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在不同光照强度下生长的 C3 和 C4 植物的光化学活性和光合器官的组织。

Photochemical activities and organization of photosynthetic apparatus of C3 and C 4 plants grown under different light intensities.

机构信息

School of Biological Sciences, Madural Kamaraj University, 625 021, Madurai, India.

出版信息

Photosynth Res. 1983 Jan;4(1):351-60. doi: 10.1007/BF00041832.

Abstract

Changes in the photochemical activities, influenced by variation in the growth light intensity, were followed in typical C3 (Phaseolus, Ipomoea) and C4 (Amaranthus, Sorghum) plants. Progressive decrease in the growth light intensity accelerated the O-P fluorescence induction in whole leaves. Such acceleration of the fluorescence kinetics was found to be not due to enhanced photosystem II activity but possibly a result of reduced rate of electron flow between the two photosystems. This is supported by 4 lines of evidence: (1) by the Hill activity determined in the presence of electron acceptors functioning before and after plastoquinone; (2) the photosynthetic unit size determined after flash excitation showing variations that were apparently too small to account for the changes observed fluorescence induction; (3) modification of the kinetics of secondrange light-induced absorbance changes at 520 nm; and (4) absence of significant changes in the ratio of P700/total chlorophyll ratio.The P700/cytochrome f ratio, however, increased from the usual 1-1.5 to 3-4 in plants grown under 9% sunlight. Increase in the P700/cytochrome f ratio was found to be due to a decrease in the cytochrome f/chlorophyll ratio, and this was due to perhaps to a simultaneous increase in chlorophyll and decrease in cytochrome content.

摘要

在典型的 C3(菜豆、番薯)和 C4(苋菜、高粱)植物中,研究了受生长光强变化影响的光化学活性变化。生长光强的逐渐降低加速了整叶的 O-P 荧光诱导。这种荧光动力学的加速不是由于增强了光系统 II 的活性,而可能是由于两个光系统之间的电子流速率降低的结果。有 4 条证据支持这一观点:(1)在存在作用于质醌之前和之后的电子受体的情况下测定的希尔活性;(2)闪光激发后测定的光合单位大小显示出明显太小而无法解释观察到的荧光诱导变化的变化;(3)第二范围光诱导 520nm 处吸光度变化的动力学的修饰;以及(4)P700/总叶绿素比没有显著变化。然而,在 9%阳光照射下生长的植物中,P700/细胞色素 f 比从通常的 1-1.5 增加到 3-4。发现 P700/细胞色素 f 比的增加是由于细胞色素 f/叶绿素比的降低,这可能是由于叶绿素同时增加和细胞色素含量降低所致。

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