三生-NN与NC89接种TMV后防御酶的活性变化  被引量:1

Changes of Defense Enzyme Activity in Samsun NN and NC89 after Inoculation with TMV

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作  者:董小卫[1,2] 王放 申莉莉[3] 王凤龙[3] 刘常荣 

机构地区:[1]山东师范大学生命科学学院,济南250014 [2]山东中烟工业公司技术中心,济南250013 [3]农业部烟草类作物质量控制重点开放实验室,中国农业科学院烟草研究所,青岛266101

出  处:《中国烟草科学》2009年第3期41-44,共4页Chinese Tobacco Science

摘  要:通过研究抗性不同的烟草品种使用木霉孢子并接种TMV后其防御酶活性和MDA含量变化,发现三生-NN和NC89虽然都属于普通烟草(Nicotiana tobacumL),但某些抗性相关基因不同。使用木霉孢子后,两者的防御酶有些变化趋势相同(如PAL),有些则不同(如POD);受损伤程度(MDA含量)变化幅度也不相同。接种病毒后,抗性酶被激活,其活性由抗病毒物质、病毒和植物本身等多种因素综合作用。枯斑三生作为烟草抗病毒物质的筛选的指示植物具有一定局限性,必须结合常规栽培品种进行更加系统的田间试验,才能确定某一抗病毒物质的实际应用效果。Two tobacco varieties with different resistance, Samsun NN and NC89 were treated with the spores of Trichoderma and inoculated with TMV successively, and their defense enzyme activity and MDA content were determined. Results showed that some resistance-related genes of Samsun NN and NC89 were different. After treated with Tdchoderma spores, some resistance enzyme (PAL) change tendency appeared same, some (POD) different. The changes of damage level (MDA content) were also different. After virus vaccination, the activities of resistant enzyme were raised, which were affected by several factors including antiviral substances, virus and plant. SamSun NN was limited in screening indicator plant of tobacco antiviral substances, and field experiments on conventional tobacco varieties were required to determine the application effect.

关 键 词:三生-NN 烟草 防御酶 

分 类 号:S435.72[农业科学—农业昆虫与害虫防治]

 

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