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GIGANTEA and EARLY FLOWERING 4 in Arabidopsis exhibit differential phase-specific genetic influences over a diurnal cycle.

机译:拟南芥中的 GIGANTEA 和 Easterly FLOWERINGING 4 在昼夜周期中表现出不同的阶段特异性遗传影响。

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The endogenous circadian clock regulates many physiological processes related to plant survival and adaptability. GIGANTEA (GI), a clock-associated protein, contributes to the maintenance of circadian period length and amplitude, and also regulates flowering time and hypocotyl growth in response to day length. Similarly, EARLY FLOWERING 4 (ELF4), another clock regulator, also contributes to these processes. However, little is known about either the genetic or molecular interactions between GI and ELF4 in Arabidopsis. In this study, we investigated the genetic interactions between GI and ELF4 in the regulation of circadian clock-controlled outputs. Our mutant analysis shows that GI is epistatic to ELF4 in flowering time determination, while ELF4 is epistatic to GI in hypocotyl growth regulation. Moreover, GI and ELF4 have a synergistic or additive effect on endogenous clock regulation. Gene expression profiling of gi, elf4, and gi elf4 mutants further established that GI and ELF4 have differentially dominant influences on circadian physiological outputs at dusk and dawn, respectively. This phasing of GI and ELF4 influences provides a potential means to achieve diversity in the regulation of circadian physiological outputs, including flowering time and hypocotyl growth.
机译:内源性生物钟调节与植物存活和适应性有关的许多生理过程。 GIGANTEA(GI)是一种时钟相关蛋白,有助于维持昼夜节律周期的长度和幅度,并调节开花时间和响应日长的下胚轴生长。同样,另一个时钟调节器 EARLY FLOWERING 4 ( ELF4 )也有助于这些过程。然而,关于拟南芥中 GI 和 ELF4 之间的遗传或分子相互作用的了解甚少。在这项研究中,我们研究了生物钟控制的输出中 GI 和 ELF4 之间的遗传相互作用。我们的突变分析表明,在开花时间测定中, GI 对 ELF4 上位,而在开花时间中 ELF4 对 GI 上生。下胚轴生长调节。此外, GI 和 ELF4 对内源时钟调节具有协同或累加作用。 gi , elf4 和 gi elf4 突变体的基因表达谱进一步确定了 GI 和 ELF4 < / i分别对黄昏和黎明的昼夜生理输出有不同的显性影响。 GI 和 ELF4 影响的这种阶段性提供了一种潜在的手段,可以在昼夜节律生理输出的调节中实现多样性,包括开花时间和下胚轴生长。

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