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低温条件下喷施乙烯利对温敏核不育水稻育性的影响

Effects of Exogenous Ethephon on Fertility of Thermo-sensitive Genic Male Sterile Rice Lines Under Low Temperature Inducement

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【作者】 李林芝魏家萍贾彦凤刘小林张海清王明麻浩

【Author】 LI Linzhi;WEI Jiaping;JIA Yanfeng;LIU Xiaolin;ZHANG Haiqing;WANG Ming;MA Hao;State Key Laboratory of Crop Genetics and Germplasm Enhancement, Nanjing Agricultural University;College of Agriculture, Hunan Agricultural University;Southern Regional Collaborative Innovation Center for Grain and Oil Crops in China, Hunan Agricultural University;

【机构】 南京农业大学作物遗传与种质创新国家重点实验室湖南农业大学农学院南方粮油作物协同创新中心

【摘要】 【目的】为解决我国南方温敏核不育水稻制种过程中遇低温易发生育性转换问题,对处于育性转换敏感期的温敏核不育水稻进行低温诱导并喷施不同浓度乙烯利,探讨其对温敏核不育水稻育性的影响。【方法】利用温敏核不育水稻株1S和准S为材料,在育性敏感时期对其进行连续7 d冷灌池低温(22.5℃)诱导并分别喷施乙烯合成促进物质乙烯利和抑制物质二氧化氯溶液,统计花粉可染率及套袋自交结实率,对乙烯合成关键酶进行实时荧光定量PCR分析。分离并分析了乙烯合成途径关键酶OsA CO5和Os ACS5的启动子。【结果】在22.5℃低温诱导条件下,株1S和准S连续7 d喷水处理后的可染花粉率分别是4.3%和8.9%,套袋结实率分别是1.6%和2.5%;与喷水对照相比,喷施1600 mg/L乙烯利,株1S和准S可染花粉率分别下降3.3和7.2个百分点,且都无结实;喷施1500 mg/L二氧化氯溶液的株1S和准S可染花粉率分别上升3.5和3.3个百分点,套袋结实率分别上升0.78和0.52个百分点。在低温诱导条件下(以喷水为对照),连续7 d喷施1600 mg/L乙烯利时,株1S和准S幼穗中OsA CO5和OsA CS5基因表达量显著升高,分别是对照(喷水)的1.19、1.24(株1S)和1.24、1.1(准S)倍;连续7 d喷施1500 mg/L二氧化氯溶液时,株1S和准S幼穗中Os ACO5基因表达量变化不显著,而株1S和准S中OsA CS5基因表达量显著降低,分别是对照(喷水)的93%和89%。与正常大田温度相比,在22.5℃低温诱导7 d时,喷水、喷施1600 mg/L乙烯利及1500 mg/L二氧化氯溶液处理分别会导致株1S和准S幼穗中OsA CO5和Os ACS5基因下调表达。此外,发现OsA CO5和OsA CS5的启动子除含TATA盒和CAAT盒等基本结构以外,还含有多个组织特异表达及乙烯调控顺式作用元件。【结论】低温诱导条件下,在温敏核不育水稻育性敏感期,喷施1600 mg/L乙烯利可抑制育性转换。

【Abstract】 【Objective】This research aims to elucidate the mechanism behind sterility conversion(infertile convert into fertile) in low temperature of thermo-sensitive genic male sterile rice in seed production in South China by applying exogenous ethephon.【Method】The thermo-sensitive genic male sterile rice cultivars Zhu 1 S and Zhun S were treated with artificial cooling water tank(low temperature, 22.5℃) induction for 7 days and sprayed with ethephon(which promote synthesis of ethylene) and the chlorine dioxide solution(inhibitory substances) during fertility-sensitive period. Then the pollen dyeing rate and the bagged seed-setting rate were calculated and the quantitative real-time PCR was conducted. In addition, the promoters of OsA CO5 and OsA CS5, which are key enzymes of ethylene synthesis pathway, were isolated and analyzed.【Result】Under 22.5℃ for 7 days, the pollen rate of Zhu 1 S and Zhun S was 4.3% and 8.9%, and bagged seed-setting rate was 1.6% and 2.5%, respectively. Compared with the water spray control, the pollen rate of lines Zhu 1 S and Zhun S was reduced by 3.3 and 7.2 percent, respectively when spraying with 1600 mg/L ethephon. When spraying with 1500 mg/L of chlorine dioxide solution, the pollen rate was increased by 3.5 and 3.3 percent, and the bagged seed setting rate increased by 0.78 and 0.52 percent, respectively. The expression of OsA CO5 and OsA CS5 in young panicles was significantly increased at 1600 mg/L of ethephon under 22.5℃ induction for 7 days, which were 1.19, 1.24(Zhu 1 S) and 1.24, 1.1(Zhun S) times of that of the control(water spray) respectively. When sprayed with 1500 mg/L of chlorine dioxide solution for 7 days, the expression of OsA CS5 gene in the Zhu 1 S and Zhun S was significantly reduced, which were 0.93 and 0.89 times of that of the control(water spray), respectively, but the expression of OsA CO5 was not significantly changed. Compared with normal field temperature(control) for 7 days, water spraying, 1600 mg/L of ethephon and 1500 mg/L of chlorine dioxide solution at 22.5℃ down-regulated the expression of Os ACO5 and OsA CS5 in young panicles of Zhu 1 S and Zhun S. The promoters of OsA CO5 and OsA CS5 contained multiple tissue-specific expression elements and ethylene-regulated cis-acting elements in addition to the basic structures such as TATA-box and CAAT-box. 【Conclusion】Under low temperature condition, spraying 1600 mg/L ethephon in the sensitive period of thermo-sensitive genic male sterile rice had inhibitory effect on fertility conversion from sterility to fertility.

【基金】 湖南省财政预算农业专项;国家公益性行业科研专项(201303005)
  • 【文献出处】 中国水稻科学 ,Chinese Journal of Rice Science , 编辑部邮箱 ,2018年02期
  • 【分类号】S511
  • 【被引频次】2
  • 【下载频次】206
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