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Sex-peptide is the molecular basis of the sperm effect in Drosophila melanogaster

机译:性肽是果蝇中精子作用的分子基础

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Mating elicits two major changes in the reproductive behavior of many insect females. The egg-laying rate increases and the readiness to accept males (receptivity) is reduced. These postmating responses last approximate to1 week in Drosophila melanogaster. Males that do not transfer sperm but transfer seminal fluid during mating induce a short-term response of 1 day. The long-term response of 1 week requires the presence of sperm (sperm effect). Hence, sperm is essential for the long-term persistence of the postmating responses. Three seminal fluid peptides elicit postmating responses: ovulin, sex-peptide (SP), and DUP998. Using the technique of targeted mutagenesis by homologous recombination, we have produced males with mutant SP genes. Here, we report that males lacking functional SP elicit only a weak short-term response. However, these males do transfer sperm. Thus, (i) SP is the major agent eliciting the short-term and the long-term postmating responses and (it) sperm is merely the carrier for SP. The second conclusion is supported by the finding that SP binds to sperm. The 36-aa-encoding SP gene is the first small Drosophila gene knocked out with the method of homologous recombination. [References: 31]
机译:交配引起许多昆虫雌性生殖行为的两个主要变化。产卵率增加,接受雄性的意愿(接受性)降低。在果蝇中,这些后期反应持续约1周。在交配过程中不转移精子但转移精液的雄性会引起1天的短期反应。 1周的长期反应需要有精子(精子效应)。因此,精子对于后继反应的长期持久性至关重要。三种精液肽引发后期反应:卵磷脂,性肽(SP)和DUP998。使用通过同源重组的靶向诱变技术,我们生产了具有突变SP基因的雄性。在这里,我们报告说,缺乏功能性SP的男性只会引起较弱的短期反应。但是,这些雄性确实转移了精子。因此,(i)SP是引起短期和长期后继反应的主要因素,而(精子)仅仅是SP的载体。第二个结论得到了SP与精子结合的发现的支持。编码36aa的SP基因是第一个用同源重组方法剔除的果蝇小基因。 [参考:31]

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