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在高二氧化碳浓度下,光强度增加时光合速率的上升在ndh基因缺陷型烟草中会延迟,但在低二氧化碳浓度下不会。

The rise of the photosynthetic rate when light intensity increases is delayed in ndh gene-defective tobacco at high but not at low CO2 concentrations.

作者信息

Martín Mercedes, Noarbe Dolores M, Serrot Patricia H, Sabater Bartolomé

机构信息

Department of Life Sciences, University of Alcalá, Alcalá de Henares Spain.

Department of Physical Chemistry, University of Alcalá, Alcalá de Henares Spain.

出版信息

Front Plant Sci. 2015 Feb 9;6:34. doi: 10.3389/fpls.2015.00034. eCollection 2015.

Abstract

The 11 plastid ndh genes have hovered frequently on the edge of dispensability, being absent in the plastid DNA of many algae and certain higher plants. We have compared the photosynthetic activity of tobacco (Nicotiana tabacum, cv. Petit Havana) with five transgenic lines (ΔndhF, pr-ΔndhF, T181D, T181A, and ndhF FC) and found that photosynthetic performance is impaired in transgenic ndhF-defective tobacco plants at rapidly fluctuating light intensities and higher than ambient CO2 concentrations. In contrast to wild type and ndhF FC, which reach the maximum photosynthetic rate in less than 1 min when light intensity suddenly increases, ndh defective plants (ΔndhF and T181A) show up to a 5 min delay in reaching the maximum photosynthetic rate at CO2 concentrations higher than the ambient 360 ppm. Net photosynthesis was determined at different CO2 concentrations when sequences of 130, 870, 61, 870, and 130 μmol m(-2) s(-1) PAR sudden light changes were applied to leaves and photosynthetic efficiency and entropy production (Sg) were determined as indicators of photosynthesis performance. The two ndh-defective plants, ΔndhF and T181A, had lower photosynthetic efficiency and higher Sg than wt, ndhF FC and T181D tobacco plants, containing full functional ndh genes, at CO2 concentrations above 400 ppm. We propose that the Ndh complex improves cyclic electron transport by adjusting the redox level of transporters during the low light intensity stage. In ndhF-defective strains, the supply of electrons through the Ndh complex fails, transporters remain over-oxidized (specially at high CO2 concentrations) and the rate of cyclic electron transport is low, impairing the ATP level required to rapidly reach high CO2 fixation rates in the following high light phase. Hence, ndh genes could be dispensable at low but not at high atmospheric concentrations of CO2.

摘要

11个质体ndh基因常常处于可有可无的边缘状态,在许多藻类和某些高等植物的质体DNA中并不存在。我们将烟草(Nicotiana tabacum,品种Petit Havana)与五个转基因株系(ΔndhF、pr-ΔndhF、T181D、T181A和ndhF FC)的光合活性进行了比较,发现在光照强度快速波动且二氧化碳浓度高于环境浓度时,转基因ndhF缺陷型烟草植株的光合性能受到损害。与野生型和ndhF FC不同,当光照强度突然增加时,它们在不到1分钟内就能达到最大光合速率,而ndh缺陷型植株(ΔndhF和T181A)在二氧化碳浓度高于环境浓度360 ppm时,达到最大光合速率的时间延迟长达5分钟。当向叶片施加130、870、61、870和130 μmol m(-2) s(-1) 光合有效辐射(PAR)的序列突然光照变化时,在不同二氧化碳浓度下测定净光合作用,并将光合效率和熵产生(Sg)作为光合作用性能的指标进行测定。在二氧化碳浓度高于400 ppm时,两个ndh缺陷型植株ΔndhF和T181A的光合效率低于野生型、ndhF FC和T181D烟草植株(含有完整功能的ndh基因),且Sg更高。我们提出,Ndh复合体在低光照强度阶段通过调节转运体的氧化还原水平来改善循环电子传递。在ndhF缺陷型菌株中,通过Ndh复合体的电子供应失败,转运体保持过度氧化状态(特别是在高二氧化碳浓度下),循环电子传递速率较低,从而损害了在随后的高光阶段快速达到高二氧化碳固定率所需的ATP水平。因此,在低大气二氧化碳浓度下ndh基因可能是可有可无的,但在高浓度下并非如此。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d573/4321573/167d7f8a9f63/fpls-06-00034-g001.jpg

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