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Identif ication of a hypersensitive response core peptide of HrpZ and its role in increasing grape downy mildew resistance
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作者 Zongbao Fan Xueqiang Guan +4 位作者 zhichang zhang Yushuai Sun Fei Wang Huiru Chi Yuxin Yao 《Horticultural Plant Journal》 SCIE CAS CSCD 2024年第5期1112-1120,共9页
Harpins play a key role in inducing disease resistance in crops,and identifying their core functional regions and establishing a system for their efficient expression would be very valuable.In this study,large amounts... Harpins play a key role in inducing disease resistance in crops,and identifying their core functional regions and establishing a system for their efficient expression would be very valuable.In this study,large amounts of soluble fusion proteins of harpin HrpZ and its subpeptides were obtained via the optimized induction conditions(28℃ with 0.5 mmol·L^(-1) IPTG for 6 h)in Escherichia coli BL21(DE3).Hypersensitive response(HR)assays demonstrated that the C-terminal 66 aa of HrpZ(HrpZ_C_2_2)elicited a strong HR in tobacco(Nicotiana benthamiana)and grape(Flame Seedless)leaves.Additionally,treatment with HrpZ,and particularly HrpZ_C_2_2,significantly reduced the disease incidence and severity index of field vine leaves and those inoculated with downy mildew.The determination of the physiological parameters indicated that HrpZ,and especially HrpZ_C_2_2,improved the photosynthesis-and chlorophyll fluorescence-related parameters,enhanced the activity of defense-related enzymes,including SOD,POD,CAT and PAL,and increased the H_(2)O_(2) level.Collectively,we efficiently expressed a core peptide of HrpZ and elucidated its strong ability to elicit a HR and resistance to downy mildew.This research provides insight into understanding the structure and function of HrpZ and will advance the application of HrpZ_C_2_2 to increase the resistance of grapevine to downy mildew. 展开更多
关键词 GRAPEVINE Harpin HrpZ Prokaryotic expression Downy mildew Hypersensitive response
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选区激光熔化对GCr15高碳钢成形性能的研 被引量:3
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作者 刘世锋 李云哲 +3 位作者 张智昶 张光曦 杨鑫 王岩 《激光与光电子学进展》 CSCD 北大核心 2020年第21期187-194,共8页
以等离子旋转电极制备的GCr15高碳钢粉末为实验原料,采用选区激光熔化(SLM)制备GCr15高碳轴承钢。研究了SLM成形过程中激光功率、扫描速度、体能量密度对GCr15成形性能的影响和成形后的组织转变。实验结果表明,在参数可调节的范围内,激... 以等离子旋转电极制备的GCr15高碳钢粉末为实验原料,采用选区激光熔化(SLM)制备GCr15高碳轴承钢。研究了SLM成形过程中激光功率、扫描速度、体能量密度对GCr15成形性能的影响和成形后的组织转变。实验结果表明,在参数可调节的范围内,激光功率、扫描速度、体能量密度与相对密度呈线性关系。从能量密度曲线可以看出,功率对相对密度的影响大于扫描速度;在低功率情况下,会出现功率与相对密度关系失真;同时,选区激光熔化制备GCr15轴承钢的组织细小、均匀,主要为粗针状的马氏体和残余奥氏体,随着能量密度的增加,残余奥氏体的含量有所增加。 展开更多
关键词 激光光学 选区激光熔化 GCR15 成形性能 微观组织
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