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气孔对温度变化在增加水分胁迫下的响应。

Stomatal responses to changes in temperature at increasing water stress.

机构信息

Avdat Farm and Desert Research Center of the Hebrew University, Jerusalem, Israel.

出版信息

Planta. 1973 Mar;110(1):29-42. doi: 10.1007/BF00386920.

Abstract

The response of stomata to a gradual increase in temperature at increasing plant water stress was studied in a hot desert habitat (Negev, Israel) in the field, but under controlled temperature and humidity conditions. Four native species (Zygophyllum dumosum, Artemisia herba-alba, Hammada scoparia, Reaumuria negevensis) and one cultivated plant (Prunus armeniaca) were used in these studies. The stomatal response to temperature was compared with the response in well-irrigated plants of the same species.At low water stress, the diffusion resistance for water vapour decreased in response to a gradual increase in temperature. Transpiration increased accordingly. This response was reversible. All species responded in the same way. The opening of stomata with increasing temperature was apparently independent of the stomatal response regulated by atmospheric humidity. At high plant water stress, the stomatal response was reversed, i.e., the stomata closed when temperature was gradually increased. This stomatal closure was also independent of the closure regulated by atmospheric humidity. The plant water potential at which the stomatal response to temperature was reversed, differed among the species investigated.

摘要

在野外的干旱沙漠栖息地(以色列内盖夫)中,我们在控制温度和湿度的条件下研究了气孔对植物水分胁迫逐渐增加时温度的响应,但在野外。在这些研究中使用了四种本地物种(刺山柑、白蒿、沙木麻黄、柽柳)和一种栽培植物(扁桃)。与同一物种水分充足的植物相比,气孔对温度的响应。在低水分胁迫下,水蒸气扩散阻力随着温度的逐渐升高而降低。蒸腾作用相应增加。这种反应是可逆的。所有物种的反应方式相同。气孔随温度升高而打开显然与大气湿度调节的气孔反应无关。在高植物水分胁迫下,气孔的响应发生逆转,即当温度逐渐升高时,气孔关闭。这种气孔关闭也与大气湿度调节的关闭无关。气孔对温度的响应发生逆转时植物的水势因所研究的物种而异。

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