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首页> 外文期刊>Ciência Rural >Fruit yield and composition in orange trees cv. 'Lane Late' in response to nitrogen fertilization in Sandy Typic Hapludalf soil
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Fruit yield and composition in orange trees cv. 'Lane Late' in response to nitrogen fertilization in Sandy Typic Hapludalf soil

机译:水果产量和组成在橙树简历。沙质典型Hapludalf土壤中氮肥的“ Lane Late”

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Little is known about the impact of N fertilization on fruit production and composition in orange groves grown in soils with low or medium organic matter content in Rio Grande do Sul (RS). This study aimed to evaluate how N fertilization of orange trees cv. 'Lane Late' in a sandy soil may interfere in fruit yield and composition of fruit and juice. The experiment was conducted with orange trees cv. 'Lane Late' growing in Sandy Typic Hapludalf soil, in Ros??rio do Sul (RS). The plants received applications of 0, 20, 40, 60, 80, 100, 120, 140 and 160kg N ha -1 . Total N in leaves, number of fruits per plant, yield, fresh weight, fruit diameter, peel thickness, percentage of fruit juice, peel color, juice color, ascorbic acid content, total soluble solids (TSS) and total titratable acidity were evaluated in 2010/2011 and 2011/2012 crops. In the first crop, especially yield, number of fruits per plant, TSS content in fruit juice and ratio decreased with increasing N rate applied. However, in the second crop, the total titratable acidity of the fruit juice prominently increased with the dose of N applied. In both crops, results were highly influenced by rainfall distribution, which affect the plant physiology, soil N dynamics and, consequently, probability of response to N applied and the loss of mineral N in the soil.
机译:对于南里奥格兰德州(RS)有机质含量较低或中等的土壤中种植的橙树林,氮肥施肥对水果产量和果实组成的影响知之甚少。这项研究旨在评估橙树的氮素施肥方式。沙质土壤中的“晚熟”可能会干扰水果的产量以及水果和果汁的成分。该实验是用橙树简历进行的。在南罗斯岛(RS)的桑迪·蒂皮·哈普鲁达夫(Sandy Typic Hapludalf)土壤中生长的“后期”。这些植物接受了0、20、40、60、80、100、120、140和160kg N ha -1的施用。评估了叶片中的总氮,单株果实的数量,产量,鲜重,果实直径,果皮厚度,果汁百分比,果皮颜色,果汁颜色,抗坏血酸含量,总可溶性固形物(TSS)和总可滴定酸度。 2010/2011年和2011/2012年作物。在头茬中,尤其是产量,单株果实数,果汁中TSS含量和比例随着施氮量的增加而降低。然而,在第二批作物中,果汁的总可滴定酸度随施氮量的增加而显着增加。在这两种农作物中,结果都受到降雨分布的极大影响,降雨分布影响植物的生理,土壤氮素的动态变化,进而影响对施用氮素的反应概率以及土壤中氮素的损失。

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