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Cell signalling mechanisms for insect stress tolerance

机译:抗昆虫胁迫的细胞信号传导机制

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摘要

Insects successfully occupy most environmental niches and this success depends on surviving a broad range of environmental stressors including temperature, desiccation, xenobiotic, osmotic and infection stress. Epithelial tissues play key roles as barriers between the external and internal environments and therefore maintain homeostasis and organismal tolerance to multiple stressors. As such, the crucial role of epithelia in organismal stress tolerance cannot be underestimated. At a molecular level, multiple cell-specific signalling pathways including cyclic cAMP, cyclic cGMP and calcium modulate tissue, and hence, organismal responses to stress. Thus, epithelial cell-specific signal transduction can be usefully studied to determine the molecular mechanisms of organismal stress tolerance in vivo. This review will explore cell signalling modulation of stress tolerance in insects by focusing on cell signalling in a fluid transporting epithelium - the Malpighian tubule. Manipulation of specific genes and signalling pathways in only defined tubule cell types can influence the survival outcome in response to multiple environmental stressors including desiccation, immune, salt (ionic) and oxidative stress, suggesting that studies in the genetic model Drosophila melanogaster may reveal novel pathways required for stress tolerance.
机译:昆虫成功地占据了大多数环境生态位,而这一成功取决于能否生存于各种环境压力源中,包括温度,干燥,异种生物,渗透和感染压力。上皮组织在外部和内部环境之间起着重要的屏障作用,因此维持了稳态和机体对多种应激源的耐受性。因此,不能低估上皮细胞在机体耐压性中的关键作用。在分子水平上,多种细胞特异性信号传导途径(包括循环cAMP,循环cGMP和钙)调节组织,从而调节机体对应激的反应。因此,可以有用地研究上皮细胞特异性信号转导以确定体内机体压力耐受性的分子机制。这篇综述将通过集中研究流体运输上皮细胞-Malpighian小管中的细胞信号传导来探索昆虫对胁迫耐受性的细胞信号传导调节。仅在定义的肾小管细胞类型中操纵特定基因和信号传导途径,才能对多种环境胁迫(包括干燥,免疫,盐(离子)和氧化胁迫)作出反应,从而影响存活结果,这表明在果蝇果蝇遗传模型中的研究可能揭示了新途径承受压力所需。

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