Université de Lyon, Ecole Normale Supérieure de Lyon, Université Lyon 1, IFR128 BioSciences Lyon Gerland, Unité Reproduction et Développement des Plantes, F-69364 Lyon, France.
Plant Physiol. 2011 Jun;156(2):674-86. doi: 10.1104/pp.111.173641. Epub 2011 Apr 6.
WRINKLED1 (WRI1), a key regulator of seed oil biosynthesis in Arabidopsis (Arabidopsis thaliana), was duplicated during the genome amplification of the cereal ancestor genome 90 million years ago. Both maize (Zea mays) coorthologs ZmWri1a and ZmWri1b show a strong transcriptional induction during the early filling stage of the embryo and complement the reduced fatty acid content of Arabidopsis wri1-4 seeds, suggesting conservation of molecular function. Overexpression of ZmWri1a not only increases the fatty acid content of the mature maize grain but also the content of certain amino acids, of several compounds involved in amino acid biosynthesis, and of two intermediates of the tricarboxylic acid cycle. Transcriptomic experiments identified 18 putative target genes of this transcription factor, 12 of which contain in their upstream regions an AW box, the cis-element bound by AtWRI1. In addition to functions related to late glycolysis and fatty acid biosynthesis in plastids, the target genes also have functions related to coenzyme A biosynthesis in mitochondria and the production of glycerol backbones for triacylglycerol biosynthesis in the cytoplasm. Interestingly, the higher seed oil content in ZmWri1a overexpression lines is not accompanied by a reduction in starch, thus opening possibilities for the use of the transgenic maize lines in breeding programs.
WRINKLED1(WRI1)是拟南芥(Arabidopsis thaliana)种子油生物合成的关键调节因子,在 9000 万年前谷物祖先基因组的扩增过程中发生了复制。玉米(Zea mays)的两个同源基因 ZmWri1a 和 ZmWri1b 在胚胎早期填充阶段表现出强烈的转录诱导作用,并补充了拟南芥 wri1-4 种子中脂肪酸含量的降低,这表明其分子功能具有保守性。ZmWri1a 的过表达不仅增加了成熟玉米籽粒的脂肪酸含量,还增加了某些氨基酸、几种参与氨基酸生物合成的化合物以及三羧酸循环的两个中间产物的含量。转录组实验鉴定出这个转录因子的 18 个潜在靶基因,其中 12 个在其上游区域含有一个 AW 盒,这是 AtWRI1 结合的顺式元件。除了与质体中晚期糖酵解和脂肪酸生物合成有关的功能外,靶基因还与线粒体中辅酶 A 生物合成和细胞质中三酰甘油生物合成甘油骨架的产生有关。有趣的是,ZmWri1a 过表达系中更高的种子油含量并没有伴随着淀粉的减少,从而为利用转基因玉米系进行育种计划提供了可能性。