Chen Tsu-Wei, Kahlen Katrin, Stützel Hartmut
Institute of Horticultural Production Systems, Leibniz Universität Hannover, Hannover, 30419, Germany.
Department of Vegetable Crops, Geisenheim University, Geisenheim, 65366, Germany.
Plant Cell Environ. 2015 Aug;38(8):1528-42. doi: 10.1111/pce.12504. Epub 2015 Mar 4.
There are conflicting opinions on the relative importance of photosynthetic limitations under salinity. Quantitative limitation analysis of photosynthesis provides insight into the contributions of different photosynthetic limitations, but it has only been applied under saturating light conditions. Using experimental data and modelling approaches, we examined the influence of light intensity on photosynthetic limitations and quantified the osmotic and ionic effects of salinity on stomatal (LS ), mesophyll (LM ), biochemical (LB ) and light (LL ) limitations in cucumber (Cucumis sativus L.) under different light intensities. Non-linear dependencies of LS , LM and LL to light intensity were found. Osmotic effects on LS and LM increased with the salt concentration in the nutrient solution (Ss ) and the magnitude of LM depended on light intensity. LS increased with the Na(+) concentration in the leaf water (Sl ) and its magnitude depended on Ss . Biochemical capacity declined linearly with Sl but, surprisingly, the relationship between LB and Sl was influenced by Ss . Our results suggest that (1) improvement of stomatal regulation under ionic stress would be the most effective way to alleviate salinity stress in cucumber and (2) osmotic stress may alleviate the ionic effects on LB but aggravate the ionic effects on LS .
关于盐分条件下光合限制的相对重要性,存在相互矛盾的观点。光合作用的定量限制分析有助于深入了解不同光合限制的作用,但该方法仅在饱和光照条件下应用过。利用实验数据和建模方法,我们研究了光强对光合限制的影响,并量化了盐分在不同光强下对黄瓜(Cucumis sativus L.)气孔(LS)、叶肉(LM)、生化(LB)和光(LL)限制的渗透和离子效应。发现LS、LM和LL对光强存在非线性依赖关系。对LS和LM的渗透效应随营养液中盐分浓度(Ss)的增加而增大,且LM的大小取决于光强。LS随叶片水分中Na(+)浓度(Sl)的增加而增大,其大小取决于Ss。生化能力随Sl呈线性下降,但令人惊讶的是,LB与Sl之间的关系受Ss影响。我们的结果表明:(1)在离子胁迫下改善气孔调节是缓解黄瓜盐分胁迫的最有效途径;(2)渗透胁迫可能减轻离子对LB的影响,但会加重离子对LS的影响。