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首页> 外文期刊>European Journal of Agronomy >Are olive root systems optimal for deficit irrigation?
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Are olive root systems optimal for deficit irrigation?

机译:橄榄根系统是否最佳赤字灌溉?

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In olive (Olea europaeaL), deficit irrigation (DI) has proven to be an effective management strategy to improve water productivity (WP, yield per unit of water used), particularly under localized irrigation. However, despite the significant research efforts made to adapt irrigation programs to each particular cropping environment, little has been done to study the response of tree root systems to DI. The present paper analyzes the effect of water stress on olive root morphology and studies olive ideotypes best suited to DI. To do so, the results of a two-year field experiment using two irrigation treatments, a well-watered control irrigation (CI) and a regulated deficit irrigation (RDI), are combined with simulations using a soil-plant-atmosphere continuum (SPAC) model. Results of the field experiment show that olive root systems forage for water resources when RDI is imposed, i.e. they try to maximize the soil area explored. However, simulations indicate that under DI, foraging might not be the best strategy. Instead, a root system that tends to concentrate new growth inside the wet bulb will increase daily net assimilation (An) by up to 16%. The present analysis shows that tree performance under DI could be optimized to trigger a new leap in WP.
机译:在橄榄(Olea Europaeal)中,缺陷灌溉(DI)已被证明是提高水生产率的有效管理策略(WP,每单位使用的水),特别是在局部灌溉下。然而,尽管采取了重大的研究努力,以适应每个特定种植环境的灌溉计划,但研究了树根系统对DI的响应很少。本文分析了水分胁迫对橄榄根形态的影响,以及最适合DI的橄榄色型号。为此,使用两种灌溉处理,浇水控制冲洗(CI)和调节缺陷灌溉(RDI)的两年田间实验结果与使用土壤 - 植物 - 大气连续统一体(SPAC ) 模型。现场实验的结果表明,当施加RDI时,橄榄根系统用于水资源的饲料,即,他们试图最大限度地提高土壤区域。然而,模拟表明,在DI下,觅食可能不是最好的策略。相反,倾向于集中在湿灯泡内部新的生长的根系系统将增加每日净同化(AN)至16%。本分析显示DI下的树形性能可以优化,以触发WP中的新飞跃。

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