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一种全球入侵性害虫迁飞活动的全基因组转录特征

Genomewide transcriptional signatures of migratory flight activity in a globally invasive insect pest.

作者信息

Jones Christopher M, Papanicolaou Alexie, Mironidis George K, Vontas John, Yang Yihua, Lim Ka S, Oakeshott John G, Bass Chris, Chapman Jason W

机构信息

AgroEcology, Rothamsted Research, Harpenden, Hertfordshire, AL5 2JQ, UK.

Hawkesbury Institute for the Environment, University of Western Sydney, Richmond, NSW, 2753, Australia.

出版信息

Mol Ecol. 2015 Oct;24(19):4901-11. doi: 10.1111/mec.13362.

Abstract

Migration is a key life history strategy for many animals and requires a suite of behavioural, morphological and physiological adaptations which together form the 'migratory syndrome'. Genetic variation has been demonstrated for many traits that make up this syndrome, but the underlying genes involved remain elusive. Recent studies investigating migration-associated genes have focussed on sampling migratory and nonmigratory populations from different geographic locations but have seldom explored phenotypic variation in a migratory trait. Here, we use a novel combination of tethered flight and next-generation sequencing to determine transcriptomic differences associated with flight activity in a globally invasive moth pest, the cotton bollworm Helicoverpa armigera. By developing a state-of-the-art phenotyping platform, we show that field-collected H. armigera display continuous variation in flight performance with individuals capable of flying up to 40 km during a single night. Comparative transcriptomics of flight phenotypes drove a gene expression analysis to reveal a suite of expressed candidate genes which are clearly related to physiological adaptations required for long-distance flight. These include genes important to the mobilization of lipids as flight fuel, the development of flight muscle structure and the regulation of hormones that influence migratory physiology. We conclude that the ability to express this complex set of pathways underlines the remarkable flexibility of facultative insect migrants to respond to deteriorating conditions in the form of migratory flight and, more broadly, the results provide novel insights into the fundamental transcriptional changes required for migration in insects and other taxa.

摘要

迁徙是许多动物关键的生活史策略,需要一系列行为、形态和生理上的适应性变化,这些变化共同构成了“迁徙综合征”。构成该综合征的许多性状都已被证明存在遗传变异,但其中涉及的潜在基因仍不清楚。最近关于与迁徙相关基因的研究主要集中在对来自不同地理位置的迁徙和非迁徙种群进行采样,但很少探究迁徙性状的表型变异。在这里,我们使用系留飞行和下一代测序的新颖组合,来确定与全球入侵性蛾类害虫棉铃虫(Helicoverpa armigera)飞行活动相关的转录组差异。通过开发一个最先进的表型分析平台,我们发现野外采集的棉铃虫在飞行性能上呈现连续变异,个体在单个夜晚能够飞行达40公里。对飞行表型的比较转录组学驱动了基因表达分析,以揭示一组明显与长途飞行所需生理适应性相关的表达候选基因。这些基因包括对将脂质作为飞行燃料进行动员、飞行肌肉结构发育以及影响迁徙生理的激素调节很重要的基因。我们得出结论,表达这一复杂途径组的能力突显了兼性昆虫迁徙者以迁徙飞行形式应对恶化条件的显著灵活性,更广泛地说,这些结果为昆虫和其他类群迁徙所需的基本转录变化提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cea5/5102652/b1ac43c122e9/MEC-24-4901-g001.jpg

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