作者
Yuli Li, Ruijia Wang, Xiaogang Xun, Jing Wang, Lisui Bao, Ramesha Thimmappa, Jun Ding, Jingwei Jiang, Liheng Zhang, Tianqi Li, Jia Lv, Chuang Mu, Xiaoli Hu, Lingling Zhang, Jing Liu, Yuqiang Li, Lijie Yao, Wenqian Jiao, Yangfan Wang, Shanshan Lian, Zelong Zhao, Yaoyao Zhan, Xiaoting Huang, Huan Liao, Jia Wang, Hongzhen Sun, Xue Mi, Yu Xia, Qiang Xing, Wei Lu, Anne Osbourn, Zunchun Zhou, Yaqing Chang, Zhenmin Bao, Shi Wang
发表日期
2018/6/26
期刊
Cell Discovery
卷号
4
期号
1
页码范围
29
出版商
Nature Publishing Group UK
简介
Echinoderms exhibit several fascinating evolutionary innovations that are rarely seen in the animal kingdom, but how these animals attained such features is not well understood. Here we report the sequencing and analysis of the genome and extensive transcriptomes of the sea cucumber Apostichopus japonicus, a species from a special echinoderm group with extraordinary potential for saponin synthesis, aestivation and organ regeneration. The sea cucumber does not possess a reorganized Hox cluster as previously assumed for all echinoderms, and the spatial expression of Hox7 and Hox11/13b potentially guides the embryo-to-larva axial transformation. Contrary to the typical production of lanosterol in animal cholesterol synthesis, the oxidosqualene cyclase of sea cucumber produces parkeol for saponin synthesis and has “plant-like” motifs suggestive of convergent evolution. The transcriptional factors Klf2 …
引用总数
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