College of Life Sciences, Anhui Normal University, Wuhu 241000, China.
Int J Mol Sci. 2023 Mar 14;24(6):5577. doi: 10.3390/ijms24065577.
The mountain butterfly is a representative species of the genus which probably originated in the high-altitude Qinhai-Tibet Plateau in the Miocene and later dispersed eastward into relatively low-altitude regions of central to eastern China. However, little is known about the molecular mechanisms underlying the long-term evolutionary adaptation to heterogeneous environmental conditions of this butterfly species. In this study, we obtained the high-throughput RNA-Seq data from twenty-four adult individuals in eight localities, covering nearly all known distributional areas in China, and firstly identified the diapause-linked gene expression pattern that is likely to correlate with local adaptation in adult populations. Secondly, we found a series of pathways responsible for hormone biosynthesis, energy metabolism and immune defense that also exhibited unique enrichment patterns in each group that are probably related to habitat-specific adaptability. Furthermore, we also identified a suite of duplicated genes (including two transposable elements) that are mostly co-expressed to promote the plastic responses to different environmental conditions. Together, these findings can help us to better understand this species' successful colonization to distinct geographic areas from the western to eastern areas of China, and also provide us with some insights into the evolution of diapause in mountain butterfly species.
高山蝶是 属的代表性物种,可能起源于中新世高海拔的青藏高原,后来向东扩散到中国中部和东部相对较低海拔的地区。然而,对于这种蝴蝶物种长期进化适应异质环境条件的分子机制知之甚少。在这项研究中,我们从分布在中国各地的 24 个成虫个体中获得了高通量 RNA-Seq 数据,几乎涵盖了中国已知的所有分布区,并首次鉴定出与成虫种群的局部适应相关的滞育相关基因表达模式。其次,我们发现了一系列与激素生物合成、能量代谢和免疫防御有关的途径,它们在每个群体中也表现出独特的富集模式,这可能与特定栖息地的适应性有关。此外,我们还鉴定了一系列重复基因(包括两个转座元件),它们大多是共表达的,以促进对不同环境条件的可塑性反应。总之,这些发现有助于我们更好地理解这种蝴蝶从中国西部到东部不同地理区域的成功定殖,也为我们了解高山蝶物种滞育的进化提供了一些线索。