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Biomass, fruit yield, water productivity and quality response of processing tomato to plant density and deficit irrigation under a semi-arid Mediterranean climate

机译:地中海半干旱气候下加工番茄对植物密度和亏缺灌溉的生物量,水果产量,水分生产率和质量响应

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A 2-year study was conducted to examine the impact of deficit irrigation on dry biomass, water-use efficiency (WUE), fruit yield and quality in open-field processing tomato at high plant density in a semi-arid environment. Three irrigation treatments (nil; and 100% (full) and 50% (deficit) restoration of crop evapotranspiration (ETc), respectively) and two plant densities (2.5 (P1) and 5.0 (P2) plants m(-2)) were studied. Dry biomass and fruit yield per plant were lower in P2 than in P1, but at high plant density the crop compensated for biomass and yield decrease at the plant level. Fruit yield in P2 was greater than that in P1, by 36% in 2004 and 33% in 2005. Water limitation improved quality traits compared with full irrigation. Deficit irrigation, especially in P2, enhanced WUE and allowed a water saving of >45% relative to full irrigation, while keeping high levels of fruit quality. The yield response factor, Ky, which correlates relative fruit yield losses to relative ETc reduction, was higher (0.63) than Kss (0.44), which correlates relative total dry biomass losses to relative ETc reduction, revealing a greater crop sensitivity to soil-water deficit in terms of fruit yield than dry biomass. Therefore, Ky may of use in identifying the plant density at which water productivity is maximised or yield losses are minimised.
机译:进行了一项为期2年的研究,以研究半干旱环境中高密度种植条件下露天灌溉番茄中亏水灌溉对干生物量,水分利用效率(WUE),水果产量和品质的影响。进行了三种灌溉处理(分别为零;分别完成了作物蒸散量(ETc)的100%(完全)和50%(亏缺)的恢复)和两种植物密度(m(-2)为2.5(P1)和5.0(P2)植物)。研究。在P2中,每株植物的干生物量和果实产量低于P1,但是在高植物密度下,作物补偿了生物量,并且在植物水平上单产下降。 P2的水果产量高于P1,2004年和2006年分别为36%和33%。与完全灌溉相比,水分限制改善了品质性状。亏缺灌溉,特别是在P2中,增加了WUE,相对于完全灌溉节水了> 45%,同时保持了较高的果实品质。将相对果实产量损失与相对ETc减少相关联的产量响应因子Ky(0.63)高于将相对总干生物量损失与相对ETc减少相关联的Kss(0.44),表明作物对土壤水的敏感性更高在水果产量方面比干燥生物质亏缺。因此,Ky可用于确定植物密度,在该密度下水生产率最大化或产量损失最小。

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