首页> 美国卫生研究院文献>Frontiers in Plant Science >Isolation and functional analysis of CONSTANS-LIKE genes suggests that a central role for CONSTANS in flowering time control is not evolutionarily conserved in Medicago truncatula
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Isolation and functional analysis of CONSTANS-LIKE genes suggests that a central role for CONSTANS in flowering time control is not evolutionarily conserved in Medicago truncatula

机译:CONSTANS-LIKE基因的分离和功能分析表明在Medi藜苜蓿中CONSTANS在开花时间控制中的核心作用并未进化上保守。

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摘要

The zinc finger transcription factor CONSTANS has a well-established central role in the mechanism for photoperiod sensing in Arabidopsis, integrating light and circadian clock signals to upregulate the florigen gene FT under long-day but not short-day conditions. Although CONSTANS-LIKE (COL) genes in other species have also been shown to regulate flowering time, it is not clear how widely this central role in photoperiod sensing is conserved. Legumes are a major plant group and various legume species show significant natural variation for photoperiod responsive flowering. Orthologs of several Arabidopsis genes have been shown to participate in photoperiodic flowering in legumes, but the possible function of COL genes as integrators of the photoperiod response has not yet been examined in detail. Here we characterize the COL family in the temperate long-day legume Medicago truncatula, using expression analyses, reverse genetics, transient activation assays and Arabidopsis transformation. Our results provide several lines of evidence suggesting that COL genes are unlikely to have a central role in the photoperiod response mechanism in this species.
机译:锌指转录因子CONSTANS在拟南芥的光周期感测机制中具有公认的核心作用,在长日而不是短日条件下,整合光和生物钟信号以上调荧光原基因FT。尽管其他物种的CONSTANS-LIKE(COL)基因也已显示出调节开花时间的作用,但尚不清楚这种在光周期感测中的核心作用被保留的范围。豆科植物是主要的植物群,各种豆科植物对光周期响应性开花显示出明显的自然变化。几种拟南芥基因的直系同源物已显示参与豆类的光周期开花,但是尚未详细研究COL基因作为光周期反应整合子的可能功能。在这里,我们使用表达分析,反向遗传学,瞬时激活测定和拟南芥转化来表征温带长豆科植物紫花苜蓿中的COL家族。我们的结果提供了多条证据,表明COL基因不太可能在该物种的光周期反应机制中发挥核心作用。

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