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首页> 外文期刊>The Journal of Experimental Biology >Divergence of the diapause transcriptome in apple maggot flies: winter regulation and post-winter transcriptional repression
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Divergence of the diapause transcriptome in apple maggot flies: winter regulation and post-winter transcriptional repression

机译:苹果蝇滞育转录组的差异:冬季调节和冬季后转录抑制

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摘要

The duration of dormancy regulates seasonal timing in many organisms and may be modulated by day length and temperature. Though photoperiodic modulation has been well studied, temperature modulation of dormancy has received less attention. Here, we leverage genetic variation in diapause in the apple maggot fly, Rhagoletis pomonella, to test whether gene expression during winter or following spring warming regulates diapause duration. We used RNAseq to compare transcript abundance during and after simulated winter between an apple-infesting population and a hawthorn-infesting population where the apple population ends pupal diapause earlier than the hawthorn-infesting population. Marked differences in transcription between the two populations during winter suggests that the 'early' apple population is developmentally advanced compared with the 'late' hawthorn population prior to spring warming, with transcripts participating in growth and developmental processes relatively up-regulated in apple pupae during the winter cold period. Thus, regulatory differences during winter ultimately drive phenological differences that manifest themselves in the following summer. Expression and polymorphism analysis identify candidate genes in the Wnt and insulin signaling pathways that contribute to population differences in seasonality. Both populations remained in diapause and displayed a pattern of up-and then down-regulation (or vice versa) of growth-related transcripts following warming, consistent with transcriptional repression. The ability to repress growth stimulated by permissive temperatures is likely critical to avoid mismatched phenology and excessive metabolic demand. Compared with diapause studies in other insects, our results suggest some overlap in candidate genes/pathways, though the timing and direction of changes in transcription are likely species specific.
机译:休眠的持续时间可调节许多生物的季节性时机,并可通过日长和温度调节。尽管已经很好地研究了光周期调制,但是休眠的温度调制受到的关注较少。在这里,我们利用苹果蝇(Rhogoletis pomonella)滞育的遗传变异来测试冬季或春季变暖后的基因表达是否调节了滞育的持续时间。我们使用RNAseq比较模拟冬季和冬季之间苹果侵染种群和山楂侵染种群之间的转录丰度,其中苹果种群早于山楂侵染结束ends滞育。冬季期间,这两个种群之间转录的明显差异表明,与春季暖和之前的“晚期”山楂种群相比,“早期”苹果种群在发育上更为先进,在此期间,参与苹果p的生长和发育过程的转录本相对上调。冬季寒冷的时期。因此,冬季的调节差异最终导致物候差异,而第二个夏季表现出来。表达和多态性分析可确定Wnt和胰岛素信号通路中的候选基因,这些基因可导致季节性差异。两个种群均处于滞育状态,变暖后与生长相关的转录本表现出先上调后下调的趋势(反之亦然),与转录抑制一致。抑制温度允许的生长的能力对于避免物候失配和过度的代谢需求可能至关重要。与其他昆虫的滞育研究相比,我们的结果表明候选基因/途径有些重叠,尽管转录变化的时间和方向可能是物种特异性的。

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