Departamento de Biologia Vegetal, Universidade Federal de Viçosa, 36570-000, Viçosa, MG, Brazil.
Physiol Plant. 2014 Oct;152(2):355-66. doi: 10.1111/ppl.12178. Epub 2014 Apr 4.
Silicon (Si) plays important roles in alleviating various abiotic stresses. In rice (Oryza sativa), arsenic (As) is believed to share the Si transport pathway for entry into roots, and Si has been demonstrated to decrease As concentrations. However, the physiological mechanisms through which Si might alleviate As toxicity in plants remain poorly elucidated. We combined detailed gas exchange measurements with chlorophyll fluorescence analysis to examine the effects of Si nutrition on photosynthetic performance in rice plants [a wild-type (WT) cultivar and its lsi1 mutant defective in Si uptake] challenged with As (arsenite). As treatment impaired carbon fixation (particularly in the WT genotype) that was unrelated to photochemical or biochemical limitations but, rather, was largely associated with decreased leaf conductance at the stomata and mesophyll levels. Indeed, regardless of the genotypes, in the plants challenged with As, photosynthetic rates correlated strongly with both stomatal (r(2) = 0.90) and mesophyll (r(2) = 0.95) conductances, and these conductances were, in turn, linearly correlated with each other. The As-related impairments to carbon fixation could be considerably reverted by Si in a time- and genotype-dependent manner. In conclusion, we identified Si nutrition as an important target in an attempt to not only decrease As concentrations but also to ameliorate the photosynthetic performance of rice plants challenged with As.
硅(Si)在缓解各种非生物胁迫方面起着重要作用。在水稻(Oryza sativa)中,砷(As)被认为与 Si 一起通过相同的运输途径进入根部,并且已经证明 Si 可以降低 As 的浓度。然而,Si 可能通过何种生理机制来减轻植物中的 As 毒性仍不清楚。我们结合详细的气体交换测量和叶绿素荧光分析,研究了 Si 营养对受 As(亚砷酸盐)胁迫的水稻植株(一种野生型(WT)品种及其 Si 吸收缺陷的 lsi1 突变体)光合作用性能的影响。As 处理会损害碳固定(特别是在 WT 基因型中),这与光化学或生物化学限制无关,而是主要与叶片气孔和叶肉水平的导度降低有关。事实上,无论基因型如何,在受 As 胁迫的植物中,光合速率与气孔(r²=0.90)和叶肉(r²=0.95)导度都有很强的相关性,而这些导度彼此之间也呈线性相关。Si 可以在时间和基因型依赖的方式下,显著逆转 As 引起的碳固定损伤。总之,我们确定 Si 营养是一个重要的目标,不仅试图降低 As 浓度,还试图改善受 As 胁迫的水稻植物的光合作用性能。