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Pyrosequencing-based assessment of soil microbial community structure and analysis of soil properties with vegetable planted at different years under greenhouse conditions

机译:基于乳化物对土壤微生物群落结构的评估及不同年种温室条件下种植的土壤性质分析

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Soil microbes play an important role in maintaining soil health, and identifying microbial changes in greenhouse soils is vital for improving soil quality. This study was aimed to investigate the changes in microbial diversity and soil characteristics at different cultivation years in greenhouse vegetable production at different sites. Soil DNA was extracted, and bacterial v4-v5 16S rRNA and fungal internal transcribed spacer gene region were pyrosequenced to analyze the microbial communities. Soil properties and enzymatic activities were determined. Soil pH decreased and showed strong linkage to microbial community compositions, whereas soil organic matter increased. Significant increases were observed not only in the total but also in the available nitrogen (N) (AN), phosphorus (P) (AP), and potassium (K) (p & 0.05). Proteobacteria, Firmicutes, and Bacteroidetes were significantly enriched (p & 0.05) under different cultivation years, whereas Chloroflexi and Acidobacteria were significantly decreased. The predominant fungal phylum was Ascomycota whereas Basidiomycota and Actinomycetes exhibited significant decreases (p & 0.05). AP was strongly linked to bacterial structure, whereas AN was strongly related to fungal distribution. Our results suggest that soil bacteria and fungi respond differently to cultivation years under greenhouse conditions. This study provides insights into the improvement of soil quality in protected agricultural production.
机译:土壤微生物在维持土壤健康方面发挥着重要作用,并鉴定温室土壤中的微生物变化对于改善土壤质量至关重要。本研究旨在探讨不同地点温室蔬菜生产中不同栽培岁月的微生物多样性和土壤特征的变化。萃取土壤DNA,细菌V4-V5 16S rRNA和真菌内转录的间隔区是焦肌筛查,分析微生物群落。确定土壤性质和酶活性。土壤pH降低并显示出对微生物群落组合物的强烈连锁,而土壤有机质增加。不仅在可用氮(N)(A),磷(P)(AP)和钾(K)(P& 0.05)中的总量而且还观察到显着增加。在不同培养年下,植物细胞,压制和菌体显着富集(P& 0.05),而氯昔康和抗酸杆菌显着降低。主要的真菌门是Ascomycota,而碱霉菌和放线菌表现出显着降低(P& 0.05)。 AP与细菌结构密切相关,而AN与真菌分布有关。我们的研究结果表明,在温室条件下,土壤细菌和真菌对培养年来不同。本研究提供了对改善受保护农业生产土壤质量的见解。

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