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个体发育改变了水分胁迫对黍气孔控制、叶面积持续时间和生物量分配的影响。

Ontogeny modifies the effects of water stress on stomatal control, leaf area duration and biomass partitioning of Pennisetum glaucum.

作者信息

Winkel T, Payne W, Renno J-F

机构信息

ORSTOM, Institut Français de Recherche Scientifique pour le Développement en Coopération, Niamey, Niger.

Texas A & M University, Amarillo, Texas, USA.

出版信息

New Phytol. 2001 Jan;149(1):71-82. doi: 10.1046/j.1469-8137.2001.00008.x.

Abstract

• Experiments are presented that test the relative importance, during ontogeny, of stomatal control and leaf area expansion to optimum seasonal water use in pearl millet (Pennisetum glaucum). These parameters play a key role in the compromise between plant growth and water saving under unpredictable conditions of semiarid environments. • The response of growth and water use of crops to successive 15 d drought periods was measured under field conditions in Niger (West Africa). • From emergence to anthesis, biomass partitioning to stems and panicles depended strongly on leaf area development. Water use was linearly related to green leaf area duration in well watered plots, but was reduced proportionally more than green leaf area in drought-affected plots. The relations of crop growth rate and transpiration efficiency to leaf area depended on ontogenetic changes in biomass partitioning. • In P. glaucum, stomata play a dominant role in reducing crop water use under preanthesis drought, although this control becomes negligible after anthesis because of ontogenetic decline in the range of stomatal conductance. The rate of leaf senescence after anthesis is not drought-dependent.

摘要

• 本文展示了一些实验,这些实验测试了在珍珠粟(Pennisetum glaucum)个体发育过程中,气孔控制和叶面积扩展对最佳季节性水分利用的相对重要性。在半干旱环境不可预测的条件下,这些参数在植物生长和节水之间的权衡中起着关键作用。• 在西非尼日尔的田间条件下,测量了作物生长和水分利用对连续15天干旱期的响应。• 从出苗到开花,生物量向茎和穗的分配强烈依赖于叶面积的发育。在水分充足的地块中,水分利用与绿叶面积持续时间呈线性关系,但在受干旱影响的地块中,水分利用的减少比例超过绿叶面积。作物生长速率和蒸腾效率与叶面积的关系取决于生物量分配的个体发育变化。• 在珍珠粟中,气孔在花前干旱期间对降低作物水分利用起着主导作用,尽管由于气孔导度范围的个体发育下降,这种控制在花后变得微不足道。花后叶片衰老的速率与干旱无关。

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