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小麦根际中隐秘基因转移性质粒的分离、特性鉴定及转移

Isolation, characterization, and transfer of cryptic gene-mobilizing plasmids in the wheat rhizosphere.

作者信息

van Elsas J D, Gardener B B, Wolters A C, Smit E

机构信息

Institute for Plant Protection IPO-DLO, Wageningen, The Netherlands.

出版信息

Appl Environ Microbiol. 1998 Mar;64(3):880-9. doi: 10.1128/AEM.64.3.880-889.1998.

Abstract

A set of self-transmissible plasmids with IncQ plasmid-mobilizing capacity was isolated by triparental exogenous isolation from the wheat rhizosphere with an Escherichia coli IncQ plasmid host and a Ralstonia eutropha recipient. Three plasmids of 38 to 45 kb, denoted pIPO1, pIPO2, and pIPO3, were selected for further study. No selectable traits (antibiotic or heavy-metal resistance) were identified in these plasmids. The plasmids were characterized by replicon typing via PCR and hybridization with replicon-specific probes and other hybridizations. pIPO1 and pIPO3 were similar to each other, whereas pIPO2 was different. None of these plasmids belonged to any known incompatibility group. pIPO2 was selected for further work, and a mini-Tn5-tet transposon was inserted to confer selectability. Plasmid pIPO2 had a broad IncQ plasmid mobilization and self-transfer range among the alpha, beta, and gamma subclasses of the Proteobacteria but did not show productive transfer to gram-positive bacteria. Plasmid pIPO2 mobilized IncQ plasmid pIE723 from Pseudomonas fluorescence to diverse indigenous proteobacteria in the rhizosphere of field-grown wheat. Transfer of pIE723 to indigenous bacteria was not observed in the absence of added pIPO2. A specific PCR primer system and a probe were developed for the detection of pIPO2-type plasmids in soil and rhizosphere. Analysis of soil DNA provided evidence for the presence of pIPO2 in inoculated wheat rhizosphere soil in the field study, as well as in the rhizosphere of uninoculated wheat plants growing in soil microcosms. The system failed to identify major reservoirs of pIPO2 in a variety of other soils.

摘要

通过三亲本外源分离法,以大肠杆菌IncQ质粒宿主和嗜麦芽窄食单胞菌受体从小麦根际分离出一组具有IncQ质粒动员能力的自我传递质粒。选择了3个大小为38至45 kb的质粒,分别命名为pIPO1、pIPO2和pIPO3,进行进一步研究。这些质粒中未鉴定出任何可选择性状(抗生素或重金属抗性)。通过PCR进行复制子分型、与复制子特异性探针杂交及其他杂交方法对这些质粒进行了表征。pIPO1和pIPO3彼此相似,而pIPO2则不同。这些质粒均不属于任何已知的不相容群。选择pIPO2进行进一步研究,并插入一个mini-Tn5-tet转座子以赋予其可选择特性。质粒pIPO2在变形菌门的α、β和γ亚类中具有广泛的IncQ质粒动员和自我转移范围,但未显示出向革兰氏阳性菌的有效转移。质粒pIPO2将来自荧光假单胞菌的IncQ质粒pIE723转移至田间种植小麦根际的多种本土变形菌中。在未添加pIPO2的情况下,未观察到pIE723向本土细菌的转移。开发了一种特异性PCR引物系统和探针,用于检测土壤和根际中的pIPO2型质粒。土壤DNA分析提供了证据,表明在田间研究中接种小麦的根际土壤以及在土壤微宇宙中生长的未接种小麦植株的根际中存在pIPO2。该系统未能在其他多种土壤中识别出pIPO2的主要储存库。

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