Luesse Darron R, DeBlasio Stacy L, Hangarter Roger P
Department of Biology, Indiana University, Bloomington, Indiana 47405, USA.
Plant Physiol. 2006 Aug;141(4):1328-37. doi: 10.1104/pp.106.080333. Epub 2006 Jun 15.
Chloroplasts move in a light-dependent manner that can modulate the photosynthetic potential of plant cells. Identification of genes required for light-induced chloroplast movement is beginning to define the molecular machinery that controls these movements. In this work, we describe plastid movement impaired 2 (pmi2), a mutant in Arabidopsis (Arabidopsis thaliana) that displays attenuated chloroplast movements under intermediate and high light intensities while maintaining a normal movement response under low light intensities. In wild-type plants, fluence rates below 20 micromol m(-2) s(-1) of blue light lead to chloroplast accumulation on the periclinal cell walls, whereas light intensities over 20 micromol m(-2) s(-1) caused chloroplasts to move toward the anticlinal cell walls (avoidance response). However, at light intensities below 75 micromol m(-2) s(-1), chloroplasts in pmi2 leaves move to the periclinal walls; 100 micromol m(-2) s(-1) of blue light is required for chloroplasts in pmi2 to move to the anticlinal cell walls, indicating a shift in the light threshold for the avoidance response in the mutant. The pmi2 mutation has been mapped to a gene that encodes a protein of unknown function with a large coiled-coil domain in the N terminus and a putative P loop. PMI2 shares sequence and structural similarity with PMI15, another unknown protein in Arabidopsis that, when mutated, causes a defect in chloroplast avoidance under high-light intensities.
叶绿体以光依赖的方式移动,这种方式能够调节植物细胞的光合潜力。对光诱导叶绿体移动所需基因的鉴定,开始明确控制这些移动的分子机制。在这项研究中,我们描述了质体移动受损2(pmi2),这是拟南芥中的一个突变体,在中等和高光强度下叶绿体移动减弱,而在低光强度下保持正常的移动反应。在野生型植物中,蓝光通量率低于20微摩尔·米-2·秒-1会导致叶绿体在平周细胞壁上积累,而光强度超过20微摩尔·米-2·秒-1会使叶绿体移向垂周细胞壁(回避反应)。然而,在光强度低于75微摩尔·米-2·秒-1时,pmi2叶片中的叶绿体移向平周壁;pmi2中的叶绿体需要100微摩尔·米-2·秒-1的蓝光才能移向垂周细胞壁,这表明该突变体中回避反应的光阈值发生了变化。pmi2突变已定位到一个基因,该基因编码一种功能未知的蛋白质,其N端有一个大的卷曲螺旋结构域和一个推定的P环。PMI2与PMI15在序列和结构上具有相似性,PMI15是拟南芥中另一种功能未知的蛋白质,突变后在高光强度下会导致叶绿体回避缺陷。