Nemergut D R, Martin A P, Schmidt S K
Department of Ecology and Evolutionary Biology, University of Colorado, Boulder, Colorado 80309, USA.
Appl Environ Microbiol. 2004 Feb;70(2):1160-8. doi: 10.1128/AEM.70.2.1160-1168.2004.
Integrons are horizontal gene transfer (HGT) systems containing elements necessary for site-specific recombination and expression of foreign DNA. The overall phylogenetic distribution of integrons and range of genes that can be transferred by integrons are unknown. This report contains an exploration of integrons in an environmental microbial community and an investigation of integron evolution. First, using culture-independent techniques, we explored the diversity of integrons and integron-transferred genes in heavy-metal-contaminated mine tailings. Using degenerate primers, we amplified integron integrase genes from the tailings. We discovered 14 previously undescribed integrase genes, including six novel gene lineages. In addition, we found 11 novel gene cassettes in this sample. One of the gene cassettes that we sequenced is similar to a gene that codes for a step in a pathway for nitroaromatic catabolism, a group of compounds associated with mining activity. This suggests that integrons may be important for gene transfer in response to selective pressures other than the presence of antibiotics. We also investigated the evolution of integrons by statistically comparing the phylogenies of 16S rRNA and integrase genes from the same organisms, using sequences from GenBank and various sequencing projects. We found significant differences between the organismal (16S rRNA) and integrase trees, and we suggest that these differences may be due to HGT.
整合子是水平基因转移(HGT)系统,包含位点特异性重组和外源DNA表达所需的元件。整合子的整体系统发育分布以及可通过整合子转移的基因范围尚不清楚。本报告包含对环境微生物群落中整合子的探索以及对整合子进化的研究。首先,我们使用非培养技术,探索了重金属污染的矿山尾矿中整合子和整合子转移基因的多样性。我们使用简并引物从尾矿中扩增了整合子整合酶基因。我们发现了14个以前未描述的整合酶基因,包括6个新的基因谱系。此外,我们在该样本中发现了11个新的基因盒。我们测序的一个基因盒类似于一个编码硝基芳烃分解代谢途径中一个步骤的基因,硝基芳烃是与采矿活动相关的一组化合物。这表明,整合子可能在响应除抗生素存在以外的选择压力时对基因转移很重要。我们还通过使用来自GenBank和各种测序项目的序列,对同一生物体的16S rRNA和整合酶基因的系统发育进行统计比较,研究了整合子的进化。我们发现生物体(16S rRNA)树和整合酶树之间存在显著差异,我们认为这些差异可能是由于水平基因转移造成的。