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调控基因网络塑造慈鲷鱼适应性表型可塑性发育。

Regulatory gene networks that shape the development of adaptive phenotypic plasticity in a cichlid fish.

机构信息

Lehrstuhl für Zoologie und Evolutionsbiologie, Department of Biology, University of Konstanz, Universitätstrasse 10, 78457, Konstanz, Germany; International Max Planck Research School for Organismal Biology, University of Konstanz, Universitätsstr 10, 78457, Konstanz, Germany.

出版信息

Mol Ecol. 2014 Sep;23(18):4511-26. doi: 10.1111/mec.12851. Epub 2014 Jul 30.

Abstract

Phenotypic plasticity is the ability of organisms with a given genotype to develop different phenotypes according to environmental stimuli, resulting in individuals that are better adapted to local conditions. In spite of their ecological importance, the developmental regulatory networks underlying plastic phenotypes often remain uncharacterized. We examined the regulatory basis of diet-induced plasticity in the lower pharyngeal jaw (LPJ) of the cichlid fish Astatoreochromis alluaudi, a model species in the study of adaptive plasticity. Through raising juvenile A. alluaudi on either a hard or soft diet (hard-shelled or pulverized snails) for between 1 and 8 months, we gained insight into the temporal regulation of 19 previously identified candidate genes during the early stages of plasticity development. Plasticity in LPJ morphology was first detected between 3 and 5 months of diet treatment. The candidate genes, belonging to various functional categories, displayed dynamic expression patterns that consistently preceded the onset of morphological divergence and putatively contribute to the initiation of the plastic phenotypes. Within functional categories, we observed striking co-expression, and transcription factor binding site analysis was used to examine the prospective basis of their coregulation. We propose a regulatory network of LPJ plasticity in cichlids, presenting evidence for regulatory crosstalk between bone and muscle tissues, which putatively facilitates the development of this highly integrated trait. Through incorporating a developmental time-course into a phenotypic plasticity study, we have identified an interconnected, environmentally responsive regulatory network that shapes the development of plasticity in a key innovation of East African cichlids.

摘要

表型可塑性是指具有特定基因型的生物体根据环境刺激发展出不同表型的能力,从而使个体更适应当地条件。尽管它们具有生态重要性,但支持可塑性表型的发育调控网络通常仍未被描述。我们研究了下咽颌(LPJ)的饮食诱导可塑性的调控基础,而下咽颌是慈鲷鱼类 Astatoreochromis alluaudi 的一个模型,这是适应性可塑性研究的一个模型物种。通过让幼年 A. alluaudi 在硬壳或粉碎蜗牛的硬或软饮食中饲养 1 至 8 个月,我们深入了解了 19 个先前确定的候选基因在可塑性发展早期阶段的时间调节。LPJ 形态的可塑性最早在饮食处理 3 至 5 个月时被检测到。候选基因属于各种功能类别,表现出动态表达模式,这些模式始终先于形态差异的发生,并可能有助于启动可塑性表型。在功能类别中,我们观察到惊人的共表达,并使用转录因子结合位点分析来检查它们的核心调控的潜在基础。我们提出了一个关于慈鲷 LPJ 可塑性的调控网络,提出了骨骼和肌肉组织之间的调控串扰的证据,这可能有助于这个高度综合特征的发展。通过将发育时间序列纳入表型可塑性研究,我们确定了一个相互连接的、对环境有反应的调控网络,该网络塑造了东非慈鲷关键创新的可塑性发展。

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