Department of Biology, Graduate School of Science, Osaka Metropolitan University, 1-1 Gakuen-cho, Naka-ku,Sakai, Osaka 599-8531, Japan.
Department of Chemical and Biological Sciences, Faculty of Science, Japan Women's University, Bunkyo-ku, Tokyo 112-8681, Japan.
Plant Physiol. 2024 Feb 29;194(3):1692-1704. doi: 10.1093/plphys/kiad604.
Dark-germinated angiosperm seedlings develop chloroplast precursors called etioplasts in cotyledon cells. Etioplasts develop lattice membrane structures called prolamellar bodies (PLBs), where the chlorophyll intermediate protochlorophyllide (Pchlide) forms a ternary complex with NADPH and light-dependent NADPH:Pchlide oxidoreductase (LPOR). The lipid bilayers of etioplast membranes are mainly composed of galactolipids, which play important roles in membrane-associated processes in etioplasts. Although etioplast membranes also contain 2 anionic lipids, phosphatidylglycerol (PG) and sulfoquinovosyldiacylglycerol (SQDG), their roles are unknown. To determine the roles of PG and SQDG in etioplast development, we characterized etiolated Arabidopsis (Arabidopsis thaliana) mutants deficient in PG and SQDG biosynthesis. A partial deficiency in PG biosynthesis loosened the lattice structure of PLBs and impaired the insertion of Mg2+ into protoporphyrin IX, leading to a substantial decrease in Pchlide content. Although a complete lack of SQDG biosynthesis did not notably affect PLB formation and Pchlide biosynthesis, lack of SQDG in addition to partial PG deficiency strongly impaired these processes. These results suggested that PG is required for PLB formation and Pchlide biosynthesis, whereas SQDG plays an auxiliary role in these processes. Notably, PG deficiency and lack of SQDG oppositely affected the dynamics of LPOR complexes after photoconversion, suggesting different involvements of PG and SQDG in LPOR complex organization. Our data demonstrate pleiotropic roles of anionic lipids in etioplast development.
深色发芽的被子植物幼苗在子叶细胞中发育出称为前质体的叶绿体前体。前质体发育出晶格膜结构,称为前板层体(PLB),其中叶绿素中间产物原叶绿素(Pchlide)与 NADPH 和依赖光的 NADPH:Pchlide 氧化还原酶(LPOR)形成三元复合物。前质体膜的脂双层主要由半乳糖脂组成,它们在前质体中与膜相关的过程中发挥重要作用。尽管前质体膜还含有 2 种阴离子脂质,即磷脂酰甘油(PG)和磺基奎诺糖二酰甘油(SQDG),但其作用尚不清楚。为了确定 PG 和 SQDG 在前质体发育中的作用,我们对 PG 和 SQDG 生物合成缺陷的拟南芥(Arabidopsis thaliana)突变体进行了特征分析。PG 生物合成的部分缺陷会使 PLB 的晶格结构变松,并损害 Mg2+ 插入原卟啉 IX,导致 Pchlide 含量大幅下降。虽然 SQDG 生物合成完全缺失并没有明显影响 PLB 的形成和 Pchlide 的生物合成,但 PG 部分缺陷加上 SQDG 的缺乏强烈地损害了这些过程。这些结果表明 PG 是 PLB 形成和 Pchlide 生物合成所必需的,而 SQDG 在这些过程中发挥辅助作用。值得注意的是,PG 缺陷和缺乏 SQDG 对光转化后 LPOR 复合物的动力学有相反的影响,这表明 PG 和 SQDG 在 LPOR 复合物组织中的不同参与。我们的数据证明了阴离子脂质在前质体发育中的多效性作用。