Maeda Hiroshi, Sage Tammy L, Isaac Giorgis, Welti Ruth, Dellapenna Dean
Department of Biochemistry and Molecular Biology, Michigan State University, East Lansing, Michigan 48824, USA.
Plant Cell. 2008 Feb;20(2):452-70. doi: 10.1105/tpc.107.054718. Epub 2008 Feb 26.
Tocopherols (vitamin E) are synthesized in plastids and have long been assumed to have essential functions restricted to these organelles. We previously reported that the vitamin e-deficient2 (vte2) mutant of Arabidopsis thaliana is defective in transfer cell wall development and photoassimilate transport at low temperature (LT). Here, we demonstrate that LT-treated vte2 has a distinct composition of polyunsaturated fatty acids (PUFAs): lower levels of linolenic acid (18:3) and higher levels of linoleic acid (18:2) compared with the wild type. Enhanced 18:3 oxidation was not involved, as indicated by the limited differences in oxidized lipid species between LT-treated vte2 and the wild type and by a lack of impact on the LT-induced vte2 phenotype in a vte2 fad3 fad7 fad8 quadruple mutant deficient in 18:3. PUFA changes in LT-treated vte2 occur primarily in phospholipids due to reduced conversion of dienoic to trienoic fatty acids in the endoplasmic reticulum (ER) pathway. Introduction of the ER fatty acid desaturase mutation, fad2, and to a lesser extent the plastidic fad6 mutation into the vte2 background suppressed the LT-induced vte2 phenotypes, including abnormal transfer cell wall development. These results provide biochemical and genetic evidence that plastid-synthesized tocopherols modulate ER PUFA metabolism early in the LT adaptation response of Arabidopsis.
生育酚(维生素E)在质体中合成,长期以来人们一直认为其基本功能仅限于这些细胞器。我们之前报道过,拟南芥的维生素e缺陷2(vte2)突变体在低温(LT)下转运细胞壁发育和光合同化物运输方面存在缺陷。在这里,我们证明,与野生型相比,经LT处理的vte2具有不同的多不饱和脂肪酸(PUFA)组成:亚麻酸(18:3)水平较低,亚油酸(18:2)水平较高。经LT处理的vte2和野生型之间氧化脂质种类的差异有限,以及在缺乏18:3的vte2 fad3 fad7 fad8四重突变体中对LT诱导的vte2表型缺乏影响,表明增强的18:3氧化不涉及其中。经LT处理的vte2中PUFA的变化主要发生在磷脂中,这是由于内质网(ER)途径中二烯脂肪酸向三烯脂肪酸的转化减少。将ER脂肪酸去饱和酶突变fad2以及程度较轻的质体fad6突变引入vte2背景中,抑制了LT诱导的vte2表型,包括异常的转运细胞壁发育。这些结果提供了生化和遗传证据,表明质体合成的生育酚在拟南芥LT适应反应早期调节ER PUFA代谢。