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Development of a rapid and efficient system for CR genes identification based on hairy root transformation in Brassicaceae
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作者 Wenlin Yu Lu Yang +12 位作者 yuanyuan xiang Rongde Li Xueqing Zhou Longcai Gan Xianyu xiang Yunyun Zhang Lei Yuan Yanqing Luo Genze Li Youning Wang Yinhua Chen Peng Chen Chunyu Zhang 《Horticultural Plant Journal》 SCIE CAS CSCD 2024年第4期1049-1060,共12页
Many economically important crops and vegetables belonging to the cruciferous family are heavily endangered by clubroot disease caused by Plasmodiophora brassicae infection.Breeding of clubroot resistant cultivars bas... Many economically important crops and vegetables belonging to the cruciferous family are heavily endangered by clubroot disease caused by Plasmodiophora brassicae infection.Breeding of clubroot resistant cultivars based on mapping and cloning of resistant genes is commonly regarded as the most cost-effective and efficient way to fight against this disease.The traditional way of R gene functional validation requires stable transformation that is both time-and labor-consuming.In this study,a rapid and efficient hairy-root transgenic protocol mediated by Agrobacterium rhizogenes was developed.The transformation positive rate was over 80%in Brassica napus showed by GUS reporter gene and this transformation only took 1/6 of the time compared with stable transformation.The system was applicable to different B.napus varieties and other cruciferous crops including Brassica rapa and Brassica oleracea.In particular,two known CR genes,CRA3.7.1 and CRA8.2.4 were used respectively,as example to show that the system works well for CR gene study combined with subsequent P.brassicae infection in B.napus.Most importantly,it works both in over-expression that led to disease resistance,as well as in RNAi which led to disease susceptible phenotype.Therefore,this system can be used in batch-wise identification of CR genes,and also offered the possibility of manipulating key genes within the P.brassicae genome that could improve our knowledge on host-pathogen interaction. 展开更多
关键词 Brassicaceae Agrobacterium rhizogenes Hairy root transformation CLUBROOT Gene function
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一氧化氮与肝缺血再灌注损伤相关性研究新进展
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作者 张亚奇 丁宁 +3 位作者 向圆圆 曾永芬 洪芬芳 杨树龙 《药物资讯》 2017年第5期101-107,共7页
肝缺血再灌注损伤(hepatic ischemia reperfusion injury, HIRI)时,体内NO、eNOS减少,iNOS增多。NO减少时,肝窦收缩微循环障碍;肝脏细胞水肿、坏死、凋亡;亚硝酸盐还原为NO增多。NO涉及HIRI的多个环节。损伤早期,eNOS激活产生NO有保护作... 肝缺血再灌注损伤(hepatic ischemia reperfusion injury, HIRI)时,体内NO、eNOS减少,iNOS增多。NO减少时,肝窦收缩微循环障碍;肝脏细胞水肿、坏死、凋亡;亚硝酸盐还原为NO增多。NO涉及HIRI的多个环节。损伤早期,eNOS激活产生NO有保护作用,但eNOS过度表达且其衍生NO生物利用度过高可加重肝损伤;而iNOS晚期因大量产生NO产生保护作用。缺血预处理、缺血后处理以及药物预处理则可通过增强eNOS、降低iNOS活性而增加血清NO并降低丙二醛含量,发挥肝脏围术期保护功能。本文综述了近年来NO与HIRI相关性新研究进展。 展开更多
关键词 肝脏 缺血再灌注损伤 一氧化氮 一氧化氮合酶
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