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白三叶草(Trifolium repens)中乙醇脱氢酶活性与耐淹性的变异

VARIATION IN ALCOHOL DEHYDROGENASE ACTIVITY AND FLOOD TOLERANCE IN WHITE CLOVER, TRIFOLIUM REPENS.

作者信息

Chan John W Y, Burton Ronald S

机构信息

Plant Science Institute, University of Pennsylvania, Philadelphia, PA, 19104, USA.

Program in Evolutionary Biology, Department of Biology, University of Houston, Houston, TX, 77204-5513, USA.

出版信息

Evolution. 1992 Jun;46(3):721-734. doi: 10.1111/j.1558-5646.1992.tb02078.x.

Abstract

Flooding results in induction of anaerobic metabolism in many higher plants. As an important component of anaerobic energy production, alcohol dehydrogenase (ADH) activity increases markedly in response to flooding in white clover, Trifolium repens. Significant inter-individual variation in flood-induced ADH activity exists in natural populations of T. repens. The genetic basis of this variation was analyzed by offspring-midparent regression of data from 75 greenhouse reared families; the estimated heritability of flood-induced ADH activity was 0.55 (±0.13). Genetic variation in flood-induced ADH activity has pronounced effects on physiological response and flood tolerance in this species. ADH activity is positively correlated with the rate of ethanol production, indicating that observed in vitro activity differences are manifested in in vivo physiological function. T. repens plants with higher ADH activities during flooding have greater flood tolerance (measured as growth rate when flooded/unflooded growth rate). Variation in ADH activity during flooding accounts for more than 79% of the variance in flood tolerance. On the basis of a limited field survey of populations occupying three sites differing in exposure to flooding conditions, individuals from site C, the most frequently flooded site, expressed significantly higher average ADH activity when flooded than individuals from site A, a site with no history of flooding. Since ADH activity levels are not correlated with electrophoretic mobility variation in T. repens, this work supports previous suggestions that regulatory variation in enzyme activity may play a central role in biochemical adaptations to environmental stress.

摘要

洪水会导致许多高等植物进行厌氧代谢。作为厌氧能量产生的重要组成部分,白三叶(Trifolium repens)中的乙醇脱氢酶(ADH)活性在受到洪水影响时会显著增加。白三叶的自然种群中,洪水诱导的ADH活性存在显著的个体间差异。通过对75个温室培育家系的数据进行子代-中亲回归分析了这种变异的遗传基础;洪水诱导的ADH活性的估计遗传力为0.55(±0.13)。洪水诱导的ADH活性的遗传变异对该物种的生理反应和耐洪性有显著影响。ADH活性与乙醇产生速率呈正相关,表明观察到体外活性差异在体内生理功能中得到体现。洪水期间ADH活性较高的白三叶植株具有更强的耐洪性(以淹水时的生长速率/未淹水时的生长速率来衡量)。洪水期间ADH活性的变异占耐洪性变异的79%以上。基于对占据三个受洪水影响程度不同地点的种群进行的有限实地调查,来自最常被淹的C地点的个体在淹水时的平均ADH活性显著高于来自无洪水历史的A地点的个体。由于白三叶中ADH活性水平与电泳迁移率变异无关,这项工作支持了之前的观点,即酶活性的调控变异可能在对环境胁迫的生化适应中起核心作用。

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