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花信灵的功能与花期花时调控技术 被引量:1
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作者 李启荣 戴国忠 《杂交水稻》 CSCD 北大核心 1995年第S2期1-3,共3页
关键词 花信灵 花时调控 结实率 柱头外露率 杂交水稻制种 盛花期 繁殖制种 不育系 制种产量 父母本
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大岩桐SOC1同源基因的克隆及其功能研究 被引量:3
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作者 韩雪 姜仕豪 +2 位作者 钟丹 胡立霞 庞基良 《分子植物育种》 CAS CSCD 北大核心 2014年第1期178-186,共9页
以大岩桐(Sinningia speciosa)幼叶为材料,利用RACE技术克隆到两个SOC1基因序列的全长cDNA,分别命名为SsSOC1a和SsSOC1b(在GenBank中登录号分别为ABX90014和ABX90015)。序列分析表明,SsSOC1a的ORF长度为639 bp,编码212个氨基酸,SsSOC1b... 以大岩桐(Sinningia speciosa)幼叶为材料,利用RACE技术克隆到两个SOC1基因序列的全长cDNA,分别命名为SsSOC1a和SsSOC1b(在GenBank中登录号分别为ABX90014和ABX90015)。序列分析表明,SsSOC1a的ORF长度为639 bp,编码212个氨基酸,SsSOC1b的ORF长度为633 bp,编码210个氨基酸;含有典型的植物MADS-box基因结构。通过蛋白序列比对,SsSOC1a基因序列与可可的TcSOC1和顶花板凳果的PtSOC1有67%的相似性;SsSOC1b基因序列与葡萄的VvAGL19、白桦的MADS蛋白有67%的相似性。将SsSOC1b置于CaMV35S启动子控制下在烟草中异位表达,转基因烟草表现出花期提前、花芽数增多或整个生命周期中没有花芽分化的新表型;将SsSOC1a、SsSOC1b置于CaMV35S启动子控制下在大岩桐中过量表达,转SsSOC1a植株表现出花期提前的新表型,转SsSOC1b植株的表型无明显变化。研究结果表明SsSOC1a和SsSOC1b参与了转基因植株花芽的分化以及花时的调控。 展开更多
关键词 大岩桐 SOC1同源基因 花时调控
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Interaction between temperature and photoperiod in regulation of flowering time in rice 被引量:6
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作者 SONG YuanLi GAO ZhiChao LUAN WeiJiang 《Science China(Life Sciences)》 SCIE CAS 2012年第3期241-249,共9页
Photoperiod and temperature are two pivotal regulatory factors of plant flowering. The floral transition of plants depends on accurate measurement of changes in photoperiod and temperature. The flowering time of rice ... Photoperiod and temperature are two pivotal regulatory factors of plant flowering. The floral transition of plants depends on accurate measurement of changes in photoperiod and temperature. The flowering time of rice (Oryza sativa) as a facultative short-day (SD) plant is delayed under long-day (LD) and/or low temperature conditions. To elucidate the regulatory functions of photoperiod and temperature on flowering time in rice, we systematically analyzed the expression and regulation of several key genes (Hd3a, RFT1, Ehdl, Ghd7, RID1/Ehd2/OsIdl, Se5) involved in the photoperiodic flowering regulatory pathway under different temperature and photoperiod treatments using a photoperiod-insensitive mutant and wild type plants. Our re- sults indicate that the Ehdl-Hd3a/RFT1 pathway is common to and conserved in both the photoperiodic and temperature flow- ering regulatory pathways. Expression of Ehdl, Hd3a and RFT1 is dramatically reduced at low temperature (23~C), suggesting that suppression of Ehdl, Hd3a and RFT1 transcription is an essential cause of delayed flowering under low temperature con- dition. Under LD condition, Ghd7 mRNA levels are promoted at low temperature (23~C) compared with normal temperature condition (28℃), suggesting low temperature and LD treatment have a synergistic role in the expression of Ghd7. Therefore, upregulation of Ghd7 might be a crucial cause of delayed flowering under low temperature condition. We also analyzed Hdl regulatory relationships in the photoperiodic flowering pathway, and found that Hdl can negatively regulate Ehdl transcription under LD condition. In addition, Hdl can also positively regulate Ghd7 transcription under LD condition, suggesting that the heading-date of rice under LD condition is also regulated by the Hdl-Ghd7-Ehdl-RFT1 pathway. 展开更多
关键词 RICE PHOTOPERIOD TEMPERATURE flowering regulation INTERACTION
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