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模拟埃塞俄比亚提格雷西部半干旱地区雨养条件下芝麻对不同土壤肥力水平的响应。

Modeling the response of sesame ( L.) to different soil fertility levels under rain-fed conditions in the semi-arid areas of western Tigray, Ethiopia.

作者信息

Berhane Abadi, Abrha Berhanu, Worku Walelign, Hadgu Gebre

机构信息

Department of Plant Sciences, Aksum University, Tigray, Ethiopia.

Department of Dryland Crop and Horticulture Science, Mekelle University, Ethiopia.

出版信息

Heliyon. 2024 Aug 10;10(17):e36084. doi: 10.1016/j.heliyon.2024.e36084. eCollection 2024 Sep 15.

Abstract

Sesame, a crucial oilseed crop in Ethiopia, ranks second only to coffee in its importance as an exported agricultural commodity. However, inadequate soil fertility management has hampered its productivity despite its substantial international market demand. Hence, this study was conducted to model the response of sesame to different nitrogen fertilizer levels using the AquaCrop model, and to assess the capability of the model as a decision-support tool for optimizing soil fertility management strategies in the study area. The experiment was laid out in a randomized complete block design, consisting of four nitrogen fertilizer rates (0, 23, 46, and 69 kg/ha nitrogen) and three distinct sesame varieties (Setit-1, Setit-2, and Humera-1). Over the course of the three cropping seasons, data on soil physical and chemical properties, crop growth, yield and yield components were collected for each treatment. Evaluation of model performance relied upon established metrics of coefficient of determination (R), root mean square error (RMSE), normalized root mean square error (N-RMSE), model efficiency (E), and degree of agreement (D). Analysis of results revealed the AquaCrop model appropriately calibrated for simulation of soil water content, showing R values ranging from 0.92 to 0.98, RMSE values varying from 6.5 to 13.9 mm, E values from 0.78 to 0.94, and D values from 0.95 to 0.99. Similarly, simulation outputs for aboveground biomass (AB) demonstrated good accuracy of the model, with R values varying from 0.92 to 0.98, RMSE values ranging from 0.33 to 0.54 tons/ha, and D values from 0.9 to 0.98. Notable accuracy was also observed in the simulation of canopy cover (CC), revealing R values between 0.95 and 0.99, and RMSE values ranging from 5.3 to 8.6 %. In conclusion, this study substantiates the successful calibration and validation of the AquaCrop model for predicting sesame response to diverse nitrogen fertilizer levels. The performance of the model in predicting soil water content, CC, AB, and yield highlights its potential as a valuable tool for optimizing soil fertility management and enhancing sesame cultivation practices in Ethiopia.

摘要

芝麻是埃塞俄比亚一种重要的油料作物,作为一种出口农产品,其重要性仅次于咖啡。然而,尽管国际市场对芝麻有大量需求,但土壤肥力管理不足阻碍了其产量。因此,本研究使用AquaCrop模型模拟芝麻对不同氮肥水平的响应,并评估该模型作为决策支持工具优化研究区域土壤肥力管理策略的能力。试验采用随机完全区组设计,包括四种氮肥施用量(0、23、46和69千克/公顷氮)和三个不同的芝麻品种(Setit - 1、Setit - 2和Humera - 1)。在三个种植季节中,收集了各处理的土壤物理和化学性质、作物生长、产量及产量构成的数据。模型性能评估依赖于确定系数(R)、均方根误差(RMSE)、归一化均方根误差(N - RMSE)、模型效率(E)和一致性程度(D)等既定指标。结果分析表明,AquaCrop模型针对土壤含水量模拟进行了适当校准,R值在0.92至0.98之间,RMSE值在6.5至13.9毫米之间,E值在0.78至0.94之间,D值在0.95至0.99之间。同样,地上生物量(AB)的模拟输出显示模型具有良好的准确性,R值在0.92至0.98之间,RMSE值在0.33至0.54吨/公顷之间,D值在0.9至0.98之间。在冠层覆盖(CC)模拟中也观察到显著的准确性,R值在0.95至0.99之间,RMSE值在5.3至8.6%之间。总之,本研究证实了AquaCrop模型在预测芝麻对不同氮肥水平响应方面成功进行了校准和验证。该模型在预测土壤含水量、CC、AB和产量方面的性能突出了其作为优化埃塞俄比亚土壤肥力管理和加强芝麻种植实践的宝贵工具的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0bd/11407921/d5a80a1af833/gr1.jpg

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