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Diel time-courses of leaf growth in monocot and dicot species: endogenous rhythms and temperature effects

机译:单子叶植物和双子叶植物物种的狄尔叶生长过程:内在节律和温度效应

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摘要

Diel (24 h) leaf growth patterns were differently affected by temperature variations and the circadian clock in several plant species. In the monocotyledon Zea mays, leaf elongation rate closely followed changes in temperature. In the dicotyledons Nicotiana tabacum, Ricinus communis, and Flaveria bidentis, the effect of temperature regimes was less obvious and leaf growth exhibited a clear circadian oscillation.These differences were related neither to primary metabolism nor to altered carbohydrate availability for growth. The effect of endogenous rhythms on leaf growth was analysed under continuous light in Arabidopsis thaliana, Ricinus communis, Zea mays, and Oryza sativa. No rythmic growth was observed under continuous light in the two monocotyledons, while growth rhythmicity persisted in the two dicotyledons. Based on model simulations it is concluded that diel leaf growth patterns in mono- and dicotyledons result from the additive effects of both circadian-clock-controlled processes and responses to environmental changes such as temperature and evaporative demand. Apparently very distinct diel leaf growth behaviour of monocotyledons and dicotyledons can thus be explained by the different degrees to which diel temperature variations affect leaf growth in the two groups of species which, in turn, depends on the extent of the leaf growth control by internal clocks.
机译:在几种植物物种中,Diel(24 h)叶片的生长方式受温度变化和昼夜节律的影响不同。在单子叶玉米中,叶片伸长率紧随温度变化。在双子叶植物烟草(Nicotiana tabacum),蓖麻(Ricinus communis)和黄萎病(Flaveria bidentis)中,温度机制的影响不太明显,叶片生长表现出明显的昼夜节律性振荡,这些差异既与初级代谢无关,也与改变碳水化合物的生长利用能力无关。在拟南芥,蓖麻,玉米和玉米中,在连续光照下分析了内源节律对叶片生长的影响。在两个单子叶植物中,在连续光照下均未观察到有节奏的生长,而在两个双子叶植物中,生长节律持续存在。根据模型模拟得出的结论是,单子叶和双子叶植物中diel叶片的生长方式是由昼夜节律控制的过程以及对温度和蒸发需求等环境变化的响应所产生的。因此,单子叶植物和双子叶植物的迪尔叶生长行为显然非常不同,这可以通过两类物种中迪尔温度变化影响叶生长的程度不同来解释,而后者又取决于内部钟对叶生长的控制程度。 。

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