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探索水肥耦合模式以促进干旱地区梨树的生长、果实品质和产量提升。

Exploring the coupling mode of water and fertilizer for improving growth, fruit quality, and yield of the pear in the arid region.

作者信息

Li Tianle, Gao Zhijian, Bai Xinlu, Yu Sihai, An Shijie, Zheng Qiangqing, Tang Zhihui, Zhi Jinhu

机构信息

College of Agriculture, Tarim University, Alar, 843300, China.

Research Center of Oasis Agricultural Resources and Environment in Southern Xinjiang, Tarim University, Alar, 843300, China.

出版信息

Open Life Sci. 2024 Jul 23;19(1):20220911. doi: 10.1515/biol-2022-0911. eCollection 2024.

Abstract

Considering the pear in the arid region as the research object, single-factor testing and water-fertilizer coupling testing were conducted. The response of pear tree growth to water, nitrogen, and phosphorus was explored and provided a theoretical basis for efficient water and fertilizer management. Among them, the single-factor test set water, nitrogen, and phosphorus as the three factors, and five levels were set. Screening out W3, W4, N3, N4, P3, and P4 promoted plant nutrient uptake and fruit quality. Eight treatments were set up in the water and fertilizer coupling test: Treatment 1 (T1, W3N3P3), Treatment 2 (T2, W3N3P4), Treatment 3 (T3, W3N4P3), Treatment 4 (T4, W3N4P4), Treatment 5 (T5, W4N3P3), Treatment 6 (T6, W4N3P4), Treatment 7 (T7, W4N4P3), and Treatment 8 (T8, W4N4P4). The results showed that the leaf area index of the T1, T2, T3, and T4 treatments was significantly higher than that of the other treatments at maturity. The yield, single fruit weight, and primary fruit rate were the highest under T3 treatment. The gray correlation degree analysis of fruit quality showed that the T3 treatment had the highest degree of correlation and ranking of each fruit quality index, indicating that the T3 treatment had the highest fruit quality. The yield model showed that irrigation with 6510.06 m hm, nitrogen fertilizer with 337.5 kg N hm, and phosphate fertilizer with 262.5 kg P hm had the best yield. A detailed investigation of pear tree growth and fruit quality showed that the T3 treatment had the best fruit growth and development performance, and the pear fruit quality was the best.

摘要

以干旱地区梨树为研究对象,进行了单因素试验和水肥耦合试验。探究了梨树生长对水分、氮素和磷素的响应,为高效水肥管理提供理论依据。其中,单因素试验设置水分、氮素和磷素3个因素,各设5个水平。筛选出W3、W4、N3、N4、P3和P4有利于促进植株养分吸收和果实品质提升。水肥耦合试验设置8个处理:处理1(T1,W3N3P3)、处理2(T2,W3N3P4)、处理3(T3,W3N4P3)、处理4(T4,W3N4P4)、处理5(T5,W4N3P3)、处理6(T6,W4N3P4)、处理7(T7,W4N4P3)和处理8(T8,W4N4P4)。结果表明,T1、T2、T3和T4处理在成熟期的叶面积指数显著高于其他处理。T3处理下的产量、单果重和一级果率最高。果实品质的灰色关联度分析表明,T3处理各果实品质指标的关联度和排序最高,表明T3处理果实品质最优。产量模型表明,灌水量6510.06 m³/hm²、施氮量337.5 kg N/hm²、施磷量262.5 kg P/hm²时产量最佳。对梨树生长和果实品质的详细调查表明,T3处理果实生长发育表现最佳,梨果实品质最优。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d785/11282912/1f24bd2cff4d/j_biol-2022-0911-fig001.jpg

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本文引用的文献

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[Nitrogen application technology in dwarfed apple trees.].
Ying Yong Sheng Tai Xue Bao. 2018 May;29(5):1429-1436. doi: 10.13287/j.1001-9332.201805.027.

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