Stable soil water shapes the rhizosphere of Solanum lycopersicum L. and improves tomato fruit yield and quality
文献类型: 外文期刊
第一作者: Li, Ge
作者: Li, Ge;Li, Ge;Long, Huaiyu;Zhang, Renlian;Xu, Aiguo;Niu, Li;Niu, Li
作者机构:
关键词: Soil water stability; Tomato; Yield; Fruit quality; Plant-microbe interaction
期刊名称:SCIENTIA HORTICULTURAE ( 影响因子:4.2; 五年影响因子:4.6 )
ISSN: 0304-4238
年卷期: 2025 年 341 卷
页码:
收录情况: SCI
摘要: Stable soil water can ensure plant yield and water use efficiency, yet its short-term impact on tomato production and soil ecological environment is not well understood. In this study, the effects of stable soil water (SW) under two water levels were examined, with fluctuating soil water (FW) as a control. The assessed parameters included tomato yield and quality, water use, root characteristics, soil properties, and soil microbial community structure. We found that soil water stability was an independent environmental variable that significantly affected the root morphology, yield, and quality of tomatoes, among which most indexes under SW had higher values. Compared with FW, the fruit yield of tomato under SW increased by 28.2 %, and the contents of vitamin C, lycopene, soluble sugars, and titratable acid in fruit increased by 12.1, 18.0, 20.4, and 20.9 %, respectively. When the soil water remained stable as opposed to fluctuating, the available nutrients content and soil enzyme activity in the tomato rhizosphere increased by 6.0-35.0 % and 5.3-17.5 %, respectively. The bacterial and fungal communities in tomato rhizosphere underwent considerable structural and compositional changes in response to soil water stability. Compared to FW, SW tended to increase the relative abundance of Cyanobacteria while decreasing the relative abundance of Proteobacteria, Bacteroidota, and Mortierellomycota. This study revealed the relationship between tomato production and soil water from the perspective of soil water stability, filled the gap in soil water stability and tomato rhizosphere soil, and provided useful insights for the development of management strategies to improve the productivity of vegetable crops.
分类号:
- 相关文献
作者其他论文 更多>>
-
Multiple Analyses Reveal Evidence for Three New Species of Collybia (Clitocybaceae, Basidiomycete) from China
作者:Qi, Yue;Yang, Liu;Guo, Yaobin;Wan, Fashuang;Yu, Xiaodan;Xu, Aiguo;Guo, Hongbo;Yang, Ruiheng;Pei, Ying
关键词:mushrooms; new taxa; morphological features; phylogenetic relationships
-
Impacts of Deficit Irrigation on Strawberry Physiology, Water Productivity, Quality, and Yield
作者:Yang, Pingguo;Zhang, Xiaojiao;Shi, Xiaorong;Yang, Pingguo;Long, Huaiyu;Drohan, Patrick J.;Soulis, Konstantinos X.
关键词:sustainable agriculture; deficit irrigation; strawberry physiology; water use efficiency; yield
-
Stable soil moisture promotes shoot performance and shapes the root-rhizosphere microbiome
作者:Liu, Dichuan;Wang, Zhuan;Zhu, Guolong;Xu, Aiguo;Zhang, Renlian;Long, Huaiyu;Liu, Dichuan;Willemsen, Viola;Bryant, Ray;Drohan, Patrick J.
关键词:Soil moisture temporal variation; Romaine lettuce; Crop water productivity; Rhizosphere microbiome; Bacteria; Fungi
-
Negative Pressure Fertigation Improves Tobacco Performance and Water Use Efficiency Through Regulating Potassium Uptake and Leaf Gas Exchange
作者:Xu, Mengze;Yu, Kefan;Long, Huaiyu;Dai, Kuai;Liu, Yuntong
关键词:fertigation; negative pressure irrigation; plant nutrition; water deficit; water productivity
-
Identification of the linear Fc-binding epitope on the bovine IgG1 Fc receptor of (boFcγRI) using synthetic peptides
作者:Li, Qingmei;Wang, Ruining;Yang, Jifei;Guo, Junqing;Zhang, Gaiping;Li, Ge;Wang, Xun;Zhang, Gaiping;Wang, Ruining;Zhang, Gaiping
关键词:Fc-binding epitope; BoFc gamma RI; Bovine IgG1; Synthetic peptides; Binding inhibition
-
Effects of stable and fluctuating soil water on the agronomic and biological performance of root vegetables
作者:Li, Ge;Zhu, Guolong;Wang, Zhuan;Long, Huaiyu;Zhang, Renlian;Yu, Kefan;Li, Ge;Zhu, Guolong;Liu, Jian
关键词:cherry radish; fluctuating soil water; negative pressure irrigation; stable soil water; water use efficiency
-
Effects of nitrogen reduction on the agronomic characteristics, quality, and water and fertilizer use efficiency of tomato (lycopersicon esculintum mill.) between drip fertigation and negative-pressure fertigation
作者:Wang, Jiajia;Long, Huaiyu;Liu, Dichuan;Zhu, Guolong;Wang, Zhuan;Wang, Le;Wang, Changjun;Wang, Jiajia;Qu, Fengchen;Wang, Jiajia;Qu, Fengchen;Bryant, Ray;Drohan, Patrick J.
关键词:Negative-pressure irrigation; Drip irrigation; Photosynthetic parameters; Nitrogen uptake; Fruit quality; Fruit yield; Plant growth