝇的雌性长期交配后反应。

A novel function for the Hox gene Abd-B in the male accessory gland regulates the long-term female post-mating response in Drosophila.

机构信息

Department of Genetics and Evolution and NCCR Frontiers in Genetics, University of Geneva, Geneva, Switzerland.

出版信息

PLoS Genet. 2013 Mar;9(3):e1003395. doi: 10.1371/journal.pgen.1003395. Epub 2013 Mar 28.

Abstract

In insects, products of the male reproductive tract are essential for initiating and maintaining the female post-mating response (PMR). The PMR includes changes in egg laying, receptivity to courting males, and sperm storage. In Drosophila, previous studies have determined that the main cells of the male accessory gland produce some of the products required for these processes. However, nothing was known about the contribution of the gland's other secretory cell type, the secondary cells. In the course of investigating the late functions of the homeotic gene, Abdominal-B (Abd-B), we discovered that Abd-B is specifically expressed in the secondary cells of the Drosophila male accessory gland. Using an Abd-B BAC reporter coupled with a collection of genetic deletions, we discovered an enhancer from the iab-6 regulatory domain that is responsible for Abd-B expression in these cells and that apparently works independently from the segmentally regulated chromatin domains of the bithorax complex. Removal of this enhancer results in visible morphological defects in the secondary cells. We determined that mates of iab-6 mutant males show defects in long-term egg laying and suppression of receptivity, and that products of the secondary cells are influential during sperm competition. Many of these phenotypes seem to be caused by a defect in the storage and gradual release of sex peptide in female mates of iab-6 mutant males. We also found that Abd-B expression in the secondary cells contributes to glycosylation of at least three accessory gland proteins: ovulin (Acp26Aa), CG1656, and CG1652. Our results demonstrate that long-term post-mating changes observed in mated females are not solely induced by main cell secretions, as previously believed, but that secondary cells also play an important role in male fertility by extending the female PMR. Overall, these discoveries provide new insights into how these two cell types cooperate to produce and maintain a robust female PMR.

摘要

在昆虫中,雄性生殖道的产物对于启动和维持雌性交配后反应(PMR)至关重要。PMR 包括产卵、对求爱雄性的接受度和精子储存的变化。在果蝇中,之前的研究已经确定雄性附属腺的主要细胞产生了这些过程所需的一些产物。然而,对于附属腺的另一种分泌细胞类型,次级细胞的贡献还一无所知。在研究同源盒基因 Abdominal-B(Abd-B)的晚期功能的过程中,我们发现 Abd-B 特异性表达在果蝇雄性附属腺的次级细胞中。使用 Abd-B BAC 报告基因与一系列遗传缺失的组合,我们发现了来自 iab-6 调控域的增强子,该增强子负责这些细胞中 Abd-B 的表达,并且显然独立于双胸复合体的分段调节染色质域起作用。去除这个增强子会导致次级细胞出现明显的形态缺陷。我们确定,iab-6 突变雄性的配偶在长期产卵和接受抑制方面存在缺陷,而且次级细胞的产物在精子竞争中具有影响力。这些表型中的许多似乎是由于 iab-6 突变雄性的雌性配偶中性肽的储存和逐渐释放缺陷引起的。我们还发现,次级细胞中的 Abd-B 表达有助于至少三种附属腺蛋白的糖基化:卵黄蛋白(Acp26Aa)、CG1656 和 CG1652。我们的研究结果表明,与之前的观点相反,交配后雌性中观察到的长期交配后变化不仅仅是由主细胞分泌物诱导的,次级细胞也通过延长雌性 PMR 来发挥重要作用,从而维持雄性的生育能力。总的来说,这些发现为这两种细胞类型如何合作产生和维持强大的雌性 PMR 提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c60c/3610936/44c96032a1ef/pgen.1003395.g001.jpg

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