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通过抑制蒸腾作用提高两种干旱生态系统中小灌木的水势:模式与控制机制。

Hydraulic lift through transpiration suppression in shrubs from two arid ecosystems: patterns and control mechanisms.

机构信息

Consejo Superior de Investigaciones Científicas, Estación Experimental de Zonas Aridas, La Cañada de San Urbano, 04120 Almería, Spain.

出版信息

Oecologia. 2010 Aug;163(4):855-65. doi: 10.1007/s00442-010-1615-3. Epub 2010 Apr 3.

DOI:10.1007/s00442-010-1615-3
PMID:20364271
Abstract

Hydraulic lift (HL) is the passive movement of water through the roots from deep wet to dry shallow soil layers when stomata are closed. HL has been shown in different ecosystems and species, and it depends on plant physiology and soil properties. In this study we explored HL patterns in several arid land shrubs, and developed a simple model to simulate the temporal evolution and magnitude of HL during a soil drying cycle under relatively stable climatic conditions. This model was then used to evaluate the influence of soil texture on the quantity of water lifted by shrubs in different soil types. We conducted transpiration suppression experiments during spring 2005 in Chile and spring 2008 in Spain on five shrub species that performed HL, Flourensia thurifera, Senna cumingii and Pleocarphus revolutus (Chile), Retama sphaerocarpa and Artemisia barrelieri (Spain). Shrubs were covered with a black, opaque plastic fabric for a period of 48-72 h, and soil water potential was recorded at different depths under the shrubs. While the shrubs remained covered, water potential continuously increased in shallow soil layers until the cover was removed. The model output indicated that the amount of water lifted by shrubs is heavily dependent on soil texture, as shrubs growing in loamy soils redistributed up to 3.6 times more water than shrubs growing on sandy soils. This could be an important consideration for species growing in soils with different textures, as their ability to perform HL would be context dependent.

摘要

水力提升(HL)是指当气孔关闭时,水从深层湿润土壤通过根系被动地移动到浅层干燥土壤的过程。HL 已在不同的生态系统和物种中得到证实,它取决于植物生理学和土壤特性。在这项研究中,我们探索了几种干旱地区灌木的 HL 模式,并开发了一个简单的模型来模拟相对稳定的气候条件下土壤干燥循环过程中 HL 的时间演变和幅度。然后,我们使用该模型评估了土壤质地对不同土壤类型中灌木提升水量的影响。我们于 2005 年春季在智利和 2008 年春季在西班牙进行了蒸腾抑制实验,实验对象是 5 种具有 HL 功能的灌木物种,分别是 Flourensia thurifera、Senna cumingii 和 Pleocarphus revolutus(智利)、Retama sphaerocarpa 和 Artemisia barrelieri(西班牙)。将灌木用黑色不透明塑料布覆盖 48-72 小时,并在灌木下的不同深度记录土壤水势。在覆盖物仍覆盖的情况下,浅层土壤中的水势会持续增加,直到覆盖物被移除。模型输出表明,灌木提升的水量高度依赖于土壤质地,因为生长在壤土地中的灌木比生长在沙土地中的灌木重新分配的水量多 3.6 倍。这对于在土壤质地不同的地区生长的物种来说是一个重要的考虑因素,因为它们进行 HL 的能力会因环境而异。

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本文引用的文献

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Tree roots: conduits for deep recharge of soil water.树根:土壤水分深层补给的通道。
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2
Seasonal and diurnal patterns of soil water potential in the rhizosphere of blue oaks: evidence for hydraulic lift.蓝橡树根际土壤水势的季节性和昼夜模式:水力提升的证据。
Oecologia. 2000 Dec;125(4):459-465. doi: 10.1007/s004420000470. Epub 2000 Dec 1.
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Hydraulic redistribution in a stand of Artemisia tridentata: evaluation of benefits to transpiration assessed with a simulation model.
植物根系水分再分配的规模及其决定因素:一项全球综合分析
Front Plant Sci. 2022 Jul 22;13:918585. doi: 10.3389/fpls.2022.918585. eCollection 2022.
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Plant-soil interactions in Mediterranean forest and shrublands: impacts of climatic change.地中海森林和灌木林中的植物-土壤相互作用:气候变化的影响
Plant Soil. 2013 Apr;365(1-2):1-33. doi: 10.1007/s11104-013-1591-6. Epub 2013 Feb 21.
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Can hydraulically redistributed water assist surrounding seedlings during summer drought?水力再分配的水在夏季干旱期间能帮助周围的幼苗吗?
Oecologia. 2018 Jul;187(3):625-641. doi: 10.1007/s00442-018-4158-7. Epub 2018 May 12.
6
Plant Clonal Integration Mediates the Horizontal Redistribution of Soil Resources, Benefiting Neighboring Plants.植物克隆整合介导土壤资源的水平再分配,使邻近植物受益。
Front Plant Sci. 2016 Feb 5;7:77. doi: 10.3389/fpls.2016.00077. eCollection 2016.
7
Linking Populus euphratica hydraulic redistribution to diversity assembly in the arid desert zone of Xinjiang, China.将胡杨的水力再分配与中国新疆干旱沙漠地区的多样性组装联系起来。
PLoS One. 2014 Oct 2;9(10):e109071. doi: 10.1371/journal.pone.0109071. eCollection 2014.
三齿蒿林分中的水力再分配:利用模拟模型评估对蒸腾作用的益处
Oecologia. 2002 Jan;130(2):173-184. doi: 10.1007/s004420100794. Epub 2002 Jan 1.
4
Hydraulic lift: water efflux from upper roots improves effectiveness of water uptake by deep roots.水力提升:上部根系排出的水分提高了深层根系吸收水分的效率。
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Hydraulic lift: Substantial nocturnal water transport between soil layers by Artemisia tridentata roots.水力提升:三齿蒿根系在土壤层之间进行大量夜间水分传输。
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