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蓟马取食、机械损伤以及外源水杨酸甲酯和茉莉酸对菜豆叶片防御酶活性的影响 被引量:30
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作者 从春蕾 郅军锐 +1 位作者 廖启荣 莫利锋 《昆虫学报》 CAS CSCD 北大核心 2014年第5期564-571,共8页
【目的】探讨菜豆对昆虫取食防御反应的生化机制。【方法】研究了西花蓟马Frankliniella occidentalis取食、机械损伤以及外源水杨酸甲酯(MeSA)和茉莉酸(JA)处理后菜豆叶片防御酶活性的变化。【结果】西花蓟马取食、机械损伤及MeSA和JA... 【目的】探讨菜豆对昆虫取食防御反应的生化机制。【方法】研究了西花蓟马Frankliniella occidentalis取食、机械损伤以及外源水杨酸甲酯(MeSA)和茉莉酸(JA)处理后菜豆叶片防御酶活性的变化。【结果】西花蓟马取食、机械损伤及MeSA和JA处理均能明显提高过氧化物酶(POD)的活性,前2种处理POD活性在72 h上升到最高峰,而后2种处理则在48 h达到最高峰。蛋白酶抑制剂(PI)活性在西花蓟马取食后升高最明显。JA途径关键酶脂氧合酶(LOX)和多酚氧化酶(PPO)的活性在西花蓟马取食、机械损伤和JA诱导处理均升高,但外源MeSA诱导处理则不能诱导它们的活性(P>0.05)。SA途径的关键酶苯丙氨酸解氨酶(PAL)在西花蓟马取食和机械损伤后均有一个先升高后下降的过程,外源MeSA诱导只在24 h引起PAL活性升高,其余时间下和对照没有明显的区别,外源JA诱导未能引起PAL活性的显著变化(P>0.05)。西花蓟马取食、JA和MeSA诱导以及机械损伤均能诱导β-1,3-葡聚糖酶(PR-2)活性上升(P<0.05)。【结论】结果说明,不同处理可诱导菜豆植株产生明显的防御反应,但酶活性的变化与处理方式和处理时间有关。 展开更多
关键词 西花蓟马 菜豆 昆虫取食 机械损伤 茉莉酸 水杨酸甲酯 防御酶 酶活性
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Towards sustainable protection against insect-borne plant viral diseases:Phytohormones and beyond
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作者 WANG Ning YAO XiangMei +2 位作者 ZHU ChangXiang WEN FuJiang YE Jian 《Science Foundation in China》 CAS 2016年第2期69-80,共12页
Due to the immobility of plants,around 75% of 1100 plant virus species are piercing-sucking insect transmitted.Host plant-mediated interactions between viruses and insects play vital roles in the population dynamics o... Due to the immobility of plants,around 75% of 1100 plant virus species are piercing-sucking insect transmitted.Host plant-mediated interactions between viruses and insects play vital roles in the population dynamics of vectors and the epidemiology of plant diseases.A successful viral pathogen has to evolve multiple strategies to manipulate host immune responses and also the ecological environment to facilitate effective transmission by insect vectors.Among these strategies,reprogramming the phytohormone signaling pathways is critical to the establishment of an effective virus transmission among plants and disease pandemic.Here,we review recent studies on the plant-virus inter-relationships with a focus on molecular and biochemical mechanisms that drive vector-borne viral diseases.Defense-related phytohormones such as Jasmonic acid(JA),Salicylic acid(SA)and Ethylene(ET)have been reported to be directly regulated by viral proteins.This knowledge is essential for the further design and/or development of effective and sustainable strategies to protect viral damages so as to increase crop yield and food security.Future efforts in this area should be focused on integrating and meta-analysis of big data generating from dynamics and multiple dimensional pathogen-vector-crop interactions under real agricultural conditions to achieve sustainable protection against plant diseases. 展开更多
关键词 PHYTOHORMONE Jasmonic acid Virus-vector-plant TRIPARTITE interactions GEMINIVIRUS
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