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

Longbiao Guo(Chinese Academy of Agricultural Sciences), Jie Qiu(Zhejiang University), Chuyu Ye(Zhejiang University), Gulei Jin, Lingfeng Mao(Zhejiang University), Haiqiang Zhang(Zhejiang University), Xuefang Yang(China Agricultural University), Qiong Peng(Hunan Academy of Agricultural Sciences), Yingying Wang(Zhejiang Yongning Pharma (China)), Lei Jia(Zhejiang University), Zhangxiang Lin(Zhejiang University), Gengmi Li(Chinese Academy of Agricultural Sciences), Fei Fu(Zhejiang University), Chen Liu(Zhejiang University), Li Chen(Zhejiang University), Enhui Shen(Zhejiang University), Weidi Wang(Zhejiang University), Qinjie Chu(Zhejiang University), Dongya Wu(Zhejiang University), Sanling Wu(Zhejiang University), Chenyang Xia(China National Rice Research Institute), Yongfei Zhang(Hunan Academy of Agricultural Sciences), Xiaomao Zhou(Hunan Academy of Agricultural Sciences), Lifeng Wang(Hunan Academy of Agricultural Sciences), Lamei Wu(Hunan Academy of Agricultural Sciences), Weijie Song, Yunfei Wang(Zhejiang Yongning Pharma (China)), Qingyao Shu(Zhejiang University), Daisuke Aoki(Fukui Prefectural University), Emi Yumoto(Teikyo University), Takao Yokota(Teikyo University), Koji Miyamoto(Teikyo University), Kazunori Okada(The University of Tokyo), Do‐Soon Kim(Seoul National University), Daguang Cai(Christian-Albrechts-Universität zu Kiel), Chu‐Long Zhang(China National Rice Research Institute), Yonggen Lou(China National Rice Research Institute), Qian Qian(Chinese Academy of Agricultural Sciences), Hirofumi Yamaguchi(Tokyo University of Agriculture), Hisakazu Yamane(Teikyo University), Chui‐Hua Kong(China Agricultural University), Michael P. Timko(University of Virginia), Lianyang Bai(Hunan University), Longjiang Fan(Zhejiang University)
Nature Communications
October 12, 2017
Cited by 262Open Access
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Abstract

Barnyardgrass (Echinochloa crus-galli) is a pernicious weed in agricultural fields worldwide. The molecular mechanisms underlying its success in the absence of human intervention are presently unknown. Here we report a draft genome sequence of the hexaploid species E. crus-galli, i.e., a 1.27 Gb assembly representing 90.7% of the predicted genome size. An extremely large repertoire of genes encoding cytochrome P450 monooxygenases and glutathione S-transferases associated with detoxification are found. Two gene clusters involved in the biosynthesis of an allelochemical 2,4-dihydroxy-7-methoxy-1,4-benzoxazin-3-one (DIMBOA) and a phytoalexin momilactone A are found in the E. crus-galli genome, respectively. The allelochemical DIMBOA gene cluster is activated in response to co-cultivation with rice, while the phytoalexin momilactone A gene cluster specifically to infection by pathogenic Pyricularia oryzae. Our results provide a new understanding of the molecular mechanisms underlying the extreme adaptation of the weed.


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