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离体叶片组织中的水势:商用露点湿度计与热电偶干湿球湿度计对大豆、小麦和大麦的比较

Water potential in excised leaf tissue: comparison of a commercial dew point hygrometer and a thermocouple psychrometer on soybean, wheat, and barley.

作者信息

Nelsen C E, Safir G R, Hanson A D

机构信息

Michigan State University/Energy Research and Development Administration Plant Research Laboratory and Department of Botany and Plant Pathology, Michigan State University, East Lansing, Michigan 48824.

出版信息

Plant Physiol. 1978 Jan;61(1):131-3. doi: 10.1104/pp.61.1.131.

Abstract

Leaf water potential (Psi(leaf)) determinations were made on excised leaf samples using a commercial dew point hygrometer (Wescor Inc., Logan, Utah) and a thermocouple psychrometer operated in the isopiestic mode. With soybean leaves (Glycine max L.), there was good agreement between instruments; equilibration times were 2 to 3 hours. With cereals (Triticum aestivum L. and Hordeum vulgare L.), agreement between instruments was poor for moderately wilted leaves when 7-mm-diameter punches were used in the hygrometer and 20-mm slices were used in the psychrometer, because the Psi(leaf) values from the dew point hygrometer were too high. Agreement was improved by replacing the 7-mm punch samples in the hygrometer by 13-mm slices, which had a lower cut edge to volume ratio. Equilibration times for cereals were normally 6 to 8 hours. Spuriously high Psi(leaf) values obtained with 7-mm leaf punches may be associated with the ion release and reabsorption that occur upon tissue excision; such errors evidently depend both on the species and on tissue water status.

摘要

使用商用露点湿度计(Wescor公司,犹他州洛根)和以等压模式运行的热电偶湿度计,对离体叶片样本进行叶水势(Ψ(leaf))测定。对于大豆叶片(Glycine max L.),两种仪器之间的测定结果吻合良好;平衡时间为2至3小时。对于谷类作物(Triticum aestivum L.和Hordeum vulgare L.),当湿度计中使用直径7毫米的打孔样本,而湿度计中使用20毫米切片时,对于中度萎蔫的叶片,两种仪器之间的测定结果较差,因为露点湿度计得出的Ψ(leaf)值过高。通过将湿度计中7毫米的打孔样本替换为13毫米的切片,吻合度得到了改善,因为13毫米切片的切割边缘与体积之比更低。谷类作物的平衡时间通常为6至8小时。使用7毫米叶片打孔获得的过高的Ψ(leaf)值可能与组织切除时发生的离子释放和重吸收有关;这种误差显然既取决于物种,也取决于组织水分状况。

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