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11篇 您的检索式:作者名="Mawsheng Chern"
    题名 作者 年代 出处 被引量
1OsWRKY62 is a Negative Regulator of Basal and Xa21-Mediated Defense against Xanthomonas orvzae pv. orvzae in Rice显示文摘Ying Peng Laura E. Bartley Xuewei Chen Christopher Dardick Mawsheng Chern Randy Ruan Patrick E. Canlas Pamela C. Ronald 2008Molecular Plant2008,1,3:39
2An XA21-Associated Kinase (OsSERK2) Regulates Immunity Mediated by the XA21 and XA3 Immune Receptors显示文摘米饭 XA21 有免疫力的受体 kinase 和在结构上联系了 XA3 受体授与免疫到 Xanthomonas oryzae pv。oryzae (Xoo ) ,细菌的叶老家的原因的代理人。这里,我们报导 OsSERK2 的隔离(米饭体的 embryogenesis receptorkinase 2 ) 并且证明 OsSERK2 断然调整免疫由 XA21 和 XA3 以及米饭免疫者 receptorFLS2 (OsFLS2 ) 调停了。为 OsSerk2 显示的瑞斯植物 silenced 改变了形态学并且把敏感归结为荷尔蒙 brassinolide。OsSERK2 在酵母与每有免疫力的受体的 intracellulardomains 交往以一种 kinase 活动依赖者方式的二混血儿的系统。OsSERK2 在 vitro 与 XA21 经历 bidirectionaltransphosphorylation 并且在 vivo 与 XA21 形成组成的建筑群。这些结果在三米饭免疫者受体的功能为 OsSERK2 表明一个必要角色并且建议和米饭免疫者受体的 thatdirect 相互作用为他们的功能是批评的。一起拿,我们的调查结果建议米饭 XA21, XA3,和 FLS2 的反省 OsSERK2 的规定的 thatthe 机制不同于 AtSERK3/BAK1-mediated regulationof Arabidopsis FLS2 和 EFR.Key 词的:Xuewei Chena Shimin Zuo Benjamin Schwessinger Mawsheng Chern Patrick E. Canlas Deling Ruan Xiaogang Zhou Jing Wang Arsalan Daudi Christopher J. Petzold Joshua L. Heazlewood Pamela C. Ronald 2014Molecular Plant2014,7,5:17
3Identification and characterization of rice blast resistance gene Pid4 by a combination of transcriptomic profiling and genome analysis显示文摘Map-based cloning of plant disease resistance (R) genes is time-consuming. Here, we reported the isolation of blast R gene Pid4 using comparative transcriptomic profiling and genome-wide sequence analysis. Pid4 encodes a coiled-coil nucleotide-binding site leucine-rich repeat(CC-NBS-LRR) protein and is constitutively expressed at diverse developmental stages in the rice variety Digu. The Pid4 protein is localized in both the nucleus and cytoplasm. Introduction of Pid4 into susceptible rice cultivars confers race-specific resistance to leaf and neck blast. Amino acid sequence comparison and blast resistance spectrum tests showed that Pid4 is a novel R gene, different from the previously reported R genes located in the same gene cluster. A Pid4 Indel marker was developed to facilitate the identification of Pid4 in different rice varieties. We demonstrated that a plant R gene can be quickly isolated using transcriptomic profiling coupled with genome-wide sequence analysis.Zhixiong Chen Wen Zhao Xiaobo Zhu Chengdong Zou Junjie Yin Mawsheng Chern Xiaogang Zhou Heng Ying Xin Jiang Yongzhen Li Haicheng Liao Mengping Cheng Weitao Li Min He Jing Wang Jichun Wang Bingtian Ma Jirui Wang Shigui Li Lihuang Zhu Xuewei Chen 2018Journal of Genetics and Genomics2018,45,12:7
