Hricová Andrea, Quesada Victor, Micol José Luis
División de Genética and Instituto de Bioingeniería, Universidad Miguel Hernández, Campus de Elche, 03202 Elche, Spain.
Plant Physiol. 2006 Jul;141(3):942-56. doi: 10.1104/pp.106.080069. Epub 2006 May 12.
In many plant species, a subset of the genes of the chloroplast genome is transcribed by RpoTp, a nuclear-encoded plastid-targeted RNA polymerase. Here, we describe the positional cloning of the SCABRA3 (SCA3) gene, which was found to encode RpoTp in Arabidopsis (Arabidopsis thaliana). We studied one weak (sca3-1) and two strong (sca3-2 and sca3-3) alleles of the SCA3 gene, the latter two showing severely impaired plant growth and reduced pigmentation of the cotyledons, leaves, stem, and sepals, all of which were pale green. The leaf surface was extremely crumpled in the sca3 mutants, although epidermal cell size and morphology were not perturbed, whereas the mesophyll cells were less densely packed and more irregular in shape than in the wild type. A significant reduction in the size, morphology, and number of chloroplasts was observed in homozygous sca3-2 individuals whose photoautotrophic growth was consequently perturbed. Microarray analysis showed that several hundred nuclear genes were differentially expressed in sca3-2 and the wild type, about one-fourth of which encoded chloroplast-targeted proteins. Quantitative reverse transcription-PCR analyses showed that the sca3-2 mutation alters the expression of the rpoB, rpoC1, clpP, and accD plastid genes and the SCA3 paralogs RpoTm and RpoTmp, which respectively encode nuclear-encoded mitochondrion or dually targeted RNA polymerases. Double-mutant analysis indicated that RpoTmp and SCA3 play redundant functions in plant development. Our findings support a role for plastids in leaf morphogenesis and indicate that RpoTp is required for mesophyll cell proliferation.
在许多植物物种中,叶绿体基因组的一部分基因由RpoTp转录,RpoTp是一种定位于质体的核编码RNA聚合酶。在此,我们描述了SCABRA3(SCA3)基因的定位克隆,该基因在拟南芥中被发现编码RpoTp。我们研究了SCA3基因的一个弱等位基因(sca3 - 1)和两个强等位基因(sca3 - 2和sca3 - 3),后两个等位基因导致植物生长严重受损,子叶、叶片、茎和萼片色素沉着减少,均呈淡绿色。尽管表皮细胞大小和形态未受干扰,但sca3突变体的叶片表面极度皱缩,而叶肉细胞比野生型排列疏松且形状更不规则。在纯合的sca3 - 2个体中观察到叶绿体大小、形态和数量显著减少,其光合自养生长因此受到干扰。微阵列分析表明,数百个核基因在sca3 - 2和野生型中差异表达,其中约四分之一编码定位于叶绿体的蛋白质。定量逆转录 - PCR分析表明,sca3 - 2突变改变了rpoB、rpoC1、clpP和accD质体基因以及SCA3旁系同源基因RpoTm和RpoTmp的表达,它们分别编码核编码的线粒体或双靶向RNA聚合酶。双突变分析表明,RpoTmp和SCA3在植物发育中发挥冗余功能。我们的研究结果支持质体在叶片形态发生中的作用,并表明RpoTp是叶肉细胞增殖所必需的。