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首页> 外文期刊>Journal of Insect Physiology >The fate of vicilins, 7S storage globulins, in larvae and adult Callosobruchus maculatus (Coleoptera: Chrysomelidae: Bruchinae)
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The fate of vicilins, 7S storage globulins, in larvae and adult Callosobruchus maculatus (Coleoptera: Chrysomelidae: Bruchinae)

机译:幼虫和成年Callosobruchus maculatus(鞘翅目:金眼科:Bruchinae)中的vicilins,7S储存球蛋白的命运。

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摘要

The fate of vicilins ingested by Callosobruchus maculatus and the physiological importance of these proteins in larvae and adults were investigated. Vicilins were quantified by ELISA in the haemolymph and fat body during larval development (2nd to 4th instars), in pupae and adults, as well as in ovaries and eggs. Western blot analysis demonstrated that the majority of absorbed vicilins were degraded in the fat body. Tracing the fate of vicilins using FITC revealed that the FITC-vicilin complex was present inside cells of the fat body of the larvae and in the fat bodies of both male and female adult C. maculatus. Labelled vicilin was also detected in ovocytes and eggs. Based on the results presented here, we propose that following absorption, vicilins accumulate in the fat body, where they are partially degraded. These peptides are retained throughout the development of the insects and eventually are sequestered by the eggs. It is possible that accumulation in the eggs is a defensive strategy against pathogen attack as these peptides are known to have antimicrobial activity. Quantifications performed on internal organs from larvae of C. maculatus exposed to extremely dry seeds demonstrated that the vicilin concentration in the haemolymph and fat body was significantly higher when compared to larvae fed on control seeds. These results suggest that absorbed vicilins may also be involved in the survival of larvae in dry environments.
机译:研究了黄斑Callosobruchus maculatus摄入的豌豆球蛋白的命运以及这些蛋白在幼虫和成虫中的生理重要性。在幼虫发育期间(第二龄至第二龄),)和成虫以及卵巢和卵中,血丝和脂肪体内的蚕豆中的丝胶蛋白通过ELISA进行了定量。蛋白质印迹分析表明,大多数吸收的Vicilins在脂肪体内都降解了。使用FITC追踪豌豆球蛋白的命运表明,FITC-维西林复合物存在于幼虫脂肪体内的细胞中以及成年雄性和雌性成年梭状芽胞杆菌的脂肪体内。在卵母细胞和卵中也检测到标记的丝精蛋白。根据此处显示的结果,我们建议吸收后,Vicilins会在脂肪体内积聚,并在其中部分降解。这些肽在昆虫的整个发育过程中都保留着,并最终被卵隔离。由于已知这些肽具有抗菌活性,因此卵中积累可能是防御病原体侵袭的防御策略。对暴露于极干种子的斑节对虾幼虫内部器官进行的定量分析表明,与饲喂对照种子的幼虫相比,血淋巴和脂肪体内的丝精蛋白浓度显着更高。这些结果表明,吸收的豌豆球蛋白也可能与幼虫在干燥环境中的存活有关。

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