Lawson Tracy, Oxborough Kevin, Morison James I L, Baker Neil R
Department of Biological Sciences, University of Essex, Colchester CO4 3SQ, UK.
J Exp Bot. 2003 Jul;54(388):1743-52. doi: 10.1093/jxb/erg186. Epub 2003 May 28.
High resolution chlorophyll a fluorescence imaging was used to compare the photosynthetic efficiency of PSII electron transport (estimated by Fq'/Fm') in guard cell chloroplasts and the underlying mesophyll in intact leaves of six different species: Commelina communis, Vicia faba, Amaranthus caudatus, Polypodium vulgare, Nicotiana tabacum, and Tradescantia albifora. While photosynthetic efficiency varied between the species, the efficiencies of guard cells and mesophyll cells were always closely matched. As measurement light intensity was increased, guard cells from the lower leaf surfaces of C. communis and V. faba showed larger reductions in photosynthetic efficiency than those from the upper surfaces. In these two species, guard cell photosynthetic efficiency responded similarly to that of the mesophyll when either light intensity or CO2 concentration during either measurement or growth was changed. In all six species, reducing the O2 concentration from 21% to 2% reduced guard cell photosynthetic efficiency, even for the C4 species A. caudatus, although the mesophyll of the C4 species did not show any O2 modulation of photosynthetic efficiency. This suggests that Rubisco activity is significant in the guard cells of these six species. When C. communis plants were water-stressed, the guard cell photosynthetic efficiency declined in parallel with that of the mesophyll. It was concluded that the photosynthetic efficiency in guard cells is determined by the same factors that determine it in the mesophyll.
利用高分辨率叶绿素a荧光成像技术,比较了六种不同植物完整叶片保卫细胞叶绿体和下层叶肉细胞中PSII电子传递的光合效率(通过Fq'/Fm'估算),这六种植物分别是鸭跖草、蚕豆、尾穗苋、水龙骨、烟草和白花紫露草。虽然不同物种间光合效率存在差异,但保卫细胞和叶肉细胞的效率始终紧密匹配。随着测量光强增加,鸭跖草和蚕豆下叶表面的保卫细胞光合效率降幅比上叶表面的保卫细胞更大。在这两个物种中,当测量或生长过程中的光强或二氧化碳浓度改变时,保卫细胞光合效率的变化与叶肉细胞相似。在所有六个物种中,将氧气浓度从21%降至2%会降低保卫细胞光合效率,即使对于C4植物尾穗苋也是如此,尽管C4植物的叶肉细胞未表现出光合效率的任何氧气调节作用。这表明,在这六个物种保卫细胞中,核酮糖-1,5-二磷酸羧化酶/加氧酶(Rubisco)活性显著。当鸭跖草植株受到水分胁迫时,保卫细胞光合效率与叶肉细胞光合效率同步下降。研究得出结论,保卫细胞中的光合效率由决定叶肉细胞光合效率的相同因素决定。