Max Planck Institute for Plant Breeding Research, Carl von Linné Weg 10, Cologne, Germany.
Plant J. 2012 Mar;69(5):868-80. doi: 10.1111/j.1365-313X.2011.04839.x. Epub 2012 Jan 10.
Variation in photoperiod response is a major factor determining plant development and the agronomic performance of crops. The genetic control of photoperiodic flowering has been elucidated in the model plant Arabidopsis, and many of the identified genes are structurally conserved in the grasses. In this study, HvCO1, the closest barley ortholog of the key photoperiod response gene CONSTANS in Arabidopsis, was over-expressed in the spring barley Golden Promise. Over-expression of HvCO1 accelerated time to flowering in long- and short-day conditions and caused up-regulation of HvFT1 mRNA under long-day conditions. However, the transgenic plants retained a response to photoperiod, suggesting the presence of photoperiod response factors acting downstream of HvCO1 transcription. Analysis of a population segregating for HvCO1 over-expression and natural genetic variation at Ppd-H1 demonstrated that Ppd-H1 acts downstream of HvCO1 transcription on HvFT1 expression and flowering. Furthermore, variation at Ppd-H1 did not affect diurnal expression of HvCO1 or HvCO2. Over-expression of HvCO1 increased transcription of the spring allele of Vrn-H1 in long- and short-day conditions, while genetic variation at Ppd-H1 did not affect Vrn-H1 expression. Over-expression of HvCO1 and natural genetic variation at Ppd-H1 accelerated inflorescence development and stem elongation. Thus, HvCO1 probably induces flowering by activating HvFT1 whilst Ppd-H1 regulates HvFT1 independently of HvCO1 mRNA, and all three genes also appear to have a strong effect in promoting inflorescence development.
光周期反应的变化是决定植物发育和作物农艺性能的主要因素。拟南芥模式植物中阐明了光周期开花的遗传控制,许多鉴定的基因在禾本科植物中结构上是保守的。在这项研究中,大麦与拟南芥关键光周期反应基因 CONSTANS 最接近的同源物 HvCO1 在春大麦 Golden Promise 中过表达。HvCO1 的过表达加速了长日和短日条件下的开花时间,并导致长日条件下 HvFT1mRNA 的上调。然而,转基因植物仍然对光周期有反应,这表明存在作用于 HvCO1 转录下游的光周期反应因子。对 HvCO1 过表达和 Ppd-H1 自然遗传变异分离群体的分析表明,Ppd-H1 在 HvFT1 表达和开花方面作用于 HvCO1 转录的下游。此外,Ppd-H1 的变异不影响 HvCO1 或 HvCO2 的昼夜表达。HvCO1 的过表达增加了长日和短日条件下春等位基因 Vrn-H1 的转录,而 Ppd-H1 的遗传变异不影响 Vrn-H1 的表达。HvCO1 的过表达和 Ppd-H1 的自然遗传变异加速了花序发育和茎伸长。因此,HvCO1 可能通过激活 HvFT1 诱导开花,而 Ppd-H1 独立于 HvCO1mRNA 调节 HvFT1,这三个基因似乎也在促进花序发育方面有很强的作用。