Metcalfe J C, Davies W J, Pereira J S
Institute of Environmental and Biological Sciences, University of Lancaster, Lancaster LA1 4YQ, United Kingdom.
Tree Physiol. 1991 Dec;9(4):491-500. doi: 10.1093/treephys/9.4.491.
Biophysical variables influencing the expansion of plant cells (yield threshold, cell wall extensibility and turgor) were measured in individual Eucalyptus globulus leaves from the time of emergence until cessation of growth. Leaf water relations variables and growth rates were determined as relative humidity was changed on an hourly basis. Yield threshold and cell wall extensibility were estimated from plots of leaf growth rate versus turgor. Cell wall extensibility was also measured by the Instron technique, and yield threshold was determined experimentally both by stress relaxation in a psychrometer chamber and by incubation in a range of polyethylene glycol solutions. Once emerging leaves reached approximately 5 cm(2) in size, increases in leaf area were rapid throughout the expansive phase and varied little between light and dark periods. Both leaf growth rate and turgor were sensitive to changes in humidity, and in the longer term, both yield threshold and cell wall extensibility changed as the leaf aged. Rapidly expanding leaves had a very low yield threshold and high cell wall extensibility, whereas mature leaves had low cell wall extensibility. Yield threshold increased with leaf age.
从叶片出现到生长停止,对蓝桉单叶中影响植物细胞扩张的生物物理变量(屈服阈值、细胞壁伸展性和膨压)进行了测量。随着每小时相对湿度的变化,测定叶片水分关系变量和生长速率。通过叶片生长速率与膨压的关系图估算屈服阈值和细胞壁伸展性。还采用英斯特朗技术测量细胞壁伸展性,并通过在干湿球湿度计室中的应力松弛和在一系列聚乙二醇溶液中孵育来实验确定屈服阈值。一旦新出现的叶片面积达到约5平方厘米,在整个扩展阶段叶片面积迅速增加,且在光照和黑暗时期之间变化不大。叶片生长速率和膨压均对湿度变化敏感,从长期来看,屈服阈值和细胞壁伸展性均随叶片老化而变化。快速扩展的叶片具有非常低的屈服阈值和高细胞壁伸展性,而成熟叶片的细胞壁伸展性较低。屈服阈值随叶片年龄增加而升高。