CAS Key Laboratory of Animal Ecology and Conservation Biology, Institute of Zoology, Chinese Academy of Sciences, Beijing, 100101, China.
University of Chinese Academy of Sciences, Beijing, 100049, China.
Nat Commun. 2023 Aug 10;14(1):4821. doi: 10.1038/s41467-023-40355-1.
The orchid mantises achieve camouflage with morphological modifications in body color and pattern, providing an interesting model for understanding phenotypic innovation. However, a reference genome is lacking for the order Mantodea. To unveil the mechanisms of plant-mimicking body coloration and patterns, we performed de novo assembly of two chromosome-level genomes of the orchid mantis and its close relative, the dead leaf mantis. Comparative genomic analysis revealed that the Scarlet gene plays an important role in the synthesis of xanthommatin, an important pigment for mantis camouflage coloration. Combining developmental transcriptomic analysis and genetic engineering experiments, we found that the cuticle was an essential component of the 'petal-like' enlargement, and specific expression in the ventral femur was controlled by Wnt signaling. The prolonged expression of Ultrabithorax (Ubx) accompanied by femoral expansion suggested that Ubx determines leg remodeling in the early developmental stage. We also found evidence of evolution of the Trypsin gene family for insectivory adaptation and ecdysone-dependent sexual dimorphism in body size. Overall, our study presents new genome catalogs and reveals the genetic and evolutionary mechanisms underlying the unique camouflage of the praying mantis, providing evolutionary developmental insights into phenotypic innovation and adaptation.
兰花螳螂通过身体颜色和图案的形态改变来实现伪装,为理解表型创新提供了一个有趣的模型。然而,螳螂目还缺乏参考基因组。为了揭示拟态身体颜色和图案的机制,我们对兰花螳螂及其近亲枯叶螳螂进行了两个染色体水平基因组的从头组装。比较基因组分析表明,Scarlet 基因在合成 xanthommatin 中起着重要作用,xanthommatin 是螳螂伪装颜色的重要色素。结合发育转录组分析和遗传工程实验,我们发现外骨骼是“花瓣状”增大的必要组成部分,并且腹股特定表达由 Wnt 信号控制。Ultrabithorax (Ubx) 的延长表达伴随着股骨的扩张,表明 Ubx 在早期发育阶段决定腿部重塑。我们还发现了昆虫取食适应和蜕皮激素依赖性体型性别二态性的 Trypsin 基因家族进化的证据。总的来说,我们的研究提供了新的基因组目录,并揭示了螳螂独特伪装的遗传和进化机制,为表型创新和适应提供了进化发育的见解。