Research Group on Plant Biology Under Mediterranean Conditions, Universitat de les Illes Balears, Ctra. de Valldemossa Km. 7.5, 07122, Palma, Spain,
Photosynth Res. 2013 Nov;117(1-3):73-90. doi: 10.1007/s11120-013-9861-y. Epub 2013 Jun 8.
The main objective of the present review is to provide a compilation of published data of the effects of several climatic conditions on Rubisco, particularly its activity, state of activation, and concentration, and its influence on leaf gas exchange and photosynthesis. The environmental conditions analyzed include drought, salinity, heavy metals, growth temperature, and elevated [O3], [CO2], and ultraviolet-B irradiance. The results show conclusive evidence for a major negative effect on activity of Rubisco with increasing intensity of a range of abiotic stress factors. This decrease in the activity of Rubisco is associated with down-regulation of the activation state of the enzyme (e.g., by de-carbamylation and/or binding of inhibitory sugar phosphates) in response to drought or high temperature. On the contrary, the negative effects of low temperature, heavy metal stress (cadmium), ozone, and UV-B stress on Rubisco activity are associated with changes in the concentration of Rubisco. Notably, in response to all environmental factors, the regulation of in vivo CO2 assimilation rate was related to Rubisco in vitro parameters, either concentration and/or carboxylation, depending on the particular stress. The importance of the loss of Rubisco activity and its repercussion on plant photosynthesis are discussed in the context of climate change. It is suggested that decreased Rubisco activity will be a major effect induced by climate change, which will need to be considered in any prediction model on plant productivity in the near future.
本综述的主要目的是提供已发表的数据,总结几种气候条件对 RuBP 羧化酶(Rubisco)的影响,特别是其活性、激活状态和浓度,以及对叶片气体交换和光合作用的影响。分析的环境条件包括干旱、盐度、重金属、生长温度以及升高的臭氧(O3)、二氧化碳(CO2)和紫外线-B 辐射。结果表明,一系列非生物胁迫因素的强度增加对 Rubisco 活性有重大负面影响。这种 Rubisco 活性的降低与酶的激活状态下调有关(例如脱羧和/或结合抑制性糖磷酸),以响应干旱或高温。相反,低温、重金属胁迫(镉)、臭氧和 UV-B 胁迫对 Rubisco 活性的负面影响与 Rubisco 浓度的变化有关。值得注意的是,对于所有环境因素,体内 CO2 同化率的调节与体外参数(Rubisco 的浓度和/或羧化作用)有关,这取决于特定的胁迫。在气候变化的背景下,讨论了 Rubisco 活性丧失的重要性及其对植物光合作用的影响。有人认为,Rubisco 活性的降低将是气候变化引起的主要影响,在预测未来短期内植物生产力的任何模型中都需要考虑这一影响。