Pyropia yezoensis genome reveals diverse mechanisms of carbon acquisition in the intertidal environment

文献类型: 外文期刊

第一作者: Wang, Dongmei

作者: Wang, Dongmei;Yu, Xinzi;Xu, Kuipeng;Bi, Guiqi;Cao, Min;Sun, Peipei;Liu, Yang;Kong, Fanna;Du, Guoying;Tang, Xianghai;Wang, Junhao;Tang, Lei;Wang, Lu;Zhao, Yingjun;Ge, Yuan;Chen, Yu;Gao, Tian;Guan, Xiaowei;Chen, Rui;Qu, Weihua;Sun, Bin;Mao, Yunxiang;Wang, Dongmei;Yu, Xinzi;Xu, Kuipeng;Bi, Guiqi;Cao, Min;Sun, Peipei;Liu, Yang;Kong, Fanna;Du, Guoying;Tang, Xianghai;Wang, Junhao;Tang, Lei;Wang, Lu;Zhao, Yingjun;Ge, Yuan;Chen, Yu;Gao, Tian;Guan, Xiaowei;Chen, Rui;Qu, Weihua;Sun, Bin;Zelzion, Ehud;Bhattacharya, Debashish;Fu, Chunxiang;Yang, Ruijuan;Zhuang, Yunyun;Mo, Zhaolan;Mao, Yunxiang;Mao, Yunxiang

作者机构:

期刊名称:NATURE COMMUNICATIONS ( 影响因子:14.919; 五年影响因子:15.805 )

ISSN: 2041-1723

年卷期: 2020 年 11 卷 1 期

页码:

收录情况: SCI

摘要: Changes in atmospheric CO2 concentration have played a central role in algal and plant adaptation and evolution. The commercially important red algal genus, Pyropia (Bangiales) appears to have responded to inorganic carbon (C-i) availability by evolving alternating heteromorphic generations that occupy distinct habitats. The leafy gametophyte inhabits the intertidal zone that undergoes frequent emersion, whereas the sporophyte conchocelis bores into mollusk shells. Here, we analyze a high-quality genome assembly of Pyropia yezoensis to elucidate the interplay between C-i availability and life cycle evolution. We find horizontal gene transfers from bacteria and expansion of gene families (e.g. carbonic anhydrase, anti-oxidative related genes), many of which show gametophyte-specific expression or significant up-regulation in gametophyte in response to dehydration. In conchocelis, the release of HCO3- from shell promoted by carbonic anhydrase provides a source of C-i. This hypothesis is supported by the incorporation of C-13 isotope by conchocelis when co-cultured with C-13-labeled CaCO3. The nori producing seaweed Pyropia yezoensis has heteromorphic generations that occupy distinct habitats. Here, via genome assembly, transcriptome analysis, and 13C isotope labeling, the authors show the interplay between inorganic carbon availability and life cycle evolution in the intertidal environment.

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