Department of Biological Mechanisms and Functions, Graduate School of Bioagricultural Sciences, Nagoya University, Nagoya, 464-8601 Japan.
Plant Cell Physiol. 2010 Jun;51(6):896-911. doi: 10.1093/pcp/pcq068. Epub 2010 May 3.
The pollen coat is a surface component of pollen grains required for fertilization. To study how the pollen coat is produced, we identified and characterized a recessive and conditional male-sterile Arabidopsis mutant, flaky pollen1-1 (fkp1-1), whose pollen grains lack functional pollen coats. FKP1 is a single-copy gene in the Arabidopsis genome and encodes 3-hydroxy-3-methylglutaryl-coenzyme A synthase (HMG-CoA synthase), an enzyme of the mevalonate (MVA) pathway involved in biosynthesis of isoprenoids such as sterols. We found that fkp1-1 possesses a T-DNA insertion 550 bp upstream of the initiation codon. RT-PCR and promoter analyses revealed that fkp1-1 results in knockdown of FKP1 predominantly in tapetum. Electron microscopy showed that the mutation affected the development of tapetum-specific lipid-containing organelles (elaioplast and tapetosome), causing the deficient formation of fkp1-1 pollen coats. These results suggest that both elaioplasts, which accumulate vast amount of sterol esters, and tapetosomes, which are unique oil-accumulating structures, require the MVA pathway for development. Null alleles of fkp1 were male-gametophyte lethal upon pollen tube elongation, whereas female gametophytes were normal. These results show that the MVA pathway is essential, at least in tapetal cells and pollen grains, for the development of tapetum-specific organelles and the fertility of pollen grains.
花粉外壁是花粉粒进行受精所必需的表面组成部分。为了研究花粉外壁的产生机制,我们鉴定并描述了一个隐性条件雄性不育的拟南芥突变体 flaky pollen1-1(fkp1-1),其花粉粒缺乏功能正常的花粉外壁。FKP1 是拟南芥基因组中的单拷贝基因,编码 3-羟基-3-甲基戊二酰基辅酶 A 合酶(HMG-CoA 合酶),这是一种甲羟戊酸(MVA)途径中的酶,参与异戊二烯类物质(如甾醇)的生物合成。我们发现 fkp1-1 在起始密码子上游 550bp 处有一个 T-DNA 插入。RT-PCR 和启动子分析表明,fkp1-1 主要在绒毡层中导致 FKP1 的敲低。电子显微镜显示,该突变影响了绒毡层特异的含脂细胞器(质体和小泡体)的发育,导致 fkp1-1 花粉外壁形成缺陷。这些结果表明,富含甾醇酯的质体和特有的油脂积累结构小泡体都需要 MVA 途径来发育。当花粉管伸长时,fkp1 的 null 等位基因导致雄性配子体致死,而雌性配子体正常。这些结果表明,MVA 途径对于绒毡层特异细胞器的发育和花粉粒的育性是必不可少的,至少在绒毡层细胞和花粉粒中是如此。