Kondo Ayumu, Kaikawa Jun, Funaguma Toru, Ueno Osamu
Faculty of Agriculture, Meijo University, Tempaku-ku, Nagoya 468-8502, Japan.
Planta. 2004 Jul;219(3):500-6. doi: 10.1007/s00425-004-1252-3. Epub 2004 Apr 3.
Plants have evolved various photoprotective mechanisms to mitigate photodamage. Here we report the diurnal movement of chloroplasts in the leaves of succulent crassulacean acid metabolism (CAM) plants under combined light and water stress. In leaves of water-stressed plants, the chloroplasts became densely clumped in one or sometimes two areas in the cytoplasm under light and dispersed during darkness. The chloroplast clumping resulted in leaf optical changes, with a decrease in absorptance and an increase in transmittance. The plant stress hormone abscisic acid induced chloroplast clumping in the leaf cells under light. We suggest that the marked chloroplast movement in these CAM plants is a photoprotective strategy used by the plants subjected to severe water stress.
植物已经进化出各种光保护机制来减轻光损伤。在此,我们报告了多肉景天酸代谢(CAM)植物叶片中叶绿体在光照和水分胁迫共同作用下的昼夜运动情况。在水分胁迫植物的叶片中,叶绿体在光照下会密集地聚集在细胞质中的一个区域,有时是两个区域,而在黑暗中则会分散开来。叶绿体的聚集导致叶片光学特性发生变化,吸收率降低,透光率增加。植物胁迫激素脱落酸会在光照下诱导叶细胞中的叶绿体聚集。我们认为,这些CAM植物中显著的叶绿体运动是遭受严重水分胁迫的植物所采用的一种光保护策略。