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首页> 外文期刊>Journal of Plant Physiology >Intra-specific variability of stomatal sensitivity to vapour pressure deficit in Corylus avellana L.: A candidate factor influencing different adaptability to different climates?
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Intra-specific variability of stomatal sensitivity to vapour pressure deficit in Corylus avellana L.: A candidate factor influencing different adaptability to different climates?

机译:在Corylus Avellana L中的蒸气压力缺陷的特定变异性血压缺损:影响对不同气候不同的不同适应性的候选因素?

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摘要

Stomatal conductance is regulated by many factors such as air vapour pressure deficit (D), which can be the pivotal one affecting leaf gas exchange in species particularly sensitive to D such as C. avellana. The aim of this work was to evaluate stomatal sensibility to D and to determine correlations with hydraulics characteristics of leaves in three genotypes of C. avellana selected over centuries under different climatic conditions in the Italian peninsula. Among the three varieties Tonda Gentile delle Langhe (TGL), which was the one coming from northern Italy suffered the largest stomatal limitation at increasing levels of D in comparison with the other two cultivars [Fonda Romana (TR) and Tonda di Giffoni (TG), selected in central and southern Italy, respectively]. In all genotypes, photosynthesis decreased at high D although the reduction was mostly due to the rising of the temperature as suggested by the high values of sub-stomatal concentration of CO2. Concerning the hydraulic characteristics of the leaves, TG had considerable higher bulk elasticity compared with other two cultivars. These results contribute to explain the higher adaptability to different environments of TG and TR compared with TGL. Either the lower sensitivity to D of TG and TR and higher schlerophylly of TG might allow these cultivars to suffer less gas exchange limitations in hot and dry environments usually conducive to high D. Genotypic sensitivity to D represent one of the key factors to be considered in phenotyping protocols for D-sensitive species such as hazelnut.
机译:气孔电导受到空气蒸汽压力缺陷(D)的许多因素的调节,这可以是影响对D. Avellana如C. Avellana特别敏感的物种叶片气体交换的枢转。这项工作的目的是评估D的气孔敏感性,并确定与意大利半岛不同气候条件下的C. Avellana的三种基因分型中叶片的液压特征相关性。在三个品种Tonda Gentile delle Langhe(TGL)中,这是来自意大利北部的,与其他两种品种相比,D水平的气孔限制遭受最大的气孔限制[Fonda Romana(TR)和Tonda di Giffoni(TG) ,分别在意大利中部和南部的选择。在所有基因型中,光合作用在高D处降低,但是由于CO 2的亚气孔浓度高值的高值提出的温度升高,但减少主要是由于CO 2的高值。关于叶片的液压特性,与其他两种品种相比,TG具有相当大的散装弹性。与TGL相比,这些结果有助于解释对TG和TR不同环境的更高适应性。 TG和TR和TR更高的TG的较低的敏感性可能允许这些品种在通常有利于高D的热和干燥环境中遭受较少的气体交换限制。对D的基因型敏感性代表了其中的关键因素之一榛子等D敏感物种的表型方案。

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