4Deciphering Rice Lesion Mimic Mutants to Understand Molecular Network Governing Plant Immunity and Growth显示文摘Plant lesion mimic mutants(lmms)generally possess autoimmunity and hypersensitive response(HR)-like cell death in the absence of biotic or abiotic stress.They have attracted much attention because they are useful tools for deciphering the interaction between defense signaling and growth.Recent studies have identified more than 30 lmms involved in the plant immune response and cell death in rice.Genes underlying these lmms,coding for diverse types of proteins,mainly regulate transcription,protein translation and modification,vesicular trafficking and catalyzation of metabolism.Here,we presented an overview of the most recent advances on the study of lmms in rice and proposed a perspective on potential utilization of LMM genes in agriculture.ZHU Xiaobo ZE Mu CHERN Mawsheng CHEN Xuewei WANG Jing 2020Rice science2020,27,4:7
5Strong Suppression of Systemic Acquired Resistance in Arabidopsis by NRR is Dependent on its Ability to Interact with NPRland its Putative Repression Domain显示文摘Mawsheng Chern Patrick E. Canlas Pamela C. Ronald 2008Molecular Plant2008,1,3:2
6Structural dynamics of a plant NLR resistosome:transition from autoinhibition to activation显示文摘Despite the lack of a cellular,adaptive immune system,plants share with animals an innate immune system and can effectively fight off pathogen attack using two layers of defense response:the first layer consists of plasma membrane-localized pattern recognition receptors(PRRs)that recognize pathogen-associated molecular patterns(PAMPs)and can mount a pattern-triggered immunity(PTI);the second layer comprises cytoplasmic nucleotide-binding,leucine-rich repeats receptors(NLRs)that recognize pathogensecreted effectors and mount an effector-triggered immunity(ETI)(Shamrai,2014).Plants contain hundreds of NLR genes constituting one of the largest families of genes.Because plant NLR genes can mount the strongest immune response,often including a hypersensitive response,upon recognition of its cognate effector,they were initially characterized as resistance(R)genes and conform to the genefor-gene hypothesis postulated in 1955(Hh,1955;McHale et al.,2006).The plant NLR-mediated ETI response is thus comparable to the animal inflammatory response.Jing Wang Mawsheng Chern Xuewei Chen 2020Science China(Life Sciences)2020,63,4:1
7Inactivation of OslRX10 Leads to Decreased Xylan Content in Rice Culm Cell Walls and Improved Biomass Saccharification显示文摘Dear Editor, Xylan polysaccharides constitute the major non-cellulosic components in secondary cell walls of dicots and in both primary and secondary cell walls of grasses (Scheller and Ulvskov,2010).Xylan is composed of a linear backbone of 13(1-4)-linked xylose (Xyl).In grasses,the xylan backbone is substituted with O3-1inked and O2-1inked arabinose residues and,to a lesser extent,α(1-3)-Iinked glucuronic acid residues.A unique feature of grass xylans is the presence of hydroxycinnamate esters (ferulic and p-coumaric acid residues)attached to C5 of some of the arabinosyl residues (Carpita,1996;Vogel,2008;Scheller and Ulvskov,2010).Xylan contributes to the recalcitrance of plant cell walls to enzymatic degradation probably through direct interaction with cellulose microfibrils and also through formation of ferulate cross-links (liyama et al.,1994;Yin et al.,2011).Xuewei Chen Miguel E. Vega-Sanchez Yves Verhertbruggenb Dawn Chiniquy Patrick E. Canlas Alexandra Fagerstrom Lina Prak Ulla Christensen Ai Oikawa Mawsheng Chern Shimin Zuo Fan Lin Manfred Auer William G.T. Willats Laura Bartley Jesper Harholt Henrik V. Scheller Pamela C. Ronald 2013Molecular Plant2013,6,2:1
