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短期和长期的植物水分亏缺对欧洲榛气孔对湿度响应的影响

Short-term and long-term effects of plant water deficits on stomatal response to humidity in Corylus avellana L.

机构信息

Am Birkengut, Lehrstuhl für Pflanzenökologie der Universität Bayreuth, D-8580, Bayreuth, Federal Republic of Germany.

出版信息

Planta. 1979 Jan;146(3):319-26. doi: 10.1007/BF00387804.

Abstract

Short-term (hours) changes in plant water status were induced in hazel (Corylus avellana L.) by changing the evaporative demand on a major portion of the shoot while maintaining a branch in a constant environment. Stomatal conductance of leaves on the branch was influenced little by these short-term changes in water status even with changes in leaf water potential as great as 8 bars. Long-term (days) changes in plant water status were imposed by soil drying cycles. Stomatal conductance progessively decreased with increases in long-term water stress. Stomata still responded to humidity with long-term water stress but the range of the conductance response decreased. Threshold responses of stomata to leaf water potential were not observed with either short-term or long-term changes in plant water status even when leaves wilted. It is suggested that concurrent measurements of plant water status may not be sufficient for explaining stomatal and other plant responses to drought.

摘要

在榛树(Corylus avellana L.)中,通过改变枝干大部分的蒸发需求来诱导植物水分短期(小时)变化,同时使一个枝干保持在恒定环境中。即使叶片水势变化高达 8 巴,叶片气孔导度受水分短期变化的影响也很小。通过土壤干燥循环来施加植物水分长期(天)变化。随着长期水分胁迫的增加,气孔导度逐渐降低。在长期水分胁迫下,气孔仍然对湿度有响应,但导水率响应范围减小。即使叶片萎蔫,也没有观察到短期或长期植物水分变化下气孔对叶片水势的阈值响应。建议同时测量植物水分状况可能不足以解释气孔和其他植物对干旱的响应。

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