Schumann Isabell, Kenny Nathan, Hui Jerome, Hering Lars, Mayer Georg
Department of Zoology, Institute of Biology, University of Kassel, Kassel, Germany.
Molecular Evolution and Animal Systematics, Institute of Biology, University of Leipzig, Leipzig, Germany.
R Soc Open Sci. 2018 Sep 12;5(9):180888. doi: 10.1098/rsos.180888. eCollection 2018 Sep.
Moulting is a characteristic feature of Ecdysozoa-the clade of moulting animals that includes the hyperdiverse arthropods and less speciose groups, such as onychophorans, tardigrades and nematodes. Moulting has been best analysed in arthropods, specifically in insects and crustaceans, in which a complex neuroendocrine system acts at the genomic level and initiates the transcription of genes responsible for moulting. The key moulting hormones, ecdysone and 20-hydroxyecdysone, are subsequently synthesized from cholesterol ingested with food. Their biosynthesis is regulated by the Rieske-domain protein Neverland and cytochrome P450 enzymes encoded by the so-called 'Halloween' genes. Ecdysone is then released into the haemolymph and modified into 20-hydroxyecdysone, which binds to the nuclear receptor EcR/USP and initiates transcription of the Early genes. As little is known about the moulting pathway of other ecdysozoans, we examined the occurrence of genes involved in ecdysteroid biosynthesis and the early moulting cascade across ecdysozoan subgroups. Genomic and transcriptomic searches revealed no Halloween genes in cycloneuralians, whereas only () is present in onychophorans and tardigrades, suggesting that the Halloween genes evolved stepwise in panarthropods. These findings imply that the genes which were responsible for the ecdysteroid biosynthesis in the last common ancestor of Ecdysozoa are currently unknown.
蜕皮是蜕皮动物总门的一个特征——这一蜕皮动物类群包括种类极其多样的节肢动物以及种类较少的类群,如栉蚕、缓步动物和线虫。蜕皮现象在节肢动物中得到了最深入的分析,特别是在昆虫和甲壳类动物中,其中一个复杂的神经内分泌系统在基因组水平上发挥作用,并启动负责蜕皮的基因的转录。关键的蜕皮激素,蜕皮激素和20-羟基蜕皮激素,随后由从食物中摄取的胆固醇合成。它们的生物合成由Rieske结构域蛋白梦幻岛和由所谓的“万圣节”基因编码的细胞色素P450酶调节。然后,蜕皮激素被释放到血淋巴中,并转化为20-羟基蜕皮激素,它与核受体EcR/USP结合并启动早期基因的转录。由于对其他蜕皮动物的蜕皮途径了解甚少,我们研究了参与蜕皮甾体生物合成的基因以及整个蜕皮动物亚群中早期蜕皮级联反应的发生情况。基因组和转录组搜索显示,环神经动物中没有“万圣节”基因,而栉蚕和缓步动物中仅存在(),这表明“万圣节”基因在泛节肢动物中是逐步进化的。这些发现意味着,目前尚不清楚蜕皮动物总门最后一个共同祖先中负责蜕皮甾体生物合成的基因。