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Conceptual framework of the eco-physiological phases of insect diapause development justified by transcriptomic profiling

机译:转录组分析证明昆虫滞育发展的生态生理阶段的概念框架

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摘要

Insects often overcome unfavorable seasons in a hormonally regulated state of diapause during which their activity ceases, development is arrested, metabolic rate is suppressed, and tolerance of environmental stress is bolstered. Diapausing insects pass through a stereotypic succession of eco-physiological phases termed “diapause development.” The phasing is varied in the literature, and the whole concept is sometimes criticized as being too artificial. Here we present the results of transcriptional profiling using custom microarrays representing 1,042 genes in the drosophilid fly, Chymomyza costata. Fully grown, third-instar larvae programmed for diapause by a photoperiodic (short-day) signal were assayed as they traversed the diapause developmental program. When analyzing the gradual dynamics in the transcriptomic profile, we could readily distinguish distinct diapause developmental phases associated with induction/initiation, maintenance, cold acclimation, and termination by cold or by photoperiodic signal. Accordingly, each phase is characterized by a specific pattern of gene expression, supporting the physiological relevance of the concept of diapause phasing. Further, we have dissected in greater detail the changes in transcript levels of elements of several signaling pathways considered critical for diapause regulation. The phase of diapause termination is associated with enhanced transcript levels in several positive elements stimulating direct development (the 20-hydroxyecdysone pathway: Ecr, Shd, Broad; the Wnt pathway: basket, c-jun) that are countered by up-regulation in some negative elements (the insulin-signaling pathway: Ilp8, PI3k, Akt; the target of rapamycin pathway: Tsc2 and 4EBP; the Wnt pathway: shaggy). We speculate such up-regulations may represent the early steps linked to termination of diapause programming.
机译:昆虫通常会在激素调节的滞育状态下克服不利的季节,在这种状态下昆虫会停止活动,停止发育,抑制新陈代谢速度并增强对环境压力的耐受性。滞育性昆虫经历了一系列定型的生态生理阶段,称为“滞育发展”。文献中的阶段各不相同,有时会批评整个概念过于人为。在这里,我们介绍了使用自定义微阵列代表果蝇果蝇(Chymomyza costata)中的1,042个基因的转录谱分析结果。当它们穿过滞育发育程序时,对通过光周期(短日)信号编程为滞育的完全生长的三龄幼虫进行了分析。当分析转录组概况中的渐进动力学时,我们可以轻松地区分与诱导/起始,维持,冷驯化和冷或光周期信号终止相关的不同滞育发育阶段。因此,每个阶段的特征是基因表达的特定模式,支持滞育阶段概念的生理相关性。此外,我们已经更详细地剖析了对滞育调节至关重要的几种信号通路的转录本水平的变化。滞育终止阶段与刺激直接发育的几个阳性元件(20-羟基蜕皮激素途径:Ecr,Shd,Broad; Wnt途径:basket,c-jun)的转录水平升高有关,而在某些情况下被上调所抵消阴性元素(胰岛素信号通路:Ilp8,PI3k,Akt;雷帕霉素通路的靶标:Tsc2和4EBP; Wnt通路:毛茸茸的)。我们推测这种上调可能代表了终止滞育程序的早期步骤。

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