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Role of ethylene and proteolytic N-degron pathway in the regulation of Arabidopsis seed dormancy 被引量:1
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作者 Xu Wang Malaika Maraya Gomes +2 位作者 Christophe Bailly Eiji Nambara Francoise Corbineau 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2021年第12期2110-2122,共13页
Primary dormant seeds of Arabidopsis thaliana did not germinate in darkness at temperature higher than 10–15℃.Ethylene improved the germination of dormant wild-type(Col-0)seeds at 25℃ in darkness but seeds of the m... Primary dormant seeds of Arabidopsis thaliana did not germinate in darkness at temperature higher than 10–15℃.Ethylene improved the germination of dormant wild-type(Col-0)seeds at 25℃ in darkness but seeds of the mutant affected in the proteolytic N-degronpathway,proteolysis6(prt6),were insensitive to ethylene suggesting that PRT6 was involved in dormancy release by ethylene.The substrates of the N-degron pathway,the Ethylene Response Factors from group VII(HRE1,HRE2,RAP2.2,RAP2.3,and RAP2.12),were identified to be involved in this insensitivity with an increased germination in prt6 rap2.2 rap2.3 rap2.12 rather than in prt6 hre1 hre2,which also indicated that the three RAPs acted downstream of PRT6,while the two HREs acted upstream of PRT6.Ethylene reduced the expression of the three RAPs in Col-0 seeds but they were maintained or induced by ethylene in prt6 seeds.The promoting effect of ethylene was associated with a down-regulation of dormancy-related genes in gibberellins(GAs)and abscisic acid(ABA)signaling,such as RGA,RGL2,and ABI5,and with a strong decrease in ABA/GA4 ratio in the presence of ethylene.In contrast,we show that the insensitivity of prt6 seeds to ethylene was mainly related to GA signaling disturbance. 展开更多
关键词 abscisic acid/gibberellin Arabidopsis thaliana L DORMANCY ethylene Response Factors ethylene germination N-degron pathway proteolysis6
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甘蓝型油菜BnTLP1基因的菌核病抗性研究 被引量:4
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作者 石美娟 左蓉 +9 位作者 刘杰 赵传纪 董志雪 何贻洲 李艳 李祥 童超波 黄邦全 白泽涛 刘胜毅 《中国油料作物学报》 CAS CSCD 北大核心 2021年第5期752-761,共10页
前期发现甘蓝型油菜类甜蛋白基因BnTLP1在菌核病抗性品种中的表达丰度高,为探究和解析其作用机制,通过叶片接种核盘菌,对拟南芥BnTLP1过表达转基因株系、野生型对照和突变体tlp1-1之间的抗菌核病效果进行分析。结果表明:过表达BnTLP1拟... 前期发现甘蓝型油菜类甜蛋白基因BnTLP1在菌核病抗性品种中的表达丰度高,为探究和解析其作用机制,通过叶片接种核盘菌,对拟南芥BnTLP1过表达转基因株系、野生型对照和突变体tlp1-1之间的抗菌核病效果进行分析。结果表明:过表达BnTLP1拟南芥的病斑面积显著小于野生型对照,而tlp1-1病斑扩展大于对照,即BnTLP1正调控菌核病抗性。亚细胞定位表明BnTLP1定位于细胞膜和细胞核,暗示其不仅在细胞膜发挥抑菌功能,而且在核内行使其它功能。不同防御反应信号通路的标志基因表达分析表明,茉莉酸/乙烯途径可能在早期参与了BnTLP1介导的菌核病抗性。 展开更多
关键词 甘蓝型油菜 BnTLP1基因 核盘菌 转基因拟南芥 亚细胞定位 茉莉酸/乙烯途径
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