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Leaf Water Relations and Maintenance of Gas Exchange in Coffee Cultivars Grown in Drying Soil

机译:干旱土壤中种植的咖啡品种的叶水关系和气体交换的维持

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摘要

Plant water status, leaf tissue pressure-volume relationships, and photosynthetic gas exchange were monitored in five coffee (Coffea arabica L.) cultivars growing in drying soil in the field. There were large differences among cultivars in the rates at which leaf water potential (ΨL) and gas exchange activity declined when irrigation was discontinued. Pressure-volume curve analysis indicated that increased leaf water deficits in droughted plants led to reductions in bulk leaf elasticity, osmotic potential, and in the ΨL at which turgor loss occurred. Adjustments in ΨL at zero turgor were not sufficient to prevent loss or near loss of turgor in three of five cultivars at the lowest values of midday ΨL attained. Maintenance of protoplasmic volume was more pronounced than maintenance of turgor as soil drying progressed. Changes in assimilation and stomatal conductance were largely independent of changes in bulk leaf turgor, but were associated with changes in relative symplast volume. It is suggested that osmotic and elastic adjustment contributed to maintenance of gas exchange in droughted coffee leaves probably through their effects on symplast volume rather than turgor.
机译:在田间干燥土壤中生长的五种咖啡(Coffea arabica L.)品种中监测植物的水分状况,叶片组织压力-体积关系以及光合气体交换。停止灌溉后,叶片水势(ΨL)和气体交换活性下降的速率之间存在很大差异。压力-体积曲线分析表明,干旱植物的叶片水分亏缺增加,导致叶片总弹性降低,渗透势降低以及发生膨胀的theL降低。在零膨胀下调整L不足以防止在达到最低ΨL值的五个品种中的三个品种失去或几乎失去膨胀。随着土壤干燥的进行,维持原生质体的体积比维持膨松更显着。同化和气孔导度的变化在很大程度上与散叶膨大的变化无关,但与相对共生体体积的变化相关。建议渗透和弹性调节可能是通过影响共叶体体积而不是膨胀来维持干旱咖啡叶片中的气体交换。

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