论文
论文标题: Mandarin fish (Sinipercidae) genomes provide insights into innate predatory feeding
作者: He, Shan; Li, Ling; Lv, Li-Yuan; Cai, Wen-Jing; Dou, Ya-Qi; Li, Jiao; Tang, Shu-Lin; Chen, Xu; Zhang, Zhen; Xu, Jing; Zhang, Yan-Peng; Yin, Zhan; Wuertz, Sven; Tao, Ya-Xiong; Kuhl, Heiner; Liang, Xu-Fang
出版刊物: COMMUNICATIONS BIOLOGY
出版日期: JUL 9
出版年份: 2020
卷/期: 1
DOI: 10.1038/s42003-020-1094-y
论文摘要: Mandarin fishes (Sinipercidae) are piscivores that feed solely on live fry. Unlike higher vertebrates, teleosts exhibit feeding behavior driven mainly by genetic responses, with no modification by learning from parents. Mandarin fishes could serve as excellent model organisms for studying feeding behavior. We report a long-read, chromosomal-scale genome assembly for Siniperca chuatsi and genome assemblies for Siniperca kneri, Siniperca scherzeri and Coreoperca whiteheadi. Positive selection analysis revealed rapid adaptive evolution of genes related to predatory feeding/aggression, growth, pyloric caeca and euryhalinity. Very few gill rakers are observed in mandarin fishes; analogously, we found that zebrafish deficient in edar had a gill raker loss phenotype and a more predatory habit, with reduced intake of zooplankton but increased intake of prey fish. Higher expression of bmp4, which could inhibit edar expression and gill raker development through binding of a Xvent-1 site upstream of edar, may cause predatory feeding in Siniperca. He, Li, and Lv et al. took a genomics approach to study innate feeding behavior in mandarin fish. They identify genes related to predatory feeding that underwent rapid adaptive evolution. They also functionally validate the role of bmp4-edar pathway in inducing predatory feeding in zebrafish.
== 实验室与学会 ==
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  • 水产品种创制与高效养殖全国重点实验室
  • 中国科学院藻类生物学重点实验室
  • 农业部淡水养殖病害防治重点实验室
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  • 湖北省海洋湖沼学会
  • 中国动物学会原生动物学分会
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  • 中国水产学会鱼病学专业委员会
  • 中国鱼类学会
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  • 国家斑马鱼资源中心
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  • 中国科学院水生生物研究所分析测试中心
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  • 水生生物博物馆
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