Micro-nano bubble water subsurface drip irrigation affects strawberry yield and quality by modulation of microbial communities

IF 5.9 1区 农林科学 Q1 AGRONOMY Agricultural Water Management Pub Date : 2025-02-01 DOI:10.1016/j.agwat.2024.109228
Zhen Zheng , Yuming He , Yingli He , Jing Zhan , Chunyan Shi , Yujie Xu , Xiaowen Wang , Jian Wang , Chao Zhang
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Abstract

Aerated irrigation can enhance soil conditions such as soil oxygen, soil temperature, and soil moisture content and alter the structure of soil microbial communities. However, there is a dearth of research on the specific mechanisms and their mutual influence. Rhizosphere soil microbes are sensitive to changes in the soil environment, and the delivery of air or oxygenated water to rhizosphere soil significantly impacts the structure of the soil microbial community. In this study, a greenhouse strawberry subsurface drip irrigation experiment with micro-nano bubble water (MNBW) was conducted, with seven different aeration treatments and one control treatment (CK). The results showed that compared to CK, the aeration treatments improved the soil conditions to varying degrees and changed the structure of the strawberry rhizosphere soil microbial community. Furthermore, the yield, vitamin C, soil oxygen content, soil temperature and soil moisture increased by an average of 108 %, 3 %, 12 %, 10 % and 4 %, respectively. The results indicated that MNBW irrigation increased the abundance of specific bacterial communities, thereby affecting strawberry yield and quality. Correlation analysis results revealed the specific mechanisms of mutual influence between soil environment and soil microbes. Therefore, AFE (aeration during the fruit expansion stage) and AB+F (aeration during both the budding stage and flowering stage) can significantly activate the microbes in the strawberry rhizosphere soil and are considered the optimal times for enhancing strawberry yield and quality through MNBW irrigation.
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微纳泡水地下滴灌通过调节草莓微生物群落影响草莓产量和品质
加气灌溉可以改善土壤条件,如土壤氧、土壤温度和土壤水分含量,并改变土壤微生物群落结构。然而,对其具体机制及其相互影响的研究还很缺乏。根际土壤微生物对土壤环境的变化非常敏感,空气或含氧水向根际土壤的输送会显著影响土壤微生物群落的结构。本研究采用微纳气泡水(MNBW)进行温室草莓地下滴灌试验,设7个不同曝气处理和1个对照处理(CK)。结果表明,与对照相比,曝气处理不同程度地改善了草莓根际土壤条件,改变了草莓根际土壤微生物群落结构。此外,产量、维生素C、土壤氧含量、土壤温度和土壤水分平均分别提高108 %、3 %、12 %、10 %和4 %。结果表明,MNBW灌溉增加了草莓特定菌群的丰度,从而影响草莓的产量和品质。相关分析结果揭示了土壤环境与土壤微生物相互影响的具体机制。因此,果实膨大期充氧(AFE)和出芽期和开花期同时充氧(AB+F)能显著激活草莓根际土壤微生物,是MNBW灌溉提高草莓产量和品质的最佳时机。
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来源期刊
Agricultural Water Management
Agricultural Water Management 农林科学-农艺学
CiteScore
12.10
自引率
14.90%
发文量
648
审稿时长
4.9 months
期刊介绍: Agricultural Water Management publishes papers of international significance relating to the science, economics, and policy of agricultural water management. In all cases, manuscripts must address implications and provide insight regarding agricultural water management.
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