...
首页> 外文期刊>Plant physiology >PLASTID MOVEMENT IMPAIRED1 and PLASTID MOVEMENT IMPAIRED1-RELATED1 Mediate Photorelocation Movements of Both Chloroplasts and Nuclei(1[OPEN])
【24h】

PLASTID MOVEMENT IMPAIRED1 and PLASTID MOVEMENT IMPAIRED1-RELATED1 Mediate Photorelocation Movements of Both Chloroplasts and Nuclei(1[OPEN])

机译:质子运动受损1和质子运动受损1-相关1介导叶绿体和细胞核的光重定位运动(1 [OPEN])

获取原文
获取原文并翻译 | 示例
           

摘要

Organelle movement and positioning play important roles in fundamental cellular activities and adaptive responses to environmental stress in plants. To optimize photosynthetic light utilization, chloroplasts move toward weak blue light (the accumulation response) and escape from strong blue light (the avoidance response). Nuclei also move in response to strong blue light by utilizing the lightinduced movement of attached plastids in leaf cells. Blue light receptor phototropins and several factors for chloroplast photorelocation movement have been identified through molecular genetic analysis of Arabidopsis (Arabidopsis thaliana). PLASTID MOVEMENT IMPAIRED1 (PMI1) is a plant-specific C2-domain protein that is required for efficient chloroplast photorelocation movement. There are two PLASTID MOVEMENT IMPAIRED1-RELATED (PMIR) genes, PMIR1 and PMIR2, in the Arabidopsis genome. However, the mechanism in which PMI1 regulates chloroplast and nuclear photorelocation movements and the involvement of PMIR1 and PMIR2 in these organelle movements remained unknown. Here, we analyzed chloroplast and nuclear photorelocation movements in mutant lines of PMI1, PMIR1, and PMIR2. In mesophyll cells, the pmi1 single mutant showed severe defects in both chloroplast and nuclear photorelocation movements resulting from the impaired regulation of chloroplast-actin filaments. In pavement cells, pmi1 mutant plants were partially defective in both plastid and nuclear photorelocation movements, but pmi1pmir1 and pmi1pmir1pmir2 mutant lines lacked the blue light-induced movement responses of plastids and nuclei completely. These results indicated that PMI1 is essential for chloroplast and nuclear photorelocation movements in mesophyll cells and that both PMI1 and PMIR1 are indispensable for photorelocation movements of plastids and thus, nuclei in pavement cells.
机译:细胞器的移动和定位在基本的细胞活动和植物对环境胁迫的适应性反应中起着重要作用。为了优化光合光的利用率,叶绿体向弱蓝光(累积响应)移动并从强蓝光逃逸(避免响应)。通过利用光诱导叶细胞中附着质体的运动,核还响应强蓝光而运动。通过拟南芥(Arabidopsis thaliana)的分子遗传分析,已确定了蓝光受体光蛋白和叶绿体光定位运动的几个因素。 PLASTID MOVEMENT IMPAIRED1(PMI1)是植物特定的C2域蛋白,是有效的叶绿体光定位运动所需的。拟南芥基因组中有两个PLASTID MOVEMENT IMPAIRED1-RELATED(PMIR)基因PMIR1和PMIR2。但是,PMI1调节叶绿体和核光能重定位运动的机制以及PMIR1和PMIR2参与这些细胞器运动的机制仍然未知。在这里,我们分析了PMI1,PMIR1和PMIR2突变株中的叶绿体和核光重定位运动。在叶肉细胞中,pmi1单个突变体在叶绿体和核光定位运动中均显示出严重缺陷,这是由于叶绿体-肌动蛋白丝的调节受损所致。在路面细胞中,pmi1突变体植物在质体和核光重定位运动中均存在部分缺陷,但pmi1pmir1和pmi1pmir1pmir2突变体系完全缺乏蓝光诱导的质体和细胞核运动响应。这些结果表明,PMI1对于叶肉细胞中的叶绿体和核光重新定位运动是必不可少的,并且PMI1和PMIR1对于质体的光重新定位运动以及路面细胞中的细胞核都是必不可少的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号