Benowitz Kyle M, Coleman Joshua M, Allan Carson W, Matzkin Luciano M
Department of Entomology, University of Arizona.
Department of Biological Sciences, University of Alabama in Huntsville.
Genome Biol Evol. 2020 Aug 1;12(8):1407-1418. doi: 10.1093/gbe/evaa145.
Natural selection on gene expression was originally predicted to result primarily in cis- rather than trans-regulatory evolution, due to the expectation of reduced pleiotropy. Despite this, numerous studies have ascribed recent evolutionary divergence in gene expression predominantly to trans-regulation. Performing RNA-seq on single isofemale lines from genetically distinct populations of the cactophilic fly Drosophila mojavensis and their F1 hybrids, we recapitulated this pattern in both larval brains and whole bodies. However, we demonstrate that improving the measurement of brain expression divergence between populations by using seven additional genotypes considerably reduces the estimate of trans-regulatory contributions to expression evolution. We argue that the finding of trans-regulatory predominance can result from biases due to environmental variation in expression or other sources of noise, and that cis-regulation is likely a greater contributor to transcriptional evolution across D. mojavensis populations. Lastly, we merge these lines of data to identify several previously hypothesized and intriguing novel candidate genes, and suggest that the integration of regulatory and population-level transcriptomic data can provide useful filters for the identification of potentially adaptive genes.
由于人们预期基因表达的多效性会降低,最初预测自然选择对基因表达的影响主要会导致顺式而非反式调控进化。尽管如此,众多研究已将近期基因表达的进化差异主要归因于反式调控。我们对嗜仙人掌果蝇Drosophila mojavensis遗传背景不同的种群及其F1杂种的单雌系进行RNA测序,在幼虫大脑和整个身体中均重现了这一模式。然而,我们证明,通过使用另外七种基因型来改进对种群间大脑表达差异的测量,可大幅降低对反式调控对表达进化贡献的估计。我们认为,反式调控占主导地位这一发现可能源于表达中的环境变异或其他噪声源导致的偏差,并且顺式调控可能是D. mojavensis种群转录进化的更大贡献因素。最后,我们整合这些数据系列以鉴定几个先前假设的且有趣的新候选基因,并表明调控和种群水平转录组数据的整合可为鉴定潜在适应性基因提供有用的筛选。