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乙烯与光敏核不育水稻育性转换关系 被引量:12

The Relationship between Ethylene and Fertility Change of Photopenod-Sensitive Genic Male Sterile Rice (PGMR)
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摘要 研究了乙烯与光敏核不育水稻(PGMR)农垦58S育性转换的关系。发现幼穗的乙烯释放速率在育性转换的适宜温度中长日照处理明显比短日照处理高;但在低温长日照下大为降低而在高温短日照下又可维持高水平的乙烯释放。幼穗乙烯释放速率与花粉可育度之间呈极显著负相关。在不育条件下用乙烯代谢抑制剂氯基乙氧基乙烯基甘氨酸(AVG)处理,可诱导花粉可育性的明显表达。由此初步证明农垦58S幼穗的乙烯释放速率受到光周期和温度的共同调节,并与育性转换的光温作用模式极为吻合;乙烯参与育性转换的调节,可能在花粉败育中起关键性作用。 The relationship between ethylene metabolism and the fortility change of PGMR Nongken 58S was studied. It was discovered that ethylene release rate of young panicles in long day (LD) was higher than that in short day (SD)with a suitable temperature range of fertility change. In LD and lower temperature (≈25℃ ), the ethylene release rate was low, but in SD and high temperature (≈32℃), the ethylene release rate was high. The ethylene release rate of young panicle was negatively correlated with pollen fertility. When the plants were treated with aminoethoxy vinylglyeine (AVG), an inhibitor of ethylene biosynthesis, an obvious increase of pollen fertility was observed in sterile condition. These results indicated that ethylene release rate was regulated by photoperiod and temperature, which was consensus with the model of light-temperature action in fertility change. Ethylene was involved in the regulation of fertility change, and may played a key role in the process of pollen sterility. Aminoethoxy vinylglycine: Ethylene; Fertility change: Photoperiod-sensitive genic male sterile rice (PGMR)
机构地区 华中农业大学
出处 《中国水稻科学》 CAS CSCD 北大核心 1993年第1期1-6,共6页 Chinese Journal of Rice Science
基金 国家自然科学基金
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参考文献5

  • 1张自国,曾汉来,元生朝,张端品,王本宣,李玉珍.再论光敏核不育水稻育性转换的光温作用模式[J].华中农业大学学报,1992,11(1):1-6. 被引量:61
  • 2王熹,阙瑞芬,蒋志荣,徐马福.乙烯利诱导水稻雄性不育的生理效应[J]植物生理学报,1981(01).
  • 3刘愚,李振国,焦新之,余叔文,谢学民,张全德,朱汉如.小麦乙烯利杀雄和乙烯熏气的作用[J]植物生理学报,1979(01).
  • 4Ivana Machá?ková,Jaroslav Ullmann,Jan Krekule,Manfred Stock. Ethylene production and metabolism of 1-aminocyclopropane-1-carboxylic acid inChenopodium rubrum L. as influenced by photoperiodic flower induction[J] 1988,Journal of Plant Growth Regulation(4):241~247
  • 5Tova Trebitsh,Jehoshua Rudich,Joseph Riov. Auxin, biosynthesis of ethylene and sex expression in cucumber (Cucumis sativus)[J] 1987,Plant Growth Regulation(2):105~113

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