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基于增强型微处理器的燃气检测自保护系统设计与实现
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作者 许杰 朱晓虎 +1 位作者 杨佳武 宋志强 《传感器技术与应用》 2023年第5期400-406,共7页
燃气安全无小事,一旦使用不妥就会发生火灾、爆炸和令人窒息的严重安全事故。为实现燃气的安全、高效使用,本文设计并实现一种基于增强型微处理器的燃气检测自保护系统。该系统主要分为硬件部分和软件编程两个部分,其中硬件部分主要由... 燃气安全无小事,一旦使用不妥就会发生火灾、爆炸和令人窒息的严重安全事故。为实现燃气的安全、高效使用,本文设计并实现一种基于增强型微处理器的燃气检测自保护系统。该系统主要分为硬件部分和软件编程两个部分,其中硬件部分主要由系统的控制器增强型微处理STC15F2K60S2、系统执行元件双舵机模块SERVO-C1/C2、通讯模块485、检测元件可燃气体报警器GT-ACE23222a及供电电路等组成。选用卡式炉罐气来模拟被测对象可燃气体用于实现系统的实物测试,测试结果显示:该系统可以有效地实现燃气检测值异常时的自我保护、自我切断功能,具有一定的应用价值。 展开更多
关键词 增强型微处理器 双舵机模块 485通讯 燃气检测 自我保护系统
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Constitutive activation of AtMEK5,a MAPK kinase,induces salicylic acid- independent cell death in Arabidopsis thaliana
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作者 LIUHongxia WANGYing ZHOUTianhong SUNYujing LIUGuoqin RENDongtao 《Chinese Science Bulletin》 SCIE EI CAS 2004年第24期2594-2600,共7页
AtMEK5 DD is an active mutant of AtMEK5, a MAP kinase kinase in Arabidopsis. Induction of AtMEK5 DD expression in transgenic plants leads to activation of 44 and 48 kD MAPKs and causes a rapid cell death. To compare t... AtMEK5 DD is an active mutant of AtMEK5, a MAP kinase kinase in Arabidopsis. Induction of AtMEK5 DD expression in transgenic plants leads to activation of 44 and 48 kD MAPKs and causes a rapid cell death. To compare the cell death induced by the expression of AtMEK5 DD with the HR-cell death induced by avirulence pathogen infection, we analyzed the activation of downstream MAP Kinase and induction of PR genes expression in permanent transgenic Arabidopsis plants. In-gel kinase activity assay revealed that the infection of Pseudomonas syringae DC3000 harboring Avr Rpt2 gene also lead to activation of 44 and 48 kD MAPKs. PAL, PR1 and PR5 were strongly induced in plants undergo- ing HR-cell death caused by the infection of P. syringae DC3000, while only the expression of PR5 was strongly in- duced in transgenic plants expressing AtMEK5 DD protein. NahG protein in AtMEK5 ×NahG plants cannot suppress DD the cell death induced by AtMEK5 . And AtMEK5 DD DD pro- tein expressed AtMEK5 ×NahG plants showed no signifi- DD cant change in salicylic acid (SA) level. All these suggest that the cell death induced by the activation of AtMEK5 is sali- cylic acid-independent. 展开更多
关键词 AtMEK5 MAPK致活酶 水杨酸 细胞 病原体 植物 自我保护系统
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