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关键传粉昆虫生活史转折中成功与失败的神经基因组特征

Neurogenomic Signatures of Successes and Failures in Life-History Transitions in a Key Insect Pollinator.

机构信息

School of Biological Sciences, Royal Holloway University of London, Egham, United Kingdom.

Department of Computer Science, and Centre for Systems and Synthetic Biology, Royal Holloway University of London, Egham, United Kingdom.

出版信息

Genome Biol Evol. 2017 Nov 1;9(11):3059-3072. doi: 10.1093/gbe/evx220.

Abstract

Life-history transitions require major reprogramming at the behavioral and physiological level. Mating and reproductive maturation are known to trigger changes in gene transcription in reproductive tissues in a wide range of organisms, but we understand little about the molecular consequences of a failure to mate or become reproductively mature, and it is not clear to what extent these processes trigger neural as well as physiological changes. In this study, we examined the molecular processes underpinning the behavioral changes that accompany the major life-history transitions in a key pollinator, the bumblebee Bombus terrestris. We compared neuro-transcription in queens that succeeded or failed in switching from virgin and immature states, to mated and reproductively mature states. Both successes and failures were associated with distinct molecular profiles, illustrating how development during adulthood triggers distinct molecular profiles within a single caste of a eusocial insect. Failures in both mating and reproductive maturation were explained by a general up-regulation of brain gene transcription. We identified 21 genes that were highly connected in a gene coexpression network analysis: nine genes are involved in neural processes and four are regulators of gene expression. This suggests that negotiating life-history transitions involves significant neural processing and reprogramming, and not just changes in physiology. These findings provide novel insights into basic life-history transitions of an insect. Failure to mate or to become reproductively mature is an overlooked component of variation in natural systems, despite its prevalence in many sexually reproducing organisms, and deserves deeper investigation in the future.

摘要

生活史转变需要在行为和生理水平上进行重大的重新编程。众所周知,在广泛的生物中,交配和生殖成熟会引发生殖组织中转录基因的变化,但我们对未能交配或生殖成熟的分子后果知之甚少,也不清楚这些过程在多大程度上引发了神经和生理变化。在这项研究中,我们研究了伴随关键传粉者熊蜂(Bombus terrestris)主要生活史转变的行为变化背后的分子过程。我们比较了成功或未能从处女和未成熟状态切换到交配和生殖成熟状态的蜂王的神经转录情况。成功和失败都与独特的分子特征相关,说明了成年期的发育如何在一种社会性昆虫的单一等级内引发独特的分子特征。交配和生殖成熟的失败都可以通过大脑基因转录的普遍上调来解释。我们在基因共表达网络分析中确定了 21 个高度连接的基因:其中 9 个基因涉及神经过程,4 个基因是基因表达的调节剂。这表明,协商生活史转变涉及到显著的神经处理和重新编程,而不仅仅是生理变化。这些发现为昆虫的基本生活史转变提供了新的见解。未能交配或生殖成熟是自然系统中变异的一个被忽视的组成部分,尽管在许多有性繁殖的生物中很普遍,但在未来值得更深入的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d57/5714134/16e8e51f3817/evx220f1.jpg

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