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大肠杆菌在农业土壤中生长和存活的应变依赖性变化。

Strain-dependent variability in growth and survival of Escherichia coli in agricultural soil.

机构信息

Agriculture and Agri-Food Canada, Southern Crop Protection and Food Research Centre, 1391 Sandford Street, London, ON, Canada N5V 4T3.

出版信息

FEMS Microbiol Ecol. 2003 Jun 1;44(3):303-8. doi: 10.1016/S0168-6496(03)00055-2.

Abstract

Abstract This study investigated strain-dependent variability in Escherichia coli survival in soil, and strain-dependent responses to variations in some soil conditions. Collections of E. coli were isolated from swine manure slurry, and from manured soil following 6 days of incubation in the laboratory. The bacteria were fingerprinted by enterobacterial repetitive intergenic consensus-polymerase chain reaction (ERIC-PCR). During the course of the incubation the composition of the E. coli community changed dramatically suggesting that E. coli phylotypes, distinguishable by ERIC-PCR fingerprinting, varied significantly in their ability to survive in soil under these conditions. A representative isolate from one ERIC group which increased in abundance in soil (designated strain C279) and one which decreased (designated strain C278) were chosen for comparison. These strains persisted comparatively when inoculated into loam soil. However, when added into a loam soil or a sandy soil supplemented with 10% (v/v) swine manure slurry, strain C279 increased in abundance 10-fold, whereas strain C278 did not. At 4 degrees C, or in a clay loam soil, manure slurry did not support the growth of strain C279. These results indicate that the community composition of E. coli populations in manured soils can be very dynamic, and that strains able to proliferate in manured soils can have a selective advantage.

摘要

摘要 本研究调查了土壤中大肠杆菌生存的菌株依赖性变异性,以及菌株对一些土壤条件变化的反应。从猪粪浆和实验室培养 6 天后的施肥土壤中分离出大肠杆菌集合。通过肠杆菌重复基因间一致性聚合酶链反应(ERIC-PCR)对细菌进行指纹图谱分析。在培养过程中,大肠杆菌群落的组成发生了巨大变化,这表明通过 ERIC-PCR 指纹图谱可区分的大肠杆菌菌株在这些条件下的土壤中生存能力存在显著差异。选择一个在土壤中丰度增加的 ERIC 组的代表性分离株(命名为菌株 C279)和一个丰度降低的分离株(命名为菌株 C278)进行比较。这些菌株在壤土中持续存在时相对稳定。然而,当添加到添加了 10%(v/v)猪粪浆的壤土或沙壤土中时,菌株 C279 的丰度增加了 10 倍,而菌株 C278 则没有。在 4°C 或粘壤土中,粪肥浆不能支持菌株 C279 的生长。这些结果表明,施肥土壤中大肠杆菌种群的群落组成可能非常动态,并且能够在粪肥土壤中增殖的菌株具有选择优势。

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