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Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/17346
Title: The Chinese mitten crab genome provides insights into adaptive plasticity and developmental regulation
Authors: Cui, Zhaoxia
Liu, Yuan
Yuan, Jianbo
Zhang, Xiaojun
Ventura, Tomer
Ma, Ka Yan
Sun, Shuai
Song, Chengwen
Zhan, Dongliang
Yang, Yanan
Liu, Hourong
Fan, Guangyi
Cai, Qingle
Du, Jing
Qin, Jing
Shi, Chengcheng
Hao, Shijie
Fitzgibbon, Quinn P.
Smith, Gregory G.
Xiang, Jianhai
Chan, Tin-Yam 
Hui, Min
Bao, Chenchang
Li, Fuhua
Chu, Ka Hou
Keywords: INSULIN-LIKE-HORMONE;ERIOCHEIR-SINENSIS;ANDROGENIC-GLAND;HOX GENES;MOLECULAR CHARACTERIZATION;EURYHALINE CRABS;H+-ATPASE;EVOLUTION;REVEALS;EXPRESSION
Issue Date: 22-Apr-2021
Publisher: NATURE PORTFOLIO
Journal Volume: 12
Journal Issue: 1
Source: NAT COMMUN
Abstract: 
Brachyurans, or crabs, are of commercial and ecological importance, but limited genomic resources exist. Here the authors present a chromosome-level genome and expression data for the Chinese mitten crab, to shed light on the biology of this group. The infraorder Brachyura (true or short-tailed crabs) represents a successful group of marine invertebrates yet with limited genomic resources. Here we report a chromosome-anchored reference genome and transcriptomes of the Chinese mitten crab Eriocheir sinensis, a catadromous crab and invasive species with wide environmental tolerance, strong osmoregulatory capacity and high fertility. We show the expansion of specific gene families in the crab, including F-ATPase, which enhances our knowledge on the adaptive plasticity of this successful invasive species. Our analysis of spatio-temporal transcriptomes and the genome of E. sinensis and other decapods shows that brachyurization development is associated with down-regulation of Hox genes at the megalopa stage when tail shortening occurs. A better understanding of the molecular mechanism regulating sexual development is achieved by integrated analysis of multiple omics. These genomic resources significantly expand the gene repertoire of Brachyura, and provide insights into the biology of this group, and Crustacea in general.
URI: http://scholars.ntou.edu.tw/handle/123456789/17346
ISSN: 2041-1723
DOI: 10.1038/s41467-021-22604-3
Appears in Collections:海洋生物研究所
14 LIFE BELOW WATER
15 LIFE ON LAND

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