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对蝴蝶蛹滞育进行的广泛转录组分析揭示了一种动态表型。

Extensive transcriptomic profiling of pupal diapause in a butterfly reveals a dynamic phenotype.

作者信息

Pruisscher Peter, Lehmann Philipp, Nylin Sören, Gotthard Karl, Wheat Christopher W

机构信息

Department of Zoology, Stockholm University, Stockholm, Sweden.

出版信息

Mol Ecol. 2022 Feb;31(4):1269-1280. doi: 10.1111/mec.16304. Epub 2021 Dec 13.

Abstract

Diapause is a common adaptation for overwintering in insects that is characterized by arrested development and increased tolerance to stress and cold. While the expression of specific candidate genes during diapause have been investigated, there is no general understanding of the dynamics of the transcriptional landscape as a whole during the extended diapause phenotype. Such a detailed temporal insight is important as diapause is a vital aspect of life cycle timing. Here, we performed a time-course experiment using RNA-Seq on the head and abdomen in the butterfly Pieris napi. In both body parts, comparing diapausing and nondiapausing siblings, differentially expressed genes are detected from the first day of pupal development and onwards, varying dramatically across these formative stages. During diapause there are strong gene expression dynamics present, revealing a preprogrammed transcriptional landscape that is active during the winter. Different biological processes appear to be active in the two body parts. Finally, adults emerging from either the direct or diapause pathways do not show large transcriptomic differences, suggesting the adult phenotype is strongly canalized.

摘要

滞育是昆虫越冬的一种常见适应性特征,其特点是发育停滞以及对压力和寒冷的耐受性增强。虽然已经对滞育期间特定候选基因的表达进行了研究,但对于整个延长滞育表型期间转录图谱的动态变化尚无全面的了解。由于滞育是生命周期时间安排的一个重要方面,这样详细的时间洞察很重要。在这里,我们使用RNA测序对菜粉蝶的头部和腹部进行了时间进程实验。在这两个身体部位中,比较滞育和非滞育的同胞,从蛹发育的第一天起就检测到了差异表达基因,这些基因在这些形成阶段有很大差异。在滞育期间存在强烈的基因表达动态,揭示了在冬季活跃的预先编程的转录图谱。不同的生物学过程似乎在两个身体部位中活跃。最后,从直接发育或滞育途径羽化的成虫没有显示出大的转录组差异,这表明成虫表型具有很强的稳定性。

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