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温璐华,高志红.外源GA4处理解除果梅花芽休眠的生理效应研究[J].中国南方果树,2015,44(5):
外源GA4处理解除果梅花芽休眠的生理效应研究
Physical effect of exogenous GA4 on the dormancy release of Japanese apricot buds
投稿时间:2014-09-15  修订日期:2014-11-04
DOI:
中文关键词:  GA4  POD  CAT  SOD  果梅  花芽  休眠解除
英文关键词:GA4  POD  CAT  SOD  Japanese apricot  Flower bud  Dormancy release
基金项目:高校基本业务费项目(KYZ201208);江苏省青蓝工程;国家大学生科研训练项目(SRT)
作者单位E-mail
温璐华 南京农业大学园艺学院 2013104036@njau.edu.cn 
高志红* 南京农业大学园艺学院 gaozhihong@njau.edu.cn 
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中文摘要:
      摘要:【目的】分析外源GA4解除果梅花芽休眠的生理效应。【方法】以高需冷量果梅品种‘丰后’为试材,于果梅树体自然休眠期多次采集枝条,研究不同浓度GA4处理和质量分数为1% 的外源H2O2处理对人工气候室内水培枝条萌芽率和H2O2及抗氧化相关酶类活性的影响。【结果】200μM GA4处理的萌芽率明显高于质量分数为1% 的H2O2处理和对照,1% H2O2对休眠解除效果不明显;GA4处理的最佳浓度为200μM,最佳处理时期为元旦前后;在GA4处理促进果梅在休眠解除期间,其花芽内的H2O2和相关抗氧化酶发生规律性变化,其中,H2O2含量在果梅花芽在休眠解除时达到峰值,并且,促进H2O2产生的超氧化物歧化酶(SOD)活性也在此时达到峰值。过氧化氢酶(CAT)和过氧化物酶(POD)具有清除H2O2的作用,二者的活性分别在H2O2含量到达峰值之前和到达峰值之时受到抑制。【结论】基于对H2O2可能在休眠解除期间作为信号物质的认识,根据这些酶的含量变化推测GA4打破果梅花芽休眠可能通过抗氧化酶系统调控H2O2含量的变化来对休眠解除起作用。
英文摘要:
      Abstract:【Objective】To analysis physiological effects of exogenous GA4 on the dormancy release of Japanese apricot(Prunus mume Sieb. et Zucc)flower buds. 【Method】Japanese apricot cultivar of ‘Bungo’ was used as experiment material, and branches were collected during endodormancy, GA4 treatment in different concentrations and 1% H2O2 were taken to treat with branches in growth chamber and changes of H2O2 content, germination rates and activities of antioxidant enzymes of the flower buds were investigated. 【Result】The results showed that flower buds under GA4 treatment had a higher germination rate than 1% H2O2 琣nd control, 1% H2O2 had no obvious difference with control. The best concentration of GA4 for improving germination rate was 200μM, and the best time was near the New Year’s Day. There was a transient peak of H2O2 during dormancy release,at the same time the activity of SOD also reached the maximum of the whole experiment process, and SOD was known as having an effect ofinducing the generation of H2O2. CAT and POD has the effect of scavenging H2O2, and they both had a period when their activities were inhibited during this experiment, the difference was that activity of CAT was inhibited before dormancy release and activity of POD was inhibited during dormancy release. 【Conclusion】According to these changes and also known that H2O2 effects as a signal in dormancy release, we suppose that GA4 can regulate H2O2 content via the control to activities of antioxidant enzyme system and then make dormancy release .
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