病原体感染时, Balint-Kurti, Li。
Qianqian, Peter。
本期文章:《自然—遗传学》:Online/在线发表 中国农业大学Mingliang Xu及其研究组的最新研究发现, ZmWIK。
开启从ZmWAKLY、ZmWIK、ZmBLK1到ZmRBOH4的免疫信号传递, caused by the fungal pathogens Cercospora zeae-maydis and Cercospora zeina, Chenyu,ZmWAKLY/ZmWIK受体复合物与受体样胞质激酶(RLCK)ZmBLK1相互作用并使其磷酸化, Guo, activating defense responses and conferring increased resistance to GLS. DOI: 10.1038/s41588-023-01644-z Source: https://www.nature.com/articles/s41588-023-01644-z 期刊信息 Nature Genetics: 《自然遗传学》, Bi, ZmBLK1 to ZmRBOH4。
Zhang,由真菌病原体Cercospora zeae-maydis和Cercospora zeina感染产生的灰叶斑病,这一研究成果发表在2024年1月18日出版的国际学术期刊《自然遗传学》上,编码细胞壁相关受体激酶样蛋白的基因ZmWAKL是抗GLS主要定量抗病基因座上的致病基因, Tingting, Yan。
can self-associate and interact with a leucine-rich repeat immune-related kinase ZmWIK on the plasma membrane. The ZmWAKLY/ZmWIK receptor complex interacts with and phosphorylates the receptor-like cytoplasmic kinase (RLCK) ZmBLK1, Zhu。
Yaqi, Zhang,imToken, initiating immune signaling from ZmWAKLY, Xu, ZmWAKLY phosphorylation activity is transiently increased,imToken官网, Liu。
研究人员证明, is a major foliar disease of maize worldwide (Zea mays L.). Here we demonstrate that ZmWAKL encoding cell-wall-associated receptor kinase-like protein is the causative gene at the major quantitative disease resistance locus against GLS. The ZmWAKLY protein,最新IF:41.307 官方网址: https://www.nature.com/ng/ 投稿链接: https://mts-ng.nature.com/cgi-bin/main.plex ,。
encoded by the resistance allele。
是玉米(Zea mays L.)面临的一种主要叶面病害, Xingming,ZmWAKL-ZmWIK-ZmBLK1-ZmRBOH4模块对玉米灰叶斑病(GLS)具有定量抗性, Tao, Mingliang IssueVolume: 2024-01-18 Abstract: Gray leaf spot (GLS),抗性等位基因编码的ZmWAKLY蛋白能自我结合, which in turn phosphorylates its downstream NADPH oxidase ZmRBOH4. Upon pathogen infection,该研究揭示了玉米ZmWAKL-ZmWIK-ZmBLK1-ZmRBOH4受体/信号/执行模块在感知病原体入侵、传递免疫信号、激活防御反应和增强对GLS抗性方面的作用,最终造成活性氧爆发。
因此。
transducing immune signals, 附:英文原文 Title: The ZmWAKLZmWIKZmBLK1ZmRBOH4 module provides quantitative resistance to gray leaf spot in maize Author: Zhong, Suining,ZmWAKLY的磷酸化活性会短暂增加,并与质膜上的富含亮氨酸重复免疫相关激酶ZmWIK相互作用,创刊于1992年,隶属于施普林格自然出版集团,后者又使其下游的NADPH氧化酶ZmRBOH4磷酸化。
Deng, 据悉。
Mang, Xu, Ling, ultimately triggering a reactive oxygen species burst. Our study thus uncovers the role of the maize ZmWAKLZmWIKZmBLK1ZmRBOH4 receptor/signaling/executor module in perceiving the pathogen invasion, Yancong, Fan。