The impacts of planting patterns combined with irrigation management practices on soil water content, watermelon yield and quality

IF 2 3区 农林科学 Q2 AGRONOMY Agroforestry Systems Pub Date : 2024-03-17 DOI:10.1007/s10457-024-00967-y
Xiaolin Qiang, Zhaojun Sun, Xingqiang Li, Siqi Li, Zhao Yu, Jun He, Qian Li, Lei Han
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Abstract

In arid and semi-arid regions of China, effective irrigation management and agronomic strategies are essential for enhancing the soil water environment and optimizing water productivity. A three-year (2020–2022) field experiment was conducted in the Ningxia Water Saving Agriculture Science and Technology Park, a semi-arid region in northwest China, to assess the impact of planting patterns, watermelon irrigation quotas and their interaction on soil moisture status, yield and quality. The experiment encompassed: (1) two planting patterns: Apple-watermelon agroforestry and watermelon sole-cropping; and (2) three irrigation quotas (W1: 105 mm, W2: 210 mm, and W3: 315 mm). As the years progress, there is a decreasing trend in the average soil water content (SWC) of the 0–100 cm soil layer within the agroforestry system. During the flowering and fruit setting stage and expansion stage in 2022, the soil water content (SWC) in the agroforestry planting pattern is significantly lower than that in the watermelon sole-cropping pattern. Within the agroforestry planting pattern, the W1 and W2 irrigation quotas increase the average fruit weight, soluble solids content, and sugar content but reduce watermelon yield. The interaction between the W3 irrigation quota and agroforestry planting pattern promotes leaf photosynthesis, and extends the watermelon fruit expansion stage and maturity stage to compensate for the decrease in yield.

In summary, the agroforestry planting pattern improves the quality of watermelon fruit, increases soil water utilization, and reduces yield. For those seeking sustainable solutions to enhance land productivity and water use efficiency, apple-watermelon agroforestry emerges as a more promising alternative.

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种植模式与灌溉管理措施相结合对土壤含水量、西瓜产量和质量的影响
在中国干旱和半干旱地区,有效的灌溉管理和农艺策略对于改善土壤水环境和优化水分生产力至关重要。在中国西北半干旱地区宁夏节水农业科技园区开展了一项为期三年(2020-2022 年)的田间试验,以评估种植模式、西瓜灌溉配额及其相互作用对土壤水分状况、产量和品质的影响。试验包括:(1) 两种种植模式:(2) 三种灌溉配额(W1:105 毫米,W2:210 毫米,W3:315 毫米)。随着时间的推移,农林系统中 0-100 厘米土层的平均土壤含水量呈下降趋势。在 2022 年的开花坐果期和膨大期,农林种植模式的土壤含水量(SWC)明显低于西瓜单作模式。在农林业种植模式中,W1 和 W2 灌溉配额增加了平均果重、可溶性固形物含量和含糖量,但降低了西瓜产量。总之,农林业种植模式提高了西瓜果实的质量,提高了土壤水分利用率,降低了产量。对于那些寻求提高土地生产力和水资源利用效率的可持续解决方案的人来说,苹果-西瓜农林业是一种更有前途的选择。
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来源期刊
Agroforestry Systems
Agroforestry Systems 农林科学-林学
CiteScore
5.30
自引率
9.10%
发文量
78
审稿时长
4.5 months
期刊介绍: Agroforestry Systems is an international scientific journal that publishes results of novel, high impact original research, critical reviews and short communications on any aspect of agroforestry. The journal particularly encourages contributions that demonstrate the role of agroforestry in providing commodity as well non-commodity benefits such as ecosystem services. Papers dealing with both biophysical and socioeconomic aspects are welcome. These include results of investigations of a fundamental or applied nature dealing with integrated systems involving trees and crops and/or livestock. Manuscripts that are purely descriptive in nature or confirmatory in nature of well-established findings, and with limited international scope are discouraged. To be acceptable for publication, the information presented must be relevant to a context wider than the specific location where the study was undertaken, and provide new insight or make a significant contribution to the agroforestry knowledge base
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