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Gene Transfer Potential of Outer Membrane Vesicles of Acinetobacter baylyi and Effects of Stress on Vesiculation

机译:海湾不动杆菌外膜囊泡的基因转移潜能及胁迫对囊泡形成的影响

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Outer membrane vesicles (OMVs) are continually released from a range of bacterial species. Numerous functions of OMVs, including the facilitation of horizontal gene transfer (HGT) processes, have been proposed. In this study, we investigated whether OMVs contribute to the transfer of plasmids between bacterial cells and species using Gram-negative Acinetobacter baylyi as a model system. OMVs were extracted from bacterial cultures and tested for the ability to vector gene transfer into populations of Escherichia coli and A. baylyi , including naturally transformation-deficient mutants of A. baylyi . Anti-double-stranded DNA (anti-dsDNA) antibodies were used to determine the movement of DNA into OMVs. We also determined how stress affected the level of vesiculation and the amount of DNA in vesicles. OMVs were further characterized by measuring particle size distribution (PSD) and zeta potential. Transmission electron microscopy (TEM) and immunogold labeling were performed using anti-fluorescein isothiocyanate (anti-FITC)-conjugated antibodies and anti-dsDNA antibodies to track the movement of FITC-labeled and DNA-containing OMVs. Exposure to OMVs isolated from plasmid-containing donor cells resulted in HGT to A. baylyi and E. coli at transfer frequencies ranging from 10~(?6) to 10~(?8), with transfer efficiencies of approximately 10~(3) and 10~(2) per μg of vesicular DNA, respectively. Antibiotic stress was shown to affect the DNA content of OMVs as well as their hydrodynamic diameter and zeta potential. Morphological observations suggest that OMVs from A. baylyi interact with recipient cells in different ways, depending on the recipient species. Interestingly, the PSD measurements suggest that distinct size ranges of OMVs are released from A. baylyi .
机译:外膜囊泡(OMV)不断从多种细菌中释放出来。已经提出了OMV的许多功能,包括促进水平基因转移(HGT)过程。在这项研究中,我们使用革兰氏阴性不动杆菌作为模型系统研究了OMV是否有助于细菌细胞和物种之间质粒的转移。从细菌培养物中提取OMV,并测试将载体基因转移到大肠杆菌和Baylyi种群中的能力,包括自然转化缺陷的Baylyi突变体。抗双链DNA(anti-dsDNA)抗体用于确定DNA向OMV的运动。我们还确定了压力如何影响囊泡水平和囊泡中DNA的量。通过测量粒度分布(PSD)和Zeta电位进一步表征OMV。使用抗异硫氰酸荧光素(anti-FITC)偶联的抗体和抗dsDNA抗体进行透射电子显微镜(TEM)和免疫金标记,以追踪FITC标记的和含DNA的OMV的运动。暴露于从含有质粒的供体细胞中分离的OMVs,导致HGT分别以10〜(?6)到10〜(?8)的转移频率转移到Baylyi和大肠杆菌中,转移效率约为10〜(3)。和每微克水泡DNA 10〜(2)。研究表明,抗生素胁迫会影响OMV的DNA含量及其流体动力学直径和Zeta电位。形态学观察表明,取决于受体物种,来自Baylyi的OMV与受体细胞以不同的方式相互作用。有趣的是,PSD测量结果表明,从A. baylyi释放了OMV的不同大小范围。

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