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首页> 外文期刊>The Journal of Experimental Biology >Larval anopheline mosquito recta exhibit a dramatic change in localization patterns of ion transport proteins in response to shifting salinity: a comparison between anopheline and culicine larvae
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Larval anopheline mosquito recta exhibit a dramatic change in localization patterns of ion transport proteins in response to shifting salinity: a comparison between anopheline and culicine larvae

机译:幼虫按蚊蚊直肠响应盐度的变化,离子转运蛋白的定位模式发生了巨大变化:按蚊和库里幼虫之间的比较

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摘要

Mosquito larvae live in dynamic aqueous environments, which can fluctuate drastically in salinity due to environmental events such as rainfall and evaporation. Larval survival depends upon the ability to regulate hemolymph osmolarity by absorbing and excreting ions. A major organ involved in ion regulation is the rectum, the last region for modification of the primary urine before excretion. The ultrastructure and function of culicine larval recta have been studied extensively; however, very little published data exist on the recta of anopheline larvae. To gain insight into the structure and functions of this organ in anopheline species, we used immunohistochemistry to compare the localization of three proteins [carbonic anhydrase (CA9), Na+/K+ P-ATPase and H+ V-ATPase] in the recta of anopheline larvae reared in freshwater and saline water with the localization of the same proteins in culicine larvae reared under similar conditions. Based on the following key points, we concluded that anophelines differ from culicines in larval rectal structure and in regulation of protein expression: (1) despite the fact that obligate freshwater and saline-tolerant culicines have structurally distinct recta, all anophelines examined (regardless of saline-tolerance) have a structurally similar rectum consisting of distinct DAR (dorsal anterior rectal) cells and non-DAR cells; (2) anopheline larvae undergo a dramatic shift in rectal Na+/K+-ATPase localization when reared in freshwater vs saline water. This shift is not seen in any culicine larvae examined. Additionally, we use these immunohistochemical analyses to suggest possible functions for the DAR and non-DAR cells of anopheline larvae in freshwater and saline conditions.
机译:蚊虫幼虫生活在动态的水环境中,由于环境事件(例如降雨和蒸发),盐度会急剧变化。幼虫的存活取决于通过吸收和排泄离子来调节血淋巴渗透压的能力。参与离子调节的主要器官是直肠,这是排泄前主要尿液修饰的最后区域。幼虫直肠的超微结构和功能已得到广泛研究。然而,在按蚊幼虫的直肠上几乎没有公开的数据。为了深入了解按蚊种该器官的结构和功能,我们使用免疫组化方法比较了三种蛋白质[碳酸酐酶(CA9),Na + / K + P-ATPase和H + V-ATPase]在按蚊幼虫直肠中的定位。在淡水和盐水中饲养,在类似条件下饲养的库里幼虫中相同蛋白质的定位。根据以下要点,我们得出结论:按蚊按蚊在幼虫的直肠结构和蛋白质表达的调节方面与普通瓜ic碱不同:(1)尽管专营淡水和耐盐水的普通瓜have的直肠结构不同,但检查了所有按蚊按蚊(无论耐盐性)的直肠结构相似,由不同的DAR(直肠前直肠)细胞和非DAR细胞组成; (2)在淡水和盐水中饲养时,按蚊幼虫的直肠Na + / K + -ATPase定位会发生剧烈变化。在检查的任何库里幼虫中均未发现这种转变。此外,我们使用这些免疫组织化学分析来建议在淡水和盐水条件下对按蚊幼虫的DAR和非DAR细胞可能起作用。

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