Effects of crop rotation on sugar beet growth through improving soil physicochemical properties and microbiome

甜菜 作物轮作 作物 微生物群 农学 旋转(数学) 环境科学 生物技术 化学 生物 数学 食品科学 生物信息学 几何学
作者
Changjin Guo,Chao Yang,Jingyuan Fu,Shanlin Yu,Sixue Chen,Haiying Li,Castello Ma
出处
期刊:Industrial Crops and Products [Elsevier BV]
卷期号:212: 118331-118331 被引量:1
标识
DOI:10.1016/j.indcrop.2024.118331
摘要

Soil microorganisms are critical to the sustainable development of agroecosystems. Continuous cropping obstacles refer to crop yield reduction in continuous cropping. Crop diversity can be increased through crop rotation, improving soil-plant interactions to alleviate the continuous cropping obstacles. In our study, rubber dandelion (Taraxacum kok-saghyz Rodin, TKS) and sugar beet (Beta vulgaris L.) were used for rotation. A two-year field experiment was conducted using a randomized uniform grid design to investigate the effects on soil microbial community structure and physicochemical properties, and supplemented by a pot experiment. We hypothesized that sugar beet and rubber dandelion could change soil microbiome, improve soil physicochemical properties, and ultimately promote the growth of sugar beet. The results showed that compared with continuous cropping, sugar beet and rubber dandelion rotation can enhance the soil microbiome and increase the abundances of Actinobacteria and Streptomyces. The available nitrogen, potassium and soil organic matter contents were higher in rotation soil than in continuous cropping soil. In addition, urease activity in the soil after rotation with rubber dandelion was significantly increased. In general, the rotation of sugar beet and rubber dandelion could increase the biomass of sugar beet and alleviate the continuous cropping obstacle.
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