Department of Evolution and Ecology, University of California, Davis, California 95616
Genetics. 2020 Nov;216(3):805-821. doi: 10.1534/genetics.120.303626. Epub 2020 Sep 14.
How gene expression can evolve depends on the mechanisms driving gene expression. Gene expression is controlled in different ways in different developmental stages; here we ask whether different developmental stages show different patterns of regulatory evolution. To explore the mode of regulatory evolution, we used the early stages of embryonic development controlled by two different genomes, that of the mother and that of the zygote. During embryogenesis in all animals, initial developmental processes are driven entirely by maternally provided gene products deposited into the oocyte. The zygotic genome is activated later, when developmental control is handed off from maternal gene products to the zygote during the maternal-to-zygotic transition. Using hybrid crosses between sister species of (, , and ) and transcriptomics, we find that the regulation of maternal transcript deposition and zygotic transcription evolve through different mechanisms. We find that patterns of transcript level inheritance in hybrids, relative to parental species, differ between maternal and zygotic transcripts, and maternal transcript levels are more likely to be conserved. Changes in transcript levels occur predominantly through differences in regulation for maternal genes, while changes in zygotic transcription occur through a combination of both and regulatory changes. Differences in the underlying regulatory landscape in the mother and the zygote are likely the primary determinants for how maternal and zygotic transcripts evolve.
基因表达的进化方式取决于驱动基因表达的机制。在不同的发育阶段,基因表达受到不同的控制方式的调控;在这里,我们探讨了不同的发育阶段是否表现出不同的调控进化模式。为了探索调控进化的模式,我们利用了由母源和受精卵两种不同基因组控制的早期胚胎发育阶段。在所有动物的胚胎发生过程中,初始发育过程完全由卵母细胞中储存的母源基因产物驱动。当胚胎从母源基因产物到合子的母源到合子过渡过程中,合子基因组在稍后被激活。通过(,,和)姐妹种间的杂交和转录组学,我们发现母源转录本沉积和合子转录的调控通过不同的机制进化。我们发现,与亲本品系相比,杂种中母源和合子转录本的转录本水平遗传模式不同,母源转录本水平更有可能被保守。转录本水平的变化主要通过母源基因的 调控差异发生,而合子转录的变化则通过 和 调控变化的组合发生。母源和合子中潜在调控景观的差异可能是决定母源和合子转录本如何进化的主要决定因素。