Echinochloa crus-galli genome analysis provides insight into its adaptation and invasiveness as a weed

Barnyardgrass is a problematic agricultural weed. Here, via genomic analysis, Guo et al. identify genes potentially underlying its success, including a gene cluster activated in response to co-cultivation with rice that leads to synthesis of the allelochemical DIMBOA.

Guardado en:
Detalles Bibliográficos
Autores principales: Longbiao Guo, Jie Qiu, Chuyu Ye, Gulei Jin, Lingfeng Mao, Haiqiang Zhang, Xuefang Yang, Qiong Peng, Yingying Wang, Lei Jia, Zhangxiang Lin, Gengmi Li, Fei Fu, Chen Liu, Li Chen, Enhui Shen, Weidi Wang, Qinjie Chu, Dongya Wu, Sanling Wu, Chenyang Xia, Yongfei Zhang, Xiaomao Zhou, Lifeng Wang, Lamei Wu, Weijie Song, Yunfei Wang, Qingyao Shu, Daisuke Aoki, Emi Yumoto, Takao Yokota, Koji Miyamoto, Kazunori Okada, Do-Soon Kim, Daguang Cai, Chulong Zhang, Yonggen Lou, Qian Qian, Hirofumi Yamaguchi, Hisakazu Yamane, Chui-Hua Kong, Michael P. Timko, Lianyang Bai, Longjiang Fan
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2017
Materias:
Q
Acceso en línea:https://doaj.org/article/2a27bed1b65c46d7b310fd958cae709d
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:2a27bed1b65c46d7b310fd958cae709d
record_format dspace
spelling oai:doaj.org-article:2a27bed1b65c46d7b310fd958cae709d2021-12-02T17:06:26ZEchinochloa crus-galli genome analysis provides insight into its adaptation and invasiveness as a weed10.1038/s41467-017-01067-52041-1723https://doaj.org/article/2a27bed1b65c46d7b310fd958cae709d2017-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-01067-5https://doaj.org/toc/2041-1723Barnyardgrass is a problematic agricultural weed. Here, via genomic analysis, Guo et al. identify genes potentially underlying its success, including a gene cluster activated in response to co-cultivation with rice that leads to synthesis of the allelochemical DIMBOA.Longbiao GuoJie QiuChuyu YeGulei JinLingfeng MaoHaiqiang ZhangXuefang YangQiong PengYingying WangLei JiaZhangxiang LinGengmi LiFei FuChen LiuLi ChenEnhui ShenWeidi WangQinjie ChuDongya WuSanling WuChenyang XiaYongfei ZhangXiaomao ZhouLifeng WangLamei WuWeijie SongYunfei WangQingyao ShuDaisuke AokiEmi YumotoTakao YokotaKoji MiyamotoKazunori OkadaDo-Soon KimDaguang CaiChulong ZhangYonggen LouQian QianHirofumi YamaguchiHisakazu YamaneChui-Hua KongMichael P. TimkoLianyang BaiLongjiang FanNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-10 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Longbiao Guo
Jie Qiu
Chuyu Ye
Gulei Jin
Lingfeng Mao
Haiqiang Zhang
Xuefang Yang
Qiong Peng
Yingying Wang
Lei Jia
Zhangxiang Lin
Gengmi Li
Fei Fu
Chen Liu
Li Chen
Enhui Shen
Weidi Wang
Qinjie Chu
Dongya Wu
Sanling Wu
Chenyang Xia
Yongfei Zhang
Xiaomao Zhou
Lifeng Wang
Lamei Wu
Weijie Song
Yunfei Wang
Qingyao Shu
Daisuke Aoki
Emi Yumoto
Takao Yokota
Koji Miyamoto
Kazunori Okada
Do-Soon Kim
Daguang Cai
Chulong Zhang
Yonggen Lou
Qian Qian
Hirofumi Yamaguchi
Hisakazu Yamane
Chui-Hua Kong
Michael P. Timko
Lianyang Bai
Longjiang Fan
Echinochloa crus-galli genome analysis provides insight into its adaptation and invasiveness as a weed
description Barnyardgrass is a problematic agricultural weed. Here, via genomic analysis, Guo et al. identify genes potentially underlying its success, including a gene cluster activated in response to co-cultivation with rice that leads to synthesis of the allelochemical DIMBOA.
