Tanaka Hiroyuki, Sato Mayuko, Ogasawara Yuka, Hamashima Noriko, Buchner Othmar, Holzinger Andreas, Toyooka Kiminori, Kodama Yutaka
Center for Bioscience Research and Education, Utsunomiya University, Tochigi, 321-8505, Japan.
Collaboration Center for Research and Development, Utsunomiya University, Tochigi, 321-8585, Japan.
J Plant Res. 2017 Nov;130(6):1061-1070. doi: 10.1007/s10265-017-0958-9. Epub 2017 Jun 20.
Under low-light conditions, chloroplasts localize along periclinal cell walls at temperatures near 20 °C, but they localize along anticlinal cell walls near 5 °C. This phenomenon is known as the cold-positioning response. We previously showed that chloroplasts move as aggregates rather than individually during the cold-positioning response in the fern Adiantum capillus-veneris. This observation suggested that chloroplasts physically interact with each other during the cold-positioning response. However, the physiological processes underlying chloroplast aggregation are unclear. In this report, we characterized chloroplast aggregation during the cold-positioning response in the liverwort Marchantia polymorpha. Confocal laser microscopy observations of transgenic liverwort plants expressing a fluorescent fusion protein that localizes to the chloroplast outer envelope membrane (OEP7-Citrine) showed that neighboring chloroplast membranes did not fuse during the cold-positioning response. Transmission electron microscopy analysis revealed that a distance of at least 10 nm was maintained between neighboring chloroplasts during aggregation. These results indicate that aggregated chloroplasts do not fuse, but maintain a distance of at least 10 nm from each other during the cold-positioning response.
在弱光条件下,叶绿体在接近20°C的温度下沿平周细胞壁定位,但在接近5°C时沿垂周细胞壁定位。这种现象被称为冷定位反应。我们之前表明,在铁线蕨铁线蕨的冷定位反应过程中,叶绿体以聚集体形式移动而非单个移动。这一观察结果表明,叶绿体在冷定位反应过程中相互之间存在物理相互作用。然而,叶绿体聚集背后的生理过程尚不清楚。在本报告中,我们对地钱多形苔在冷定位反应过程中的叶绿体聚集进行了表征。对表达定位于叶绿体外被膜(OEP7-柠檬黄)的荧光融合蛋白的转基因地钱植物进行共聚焦激光显微镜观察表明,在冷定位反应过程中相邻叶绿体膜并未融合。透射电子显微镜分析显示,聚集过程中相邻叶绿体之间保持至少10纳米的距离。这些结果表明,聚集的叶绿体不会融合,而是在冷定位反应过程中彼此保持至少10纳米的距离。