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种子和根部上质粒转移的定量分析与建模

Quantification and modeling of plasmid mobilization on seeds and roots.

作者信息

Sudarshana Padma, Knudsen Guy R

机构信息

Soil and Land Resources Division, Department of Plant, Soil, and Entomological Sciences, University of Idaho, Moscow, 83844-2339, USA.

出版信息

Curr Microbiol. 2006 Jun;52(6):455-9. doi: 10.1007/s00284-005-0298-1. Epub 2006 Apr 28.

Abstract

Mobilization frequencies of the nonconjugative plasmid pMON5003 were quantified using Escherichia coli TB1(pRK2013) as donor of a helper plasmid, E. coli M182 (pMON5003) as donor of the nonconjugative plasmid, and Pseudomonas fluorescens as recipient. Initial mating experiments were conducted in nutrient and minimal salts media and pea seed exudates. Mobilization rates were higher during early stationary growth of donors, helpers, and recipients. Numbers of transconjugants were higher in biparental matings when donors contained both conjugative and nonconjugative plasmids, versus tri-parental matings. A mathematical model was developed to predict a nonconjugative plasmid transfer rate parameter (delta), estimating the proportion of conjugative matings in which a plasmid is mobilized. Values of delta ranged from 8 x 10(-3) to 7.9 x 10(-1). Transfer frequencies for pMON5003 from E. coli to P. fluorescens on pea seeds and roots were determined. Transconjugants (P. fluorescens 2-79 (pMON5003)) were isolated from seeds, roots, and soil, but mobilization frequencies were lower than in liquid media.

摘要

使用大肠杆菌TB1(pRK2013)作为辅助质粒的供体、大肠杆菌M182 (pMON5003)作为非接合性质粒的供体以及荧光假单胞菌作为受体,对非接合性质粒pMON5003的转移频率进行了定量。初始接合实验在营养培养基、基本盐培养基和豌豆种子渗出液中进行。在供体、辅助质粒和受体的早期稳定生长期,转移率较高。当供体同时含有接合性质粒和非接合性质粒时,双亲接合中的转接合子数量高于三亲接合。建立了一个数学模型来预测非接合性质粒转移率参数(δ),估计质粒被转移的接合交配比例。δ值范围为8×10⁻³至7.9×10⁻¹。测定了pMON5003从大肠杆菌到豌豆种子和根上的荧光假单胞菌的转移频率。从种子、根和土壤中分离出转接合子(荧光假单胞菌2-79 (pMON5003)),但转移频率低于在液体培养基中的频率。

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