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首页> 外文期刊>Euphytica >Epistasis among the three major flowering time genes in rice: coordinate changes of photoperiod sensitivity, basic vegetative growth and optimum photoperiod
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Epistasis among the three major flowering time genes in rice: coordinate changes of photoperiod sensitivity, basic vegetative growth and optimum photoperiod

机译:水稻三个主要开花时间基因的上位性:协调光周期敏感性,基本营养生长和最佳光周期的变化

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Flowering time is affected not only by photoperiod sensitivity (PS) but also by basic vegetative growth (BVG) and optimum photoperiod (OP), although their developmental and genetic relationships are not well understood. The present study was carried out in rice to examine to what extent these three developmental components are modified by the three flowering time genes, Se1 (= Hd1), Ef1 and e1 (= m-Ef1), which are known to contribute to flowering time in temperate and tropical regions of rice cultivation. Photoperiodic response curves were estimated under controlled conditions of different growth regimes, using eight near-isogenic lines possessing different combinations of the alleles at the three loci. The results showed that each of the components is greatly affected by the main effect of the genes, temperature and their epistasis, indicating that none of the three genes controls flowering time by altering any single component in PS, BVG or OP. Epistasis was detected more frequently among the three genes than reported before, suggesting that epistasis contributes to flowering time by changing PS, BVG and OP differently. The comparison of the nucleotide sequences suggested that Ef1 is the same as Early heading date 1 (Ehd1). Since the two genes Se1 (= Hd1) and Ef1 (= Ehd1) are known to up-regulate the rice homolog of Arabidopsis FT, it is suggested that the detected epistasis may respond to diverse environments by modulating the CO/FT system conserved in flowering plants.
机译:开花时间不仅受光周期敏感性(PS)的影响,而且受基本营养生长(BVG)和最佳光周期(OP)的影响,尽管它们的发育和遗传关系尚未得到很好的了解。本研究是在水稻中进行的,研究了这三个发育成分在三种开花时间基因(Se1(= Hd1),Ef1和e1(= m-Ef1))中被修饰的程度,这些基因已知对开花时间有贡献在温带和热带地区种植水稻。使用在三个基因座处具有等位基因不同组合的八个近等基因系,在不同生长方式的受控条件下估算了光周期反应曲线。结果表明,每种成分均受到基因,温度及其上位性的主要影响,表明这三个基因均未通过改变PS,BVG或OP中的任何单一成分来控制开花时间。在这三个基因中检出上皮的频率要比以前报告的要高,这表明上皮通过改变PS,BVG和OP的不同而有助于开花时间。核苷酸序列的比较表明,Ef1与早期标题日期1(Ehd1)相同。由于已知两个基因Se1(= Hd1)和Ef1(= Ehd1)上调拟南芥FT的水稻同源物,因此建议检测到的上位基因可能通过调节开花中保存的CO / FT系统来响应多种环境。植物。

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