首页> 美国卫生研究院文献>Journal of Zhejiang University. Science. B >Phosphorus status and microbial community of paddy soil with the growth of annual ryegrass (Lolium multiflorum Lam.) under different phosphorus fertilizer treatments
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Phosphorus status and microbial community of paddy soil with the growth of annual ryegrass (Lolium multiflorum Lam.) under different phosphorus fertilizer treatments

机译:不同磷肥处理下一年生黑麦草生长对水稻土磷素状况和微生物群落的影响

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摘要

Annual ryegrass (Lolium multiflorum Lam.) was grown in paddy soil in pots under different phosphorus (P) fertilizer treatments to investigate changes of P fractions and microbial community of the soil. The treatments included Kunyang phosphate rock (KPR) applications at 50 mg P/kg (KPR50) and 250 mg P/kg (KPR250), mono-calcium phosphate (MCP) application at 50 mg P/kg (MCP50), and the control without P application. The results showed that KPR50, KPR250, and MCP50 applications significantly increased the dry weight of the ryegrass by 13%, 38%, and 55%, and increased P uptake by 19%, 135%, and 324%, respectively. Compared with MCP50, the relative effectiveness of KPR50 and KPR250 treatments in ryegrass production was about 23% and 68%, respectively. After one season of ryegrass growth, the KPR50, KPR250, and MCP50 applications increased soil-available P by 13.4%, 26.8%, and 55.2%, respectively. More than 80% of the applied KPR-P remained as HCl-P fraction in the soil. Phospholipid fatty acid (PLFA) analysis showed that the total and bacterial PLFAs were significantly higher in the soils with KPR250 and MCP50 treatments compared with KPR50 and control. The latter had no significant difference in the total or bacterial PLFAs. The KPR50, KPR250, and MCP50 treatments increased fungal PLFA by 69%, 103%, and 69%, respectively. Both the principal component analysis and the cluster analysis of the PLFA data suggest that P treatments altered the microbial community composition of the soils, and that P availability might be an important contributor to the changes in the microbial community structure during the ryegrass growth in the paddy soils.
机译:一年生黑麦草(Lolium multiflorum Lam。)在不同磷(P)肥料处理下的盆栽水稻田中生长,以调查土壤中P组分和微生物群落的变化。处理包括分别以50 mg P / kg(KPR50)和250 mg P / kg(KPR250)施用昆阳磷矿(KPR),以50 mg P / kg(MCP50)施用磷酸一钙(MCP)和对照没有P的申请。结果表明,KPR50,KPR250和MCP50施用显着增加了黑麦草的干重13%,38%和55%,并分别增加了19%,135%和324%的P吸收。与MCP50相比,KPR50和KPR250处理在黑麦草生产中的相对效率分别约为23%和68%。在黑麦草生长了一个季节后,施用KPR50,KPR250和MCP50可使土壤有效磷分别增加13.4%,26.8%和55.2%。施用的KPR-P中80%以上以HCl-P的形式保留在土壤中。磷脂脂肪酸(PLFA)分析表明,与KPR50和对照相比,用KPR250和MCP50处理的土壤中的总PLFA和细菌PLFA显着更高。后者在总PLFA或细菌PLFA中没有显着差异。 KPR50,KPR 250 和MCP 50 处理分别使真菌PLFA增加69%,103%和69%。 PLFA数据的主成分分析和聚类分析均表明,磷处理改变了土壤的微生物群落组成,并且磷的有效性可能是水稻黑麦草生长过程中微生物群落结构变化的重要因素。土壤。

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