Evaluation of Root Zone Behavior and Cucumber Yield under Different Mulch Materials and Irrigation Schedules under Tunnel Farming

IF 1.8 Q2 AGRONOMY Advances in Agriculture Pub Date : 2023-11-23 DOI:10.1155/2023/6435489
Muhammad Zaman, Muhammad Zeeshan Khan, Malik Mubashar Ishaq, Junaid Nawaz Chauhdary, Muhammad Rizwan, Shabana Kausar, Ijaz Ahmad
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Abstract

Water plays a crucial role in better agricultural production. The situation of irrigation water in Pakistan is getting worse day by day. New sowing techniques for high-value agriculture are the only solution to increasing water and crop productivity. Drip irrigation coupled with mulch in tunnel farming can be an effective tool for better agricultural production. Therefore, this study was designed to check the impact of different mulch materials coupled with various irrigation schedules on cucumber yield and its root zone behavior. Three types of mulch, i.e., black, transparent, and wheat straw, each under two different levels of deficit irrigation (DI) of 20% DI and 40% DI, were compared with farmer practice as a control. The experiment was conducted at a farmer’s field and laid out under a randomized complete block design. The effect of treatments was checked on the number of leaves per plant, plant height, number of fruits per plant, fruit weight per plant, and crop yield. Moreover, the effect of treatments was checked on the crop root zone. The Hydrus-1D model was calibrated to successfully simulate soil moisture in the root zone. The study’s results revealed that among all treatments, the total yield of the cucumber was higher under 20% DI than 40%. The treatment T3 (transparent mulch + 20% DI) had a maximum yield of 47.31 tons/ha, whereas the minimum yield of 31.86 tons/ha was obtained under control. There was little difference between the yield of black plastic mulch and wheat straw mulch. Maximum root length was found in the case of black mulch with 20% DI (86.9 cm), and the maximum diameter of the root zone canopy was observed under wheat straw mulch. Hydrus-1D proved its ability and was recommended for simulating root zone moisture, with the lowest value of R2 = 0.894. It was concluded that cucumber production with 20% DI is viable for drip irrigation with mulch applications.
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不同覆盖材料和灌溉时间表下的根区行为和黄瓜产量评价
水对提高农业产量起着至关重要的作用。巴基斯坦的灌溉用水状况日益恶化。新的高价值农业播种技术是提高用水量和作物产量的唯一解决办法。滴灌与地膜在隧道农业中的结合可以成为提高农业产量的有效工具。因此,本研究旨在检测不同地膜材料和不同灌溉时间对黄瓜产量及其根区行为的影响。在 20% DI 和 40% DI 两种不同程度的亏缺灌溉(DI)条件下,使用了三种地膜,即黑色地膜、透明地膜和小麦秸秆地膜,并以农民的做法作为对照进行了比较。试验在农民田间进行,采用随机整群设计。试验检验了各处理对每株叶片数、株高、每株果实数、每株果实重量和作物产量的影响。此外,还检验了处理对作物根区的影响。通过校准 Hydrus-1D 模型,成功模拟了根区的土壤湿度。研究结果表明,在所有处理中,20% DI 的黄瓜总产量高于 40%。处理 T3(透明地膜 + 20% DI)的最高产量为 47.31 吨/公顷,而对照组的最低产量为 31.86 吨/公顷。黑色塑料地膜和小麦秸秆地膜的产量差别不大。20% DI 的黑色塑料地膜的根长最大(86.9 厘米),小麦秸秆地膜的根区冠层直径最大。实践证明,Hydrus-1D 具有模拟根区水分的能力,建议用于模拟根区水分,其 R2 = 0.894 值最低。结论是,使用 20% DI 进行滴灌和地膜覆盖的黄瓜生产是可行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Advances in Agriculture
Advances in Agriculture Agricultural and Biological Sciences-Agricultural and Biological Sciences (miscellaneous)
CiteScore
2.60
自引率
0.00%
发文量
100
审稿时长
18 weeks
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