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[Effects of exogenous microorganisms on seedling growth and soil microbial community of ].

作者信息

Bai Ying, Zhou Liu-Ting, Zhang Chen, Luo Yang, Zhao Yan-Lin, Lin Wen-Xiong, Wu Ze-Yan

机构信息

College of Life Sciences, Fujian Agriculture and Fores-try University, Fuzhou 350002, China.

Key Laboratory of Crop Ecology and Molecular Physiology, Fujian Agriculture and Forestry University, Fuzhou 350002, China.

出版信息

Ying Yong Sheng Tai Xue Bao. 2021 Aug;32(8):2939-2948. doi: 10.13287/j.1001-9332.202108.037.

Abstract

With a pot experiment, the Biolog microplate and phospholipid fatty acid (PLFA) technology were used to explore whether the application of bacteria, (YB706) and (BK8), could improve the soil nutrient, microbial community and growth of . The results showed that the concentrations of soil alkali-hydrolyzed nitrogen and available phosphorus of treated with YB706 and BK8 increased significantly compared with the control (CK), but the concentrations of total nitrogen, total phosphorus, total potassium and available potassium changed little, plant height increased by 59.1% and 63.9%, respectively, and the chlorophyll content of plant treated with BK8 increased by 81.9%. The average well color development values showed a pattern of YB706>CK>BK8. The utilization rate of different carbon sources showed the same trend except the amino acids. Both YB706 and BK8 treatments significantly increased the richness and quantity of soil microorganisms. The PLFA of all kinds of microorganisms was BK8>YB706>CK except actinomycetes. The ratio of soil fungi to bacteria was increased compared with CK. The Simpson, Shannon, Brillouin and McIntosh indices of rhizosphere soil microbial community in YB706 and BK8 treatments were significantly increased. Our results suggested that application of YB706 and BK8 could improve the growth rate of seedlings, effectively increase the contents of soil available nutrients, increase soil microbial diversity, and improve soil microbial environment.

摘要

通过盆栽试验,利用Biolog微孔板和磷脂脂肪酸(PLFA)技术探究细菌YB706和BK8的施用是否能改善土壤养分、微生物群落及[植物名称未给出]的生长情况。结果表明,与对照(CK)相比,用YB706和BK8处理的[植物名称未给出]土壤碱解氮和有效磷浓度显著增加,但全氮、全磷、全钾和速效钾浓度变化不大,株高分别增加了59.1%和63.9%,用BK8处理的植物叶绿素含量增加了81.9%。平均孔颜色发展值呈现出YB706>CK>BK8的模式。除氨基酸外,不同碳源的利用率呈现相同趋势。YB706和BK8处理均显著增加了土壤微生物的丰富度和数量。除放线菌外,各类微生物的PLFA均为BK8>YB706>CK。与CK相比,土壤真菌与细菌的比例增加。YB706和BK8处理的根际土壤微生物群落的辛普森、香农、布里渊和麦金托什指数均显著增加。我们的结果表明,施用YB706和BK8可提高[植物名称未给出]幼苗的生长速率,有效增加土壤有效养分含量,增加土壤微生物多样性,并改善土壤微生物环境。

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