College of Horticulture, Henan Agricultural University, Zhengzhou, Henan, China.
PLoS One. 2021 Mar 12;16(3):e0247578. doi: 10.1371/journal.pone.0247578. eCollection 2021.
To select the optimum fertilizer application under specific irrigation levels and to provide a reliable fertigation system for tomato plants, an experiment was conducted by using a microporous membrane for water-fertilizer integration under non-pressure gravity. A compound fertilizer (N:P2O5:K2O, 18:7:20) was adopted for topdressing at four levels, 1290 kg/ha, 1140 kg/ha, 990 kg/ha, and 840 kg/ha, and the locally recommended level of 1875 kg/ha was used as the control to explore the effects of different fertilizer application rates on growth, nutrient distribution, quality, yield, and partial factor of productivity (PFP) in tomato. The new regime of microporous membrane water-fertilizer integration under non-pressure gravity irrigation reduced the fertilizer application rate while promoting plant growth in the early and intermediate stages. Except for the 990 kg/ha fertilizer treatment, yields per plant and per plot for each fertilizer application rate were higher than or equal to those of the control. The new regime could effectively improve PFP and reduce soil nutrient enrichment. Fertilizer at 840 kg/ha showed the optimum results by increasing PFP by 75.72% as compared to control. In conclusion, the fertilizer rate at 840 kg/ha has not only maintained the productivity of soil but also tomato growth and quality of fruit which makes the non-pressure gravity irrigation a potential and cost-effective way for fertilizer application.
为了在特定灌溉水平下选择最佳施肥量,并为番茄植株提供可靠的灌溉施肥系统,进行了一项实验,采用微孔膜在非压力重力下进行水肥一体化。采用复合肥(N:P2O5:K2O,18:7:20)进行追肥,设 4 个水平,分别为 1290kg/ha、1140kg/ha、990kg/ha 和 840kg/ha,当地推荐水平 1875kg/ha 为对照,研究不同施肥量对番茄生长、养分分布、品质、产量和部分生产力因子(PFP)的影响。非压力重力灌溉下微孔膜水肥一体化的新方案减少了施肥量,同时促进了番茄生长的早期和中期阶段。除 990kg/ha 施肥处理外,各施肥水平的单株和小区产量均高于或等于对照。新方案可有效提高 PFP,减少土壤养分富集。与对照相比,施 840kg/ha 肥料可将 PFP 提高 75.72%。总之,840kg/ha 的施肥量不仅保持了土壤的生产力,还促进了番茄的生长和果实品质,使非压力重力灌溉成为一种具有潜力和成本效益的施肥方式。