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首页> 外文期刊>Plant and cell physiology >In Concert: Orchestrated Changes in Carbohydrate Homeostasis Are Critical for Plant Abiotic Stress Tolerance
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In Concert: Orchestrated Changes in Carbohydrate Homeostasis Are Critical for Plant Abiotic Stress Tolerance

机译:在音乐会中:碳水化合物稳态的策划变化对于植物非生物胁迫耐受性至关重要

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The sessile lifestyle of higher plants is accompanied by their remarkable ability to tolerate unfavorable environmental conditions. This is because, during evolution, plants developed a sophisticated repertoire of molecular and metabolic reactions to cope with changing biotic and abiotic challenges. In particular, the abiotic factors light intensity and ambient temperature are characterized by altering their amplitude within comparably short periods of time and are causative for onset of dynamic plant responses. These rapid responses in plants are also classified as ‘acclimation reactions’ which differ, due to their reversibility and duration, from non-reversible ‘adaptation reactions’. In this review, we demonstrate the remarkable importance of stress-induced changes in carbohydrate homeostasis of plants exposed to high light or low temperatures. These changes represent a co-ordinated process comprising modifications of (i) the concentrations of selected sugars; (ii) starch turnover; (iii) intracellular sugar compartmentation; and (iv) corresponding gene expression patterns. The critical importance of these individual processes has been underlined in the recent past by the analyses of a large number of mutant plants. The outcome of these analyses raised our understanding of acclimation processes in plants per se but might even become instrumental to develop new concepts for directed breeding approaches with the aim to increase abiotic stress tolerance of crop species, which in most cases have high stress sensitivity. The latter direction of plant research is of special importance since abiotic stress stimuli strongly impact on crop productivity and are expected to become even more pronounced because of human activities which alter environmental conditions rapidly.
机译:高等植物的绝塞生活方式伴随着耐受不利环境条件的显着能力。这是因为,在进化期间,植物开发了一种复杂的分子和代谢反应的复杂的曲目,以应对改变的生物和非生物挑战。特别地,非生物因子光强度和环境温度的特征在于在相对短的时间内改变它们的振幅,并且对动态植物反应的发作是造成的。这些植物的快速反应也被归类为“适应反应”,这是由于其可逆性和持续时间而不同的“适应性反应”,来自不可逆转的“适应反应”。在本综述中,我们证明了暴露于高光或低温或低温植物的碳水化合物稳态的显着重要性。这些变化代表了一个协调方法,包括(i)所选糖的浓度的修饰; (ii)淀粉营业额; (iii)细胞内糖舱; (IV)相应的基因表达模式。这些个体进程的批判性在最近过去的一大部分突变植物的分析中都强调。这些分析的结果提出了我们对植物的适应过程本身的理解,但甚至可能会为导向育种方法开发新概念,以增加作物物种的非生物胁迫耐受性,这在大多数情况下具有高应激敏感性。由于非生物压力刺激对作物生产力强烈影响,因此由于人类活动迅速改变了环境条件,因此后一种植物研究的植物研究具有特殊重要性。

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