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Crosstalk between Cold Response and Flowering in Arabidopsis Is Mediated through the Flowering-Time Gene SOC1 and Its Upstream Negative Regulator FLC

机译:拟南芥中冷响应与开花之间的串扰是通过开花时间基因SOC1及其上游负调控因子FLC介导的。

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摘要

The appropriate timing of flowering is pivotal for reproductive success in plants; thus, it is not surprising that flowering is regulated by complex genetic networks that are fine-tuned by endogenous signals and environmental cues. The Arabidopsis thaliana flowering-time gene SUPPRESSOR OF OVEREXPRESSION OF CONSTANS1 (SOC1) encodes a MADS box transcription factor and is one of the key floral activators integrating multiple floral inductive pathways, namely, long-day, vernalization, autonomous, and gibberellin-dependent pathways. To elucidate the downstream targets of SOC1, microarray analyses were performed. The analysis revealed that the soc1-2 knockout mutant has increased, and an SOC1 overexpression line has decreased, expression of cold response genes such as CBFs (for CRT/DRE binding factors) and COR (for cold regulated) genes, suggesting that SOC1 negatively regulates the expression of the cold response genes. By contrast, overexpression of cold-inducible CBFs caused late flowering through increased expression of FLOWERING LOCUS C (FLC), an upstream negative regulator of SOC1. Our results demonstrate the presence of a feedback loop between cold response and flowering-time regulation; this loop delays flowering through the increase of FLC when a cold spell is transient as in fall or early spring but suppresses the cold response when floral induction occurs through the repression of cold-inducible genes by SOC1.
机译:开花的适当时机对于植物繁殖成功至关重要。因此,开花受内源信号和环境提示微调的复杂遗传网络调控并不奇怪。拟南芥开花时间基因CONSTANS1(SOC1)过表达的抑制子编码MADS盒转录因子,是整合多种花卉诱导途径(即长日,春化,自主和赤霉素依赖途径)的关键花卉激活剂之一。 。为了阐明SOC1的下游目标,进行了微阵列分析。分析表明,soc1-2基因敲除突变体增加,而SOC1过表达谱线减少,冷应答基因例如CBFs(用于CRT / DRE结合因子)和COR(用于冷调节)基因的表达,表明SOC1阴性调节寒冷反应基因的表达。相比之下,冷诱导的CBF的过表达通过SOC1的上游负调节子FLOWERING LOCUS C(FLC)的表达增加而导致开花后期。我们的结果表明,冷反应和开花时间调节之间存在反馈回路。当寒冷季节在秋天或早春短暂出现时,该循环通过FLC的增加延迟开花,但是当通过SOC1抑制寒冷诱导基因发生花诱导而抑制寒冷响应时。

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