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水稻双链RNA结合蛋白同源基因OsRBP的克隆及其表达的分析 被引量:17
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作者 唐向荣 吴昊 +2 位作者 贾明 余旭红 何玉科 《植物生理与分子生物学学报》 CAS CSCD 2002年第1期41-45,共5页
在基因数据库中发现两个水稻EST片段与大白菜BcpLH基因的双链RNA结合结构域 (dsRBD)有同源的区域 ,根据同源片段的位置特征设计引物 ,用RT-RCR扩增粳稻 (Oryzasativasubsp .japonica)愈伤组织的cDNA ,得到大小为 1.8kb的DNA片段。该cDN... 在基因数据库中发现两个水稻EST片段与大白菜BcpLH基因的双链RNA结合结构域 (dsRBD)有同源的区域 ,根据同源片段的位置特征设计引物 ,用RT-RCR扩增粳稻 (Oryzasativasubsp .japonica)愈伤组织的cDNA ,得到大小为 1.8kb的DNA片段。该cDNA片段含完整的编码区 ,有两个典型的dsRBD ,分别与BcpLH的dsRBD在氨基酸水平上同源性为 75 %左右 ,故将其命名为OsRBP。RT -PCR表达分析显示该基因在未成熟的种子和愈伤组织中表达 ,在根、茎、叶、穗、成熟种子及胚芽鞘中没有表达信号 ,由此推测该基因的表达可能与种子和胚的早期发育相关。该研究首次从水稻中分离到双链RNA结合蛋白基因 ,并初步研究了其表达方式 。 展开更多
关键词 水稻 双链RNA结合蛋白 RT-PCR osrbp 基因克隆 基因表达
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Alternative splicing of OsNPR3 promoted by the bacterial TAL effectors-targeted splicing regulator OsRBP11 antagonizes OsNPR1 function and enhances disease susceptibility in rice
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作者 Xiaochen Chen Xiaohui Yao +35 位作者 Fang Yan Shaofang Li Zuo-Dong Wang Fu-You Yin Miao Zhou Zhen Wang Lina Qin Baoguo Zhao Kai Lu Liyuan Zhang Xiaoxu Li Xiuyan Mu Yu Zhang Teng Lu Jin-Biao Ma Yi-Kun Zhao Dewen Lin Maoling Wang Qizhen Li Shuo Qi Juying Long Bixin Bai Jing-Yu Ma Yanzhi Liu Yaping Feng Xue-Bao Yang Jianhua Zhang Yuheng Xu Lei Chen Shenshen Zou Xinhua Ding Mei-Xiang Zhang Dong-Lei Yang Zaiquan Cheng Huanbin Zhou Hansong Dong 《Molecular Plant》 2025年第9期1505-1525,共21页
Plant proteins that belong to the nonexpressor of pathogenesis-related(NPR)gene family are paralogous receptors ofthe plantdefense hormone salicylic acidandessential regulators of hormone-dependent plant immunity agai... Plant proteins that belong to the nonexpressor of pathogenesis-related(NPR)gene family are paralogous receptors ofthe plantdefense hormone salicylic acidandessential regulators of hormone-dependent plant immunity against diseases caused by various pathogens.Previous studies have established NPR1 and NPR3 as a transcriptional activator and a transcriptional repressor,respectively,of defense-gene expres-sion to promote and inhibit broad-spectrum resistance against different strains of pathogens.However,the regulatory mechanism that underlies the opposing roles of NPR1 and NPR3 in defense-gene activation re-mains unclear.Here,we report that a rice transcript splicing factor,Oryza sativa RNA-binding protein 11(OsRBP11),promotes alternative splicing of OsNPR3 to modulate the defense function of OsNPR1 in rice plants infected by Xanthomonas oryzae pathovars,which are important bacterial pathogens of rice.We discovered that 11 transcription activator-like effectors identified in representative bacterial strains acti-vate OsRBP11 expression.The OsRBP11 protein,in turn,facilitates alternative splicing of the OsNPR3 mRNA precursor,leading to the production of truncated OsNPR3 protein variants.The OsNPR3 variants exacerbate bacterial diseases by sequestering OsNPR1 from defense-gene activation.By contrast,both artificial andnatural variations inOsRBP11preventthe alternative splicing of OsNPR3,restore thedefense function of OsNPR1,and enhance rice resistance to different bacterial strains.These findings not only reveal a novel regulatory pathway exploited by bacterial pathogens to facilitate their pathogenicity and subvert plant defense but also provide a genetic basis for biotechnological strategies aimed at developing broad-spectrum resistance in crops. 展开更多
关键词 transcription activator-like effectors osrbp11 OsNPR3 alternative splicing OsNPR1 DEFENSE
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Pathogens hijack alternative splicing to rewire plant immunity:OsRBP11/OsNPR3 uncovered as a new vulnerability in rice
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作者 Yufeng Xu Mian Zhou 《Molecular Plant》 2025年第11期1811-1813,共3页
In the intricate molecular warfare between plants and pathogens,bacteria deploy sophisticated strategies to subvert host defenses.Xanthomonas oryzae pathogens,which cause devastating bacterial blight(BB)and bacterial ... In the intricate molecular warfare between plants and pathogens,bacteria deploy sophisticated strategies to subvert host defenses.Xanthomonas oryzae pathogens,which cause devastating bacterial blight(BB)and bacterial leaf streak(BLS)in rice,utilize transcription activator-like effectors(TALEs)to manipulate host gene expression. 展开更多
关键词 manipulate host gene expression PATHOGENS subvert host defensesxanthomonas oryzae molecular warfare osrbp bacterial leaf streak bls alternative splicing bacterial blight bb
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