[优化养分管理提高了中国柑橘产量和果实质量:荟萃分析]。

Q3 Environmental Science
Hao Xu, Yu-Wen Wang, Zi-Wei Luo, Wen-Lang Hu, Wen-Qiang Liao, Li-Song Chen, Yan Li, Jiu-Xin Guo
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引用次数: 0

摘要

弄清柑橘产区农民施肥与产量的现状以及不同施肥措施的效果,可以为提高中国柑橘的产量和质量提供科学依据。我们从中国知网(CNKI)和科学网(Web of Science)上检索了 92 篇有关柑橘施肥的文献,采用荟萃分析法研究了农民常规施肥和专家优化施肥下氮、磷、钾肥用量和部分产量的影响,以及优化施肥措施对柑橘产量和品质的影响。在中国柑橘生产中,N、P2O5 和 K2O 的平均常规施肥量分别为 507.3、262.2 和 369.3 kg-hm-2。与常规施肥相比,优化施肥使 N 和 P2O5 的施用量分别减少了 14.7% 和 8.3%,K2O 的施用量增加了 6.6%,从而使 N、P2O5 和 K2O 肥料的部分生产率分别提高了 7.8%、18.4% 和 14.7%。优化施肥使果实产量和单果重分别增加了 11.9% 和 2.8%,同时提高了维生素 C 含量(Vc,3.1%)、总可溶性固形物(TSS,5.9%)和总糖含量(TSC,8.6%)。此外,它还降低了可滴定酸(TA,-3.4%)和总酸含量(TAC,-3.6%),从而提高了 TSS/TA(14.0%)和 TSC/TAC(9.5%)。在不同的优化施肥方法中,优化氮磷钾+中肥和/或微量元素肥料对柑橘产量和果实品质的影响最好,尤其是优化氮磷钾措施之间的氮磷钾降幅≤25%。常规氮磷钾+有机肥的效果高于常规氮磷钾+中肥和/或微量元素肥。然而,不同的柑橘品种,包括柑橘、柚子和橙子,对优化施肥的反应不同。优化施肥管理可协同提高柑橘产量、肥料利用效率和果实品质。因此,中国柑橘产区应因地制宜地采用减少氮磷钾肥、平衡中肥和/或微肥、有机肥提高土壤肥力的养分综合管理策略1。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Optimized nutrients management improved citrus yield and fruit quality in China: A meta-analysis].

Clarifying current situation of farmers' fertilization and yield in citrus producing areas and the effects of different fertilization measures can provide a scientific basis for improving the yield and quality of citrus in China. We retrieved 92 literatures on citrus fertilization from the CNKI and Web of Science to examine the impacts of nitrogen (N), phosphorus (P or P2O5), and potassium (K or K2O) fertilizer dosage and partial productivity under farmers' conventional fertilization and experts' optimized fertilization, as well as the effects of optimized fertilization measures on citrus yield and quality by using meta-analysis approach. The average conventional application rates of N, P2O5, and K2O were 507.3, 262.2, and 369.3 kg·hm-2 in citrus production in China. Compared with conventional fertilization, optimized fertilization resulted in a reduction of N and P2O5 by 14.7% and 8.3%, an increase in K2O application by 6.6%, which promoted partial productivity of N, P2O5, and K2O fertilizers by 7.8%, 18.4%, and 14.7%, correspondingly. The optimized fertilization resulted in 11.9% and 2.8% increase in fruit yield and single fruit weight, while improved vitamin C content (Vc, 3.1%), total soluble solids (TSS, 5.9%) and total sugar content (TSC, 8.6%). Additionally, it also led to a reduction in titratable acid (TA, -3.4%) and total acid content (TAC, -3.6%), and consequently elevated the TSS/TA (14.0%) and TSC/TAC (9.5%). Among different optimized fertilization methods, the effect of optimized NPK + medium and/or micro element fertilizer on citrus yield and fruit quality was the best, especially NPK decrement ≤25% between optimized NPK measures. The effect of conventional NPK + organic fertilizer was higher than conventional NPK + medium and/or micro element fertilizer. However, different citrus varieties, including mandarins, pomelos, and oranges, showed different responses to optimized fertilization. Optimized fertilization management could synergistically improve citrus yield, fertilizer use efficiency, and fruit quality. Therefore, the strategy of integrated nutrient management1 with reducing NPK fertilizer, balancing medium and/or micro nutrient fertilizer and improving soil fertility by organic fertilizer should be adopted according to local conditions in citrus producing areas of China.

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应用生态学报
应用生态学报 Environmental Science-Ecology
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