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Effect of tobacco mosaic virus movement protein on photosynthesis in transgenic tobacco plants.

机译:烟草花叶病毒运动蛋白对转基因烟草植物光合作用的影响。

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The tobacco mosaic virus movement protein (TMV-MP) exerts a pleiotropic effect in tobacco plants. In addition to its effect on plasmodesmal size exclusion limit, this protein causes the accumulation of carbohydrates in source leaves and alterationsin biomass distribution, resulting in a significantly lower root-to-shoot ratio. In view of the close interaction between the photosynthetic apparatus and carbohydrate metabolism, transgenic tobacco plants expressing TMV-MP under the control of the CaMV35S promoter were used to study this protein's effect on the photosynthetic system. Gas-exchange analyses indicated that the TMV-MP reduces photosynthetic rate via its influence on mesophyllic factors. The photochemical components of the photosynthetic apparatus, examined by means of chlorophyll fluorescence, revealed no effect on chlorophyll antenna size, susceptibility to photoinhibition, or the variable-to-maximal fluorescence ratio (Fv/Fm). Non-photochemical quenching was higher in TMV-MP-expressingas compared with control plants, whereas the former's photosynthetic yield was lower. These results indicated that the TMV-MP does not exert any effect on the photochemical components of the photosynthetic system. Further study indicated 30% lower phosphate content in TMV-MP-expressing leaves as compared with controls. External application of phosphate solution to detached leaves caused a significant increase in leaves' phosphate content. Moreover, this treatment increased the electron transfer rate (ETR) of TMV-MP-expressing plants to control values. The presented findings indicated that the orthophosphate level constitutes a limiting factor to photosynthesis in TMV-MP-expressing tobacco plants.
机译:烟草花叶病毒运动蛋白(TMV-MP)在烟草植物中发挥多效作用。除了对等离子胞体尺寸排阻极限有影响外,该蛋白还导致碳水化合物在源叶中积累并改变生物量分布,从而导致根茎比明显降低。鉴于光合作用机制与碳水化合物代谢之间的紧密相互作用,在CaMV35S启动子的控制下,表达TMV-MP的转基因烟草植株用于研究该蛋白对光合作用系统的影响。气体交换分析表明,TMV-MP通过其对叶肉因子的影响而降低了光合速率。通过叶绿素荧光检查的光合作用设备的光化学成分未显示出对叶绿素触角大小,对光抑制的敏感性或可变至最大荧光比(Fv / Fm)的影响。与对照植物相比,表达TMV-MP的非光化学猝灭作用较高,而前者的光合产量较低。这些结果表明,TMV-MP对光合作用系统的光化学成分没有任何影响。进一步的研究表明,与对照相比,表达TMV-MP的叶片中磷酸盐含量降低了30%。在离体叶片上外用磷酸盐溶液可导致叶片磷酸盐含量显着增加。而且,这种处理将表达TMV-MP的植物的电子传递速率(ETR)提高到控制值。提出的发现表明正磷酸盐水平是表达TMV-MP的烟草植物光合作用的限制因素。

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