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Transcriptional analysis and histochemistry reveal that hypersensitive cell death and H2O2 have crucial roles in the resistance of tea plant (Camellia sinensis (L.) O. Kuntze) to anthracnose 被引量:15
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作者 Yuchun Wang Xinyuan Hao +6 位作者 qinhua lu lu Wang Wenjun Qian Nana Li Changqing Ding Xinchao Wang Yajun Yang 《Horticulture Research》 SCIE 2018年第1期724-736,共13页
Anthracnose causes severe losses of tea production in China.Although genes and biological processes involved in anthracnose resistance have been reported in other plants,the molecular response to anthracnose in tea pl... Anthracnose causes severe losses of tea production in China.Although genes and biological processes involved in anthracnose resistance have been reported in other plants,the molecular response to anthracnose in tea plant is unknown.We used the susceptible tea cultivar Longjing 43 and the resistant cultivar Zhongcha 108 as materials and compared transcriptome changes in the leaves of both cultivars following Colletotrichum fructicola inoculation.In all,9015 and 8624 genes were differentially expressed between the resistant and susceptible cultivars and their controls(0 h),respectively.In both cultivars,the differentially expressed genes(DEGs)were enriched in 215 pathways,including responses to sugar metabolism,phytohormones,reactive oxygen species(ROS),biotic stimuli and signalling,transmembrane transporter activity,protease activity and signalling receptor activity,but DEG expression levels were higher in Zhongcha 108 than in Longjing 43.Moreover,functional enrichment analysis of the DEGs showed that hydrogen peroxide(H2O2)metabolism,cell death,secondary metabolism,and carbohydrate metabolism are involved in the defence of Zhongcha 108,and 88 key genes were identified.Protein–protein interaction(PPI)network demonstrated that putative mitogen-activated protein kinase(MAPK)cascades are activated by resistance(R)genes and mediate downstream defence responses.Histochemical analysis subsequently validated the strong hypersensitive response(HR)and H2O2 accumulation that occurred around the hyphal infection sites in Zhongcha 108.Overall,our results indicate that the HR and H2O2 are critical mechanisms in tea plant defence against anthracnose and may be activated by R genes via MAPK cascades. 展开更多
关键词 metabolism RESISTANCE analysis
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基于分层安全控制结构的导弹装备任务安全性动态评价方法
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作者 姚博清 陈嘉宇 +3 位作者 谷长超 陆钦华 王旭航 葛红娟 《航空学报》 EI CAS CSCD 北大核心 2024年第6期278-297,共20页
长期贮存的多任务环境与复杂工况,对导弹装备的风险有效抑制与安全性准确评价提出了严格的要求。然而,导弹装备是典型的人-机-环耦合复杂系统,传统的安全性分析与评价方法无法满足其动态变化与准确量化的需求。为此,提出基于分层安全控... 长期贮存的多任务环境与复杂工况,对导弹装备的风险有效抑制与安全性准确评价提出了严格的要求。然而,导弹装备是典型的人-机-环耦合复杂系统,传统的安全性分析与评价方法无法满足其动态变化与准确量化的需求。为此,提出基于分层安全控制结构的导弹装备安全性动态评价方法,实现长期贮存任务情境下安全性的准确评价。首先,针对导弹装备的任务剖面特点,构建过程、任务、功能、信息和组织的多视图体系模型,实现任务过程与资源的准确描述。其次,构建分层安全控制结构模型,明确任务的事故致因因素与事故链。同时,针对导弹装备任务特点,构建面向长期贮存复杂多变环境下的人因绩效评价体系,实现人-机-环耦合条件下人因失误率的准确评价。然后,提出了一种融合STAMP和CREAM的安全动态反馈评价方法,以仿真的形式获得导弹任务的事故率。最后,对导弹测试任务进行案例分析,所提方法在人-机-环耦合情境下明确协调、控制和反馈共3类6个典型事故链,同时事故率精度提升70.08%,验证了所提方法的有效性与优越性。 展开更多
关键词 长期贮存 人-机-环耦合 动态变化 准确量化 人因绩效评价体系
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