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从超镁铁质土壤中分离出的豆科根瘤菌菌株的金属耐受性分析。

Analysis of metal tolerance in Rhizobium leguminosarum strains isolated from an ultramafic soil.

作者信息

Rubio-Sanz Laura, Brito Belén, Palacios Jose

机构信息

Departamento de Química y Tecnología de los Alimentos. Escuela Técnica Superior de Ingeniería Agronómica, Alimentaria y de Biosistemas, Universidad Politécnica de Madrid, 28040 Madrid, Spain.

Centro de Biotecnología y Genómica de Plantas, Universidad Politécnica de Madrid (UPM) - Instituto Nacional de Investigaciones y Tecnología Agraria (INIA), Campus de Montegancedo, 28223 Pozuelo de Alarcón, Spain.

出版信息

FEMS Microbiol Lett. 2018 Feb 1;365(4). doi: 10.1093/femsle/fny010.

Abstract

Natural habitats containing high amounts of heavy metals provide a valuable source of bacteria adapted to deal with metal toxicity. A functional analysis of the population of legume endosymbiotic bacteria in an ultramafic soil was undertaken by studying a collection of Rhizobium leguminosarum bv viciae (Rlv) isolates obtained using pea as trap plant. One of the isolates, Rlv UPM1137, was selected on the basis of its higher tolerance to nickel and cobalt and presence of inducible mechanisms for such tolerance. A random transposon mutagenesis of Rlv UPM1137 allowed the generation of 14 transposant derivatives with increased nickel sensitivity; five of these transposants were also more sensitive to cobalt. Sequencing of the insertion sites revealed that one of the transposants (D2250) was affected in a gene homologous to the cation diffusion facilitator gene dmeF first identified in the metal-resistant bacterium Cupriavidus metallidurans CH34. The symbiotic performance of D2250 and two other transposants bearing single transposon insertions was unaffected under high-metal conditions, suggesting that, in contrast to previous observations in other Rlv strain, metal tolerance in UPM1137 under symbiotic conditions might be supported by functional redundancy between several mechanisms.

摘要

含有大量重金属的自然栖息地为适应应对金属毒性的细菌提供了宝贵来源。通过研究利用豌豆作为诱捕植物获得的一批豌豆根瘤菌蚕豆生物型(Rlv)分离株,对超基性土壤中豆科植物内共生细菌群体进行了功能分析。其中一个分离株Rlv UPM1137因其对镍和钴具有较高耐受性以及存在诱导性耐受机制而被选中。对Rlv UPM1137进行随机转座子诱变,产生了14个对镍敏感性增加的转座子衍生物;其中5个转座子对钴也更敏感。插入位点测序显示,其中一个转座子(D2250)中一个与阳离子扩散促进因子基因dmeF同源的基因受到影响,该基因最初是在耐金属细菌金属贪铜菌CH34中发现的。在高金属条件下,D2250和另外两个带有单个转座子插入的转座子的共生性能未受影响,这表明,与之前在其他Rlv菌株中的观察结果相反,共生条件下UPM1137中的金属耐受性可能由多种机制之间的功能冗余来支持。

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