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Water Potential in Excised Leaf Tissue: Comparison of a Commercial Dew Point Hygrometer and a Thermocouple Psychrometer on Soybean, Wheat, and Barley 1 2

机译:切除后的叶子组织中的水势:大豆,小麦和大麦上商用露点湿度计和热电偶干湿计的比较1 2

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摘要

Leaf water potential (Ψleaf) 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 Ψleaf 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 Ψleaf 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.
机译:使用商业露点湿度计(Wescor Inc.,洛根,犹他州)和以等渗模式运行的热电偶干湿计,对切下的叶片样品进行叶片水势(叶)测定。对于大豆叶片(Glycine max L.),仪器之间有很好的一致性。平衡时间为2至3小时。对于谷物(普通小麦和大麦),在湿度计中使用7毫米直径的打孔器和在干湿计中使用20毫米的片时,对于中等枯萎的叶子,仪器之间的一致性差。从露点湿度计过高。用13mm的切片代替湿度计中的7mm冲头样品,可以改善一致性,该切片的切边/体积比较低。谷物的平衡时间通常为6至8小时。用7毫米叶片打孔器获得的假高假叶值可能与组织切除后发生的离子释放和重吸收有关。这种错误显然取决于物种和组织水分状况。

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