Xiang Yangzhou, Li Yuan, Luo Xuqiang, Liu Ying, Yue Xuejiao, Yao Bin, Xue Jianming, Zhang Leiyi, Fan Jing, Xu Xiuyue, Li Yonghua
Guizhou Provincial Key Laboratory of Geographic State Monitoring of Watershed, School of Geography and Resources, Guizhou Education University, Guiyang, China.
The State Key Laboratory of Herbage Improvement and Grassland Agro-ecosystems of Lanzhou University, National Field Scientific Observation and Research Station of Grassland Agro-Ecosystems in Gansu Qingyang, College of Pastoral Agriculture Science and Technology, Lanzhou, China.
Front Plant Sci. 2022 Oct 21;13:1009631. doi: 10.3389/fpls.2022.1009631. eCollection 2022.
To better understand the responses of vegetable yields in a greenhouse system to organic fertilizer through a quantitative evaluation based on peer-reviewed journal articles and in consideration of environmental managerial factors. We conducted a meta-analysis of 453 paired observations from 68 peer-reviewed journal articles to assess the response of vegetable yields in greenhouse vegetable systems in China to organic fertilization. Compared with the control (no organic fertilizer), organic fertilization significantly increased the yields of vegetables by 44.11% on average. The response of vegetable yields to organic fertilizer tended to increase with the increasing experimental duration. Organic fertilizer application had the greatest potential for leafy vegetables (+76.44%), in loamy soils (+53.94%), at moderate organic fertilizer carbon input levels (+54.13%), and in soils with moderate initial soil total nitrogen levels (+50.89%). Aggregated boosted tree analysis indicated that organic fertilizer carbon inputs, vegetable type and experimental duration were the predominant factors that manipulated the response of vegetable yields to organic fertilizer application. The rational application of farmyard manure would be a promising strategy for increasing vegetable yields in greenhouse vegetable systems in China. Factoring in vegetable type, carbon and nitrogen inputs of organic fertilizer, and soil texture would benefit vegetable yields with the application of organic fertilizer.
为了通过基于同行评审期刊文章的定量评估并考虑环境管理因素,更好地了解温室系统中蔬菜产量对有机肥料的响应。我们对68篇同行评审期刊文章中的453对观测数据进行了荟萃分析,以评估中国温室蔬菜系统中蔬菜产量对有机肥料的响应。与对照(不施有机肥料)相比,有机施肥使蔬菜产量平均显著提高了44.11%。蔬菜产量对有机肥料的响应倾向于随着试验持续时间的增加而增加。在叶菜类蔬菜(+76.44%)、壤土(+53.94%)、中等有机肥料碳输入水平(+54.13%)以及初始土壤总氮水平中等的土壤(+50.89%)中,施用有机肥料的潜力最大。聚合增强树分析表明,有机肥料碳输入、蔬菜类型和试验持续时间是影响蔬菜产量对有机肥料施用响应的主要因素。合理施用农家肥将是提高中国温室蔬菜系统中蔬菜产量的一个有前景的策略。考虑蔬菜类型、有机肥料的碳和氮输入以及土壤质地,将有利于在施用有机肥料时提高蔬菜产量。