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顺式和反式调控对影响基因表达变异的因素层次的贡献。

cis- and trans-regulatory contributions to a hierarchy of factors influencing gene expression variation.

机构信息

Wesleyan University, Middletown, CT, USA.

出版信息

Commun Biol. 2024 Nov 25;7(1):1563. doi: 10.1038/s42003-024-07255-6.

Abstract

Gene expression variation results from numerous sources including genetic, environmental, life stage, and even the environment experienced by previous generations. While the importance of each has been demonstrated in diverse organisms, their relative contributions remain understudied because few investigations have simultaneously determined each within a single experiment. Here we quantified genome-wide gene expression traits in Drosophila, quantified the contribution of multiple different sources of trait variation and determined the molecular mechanisms underlying observed variation. Our results show that there is a clear hierarchy in our data with genome and developmental stage contributing on average considerably more than current and finally previous generation environmental effects. We also determined the role of cis and trans-regulatory changes across different sources of trait variation, highlighting their importance in adaptation and environmental responses and showing unexpectedly that transgenerational effects herein were predominantly associated with changes in trans-regulation.

摘要

基因表达的变异源于多个方面,包括遗传、环境、生命阶段,甚至是前几代经历的环境。尽管每种因素在不同的生物体中都有重要作用,但它们的相对贡献仍未得到充分研究,因为很少有研究能够在单个实验中同时确定每种因素。在这里,我们在果蝇中量化了全基因组基因表达特征,量化了多种不同性状变异来源的贡献,并确定了观察到的变异的分子机制。我们的研究结果表明,在我们的数据中存在明显的层次结构,基因组和发育阶段的平均贡献明显大于当前和最终前几代环境效应。我们还确定了跨不同性状变异来源的顺式和反式调节变化的作用,突出了它们在适应和环境反应中的重要性,并出人意料地表明,此处的跨代效应主要与反式调节的变化有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b07b/11589579/72dce7fce710/42003_2024_7255_Fig1_HTML.jpg

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