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首页> 外文期刊>Acta Physiologiae Plantarum >Light-enhanced dark respiration in leaves and mesophyll protoplasts of pea in relation to photorespiration, respiration and some metabolites content
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Light-enhanced dark respiration in leaves and mesophyll protoplasts of pea in relation to photorespiration, respiration and some metabolites content

机译:豌豆叶片和叶肉原生质体中光增强的暗呼吸与光呼吸,呼吸和某些代谢物含量的关系

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The respiration rate of leaves and mesophyll protoplasts of pea (Pisum sativum L.), from plants which were previously kept in darkness for 24 h was doubled following a period of photosynthesis at ambient level of O-2 (21 %), whereas the low level of O-2 (1 % and 4 % for leaves and protoplasts, respectively) reduced this light-enhanced dark respiration (LEDR) to the rate as noted before the illumination. Similarly to respiration rate, the oxygen at used concentrations had no effect on the ATP/ADP ratio in the dark-treated leaves. However, the ATP/ADP ratio in leaves photosynthesizing at 21 % O-2 was higher (up to 40 %, dependence on CO2 concentration in the range 40-1600 mul.dm(-3)) than in those photosynthesizing at 1 % O-2 or darkened at air (21 % O-2). Also, at 1 % O-2 the accumulation of malate was suppressed (by about 40 %), to a value noted for leaves darkened at 21 % O-2. The dark-treatment of leaves reduced the ability of isolated mitochondria to oxidize glycine (by about twofold) and succinate, but not malate. Mitochondria from both the light- and dark-treated leaves did not differ in qualitative composition of free amino acids, however, there were significant quantitative differences especially with respect to aspartate, alanine, glutamate and major intermediates of the photorespiratory pathway (glycine, serine). Our results suggest that accumulation of photorespiratory and respiratory metabolites in pea leaves during photosynthesis at 1 % O-2 is reduced, hence the suppression of postillumination respiration rate.
机译:在环境水平O-2(21%)下进行光合作用一段时间后,以前在黑暗中保持24小时的植物的豌豆(Pisum sativum L.)的叶片和叶肉原生质体的呼吸速率翻了一番。 O-2的水平(叶片和原生质体分别为1%和4%)将这种光增强的暗呼吸(LEDR)降低到照明前所指出的速率。与呼吸速率相似,所用浓度的氧气对黑暗处理的叶片中的ATP / ADP比没有影响。但是,在光合作用为21%O-2的叶片中,ATP / ADP比要更高(高达40%,取决于40-1600 mul.dm(-3)范围内的CO2浓度)。 -2或在空气中变暗(21%O-2)。同样,在1%的O-2下,苹果酸的积累被抑制(降低了约40%),达到了在21%的O-2下变暗的叶片的记录值。叶子的深色处理降低了分离的线粒体氧化甘氨酸(两倍)和琥珀酸的能力,但不氧化苹果酸。亮叶和暗叶的线粒体游离氨基酸的定性组成没有差异,但是,在天冬氨酸,丙氨酸,谷氨酸和光呼吸途径的主要中间产物(甘氨酸,丝氨酸)方面存在显着的定量差异。 。我们的结果表明,光合作用在1%O-2时豌豆叶片中光呼吸和呼吸代谢产物的积累减少了,因此抑制了照明后呼吸速率。

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