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[正常和不利条件下植物的能量平衡]

[Energy balance of a plant under normal and unfavourable conditions].

作者信息

Rakhmankulova Z F

机构信息

Dept. Plant Physiology, Biological Faculty, Bashkirsky State University, Frunze ul. 32, Ufa 450074, Russia.

出版信息

Zh Obshch Biol. 2002 May-Jun;63(3):239-48.

Abstract

Two main components of plant energy balance are analyzed--photosynthesis and dark respiration. Different plant species, growing in optimal conditions and differing in photosynthetic metabolism, productivity and potential resistance to stress, have constant ratio between total dark respiration and grossphotosynthesis. The ratio about 38-40% at the phase of active growth. This value reflect plant state, when income (assimilation) is maximized, and expense (total oxidation) is minimized. Intensities of dark respiration of plants in darkness and light are similar despite the fact that the plants have considerable differences: 1) different carbon sources--young assimilates in light and reserve ones in the dark; 2) biochemical modifications (or inhibition) of some stages of dark respiration in light; 3) intensification of alternative respiration in unfavourable conditions differing in dark and light variants. Ratio between intensity of dark respiration and photosynthesis increases in plants growing in unfavourable conditions. This increase is more considerable in plants that are less resistant to the given stress. Characters of energy balance can be used for estimation of physiological status of plants, prediction of resistance and potential productivity at seedling stage.

摘要

分析了植物能量平衡的两个主要组成部分——光合作用和暗呼吸。不同的植物物种,在最佳条件下生长,光合代谢、生产力和潜在抗逆性存在差异,其总暗呼吸与总光合作用之间具有恒定的比率。在活跃生长阶段,该比率约为38 - 40%。这个值反映了植物的状态,即收入(同化作用)最大化且支出(总氧化作用)最小化。尽管植物存在显著差异,但黑暗中和光照下植物的暗呼吸强度相似:1)不同的碳源——光照下的年轻同化物和黑暗中的储备同化物;2)光照下暗呼吸某些阶段的生化修饰(或抑制);3)在不利条件下,黑暗和光照变体中交替呼吸的增强。在不利条件下生长的植物,其暗呼吸强度与光合作用的比率会增加。在对特定胁迫抗性较低的植物中,这种增加更为显著。能量平衡特征可用于评估植物的生理状态、预测苗期的抗性和潜在生产力。

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