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首页> 外文期刊>Agricultural Water Management >Response of fruit yield, fruit quality, and water use efficiency to water deficits for apple trees under surge-root irrigation in the Loess Plateau of China
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Response of fruit yield, fruit quality, and water use efficiency to water deficits for apple trees under surge-root irrigation in the Loess Plateau of China

机译:中国水土高原灌溉根灌区苹果树水果效率对水赤字的影响

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摘要

This study investigated the response of the fruit quality, fruit yield, and water use efficiency (WUE) to regulated deficit irrigation (RDI) during the different growth stages of apple trees (Molus pumila Mill) in the Loess Plateau of northern China. Different water deficit treatments were applied in 2016 and 2017 on a field planted with 5-year-old apple trees. The treatments included low (L), moderate (M), and severe (S) water deficit treatments during the bud burst to leafing (I), flowering to fruit set (II), and fruit growth (III) stages. Compared with full irrigation (FI), water deficit treatment during the different growth stages had significant effects on the fruit quality, fruit yield, and WUE of the apple trees. The L and M water deficit treatments during stage III significantly reduced the apple yield by 10.89% and 13.46% in 2016 and 3.66% and 10.10% in 2017, respectively. A water deficit during stage III decreased the single fruit weight, excellent-fruit percentage, and fruit water content by 2.79%-11.31%, 15.24%-20.36%, and 4.26%-10.07%, respectively, and increased fruit firmness, soluble solid content, and soluble reducing sugar content by 12.70%-21.31%, 13.83%-33.60%, and 10.13%-21.48%, respectively. The L and M water deficit treatments applied during stage I resulted in apple quality and yield that were similar to those resulting from the FI treatment, but the WUE was significantly higher in the L and M water deficit treatments than in the FI treatment. The optimal period for water deficit treatment is stage II, during which the highest yield and WUE were found. The L and M treatments during stage II increased the fruit yield by 13.93% and 13.28% in 2016 and 17.94% and 17.13% in 2017, respectively. The WUE of the apple trees was higher with the II-L and II-M treatments (greater than 7 kg m(-3)) than with other treatments. In addition, water deficit treatment during stage II caused a slight increase in fruit firmness and a slight decrease in fruit water content, which produces apples suitable for storage. Single fruit weight, excellent-fruit percentage, and soluble solid and soluble reducing sugar content were significantly improved, making the apples sweeter; thus, a water deficit during stage II had a significant positive effect on apple quality, with the I I-M treatment being optimal and the II-L treatment being second best. The optimal water deficit treatment of the II-M treatment enhances the fruit quality, yield, and WUE of apple trees in water-scarce environments.
机译:本研究调查了果实质量,水果产量和水利用效率(WUE)在中国北方黄土高原苹果树(豪华Pumila Mill)的不同生长阶段的缺陷灌溉(RDI)的响应。在2016年和2017年应用了不同的水缺陷治疗,在一个种植5岁的苹果树的领域。该治疗包括低(L),中等(M)和严重的水缺损治疗,在芽爆至叶片(I)中,开花到水果套装(II)和果实生长(III)阶段。与完整灌溉(FI)相比,不同生长阶段的水赤字治疗对苹果树的水果质量,水果产量和WUE有显着影响。 III阶段的L和M水缺陷治疗显着降低了2016年的苹果产量10.89%和13.46%,分别为3.66%和10.10%。 III阶段的水赤字减少了单一的水果重量,优异果实百分比和水果含量,分别减少了2.79%-11.31%,15.24%-20.36%,分别为4.26%-10.07%,增加果实固体,可溶的固体含量,可溶解降低糖含量12.70%-21.31%,13.83%-33.60%,分别为10.13%-21.48%。在阶段施用的L和M水缺陷治疗导致苹果质量和产量类似于文件所产生的苹果质量和产量,但L和M水缺陷治疗的WUE显着高于FI处理。水缺损治疗的最佳时间是II阶段,在此期间发现了最高的产量和WUE。第II期的L和M治疗方法在2016年的果实产量增加13.93%和13.28%,分别于2017年的17.94%和17.13%。苹果树的WUE含有II-L和II-M治疗(大于7kg m(-3)),而不是其他治疗。此外,阶段II期间的水缺陷治疗导致果实的含量略有增加,果实水含量轻微减少,产生适合储存的苹果。单果重,优异果实百分比和可溶性固体和可溶性还原糖含量显着改善,使苹果更甜;因此,阶段II期间的水赤字对苹果品质具有显着的积极影响,I-M治疗是最佳的,II-L治疗是第二种的。 II-M治疗的最佳水缺损治疗可提高水资源稀缺环境中苹果树的水果质量,产量和电力。

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