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Integrated proteomic and transcriptomic analysis of the Aedes aegypti eggshell

机译:埃及伊蚊卵壳的蛋白质组学和转录组学综合分析

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Background Mosquito eggshells show remarkable diversity in physical properties and structure consistent with adaptations to the wide variety of environments exploited by these insects. We applied proteomic, transcriptomic, and hybridization in situ techniques to identify gene products and pathways that participate in the assembly of the Aedes aegypti eggshell. Aedes aegypti population density is low during cold and dry seasons and increases immediately after rainfall. The survival of embryos through unfavorable periods is a key factor in the persistence of their populations. The work described here supports integrated vector control approaches that target eggshell formation and result in Ae. aegypti drought-intolerant phenotypes for public health initiatives directed to reduce mosquito-borne diseases. Results A total of 130 proteins were identified from the combined mass spectrometric analyses of eggshell preparations. Conclusions Classification of proteins according to their known and putative functions revealed the complexity of the eggshell structure. Three novel Ae. aegypti vitelline membrane proteins were discovered. Odorant-binding and cysteine-rich proteins that may be structural components of the eggshell were identified. Enzymes with peroxidase, laccase and phenoloxidase activities also were identified, and their likely involvements in cross-linking reactions that stabilize the eggshell structure are discussed.
机译:背景技术蚊子的蛋壳在物理特性和结构上显示出显着的多样性,与这些昆虫所利用的各种环境的适应相一致。我们应用蛋白质组学,转录组学和原位杂交技术来识别参与埃及伊蚊卵壳组装的基因产物和途径。在寒冷和干燥的季节,埃及伊蚊的种群密度低,降雨后立即增加。胚胎在不利时期中的存活是种群持续存在的关键因素。此处描述的工作支持针对蛋壳形成并导致Ae的集成矢量控制方法。埃及针对公共卫生举措的抗旱表型,旨在减少蚊媒疾病。结果从蛋壳制品的质谱分析中共鉴定出130种蛋白质。结论根据蛋白的已知功能和推定功能对其分类,揭示了蛋壳结构的复杂性。三本小说。发现埃及产卵黄蛋白膜蛋白。确定了可能是蛋壳结构成分的气味结合蛋白和富含半胱氨酸的蛋白。还鉴定了具有过氧化物酶,漆酶和酚氧化酶活性的酶,并讨论了它们可能参与稳定蛋壳结构的交联反应。

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