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首页> 外文期刊>Planta: An International Journal of Plant Biology >OsCO3, a CONSTANS-LIKE gene, controls flowering by negatively regulating the expression of FT-like genes under SD conditions in rice
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OsCO3, a CONSTANS-LIKE gene, controls flowering by negatively regulating the expression of FT-like genes under SD conditions in rice

机译:OsCO3是一种CONSTANS-LIKE基因,通过在SD条件下负调控FT-like基因的表达来控制开花

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摘要

The photoperiod is an important environmental stress that determines flowering time. The CONSTANS (CO) and Heading date 1 (Hd1) genes are known to be central integrators of the photoperiod pathway in Arabidopsis and rice, respectively. Although they are both members of the CONSTANS-LIKE (COL) family and have two B-boxes and a CCT domain, rice also possesses novel COL genes that are not found in Arabidopsis. Here, we demonstrate that a novel COL gene, OsCO3, containing a single B-box and a CCT domain, modulates photoperiodic flowering in rice. The circadian expression pattern of OsCO3 mRNA oscillated in a different phase from Hd1 and was similar to that of OsCO3 pre-mRNA, suggesting that the diurnal expression pattern of OsCO3 transcripts may be regulated at the transcriptional level. Overexpression of OsCO3 specifically caused late flowering under short day (SD) conditions relative to wild-type rice plants. The expression of Hd3a and FTL decreased in these transgenic plants, whereas the expression of Hd1, Early heading date 1 (Ehd1), OsMADS51, and OsMADS50 did not significantly change. Our results suggest that OsCO3 primarily controls flowering time under SD conditions by negatively regulating Hd3a and FTL expression, independent of the SD-promotion pathway.
机译:光周期是决定开花时间的重要环境压力。已知CONSTANS(CO)基因和Heading date 1(Hd1)基因分别是拟南芥和水稻中光周期途径的主要整合者。尽管它们都是CONSTANS-LIKE(COL)家族的成员,并且具有两个B-box和一个CCT域,但水稻还具有拟南芥中未发现的新COL基因。在这里,我们证明了一个新的COL基因OsCO3,它包含一个B-box和一个CCT域,可以调节水稻的光周期开花。 OsCO3 mRNA的昼夜节律表达模式与Hd1不同,与OsCO3 pre-mRNA相似,提示OsCO3转录本的昼夜表达模式可能在转录水平受到调控。与野生型水稻植物相比,OsCO3的过量表达在短日(SD)条件下特异性地导致了开花后期。在这些转基因植物中,Hd3a和FTL的表达下降,而Hd1,早期抽穗期1(Ehd1),OsMADS51和OsMADS50的表达没有明显变化。我们的结果表明,OsCO3主要通过负调节Hd3a和FTL表达来独立控制SD促进途径,从而控制SD条件下的开花时间。

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