8双分子荧光互补试验研究水稻NH1家族蛋白之间相互作用显示文摘NPR1(Non-expresser of pathogenesis related genes 1)是水杨酸(Salicilic acid,SA)介导的系统获得抗性(Sys-temic aquired resistance,SAR)的关键调控因子,在水稻中过量表达拟南芥NPR1和水稻NH1/OsNPR1(NPR1 homo-logue 1)(NPR1的同源物)可增强抗病性。水稻基因组中还有4个NPR1旁系同源物(Paralog),为NH1的家族蛋白。本试验利用双分子荧光互补技术(Bimolecular Fluorescence Complementation,BiFC,or split YFP)研究了水稻NH1家族蛋白之间在活体内的相互作用,发现除NH2外,NH1、NH3、NH4和NH5都会和自身的蛋白互作,产生荧光信号,并且它们还会和家族成员的其他蛋白相互结合产生荧光信号。白薇 孙海莲 Mawsheng Chern Randy Ruan Pam Ronald 樊明寿 2011华北农学报2011,26,2:1
9Genome-Wide Sequencing of 41 Rice (Oryza sativa L.) Mutated Lines Reveals Diverse Mutations Induced by Fast-Neutron Irradiation显示文摘Li, Guotian Chern, Mawsheng Jain, Rashmi Martin, Joel A. Schackwitz, Wendy S. Jiang, Liangrong Vega-Sanchez, Miguel E. Lipzen, Anna M. Barry, Kerrie W. Schmutz, Jeremy Ronald, Pamela C. 2016Molecular Plant2016,9,7:1
10Paladin, a tyrosine phosphatase-like protein, is required for XA21-mediated immunity in rice显示文摘XA21 encodes a rice immune receptor that confers robust resistance to most strains of the Gram-negative bacterium Xanthomonas oryzae pv.oryzae(Xoo).XA21-mediated immunity is triggered by recognition of a small protein called RaxX-sY(required for activation of XA21-mediated immunity X,tyrosine-sulfated)secreted by Xoo.To identify components regulating XA21-mediated immunity,we generated and screened a mutant population of fast-neutron-mutagenized rice expressing Ubi:Myc-XA21 for those susceptible to Xoo.Here,we report the characterization of one of these rice mutants,named sxi2(suppressor of XA21-mediated immunity-2).Whole-genome sequencing revealed that sxi2 carries a deletion of the PALADIN(PALD)gene encoding a protein with three putative protein tyrosine phosphatase-like domains(PTP-A,-B,and-C).Expression of PALD in the sxi2 genetic background was sufficient to complement the susceptible phenotype,which requires the catalytic cysteine of the PTP-A active site to restore resistance.PALD coimmunoprecipitated with the full-length XA21 protein,whose levels are positively regulated by the presence of the PALD transgene.Furthermore,we foundd that sxi2 retains many hallmarks of XA21-mediated immunity,similar to the wild type.These results reveal that PALD,a previously uncharacterized class of phosphatase,functions in rice innate immunity,and suggest that the conserved cysteine in the PTP-A domain of PALD is required for its immune function.Tsung-Chi Chen Mawsheng Chern Michael Steinwand Deling Ruan Yu Wang Arkin Isharani Pamela Ronald 2021Plant Communications2021,2,4:0
11一个转录因子的天然变异赋予水稻对稻瘟病的广谱抗性显示文摘文章简介水稻是人类重要的粮食作物,有着"水稻癌症"的稻瘟病,常年肆虐各个稻区,引起水稻大幅度减产甚至绝收,是全球粮食安全的重大隐患。一直以来,发掘和利用稻瘟病持久广谱抗性的水稻资源是水稻抗稻瘟病育种的重点和难点。李伟滔 朱紫薇 Mawsheng Chern 尹俊杰 杨超 冉莉 Mengping Cheng Min He Kang Wang Jing Wang Xiaogang Zhou Xiaobo Zhu Zhixiong Chen Jichun Wang Wen Zhao Bingtian Ma Peng Qin Weilan Chen Yuping Wang Jiali Liu Wenming Wang Xianjun Wu Ping Li Jirui Wang Lihuang Zhu Shigui Li 陈学伟 2018科学新闻2018,0,4:0
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