Department of Biology, Duke University, Durham, NC, USA.
Department of Biology, Indiana University, Bloomington, IN, USA.
Nat Ecol Evol. 2020 Jun;4(6):831-840. doi: 10.1038/s41559-020-1165-y. Epub 2020 Apr 13.
The genetic basis for divergence in developmental gene expression among species is poorly understood, despite growing evidence that such changes underlie many interesting traits. Here we quantify transcription in hybrids of Heliocidaris tuberculata and Heliocidaris erythrogramma, two closely related sea urchins with highly divergent developmental gene expression and life histories. We find that most expression differences between species result from genetic influences that affect one stage of development, indicating limited pleiotropic consequences for most mutations that contribute to divergence in gene expression. Activation of zygotic transcription is broadly delayed in H. erythrogramma, the species with the derived life history, despite its overall faster premetamorphic development. Altered expression of several terminal differentiation genes associated with the derived larval morphology of H. erythrogramma is based largely on differences in the expression or function of their upstream regulators, providing insights into the genetic basis for the evolution of key life history traits.
尽管越来越多的证据表明,这种变化是许多有趣特征的基础,但物种间发育基因表达差异的遗传基础仍知之甚少。在这里,我们量化了两种密切相关的海胆——Heliocidaris tuberculata 和 Heliocidaris erythrogramma 的杂种中的转录情况,这两种海胆在发育基因表达和生活史方面存在高度分化。我们发现,物种间的大多数表达差异都是由遗传因素造成的,这些遗传因素影响着发育的一个阶段,这表明大多数导致基因表达分化的突变的多效性后果有限。尽管 H. erythrogramma 的前变态发育总体上更快,但它的合子转录激活广泛延迟,这是一种具有衍生生活史的物种。与 H. erythrogramma 的衍生幼虫形态相关的几个终端分化基因的表达改变主要基于其上游调节剂的表达或功能差异,这为关键生活史特征的遗传基础提供了深入了解。