东方三角伊蚊卵发生和程序性细胞死亡的研究

Paul M. Airs, Michael J. Nazarchyk, B. Tucker, L. Bartholomay
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引用次数: 0

摘要

苍蝇的卵发生表现为精心安排的发育门和生长事件级联,被程序性细胞死亡(PCD)和卵泡吸收事件打断。在非自体蚊子中,血液会刺激初级卵泡的生长,但发育阶段的时间是物种特异性的,很少有物种被表征。在这里,我们描述了三角伊蚊(双翅目:库蚊科)的第一个淋养周期,它是拉克罗斯病毒(LACV)的主要载体,是北美儿童脑炎的主要原因。我们注意到在发育阶段的时间和外观从其他蚊子物种,特别是埃及伊蚊先前的研究显著差异。我们还描述了PCD事件的外观和时间,包括闭锁、护理细胞死亡和卵泡上皮死亡,并表明大多数卵泡上皮细胞在卵子发生过程中不会发生凋亡,而是在卵巢中至少持续到第二个淋养周期。本文对伊蚊卵发生和PCD进行了深入的研究。LACV必须通过三角体持续存在才能实现子代感染,这也可以作为研究经卵巢传播过程中宿主-病原体相互作用的基线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterizing oogenesis and programmed cell death in the eastern tree hole mosquito Aedes (Protomacleaya) triseriatus
Oogenesis in flies manifests as a carefully orchestrated cascade of developmental gates and growth events, punctuated by programmed cell death (PCD) and follicular resorption events. In anautogenous mosquitoes, a blood meal stimulates growth of primary follicles, but the timing of developmental stages is species-specific, and few species have been characterized. Here, we characterize the first gonotrophic cycle of oogenesis in Aedes triseriatus (Diptera: Culicidae), the principal vector of La Crosse Virus (LACV), a major cause of pediatric encephalitis in North America. We note significant differences in the timing and appearance of developmental stages from previous studies of other mosquito species, particularly Aedes aegypti. We also describe the appearance and timing of PCD events including atresia, nurse cell death, and follicular epithelium death and show that the majority of follicular epithelium cells do not undergo apoptosis during oogenesis but persist in the ovariole at least until the second gonotrophic cycle. This thorough characterization of oogenesis and PCD in Ae. triseriatus, through which LACV must persist in order to achieve filial infection, also serves as a baseline to study host-pathogen interactions during transovarial transmission.
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