首页> 外文期刊>Russian Journal of Plant Physiology >Activities of noncyclic and alternative pathways of photosynthetic electron transport in leaves of broad bean plants grown at various light irradiances.
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Activities of noncyclic and alternative pathways of photosynthetic electron transport in leaves of broad bean plants grown at various light irradiances.

机译:在各种光辐照下生长的蚕豆植物叶片中非循环途径和光合作用电子传递途径的活动。

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Activities of noncyclic and alternative pathways of photosynthetic electron transport were studied in intact leaves of broad been (Vicia faba L.) seedlings grown under white light at irradiances of 176, 36, and 18 micro mol quanta/(m2 s). Electron flows were followed from light-induced absorbance changes at 830 nm related to redox transformations of P700, the photoactive PSI pigment. The largest absorbance changes at 830 nm, induced by either white or far-red light, were observed in leaves of seedlings grown at irradiance of 176 micro mol quanta/(m2 s), which provides evidence for the highest concentration of PSI reaction centers per unit leaf area in these seedlings. When actinic white light of 1800 micro mol quanta/(m2 s) was turned on, the P700 oxidation proceeded most rapidly in leaves of seedlings grown at irradiance of 176 micro mol quanta/(m2 s). The rates of electron transfer from PSII to PSI were measured from the kinetics of dark P700+ reduction after turning off white light. These rates were similar in leaves of all light treatments studied, and their characteristic reaction times were found to range from 9.2 to 9.5 ms. Four exponentially decaying components were resolved in the kinetics of dark P700+ reduction after leaf exposure to far-red light. A minor but the fastest component of P700+ reduction with a halftime of 30-60 ms was determined by electron transfer from PSII, while the three other slow components were related to the operation of alternative electron transport pathways. Their halftimes and relative magnitudes were almost independent on irradiance during plant cultivation. It is concluded that irradiance during plant growth affects the absolute content of PSI reaction centers in leaves but did not influence the rates of noncyclic and alternative electron transport..
机译:研究了在白光下生长的宽阔(Vicia faba L.)幼苗在176、36和18 micro mol Quanta /(m2 s)辐照下的完整叶片的非循环途径和光合作用电子传递途径的活动。从与光敏性PSI颜料P700的氧化还原转化有关的光在830 nm处的吸光度变化跟踪电子流。在以176微摩尔Quanta /(m2 s)的辐照度生长的幼苗叶片中,观察到由白光或远红光引起的在830 nm处最大的吸光度变化,这为PSI反应中心的最高浓度提供了证据。这些幼苗的单位叶面积。当打开1800 micro mol Quanta /(m2 s)的光化白光时,在以176 micro mol Quanta /(m2 s)辐照生长的幼苗的叶子中,P700氧化过程进行得最快。从关闭白光后暗P700 +还原的动力学测量从PSII到PSI的电子转移速率。这些速率在研究的所有光处理叶片中均相似,发现其特征性反应时间为9.2至9.5毫秒。叶片暴露于远红光后,深色P700 +还原的动力学解析了四个指数衰减的成分。通过PSII的电子转移,可以确定P700 +还原过程中次要但最快的部分(半衰期为30-60毫秒),而其他三个慢的部分与替代电子传输途径的运行有关。它们的半衰期和相对幅度几乎与植物栽培期间的辐照度无关。结论是植物生长过程中的辐照度会影响叶片中PSI反应中心的绝对含量,但不会影响非环状和交替电子传输的速率。

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