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水分亏缺和复水期间橄榄树叶片和根系的渗透调节

Osmotic regulation in leaves and roots of olive trees during a water deficit and rewatering.

作者信息

Dichio Bartolomeo, Xiloyannis Cristos, Sofo Adriano, Montanaro Giuseppe

机构信息

Università degli Studi della Basilicata, Dipartimento di Scienze dei Sistemi Colturali, Forestali e dell'Ambiente, Via dell'Ateneo Lucano n. 10, Campus Macchia Romana, 85100, Potenza, Italy.

出版信息

Tree Physiol. 2006 Feb;26(2):179-85. doi: 10.1093/treephys/26.2.179.

Abstract

We evaluated the osmotic adjustment capacity of leaves and roots of young olive (Olea europaea L.) trees during a period of water deficit and subsequent rewatering. The trials were carried out in Basilicata (40 degrees 24' N, 16 degrees 48' E) on 2-year-old self-rooted olive plants (cv. 'Coratina'). Plants were subjected to one of four drought treatments. After 13 days of drought, plants reached mean predawn leaf water potentials of -0.45 +/- 0.015 MPa (control), -1.65 +/- 0.021 (low stress), -3.25 +/- 0.035 (medium stress) and -5.35 +/- 0.027 MPa (high stress). Total osmotic adjustment increased with increasing severity of drought stress. Trees in the high stress treatment showed total osmotic adjustments ranging between 2.4 MPa at 0500 h and 3.8 MPa at 1800 h on the last day of the drought period. Osmotic adjustment allowed the leaves to reach leaf water potentials of about -7.0 MPa. Active osmotic adjustment at predawn decreased during the rewatering period in both leaves and roots. Stomatal conductance and net photosynthetic rate declined with increasing drought stress. Osmotic adjustment in olive trees was associated with active and passive osmotic regulation of drought tolerance, providing an important mechanism for avoiding water loss.

摘要

我们评估了幼龄油橄榄(Olea europaea L.)树在水分亏缺期及随后复水过程中叶和根的渗透调节能力。试验在巴西利卡塔(北纬40度24分,东经16度48分)对2年生自根油橄榄植株(品种‘科拉蒂纳’)进行。植株接受四种干旱处理之一。干旱13天后,植株黎明前叶水势均值分别为-0.45±0.015兆帕(对照)、-1.65±0.021(轻度胁迫)、-3.25±0.035(中度胁迫)和-5.35±0.027兆帕(重度胁迫)。总渗透调节随干旱胁迫 severity 的增加而增加。重度胁迫处理的树在干旱期最后一天显示总渗透调节在0500时为2.4兆帕至1800时为3.8兆帕之间。渗透调节使叶片达到约-7.0兆帕的叶水势。黎明前的主动渗透调节在复水期叶和根中均下降。气孔导度和净光合速率随干旱胁迫增加而下降。油橄榄树的渗透调节与耐旱性的主动和被动渗透调节相关,为避免水分流失提供了重要机制。

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