Zhang Shengchun, Yang Chengwei, Peng Jianzong, Sun Shulan, Wang Xiaojing
Guangdong Key Lab of Biotechnology for Plant Development, College of Life Sciences, South China Normal University, Guangzhou 510631, Guangdong, People's Republic of China.
Plant Mol Biol. 2009 Apr;69(6):745-59. doi: 10.1007/s11103-009-9452-7. Epub 2009 Feb 4.
Flowering is a critical event in the life cycle of plants and is regulated by a combination of endogenous controls and environmental cues. In the present work, we provide clear genetic evidence that GASA5, a GASA family gene in Arabidopsis (Arabidopsis thaliana), is involved in controlling flowering time and stem growth. GASA5 expression was present in all tissues of Arabidopsis plants, as detected by RT-PCR, and robust GUS staining was observed in the shoot apex of 8-day-old seedlings and inflorescence meristems during reproductive development. Phenotypic analysis showed that a GASA5 null mutant (gasa5-1) flowered earlier than wild type with a faster stem growth rate under both long-day (LD) and short-day (SD) photoperiods. In contrast, transgenic plants overexpressing GASA5 demonstrated delayed flowering, with a slower stem growth rate compared to wild-type plants. However, neither the GASA5 null mutants nor the GASA5 overexpressing plants revealed obvious differences in flowering time upon treatment with gibberellic acid (GA(3)), indicating that GASA5 is involved in gibberellin (GA)-promoted flowering. GAI (GA INSENSITIVE), one of the five DELLAs in Arabidopsis, was more highly expressed in GASA5-overexpressing plants, but it was lower in gasa5-1. Further transcript profiling analysis suggested that GASA5 delayed flowering by enhancing FLOWERING LOCUS C (FLC) expression and repressing the expression of key flowering-time genes, FLOWERING LOCUS T (FT) and LEAFY (LFY). Our results suggest that GASA5 is a negative regulator of GA-induced flowering and stem growth.
开花是植物生命周期中的一个关键事件,受到内源性调控和环境信号的共同调节。在本研究中,我们提供了明确的遗传学证据,表明拟南芥中的一个GASA家族基因GASA5参与调控开花时间和茎的生长。通过RT-PCR检测发现,GASA5在拟南芥植株的所有组织中均有表达,并且在8日龄幼苗的茎尖和生殖发育阶段的花序分生组织中观察到了强烈的GUS染色。表型分析表明,GASA5缺失突变体(gasa5-1)在长日照(LD)和短日照(SD)光周期下均比野生型开花早,茎生长速率更快。相反,过表达GASA5的转基因植株开花延迟,与野生型植株相比茎生长速率较慢。然而,用赤霉素(GA₃)处理后,GASA5缺失突变体和过表达植株在开花时间上均未显示出明显差异,这表明GASA5参与了赤霉素(GA)促进的开花过程。拟南芥中的五个DELLA蛋白之一GAI(GA不敏感)在过表达GASA5的植株中表达量更高,但在gasa5-1中表达量较低。进一步的转录谱分析表明,GASA5通过增强开花抑制基因FLOWERING LOCUS C(FLC)的表达并抑制关键开花时间基因FLOWERING LOCUS T(FT)和LEAFY(LFY)的表达来延迟开花。我们的结果表明,GASA5是GA诱导的开花和茎生长的负调控因子。