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Effect of different levels of nitrogen on rhizosphere bacterial community structure in intensive monoculture of greenhouse lettuce

机译:不同氮水平对大棚莴苣集约化栽培根际细菌群落结构的影响

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摘要

Pyrosequencing-based analyses revealed significant effects among low (N50), medium (N80), and high (N100) fertilization on community composition involving a long-term monoculture of lettuce in a greenhouse in both summer and winter. The non-fertilized control (CK) treatment was characterized by a higher relative abundance of Actinobacteria, Acidobacteria, and Chloroflexi; however, the average abundance of Firmicutes typically increased in summer, and the relative abundance of Bacteroidetes increased in winter in the N-fertilized treatments. Principle component analysis showed that the distribution of the microbial community was separated by a N gradient with N80 and N100 in the same group in the summer samples, while CK and N50 were in the same group in the winter samples, with the other N-level treatments existing independently. Redundancy analysis revealed that available N, NO3-N, and NH4+-N, were the main environmental factors affecting the distribution of the bacterial community. Correlation analysis showed that nitrogen affected the shifts of microbial communities by strongly driving the shifts of Firmicutes, Bacteroidetes, and Proteobacteria in summer samples, and Bacteroidetes, Actinobacteria, and Acidobacteria in winter samples. The study demonstrates a novel example of rhizosphere bacterial diversity and the main factors influencing rizosphere microbial community in continuous vegetable cropping within an intensive greenhouse ecosystem.
机译:基于焦磷酸测序的分析表明,在夏季和冬季,低(N50),中(N80)和高(N100)施肥对包括长期在温室中的莴苣单一栽培的社区组成具有显着影响。非受精对照(CK)的特征是放线菌,酸性杆菌和绿弯曲菌的相对丰度较高。然而,在施氮肥的处理中,硬毛虫的平均丰度通常在夏季增加,而拟杆菌的相对丰度在冬季增加。主成分分析表明,夏季样品同一组中微生物群落的分布被N80和N100的N梯度隔开,而冬季样品中CK和N50在同一组中,而其他N水平独立存在的治疗方法。冗余分析表明,有效氮,NO3 - -N和NH4 + -N是影响细菌群落分布的主要环境因素。相关分析表明,氮通过强烈驱动夏季样品中的菌毛,拟杆菌和变形杆菌的迁移,而冬季样品中的拟杆菌,放线菌和酸性杆菌的迁移来影响微生物群落的迁移。该研究证明了在密集的温室生态系统中,连续蔬菜种植中根际细菌多样性和影响根际微生物群落的主要因素的新例子。

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