Boonman A, Prinsen E, Voesenek L A C J, Pons T L
Plant Ecophysiology Group, Institute of Environmental Biology, Utrecht University, 3584 CA, Utrecht, The Netherlands.
J Exp Bot. 2009;60(4):1179-90. doi: 10.1093/jxb/ern364. Epub 2009 Feb 24.
The regulation of photosynthetic acclimation to canopy density was investigated in tobacco canopies and in tobacco and Arabidopsis plants with part of their foliage experimentally shaded. Both species acclimated to canopy light gradients and partial shading by allocating photosynthetic capacity to leaves in high light and adjusting chloroplast organization to the local light conditions. An investigation was carried out to determine whether signalling mediated by photoreceptors, sugars, cytokinin, and nitrate is involved in and necessary for proper photosynthetic acclimation. No evidence was found for a role for sugars, or for nitrate. The distribution of cytokinins in tobacco stands of contrasting density could be explained in part by irradiance-dependent delivery of cytokinins through the transpiration stream. Functional studies using a comprehensive selection of Arabidopsis mutants and transgenics showed that normal wild-type responses to partial shading were retained when signalling mediated by photoreceptors or cytokinins was disrupted. This indicates that these pathways probably operate in a redundant manner. However, the reduction of the chlorophyll a/b ratio in response to local shade was completely absent in the Arabidopsis Ws-2 accession mutated in PHYTOCHROME D and in the triple phyAphyCphyD mutant. Moreover, cytokinin receptor mutants also showed a reduced response, suggesting a previously unrecognized function of phyD and cytokinins.
在烟草冠层以及部分叶片经实验遮荫的烟草和拟南芥植株中,研究了光合作用对冠层密度的适应性调节。两种植物都通过将光合能力分配到高光下的叶片,并根据局部光照条件调整叶绿体组织,来适应冠层光梯度和部分遮荫。开展了一项调查,以确定由光感受器、糖类、细胞分裂素和硝酸盐介导的信号传导是否参与并对适当的光合适应是必要的。未发现糖类或硝酸盐发挥作用的证据。不同密度烟草植株中细胞分裂素的分布,部分可通过蒸腾流中依赖辐照度的细胞分裂素传递来解释。使用多种拟南芥突变体和转基因植株进行的功能研究表明,当光感受器或细胞分裂素介导的信号传导被破坏时,野生型对部分遮荫的正常反应得以保留。这表明这些途径可能以冗余方式发挥作用。然而,在PHYTOCHROME D发生突变的拟南芥Ws-2品系以及phyAphyCphyD三重突变体中,完全不存在因局部遮荫而导致的叶绿素a/b比值降低的情况。此外,细胞分裂素受体突变体也表现出反应减弱,这表明phyD和细胞分裂素具有此前未被认识到的功能。