Chunyan Wu, Xiaoyi Han, Yan Cheng, Xueke Wang, Wei Wang
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引用次数: 0
摘要
本研究旨在探讨水肥一体化模式下不同氮磷钾配比对温室番茄产量和营养品质的影响。以温室番茄为研究对象,采用 "3414 "肥料试验设计,评估不同处理组合下番茄的生长、产量、品质和土壤指标。目的是确定番茄栽培和生产的最佳施肥方案,并推荐适当的施肥量。结果表明,不同的肥料配比对番茄的质量和产量都有显著影响。总体而言,施肥量越大,番茄产量越高,其中钾肥对增产的影响最为明显,其次是磷肥和氮肥。主成分综合分析表明,N2P2K1 处理的营养质量和产量最高。因此,本研究确定的最佳施肥组合为氮肥 197.28 kg hm-2、磷肥 88.75 kg hm-2、钾肥 229.80 kg hm-2。这些研究结果为优化吉林省温室番茄栽培和生产中的施肥方法提供了科学依据。
Impact of "3414" fertilization on the yield and quality of greenhouse tomatoes.
This study aimed to explore the effects of different nitrogen, phosphorus, and potassium ratios on the yield and nutritional quality of greenhouse tomatoes under a water and fertilizer integration model. Greenhouse tomatoes were used as the research object, and the "3414" fertilizer trial design was employed to assess tomato growth, yield, quality, and soil indicators across various treatment combinations. The goal was to determine the optimal fertilization scheme and recommend appropriate fertilizer quantities for tomato cultivation and production. The results revealed that different fertilizer ratios significantly affected both the quality and yield of tomatoes. Overall, the tomato yield tended to increase with higher fertilization amounts, with potassium exhibiting the most pronounced effect on yield increase, followed by phosphorus and nitrogen. The comprehensive analysis of principal components indicated that the N2P2K1 treatment yielded the highest nutritional quality and yield. Therefore, the best fertilization combination identified in this study consisted of nitrogen fertilizer at 197.28 kg hm-2, phosphorus fertilizer at 88.75 kg hm-2, and potassium fertilizer at 229.80 kg hm-2. These findings provided the scientific basis for optimizing fertilization practices in greenhouse tomato cultivation and production in the Jilin Province.
期刊介绍:
Open Life Sciences (previously Central European Journal of Biology) is a fast growing peer-reviewed journal, devoted to scholarly research in all areas of life sciences, such as molecular biology, plant science, biotechnology, cell biology, biochemistry, biophysics, microbiology and virology, ecology, differentiation and development, genetics and many others. Open Life Sciences assures top quality of published data through critical peer review and editorial involvement throughout the whole publication process. Thanks to the Open Access model of publishing, it also offers unrestricted access to published articles for all users.