Division of Cell and Molecular Biology, Imperial College London, London, United Kingdom.
PLoS Biol. 2009 Dec;7(12):e1000272. doi: 10.1371/journal.pbio.1000272. Epub 2009 Dec 22.
Insect seminal fluid proteins are powerful modulators of many aspects of female physiology and behaviour including longevity, egg production, sperm storage, and remating. The crucial role of these proteins in reproduction makes them promising targets for developing tools aimed at reducing the population sizes of vectors of disease. In the malaria mosquito Anopheles gambiae, seminal secretions produced by the male accessory glands (MAGs) are transferred to females in the form of a coagulated mass called the mating plug. The potential of seminal fluid proteins as tools for mosquito control demands that we improve our limited understanding of the composition and function of the plug. Here, we show that the plug is a key determinant of An. gambiae reproductive success. We uncover the composition of the plug and demonstrate it is formed through the cross-linking of seminal proteins mediated by a MAG-specific transglutaminase (TGase), a mechanism remarkably similar to mammalian semen coagulation. Interfering with TGase expression in males inhibits plug formation and transfer, and prevents females from storing sperm with obvious consequences for fertility. Moreover, we show that the MAG-specific TGase is restricted to the anopheline lineage, where it functions to promote sperm storage rather than as a mechanical barrier to re-insemination. Taken together, these data represent a major advance in our understanding of the factors shaping Anopheles reproductive biology.
昆虫精液蛋白是许多雌性生理和行为方面的强大调节剂,包括寿命、卵子产生、精子储存和再交配。这些蛋白质在生殖中的关键作用使它们成为开发旨在减少疾病传播媒介种群数量的工具的有前途的目标。在疟蚊冈比亚按蚊中,由雄性附腺(MAG)产生的精液分泌物以一种叫做交配栓的凝固物质的形式传递给雌性。精液蛋白作为控制蚊子的工具的潜力要求我们提高我们对栓的组成和功能的有限理解。在这里,我们表明栓是冈比亚按蚊生殖成功的关键决定因素。我们揭示了栓的组成,并证明它是通过 MAG 特异性转谷氨酰胺酶(TGase)介导的精液蛋白交联形成的,这一机制与哺乳动物精液凝固非常相似。在雄性中干扰 TGase 的表达会抑制栓的形成和转移,并阻止雌性储存精子,这对生育能力有明显的影响。此外,我们表明 MAG 特异性 TGase 仅限于按蚊谱系,在该谱系中,它的功能是促进精子储存,而不是作为再受精的机械屏障。总之,这些数据代表了我们对塑造按蚊生殖生物学的因素的理解的重大进展。