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转录组分析揭示了昆虫季节性进化的机制。

Transcriptome profiling reveals mechanisms for the evolution of insect seasonality.

作者信息

Wadsworth Crista B, Dopman Erik B

机构信息

Department of Biology, Tufts University, 200 Boston Ave, Suite 4700, Medford, MA 02155, USA

出版信息

J Exp Biol. 2015 Nov;218(Pt 22):3611-22. doi: 10.1242/jeb.126136. Epub 2015 Sep 28.

DOI:10.1242/jeb.126136
PMID:26417012
Abstract

Rapid evolutionary change in seasonal timing can facilitate ecological speciation and resilience to climate warming. However, the molecular mechanisms behind shifts in animal seasonality are still unclear. Evolved differences in seasonality occur in the European corn borer moth (Ostrinia nubilalis), in which early summer emergence in E-strain adults and later summer emergence in Z-strain adults is explained by a shift in the length of the termination phase of larval diapause. Here, we sample from the developmental time course of diapause in both strains and use transcriptome sequencing to profile regulatory and amino acid changes associated with timing divergence. Within a previously defined quantitative trait locus (QTL), we nominate 48 candidate genes, including several in the insulin signaling and circadian rhythm pathways. Genome-wide transcriptional activity is negligible during the extended Z-strain termination, whereas shorter E-strain termination is characterized by a rapid burst of regulatory changes involved in resumption of the cell cycle, hormone production and stress response. Although gene expression during diapause termination in Ostrinia is similar to that found previously in flies, nominated genes for shifts in timing are species specific. Hence, across distant relatives the evolution of insect seasonality appears to involve unique genetic switches that direct organisms into distinct phases of the diapause pathway through wholesale restructuring of conserved gene regulatory networks.

摘要

季节性时间的快速进化变化能够促进生态物种形成以及对气候变暖的适应能力。然而,动物季节性变化背后的分子机制仍不清楚。欧洲玉米螟蛾(Ostrinia nubilalis)存在季节性的进化差异,其中E品系成虫在初夏羽化,Z品系成虫在夏末羽化,这可以通过幼虫滞育终止阶段时长的变化来解释。在这里,我们从两个品系滞育的发育时间进程中取样,并利用转录组测序来描绘与时间差异相关的调控和氨基酸变化。在一个先前定义的数量性状基因座(QTL)内,我们确定了48个候选基因,包括胰岛素信号通路和昼夜节律通路中的几个基因。在延长的Z品系终止期间,全基因组转录活性可以忽略不计,而较短的E品系终止则以细胞周期恢复、激素产生和应激反应中涉及的调控变化迅速爆发为特征。尽管玉米螟滞育终止期间的基因表达与之前在果蝇中发现的相似,但确定的时间变化相关基因具有物种特异性。因此,在远亲物种中,昆虫季节性的进化似乎涉及独特的基因开关,这些开关通过对保守基因调控网络的全面重组,将生物体引导到滞育途径的不同阶段。

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