Key Laboratory of Crop Germplasm Resource of Zhejiang Province, College of Agriculture and Biotechnology, Hangzhou 310012, China.
Plant Cell Environ. 2012 Dec;35(12):2155-69. doi: 10.1111/j.1365-3040.2012.02546.x. Epub 2012 Jun 20.
Previous studies based on microarray analysis have found that DELLAs down-regulate several GDSL genes in unopened flowers and/or imbibed seeds. This suggests the role of DELLAs in seed fatty acid (FA) metabolism. In the present study, enhancement of gibberellin (GA) signalling through DELLA mutation or exogenous gibberellin acid A3 (GA(3) ) resulted in the up-regulated expression of transcription factors for embryogenesis and seed development, genes involved in the FA biosynthesis pathway, and five GDSL-type Seed Fatty Acid Reducer (SFAR) genes. SFAR overexpression reduced the total seed FA content and led to a particular pattern of seed FA composition. This 'SFAR footprint' can also be found in plants with enhanced GA(3) signalling. By contrast, the loss of SFAR function dramatically increases the seed FA content. The transgenic lines that overexpress SFAR were less sensitive to stressful environments, reflected by a higher germination rate and better seedling establishment compared with the wild type (WT) plants. The GDSL-type hydrolyzer is a family of proteins largely uncharacterized in Arabidopsis. Their biological function remains poorly understood. SFAR reduces seed FA storage and acts downstream of the GA signalling pathway. We provide the first evidence that some GDSL proteins are somehow involved in FA degradation in Arabidopsis seeds.
先前基于微阵列分析的研究发现,DELLAs 在未开花的花朵和/或吸胀种子中下调几种 GDSL 基因。这表明 DELLAs 在种子脂肪酸 (FA) 代谢中的作用。在本研究中,通过 DELLA 突变或外源赤霉素酸 A3 (GA(3) ) 增强赤霉素 (GA) 信号转导导致胚胎发生和种子发育的转录因子、参与 FA 生物合成途径的基因以及五个 GDSL 型种子脂肪酸还原酶 (SFAR) 基因的上调表达。SFAR 的过表达降低了总种子 FA 含量,并导致种子 FA 组成的特定模式。这种“SFAR 足迹”也可以在增强 GA(3) 信号转导的植物中找到。相比之下,SFAR 功能的丧失显著增加了种子 FA 的含量。与野生型 (WT) 植物相比,过表达 SFAR 的转基因系对胁迫环境的敏感性较低,表现在发芽率更高和幼苗定植更好。GDSL 型水解酶是拟南芥中一类功能很大程度上尚未确定的蛋白质。它们的生物学功能仍知之甚少。SFAR 减少种子 FA 的储存,并作用于 GA 信号转导途径的下游。我们提供了第一个证据,表明某些 GDSL 蛋白在某种程度上参与了拟南芥种子中的 FA 降解。