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园艺学报 ›› 2016, Vol. 43 ›› Issue (4): 724-734.doi: 10.16420/j.issn.0513-353x.2016-0018

• 蔬菜 • 上一篇    下一篇

两个甜瓜材料对白粉病的抗性差异及其生理生化机制研究

杨瑞平1,*,刘长命2,*,莫言玲1,李 好1,马建祥1,张 勇1,张 显1,**   

  1. (1西北农林科技大学园艺学院,陕西杨凌 712100;2商洛学院,陕西商洛 726000)
  • 出版日期:2016-04-25 发布日期:2016-04-25

Resistance of Two Different Melon Varieties Against Powdery Mildew and Its Physiological and Biochemical Mechanism

YANG Rui-ping1,*,LIU Chang-ming2,*,MO Yan-ling1,LI Hao1,MA Jian-xiang1,ZHANG Yong1,and ZHANG Xian1,**   

  1. (1College of Horticulture,Northwest A & F University,Yangling,Shaanxi 712100,China;2Shangluo University,Shangluo,Shaanxi 726000,China)
  • Online:2016-04-25 Published:2016-04-25

摘要: 以高抗白粉病的野生甜瓜[Cucumis melo L. ssp. agrestis(Naud.)Greb]‘Yuntian 930’和易感病的甜瓜[Cucumis melo L. ssp. melo(Pang.)Greb]‘0544’为试材,研究二者的叶片结构差异及接种白粉病菌后的活性氧代谢、保护酶活性、多胺含量及相关基因表达量的变化。结果表明:抗性材料‘Yuntian 930’的叶片刺毛数量、蜡质含量及栅栏组织/海绵组织比值均显著高于易感病材料‘0544’。与易感病材料‘0544’相比,接种白粉病菌后,抗病材料‘Yuntian 930’的H2O2、 和MDA含量上升缓慢,且能维持在较低水平;而SOD、POD和CAT等酶活性显著高于前者。此外,接种白粉病菌后,‘Yuntian 930’的多胺含量及多胺合成相关基因表达量均迅速上升,且最高值显著高于易感病材料‘0544’。这些结果表明,‘Yuntian 930’的抗病性与其叶片形态结构和较高的抗氧化能力、较高的多胺合成能力有关。

关键词: 甜瓜, 白粉病, 叶片结构, 活性氧, 抗氧化酶, 多胺, 基因表达

Abstract:

The leaf structurereactive oxygen species generationantioxidant enzyme activitiespolyamine contentsand expression profiles of polyamine synthesis related genes were compared between a resistant melon varietyYuntian 930and a susceptible cultivar0544after the inoculation with Podosphaera xanthii. The results showed that the bristles numberwaxes contentand ratio of palisade/spong were significantly higher inYuntian 930than those in0544. After inoculation with P. xanthiithe contents of H2O2and MDA in0544rose more slowly and kept a lower level inYuntian 930than in0544. Howeverthe activities of SODPODCAT inYuntian 930were markedly higher. In additionthe polyamine content and the abundance of polyamine synthesis related genes were increased quickly and reach higher levels inYuntian 930than those in0544after the inoculation with P. xanthii. These results indicated thatthe higher resistance to powdery mildew inYuntian 930was related to the leaf morphological structurehigher antioxidant capacityand higher polyamine synthesis capability.

Key words: melon, powdery mildew, leaf structure, reactive oxygen species, antioxidant enzyme, polyamine, gene expression

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