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Variability in Proline-Accumulating Ability of Barley (Hordeum vulgare L.) Cultivars Induced by Vapor Pressure Deficit 1

机译:蒸气压亏缺诱导的大麦(大麦)品种脯氨酸累积能力的变异性1

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摘要

This work was undertaken in an effort to reconcile the conflicting proline-accumulating responses of the barley (Hordeum vulgare L.) cultivars, Excelsior and Proctor, reported by Singh et al. (1972) and Hanson et al. (1976). It deals with the effects of different vapor pressure deficits (VPD) during growth and subsequent drought stress on several barley cultivars. A higher VPD (1.2 kilopascals) during Clipper seedling growth resulted in higher solute-accumulating ability, seemingly independently of leaf water potential, than a lower VPD (0.12 kilopascals). The higher VPD during stress also resulted in higher solute contents, and this response may be more closely related to leaf water potential. When the responses of Excelsior and Proctor were examined in detail, it was found that the relative proline-accumulating ability of the two cultivars was dependent upon the VPD under which they were grown. At low VPD, Proctor accumulated significantly more proline than did Excelsior; whereas at higher VPD, Excelsior accumulated more proline than did Proctor. The crossover occurred at a VPD of about 0.72 kilopascals. This reversal of cultivar response was enhanced by multiplying seed under the two VPD extremes. Glycinebetaine accumulation did not demonstrate the crossover effect, although the concentration of this compound in all cultivars also depended on the VPD prevailing during growth and/or stress. Solute levels, in general, were more closely related to the decrease in relative water content than to a decrease in leaf water potential. It is concluded that the conflicting proline-accumulating responses of Excelsior and Proctor could be explained by these findings.
机译:这项工作是为了调和Singh等人报道的Excelsior和Proctor大麦品种(Hordeum vulgare L.)相互矛盾的脯氨酸积累反应。 (1972年)和汉森等。 (1976)。它涉及生长过程中不同的蒸气压亏缺(VPD)以及随后的干旱胁迫对几种大麦品种的影响。 Clipper幼苗生长期间较高的VPD(1.2千帕斯卡)比较低的VPD(0.12千帕斯卡)导致更高的溶质积累能力,似乎独立于叶水势。胁迫期间较高的VPD也导致较高的溶质含量,并且该响应可能与叶片水势更紧密相关。当详细检查Excelsior和Proctor的响应时,发现两个品种的相对脯氨酸积累能力取决于其生长的VPD。在VPD低的情况下,Proctor积累的脯氨酸比Excelsior多得多。而在VPD较高的情况下,Excelsior比Proctor积累了更多的脯氨酸。交叉发生在约0.72千帕的VPD。通过在两个VPD极端条件下繁殖种子,可以增强品种反应的逆转。甘氨酸甜菜碱的积累并未显示出交叉作用,尽管该化合物在所有品种中的浓度还取决于生长和/或胁迫期间普遍存在的VPD。通常,溶质水平与相对含水量的减少更密切相关,而不是与叶片水势的减少更密切相关。结论是,这些发现可以解释Excelsior和Proctor脯氨酸积累反应的矛盾。

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