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Comparative structural and functional analysis of the larval and adult dorsal vessel and its role in hemolymph circulation in the mosquito Anopheles gambiae

机译:冈比亚按蚊蚊幼虫和成年背血管的比较结构和功能分析及其在血淋巴循环中的作用

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Hemolymph circulation in insects is driven primarily by the contractile action of a dorsal vessel, which is divided into an abdominal heart and a thoracic aorta. As holometabolous insects, mosquitoes undergo striking morphological and physiological changes during metamorphosis. This study presents a comprehensive structural and functional analysis of the larval and adult dorsal vessel in the malaria mosquito Anopheles gambiae. Using intravital video imaging we show that, unlike the adult heart, the larval heart contracts exclusively in the anterograde direction and does not undergo heartbeat directional reversals. The larval heart contracts 24% slower than the adult heart, and hemolymph travels across the larval dorsal vessel at a velocity that is 68% slower than what is seen in adults. By fluorescently labeling muscle tissue we show that although the general structure of the heart and its ostia are similar across life stages, the heart-associated alary muscles are significantly less robust in larvae. Furthermore, unlike the adult ostia, which are the entry points for hemolymph into the heart, the larval ostia are almost entirely lacking in incurrent function. Instead, hemolymph enters the larval heart through incurrent openings located at the posterior terminus of the heart. These posterior openings are structurally similar across life stages, but in adults have an opposite, excurrent function. Finally, the larval aorta and heart differ significantly in the arrangement of their cardiomyocytes. In summary, this study provides an in-depth developmental comparison of the circulatory system of larval and adult mosquitoes.
机译:昆虫中的血淋巴循环主要受背血管的收缩作用驱动,背血管分为腹心和胸主动脉。蚊子是全代谢昆虫,在变态过程中会发生惊人的形态和生理变化。这项研究提供了疟疾蚊冈比亚按蚊的幼虫和成年背脉的全面结构和功能分析。使用活体视频成像,我们发现,与成年心脏不同,幼虫心脏仅在顺行方向上收缩,而没有发生心跳方向反转。幼虫的心脏收缩速度比成年心脏慢24%,而血淋巴穿过幼虫背脉的速度比成年心脏慢68%。通过荧光标记肌肉组织,我们显示,尽管整个生命阶段心脏的总体结构及其孔口相似,但与幼虫心脏相关的alary肌肉的健壮性明显降低。此外,与成年的造口术不同,成年的造口术是血液淋巴进入心脏的入口点,幼虫的造口术几乎完全缺乏电流功能。取而代之的是,血淋巴通过位于心脏后末端的电流开口进入幼虫心脏。这些后开口在生命的各个阶段在结构上都是相似的,但是在成年人中,它们具有相反的功能。最后,幼虫的主动脉和心脏在心肌细胞的排列上有显着差异。总而言之,本研究对幼虫和成年蚊子的循环系统进行了深入的开发比较。

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