format article
author Longbiao Guo
Jie Qiu
Chuyu Ye
Gulei Jin
Lingfeng Mao
Haiqiang Zhang
Xuefang Yang
Qiong Peng
Yingying Wang
Lei Jia
Zhangxiang Lin
Gengmi Li
Fei Fu
Chen Liu
Li Chen
Enhui Shen
Weidi Wang
Qinjie Chu
Dongya Wu
Sanling Wu
Chenyang Xia
Yongfei Zhang
Xiaomao Zhou
Lifeng Wang
Lamei Wu
Weijie Song
Yunfei Wang
Qingyao Shu
Daisuke Aoki
Emi Yumoto
Takao Yokota
Koji Miyamoto
Kazunori Okada
Do-Soon Kim
Daguang Cai
Chulong Zhang
Yonggen Lou
Qian Qian
Hirofumi Yamaguchi
Hisakazu Yamane
Chui-Hua Kong
Michael P. Timko
Lianyang Bai
Longjiang Fan
author_facet Longbiao Guo
Jie Qiu
Chuyu Ye
Gulei Jin
Lingfeng Mao
Haiqiang Zhang
Xuefang Yang
Qiong Peng
Yingying Wang
Lei Jia
Zhangxiang Lin
Gengmi Li
Fei Fu
Chen Liu
Li Chen
Enhui Shen
Weidi Wang
Qinjie Chu
Dongya Wu
Sanling Wu
Chenyang Xia
Yongfei Zhang
Xiaomao Zhou
Lifeng Wang
Lamei Wu
Weijie Song
Yunfei Wang
Qingyao Shu
Daisuke Aoki
Emi Yumoto
Takao Yokota
Koji Miyamoto
Kazunori Okada
Do-Soon Kim
Daguang Cai
Chulong Zhang
Yonggen Lou
Qian Qian
Hirofumi Yamaguchi
Hisakazu Yamane
Chui-Hua Kong
Michael P. Timko
Lianyang Bai
Longjiang Fan
author_sort Longbiao Guo
title Echinochloa crus-galli genome analysis provides insight into its adaptation and invasiveness as a weed
title_short Echinochloa crus-galli genome analysis provides insight into its adaptation and invasiveness as a weed
title_full Echinochloa crus-galli genome analysis provides insight into its adaptation and invasiveness as a weed
title_fullStr Echinochloa crus-galli genome analysis provides insight into its adaptation and invasiveness as a weed
title_full_unstemmed Echinochloa crus-galli genome analysis provides insight into its adaptation and invasiveness as a weed
title_sort echinochloa crus-galli genome analysis provides insight into its adaptation and invasiveness as a weed
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/2a27bed1b65c46d7b310fd958cae709d
work_keys_str_mv AT longbiaoguo echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT jieqiu echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT chuyuye echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT guleijin echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT lingfengmao echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT haiqiangzhang echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT xuefangyang echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT qiongpeng echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT yingyingwang echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT leijia echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT zhangxianglin echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT gengmili echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT feifu echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT chenliu echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT lichen echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT enhuishen echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT weidiwang echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT qinjiechu echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT dongyawu echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT sanlingwu echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT chenyangxia echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT yongfeizhang echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT xiaomaozhou echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT lifengwang echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT lameiwu echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT weijiesong echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT yunfeiwang echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT qingyaoshu echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT daisukeaoki echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT emiyumoto echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT takaoyokota echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT kojimiyamoto echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT kazunoriokada echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT dosoonkim echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT daguangcai echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT chulongzhang echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT yonggenlou echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT qianqian echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT hirofumiyamaguchi echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT hisakazuyamane echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT chuihuakong echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT michaelptimko echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT lianyangbai echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
AT longjiangfan echinochloacrusgalligenomeanalysisprovidesinsightintoitsadaptationandinvasivenessasaweed
_version_ 1718381603437150208