College of Life Science, Shanxi Normal University, Linfen, China.
Institute of Agricultural Resources and Regional Planning, Chinese Academy of Agricultural Sciences, Beijing, China.
J Sci Food Agric. 2022 Mar 15;102(4):1508-1513. doi: 10.1002/jsfa.11485. Epub 2021 Aug 27.
Water is critical to the production of crops, especially when faced with seasonal drought or freshwater scarcity. We compared the effect of negative pressure irrigation (NPI) on water use efficiency (WUE), nutrient uptake, yield and quality of Brassica chinensis L. using a greenhouse plot experiment. Three different water supply pressures (-5, -10 and -15 kPa), and a conventional irrigation (CK) treatment, were arranged in a randomized design with three replications.
Our results suggest that plant height, leaf area, number of leaves and ratio of root to shoot were significantly correlated with water supply pressure. Specifically, our results show that B. chinensis L. yield was increased 50% with NPI versus CK. Water supply pressure had a significant effect on N and P nutrient uptake and no significant effect on K. The average concentration of vitamin C was greatest with -5 kPa treatment and consecutively declined. According to our results, NPI can save up to 36.8% of water used and improve WUE by 61.3% during growth of B. chinensis L. Our results suggest that the optimum irrigation management strategy is -5 kPa treatment.
NPI versus CK can provide more stable irrigation water and retain soil moisture during plant growth, resulting in an increased WUE and yield with suitable water supply pressure. While our results suggest that NPI can enhance B. chinensis L. yield and perhaps also quality, future research should explore the mechanism of NPI in relation to yield and water use efficiency. © 2021 Society of Chemical Industry.
水是作物生产的关键,特别是在面临季节性干旱或淡水短缺时。我们通过温室小区试验比较了负压灌溉(NPI)对油菜生长过程中水分利用效率(WUE)、养分吸收、产量和品质的影响。采用随机设计,设置了 3 种不同的供水压力(-5、-10 和-15kPa)和常规灌溉(CK)处理,每个处理重复 3 次。
我们的结果表明,株高、叶面积、叶片数和根冠比与供水压力显著相关。具体而言,与 CK 相比,NPI 可使油菜产量提高 50%。供水压力对 N 和 P 养分吸收有显著影响,对 K 无显著影响。维生素 C 的平均浓度以-5kPa 处理最高,随后逐渐下降。根据我们的结果,NPI 可节水 36.8%,油菜生长过程中的 WUE 提高 61.3%。我们的结果表明,最佳灌溉管理策略为-5kPa 处理。
与 CK 相比,NPI 可为植物生长提供更稳定的灌溉用水并保持土壤水分,从而在适宜的供水压力下提高 WUE 和产量。虽然我们的结果表明 NPI 可以提高油菜的产量和品质,但未来的研究应探索 NPI 与产量和水分利用效率之间的关系机制。 © 2021 英国化学学会。