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盐水灌溉对田间生长的 Chemlali 橄榄土壤盐分分布和一些生理响应的影响。

Saline water irrigation effects on soil salinity distribution and some physiological responses of field grown Chemlali olive.

机构信息

Laboratory of Environment and Biology of Arid Area, Department of Life Sciences, Faculty of Sciences of Sfax, Tunisia.

出版信息

J Environ Manage. 2012 Dec 30;113:538-44. doi: 10.1016/j.jenvman.2012.03.016. Epub 2012 May 8.

Abstract

The shortage of water resources of good quality is becoming an issue in arid and semi arid regions. Per consequent, the use of water resources of marginal quality is becoming an important consideration, particularly in arid regions in Tunisia, where large quantities of saline water are used for irrigation. Nevertheless, the use of these waters in irrigated lands requires the control of soil salinity and a comprehensive analysis even beyond the area where water is applied. The aim of this study was to investigate the effects of saline water irrigation on soil salinity distribution and some physiological traits of field-grown adult olive trees (Olea europaea L. cv. Chemlali) under contrasting environmental conditions of the arid region in the south of Tunisia. The plants were subjected, over two growing seasons, to two drip irrigated treatments: fresh water (ECe=1.2 dS m(-1), FW) and saline water (ECe=7.5 dS m(-1), SW). Saline water irrigation (SW) has led to a significant increase in soil salinity. Furthermore, these results showed that soil salinity and soil moisture variations are not only dependent on water salinity level but are also controlled by a multitude of factors particularly the soil texture, the distance from the irrigation source and climatic conditions (rainfall pattern, temperature average, …). On the other hand, salt treatment reduced leaf midday water potential (LMWP), relative water content and photosynthetic activity and increased the leaf proline content, and this increase was season-dependent. Indeed, LMWP in SW plants decreased to -3.71 MPa. Furthermore, the highest level of proline in SW plants was registered during summer period (2.19 μmol/mg Fw). The proline accumulation recorded in stressed plants has allowed them to preserve appropriate leaf water status and photosynthetic activity. More to the point, this olive cultivar seems to be more sensible to soil salinity during the intense growth phase. Such tendencies would help to better manage water resources for irrigation, particularly under actual climatic conditions of water scarcity. For example, in the case of the availability of different water qualities, it would be better to preserve those of high quality for olive irrigation during the intense vegetative growth phase, in coincidence with high salt sensitive period, and those of low quality for irrigation during partial growth and plant rest phases. What's more, the urgent use of saline water for irrigation should not be applied without taking into consideration the different surroundings conditions where it is used, particularly the water salinity level, the soil type, the adopted irrigation system, the degree of the crop salt tolerance, the plant growth phase and the climatic conditions of the experimental site.

摘要

水资源短缺,尤其是优质水资源短缺,正在成为干旱半干旱地区面临的一个问题。因此,人们越来越关注利用边际水资源,尤其是在突尼斯这样的干旱地区,大量的咸水被用于灌溉。然而,在灌溉土地中使用这些水需要控制土壤盐分,并进行全面分析,甚至超出了水应用的范围。本研究旨在探讨在突尼斯南部干旱地区不同环境条件下,咸水灌溉对成年油橄榄(Olea europaea L. cv. Chemlali)土壤盐分分布和部分生理特性的影响。在两个生长季节,植物接受了两种滴灌处理:淡水(ECe=1.2 dS m(-1),FW)和咸水(ECe=7.5 dS m(-1),SW)。咸水灌溉(SW)导致土壤盐分显著增加。此外,这些结果表明,土壤盐分和土壤水分的变化不仅取决于水的盐分水平,还受到多种因素的控制,特别是土壤质地、离灌溉源的距离和气候条件(降雨模式、平均温度等)。另一方面,盐分处理降低了叶片中午的水势(LMWP)、相对水分含量和光合作用活性,增加了叶片脯氨酸含量,且这种增加具有季节性。事实上,SW 植株的 LMWP 下降到-3.71 MPa。此外,SW 植株脯氨酸含量在夏季达到最高水平(2.19 μmol/mg Fw)。胁迫下植物积累脯氨酸有助于维持适当的叶片水分状态和光合作用活性。更重要的是,这种橄榄品种在旺盛生长阶段对土壤盐分更为敏感。这些趋势有助于更好地管理灌溉水资源,特别是在当前水资源短缺的实际气候条件下。例如,在存在不同水质的情况下,最好在旺盛的营养生长阶段,在与高盐敏感时期相吻合时,保留高质量的水用于橄榄灌溉,而在部分生长和植物休眠阶段,使用低质量的水用于灌溉。此外,在没有考虑到不同的使用环境条件,特别是水的盐度水平、土壤类型、采用的灌溉系统、作物耐盐性程度、植物生长阶段和实验地点的气候条件的情况下,不应未经考虑就将咸水紧急用于灌溉。

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