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An aquaporin mediates cell shape change required for cellular immunity in the beet armyworm Spodoptera exigua

机译:水通道蛋白介导甜菜夜蛾甜菜夜蛾的细胞免疫所需的细胞形态变化

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摘要

Cellular immunity in insects is accompanied by change in hemocyte shape. This study hypothesizes that cytoskeletal rearrangement is accompanied by transmembrane water transport to change cell volume, thus changing cell shape. A water-transporting pore (=aquaporin:AQP) has been identified in the beet armyworm, Spodoptera exigua. Its expression was detected in all developmental stages and tissues, although its transcription levels were different between biotic and abiotic conditions. Heterologous expression of Se-AQP in Sf9 cells showed that Se-AQP was localized on cell membrane. RNA interference (RNAi) using double-stranded RNA effectively suppressed its transcript levels. Under different ionic concentrations, hemocytes of RNAi-treated larvae did not change cell volume presumably due to malfunction in water transportation. Se-AQP might participate in glycerol transport because up-regulation of hemolymph glycerol titer after rapid cold-hardening was prevented by RNAi treatment against Se-AQP expression. The inhibitory effect of RNAi treatment on change of cell shape significantly impaired cellular immune responses such as phagocytosis and nodule formation upon bacterial challenge. RNAi treatment also significantly interfered with immature development of S. exigua. These results indicate that Se-AQP plays a crucial role in cell shape change that is required for cellular immunity and other physiological processes.
机译:昆虫的细胞免疫力伴随着血细胞形状的变化。这项研究假设细胞骨架的重排伴随着跨膜水转运改变细胞体积,从而改变细胞形状。在甜菜夜蛾夜蛾(Spodoptera exigua)中发现了一个水运孔(aquaporin:AQP)。尽管在生物和非生物条件下其转录水平均不同,但在所有发育阶段和组织中均检测到了其表达。 Se-AQP在Sf9细胞中的异源表达表明Se-AQP位于细胞膜上。使用双链RNA的RNA干扰(RNAi)可有效抑制其转录水平。在不同的离子浓度下,RNAi处理的幼虫的血细胞不会由于水运输失灵而改变细胞体积。 Se-AQP可能参与甘油的运输,因为通过针对Se-AQP表达的RNAi处理可以防止快速冷硬化后血淋巴甘油效价的上调。 RNAi处理对细胞形状变化的抑制作用显着削弱了细胞免疫反应,例如细菌攻击后的吞噬作用和结节形成。 RNAi处理也显着干扰了墨西哥链球菌的未成熟发育。这些结果表明,Se-AQP在细胞形态变化中起着至关重要的作用,而细胞形态变化是细胞免疫和其他生理过程所必需的。

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