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两种供氮水平下杞柳叶片伸展的日变化

Diurnal variation in leaf extension of Salix viminalis at two nitrogen supply rates.

作者信息

Stadenberg I, McDonald A J, Palmer S

机构信息

Department of Ecology and Environmental Research, Swedish University of Agricultural Sciences, Box 7072, S-750 07 Uppsala, Sweden.

出版信息

Tree Physiol. 1994 Oct;14(10):1131-8. doi: 10.1093/treephys/14.10.1131.

Abstract

To investigate how nitrogen supply might affect the biophysical factors controlling diurnal variation in leaf extension, pot-grown Salix viminalis L. were supplied with nitrogen at a low relative addition rate of 0.05 g N g(-1) N day(-1) (low N) or were given free access to all nutrients (high N). Leaf extension, turgor pressure, turgor after stress relaxation and the plastic extensibility of leaf tissue were determined for growing leaves every 4 h during two days of clear skies in August. Plants in the high-N treatment had a significantly higher relative growth rate, dry weight, shoot/root ratio, leaf nitrogen concentration, total leaf area, final area of single leaves and epidermal cell size than plants in the low-N treatment. The periodicity of leaf extension was similar in both treatments with high values during the afternoon and early evening, and negligible values during the night and in the early morning. The maximum rate of leaf extension was higher in high-N than in low-N plants. Leaf water potential and leaf osmotic potential decreased in the morning and increased in the afternoon with highest values during the night. Calculated values of turgor pressure showed no consistent diurnal trend and did not correlate with the rate of leaf extension. There was no consistent difference in turgor between treatments. Turgor after stress relaxation varied diurnally. The difference between turgors before and after stress relaxation also varied diurnally and was largely in phase with the diurnal pattern of leaf extension. These data are consistent with either a causal role for growth turgor (difference between turgors before and after stress relaxation) in the regulation of cell expansion, or a diurnal variation in turgors after relaxation, attributable to different capacities for cell wall loosening at different times of day. Plastic extensibility of leaf tissue showed no diurnal pattern but consistently higher values were found in high-N than in low-N plants. We conclude that the effects of nitrogen supply on leaf water relations did not limit leaf extension, but that nitrogen supply did affect processes associated with cell wall loosening and enlargement. Nitrogen supply did not affect final values of turgor after relaxation, but it presumably affected the rate at which relaxation proceeded.

摘要

为了研究氮供应如何影响控制叶片伸展日变化的生物物理因素,对盆栽的垂柳(Salix viminalis L.)以0.05 g N g⁻¹ N 天⁻¹的低相对添加率供应氮(低氮),或让其自由获取所有养分(高氮)。在8月连续两天的晴朗天气中,每4小时测定一次生长中叶片的叶片伸展、膨压、应力松弛后的膨压以及叶片组织的塑性伸展性。高氮处理的植株比低氮处理的植株具有显著更高的相对生长率、干重、茎/根比、叶片氮浓度、总叶面积、单叶最终面积和表皮细胞大小。两种处理中叶片伸展的周期性相似,下午和傍晚时数值较高,夜间和清晨时数值可忽略不计。高氮植株的叶片伸展最大速率高于低氮植株。叶片水势和叶片渗透势在早晨降低,下午升高,夜间最高。计算得到的膨压值没有一致的日变化趋势,且与叶片伸展速率无关。处理间的膨压没有一致的差异。应力松弛后的膨压有日变化。应力松弛前后膨压的差异也有日变化,且在很大程度上与叶片伸展的日变化模式同步。这些数据与生长膨压(应力松弛前后膨压的差异)在细胞扩张调节中起因果作用一致,或者与松弛后膨压的日变化一致,这归因于一天中不同时间细胞壁松弛能力的差异。叶片组织的塑性伸展性没有日变化模式,但高氮植株的值始终高于低氮植株。我们得出结论,氮供应对叶片水分关系的影响并不限制叶片伸展,但氮供应确实影响与细胞壁松弛和扩大相关的过程。氮供应不影响松弛后膨压的最终值,但可能影响松弛进行的速率。

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