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Evidence for Interspecies Gene Transfer in the Evolution of 2,4-Dichlorophenoxyacetic Acid Degraders

机译:种间基因转移在2,4-二氯苯氧基乙酸降解产物进化中的证据

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Small-subunit ribosomal DNA (SSU rDNA) from 20 phenotypically distinct strains of 2,4-dichlorophenoxyacetic acid (2,4-D)-degrading bacteria was partially sequenced, yielding 18 unique strains belonging to members of the alpha, beta, and gamma subgroups of the classProteobacteria. To understand the origin of 2,4-D degradation in this diverse collection, the first gene in the 2,4-D pathway, tfdA, was sequenced. The sequences fell into three unique classes found in various members of the beta and gamma subgroups of Proteobacteria. None of the α-Proteobacteria yieldedtfdA PCR products. A comparison of the dendrogram of thetfdA genes with that of the SSU rDNA genes demonstrated incongruency in phylogenies, and hence 2,4-D degradation must have originated from gene transfer between species. Only those strains withtfdA sequences highly similar to the tfdAsequence of strain JMP134 (tfdA class I) transferred all the 2,4-D genes and conferred the 2,4-D degradation phenotype to aBurkholderia cepacia recipient.
机译:对来自20种在表型上不同的2,4-二氯苯氧基乙酸(2,4-D)降解细菌的小亚基核糖体DNA(SSU rDNA)进行了部分测序,产生了18个独特的菌株,分别属于α,β和gamma成员变形细菌类的亚组。为了了解此多样化集合中2,4-D降解的起源,对2,4-D途径中的第一个基因tfdA进行了测序。该序列分为三个独特的类别,分别存在于变形杆菌的beta和γ亚组中。 α-变形杆菌均不产生tfdA PCR产物。将tfdA基因的树状图与SSU rDNA基因的树状图进行比较,结果表明系统发育不一致,因此2,4-D降解必定源于物种之间的基因转移。只有那些tfdA序列与JMP134菌株tfdAsequence非常相似的菌株(tfdA I类)才转移所有2,4-D基因,并将2,4-D降解表型赋予洋葱伯克霍尔德菌。

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