Department of Biology, Faculty of Science, Toho University, Funabashi, Chiba, Japan.
Center for Data Science Education and Research, Shiga University, Hikone, Shiga, Japan.
Mol Biol Evol. 2024 Jun 1;41(6). doi: 10.1093/molbev/msae110.
Body shape and size diversity and their evolutionary rates correlate with species richness at the macroevolutionary scale. However, the molecular genetic mechanisms underlying the morphological diversification across related species are poorly understood. In beetles, which account for one-fourth of the known species, adaptation to different trophic niches through morphological diversification appears to have contributed to species radiation. Here, we explored the key genes for the morphological divergence of the slender to stout body shape related to divergent feeding methods on large to small snails within the genus Carabus. We show that the zinc-finger transcription factor encoded by odd-paired (opa) controls morphological variation in the snail-feeding ground beetle Carabus blaptoides. Specifically, opa was identified as the gene underlying the slender to stout morphological difference between subspecies through genetic mapping and functional analysis via gene knockdown. Further analyses revealed that changes in opa cis-regulatory sequences likely contributed to the differences in body shape and size between C. blaptoides subspecies. Among opa cis-regulatory sequences, single nucleotide polymorphisms on the transcription factor binding sites may be associated with the morphological differences between C. blaptoides subspecies. opa was highly conserved in a wide range of taxa, especially in beetles. Therefore, opa may play an important role in adaptive morphological divergence in beetles.
体型和大小的多样性及其进化速率与宏观进化尺度上的物种丰富度相关。然而,与相关物种的形态多样化相关的分子遗传机制仍知之甚少。在占已知物种四分之一的甲虫中,通过形态多样化来适应不同的营养生态位似乎促成了物种辐射。在这里,我们探索了与 Carabus 属中不同大小蜗牛的不同取食方式相关的细长到粗壮体型的形态分化的关键基因。我们表明,odd-paired(opa)编码的锌指转录因子控制了食蜗牛的 Carabus blaptoides 甲虫的形态变化。具体来说,通过遗传作图和基因敲低的功能分析,opa 被确定为亚种之间细长到粗壮形态差异的基因。进一步的分析表明,opa 顺式调控序列的变化可能导致了 C. blaptoides 亚种之间在体型和大小上的差异。在 opa 顺式调控序列中,转录因子结合位点上的单核苷酸多态性可能与 C. blaptoides 亚种之间的形态差异有关。opa 在广泛的分类群中高度保守,特别是在甲虫中。因此,opa 可能在甲虫的适应性形态分化中发挥重要作用。