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Effects of DNA Size on Transformation and Recombination Efficiencies in Xylella fastidiosa

机译:DNA大小对小球藻转化和重组效率的影响

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Horizontally transferred DNA acquired through transformation and recombination has the potential to contribute to the diversity and evolution of naturally competent bacteria. However, many different factors affect the efficiency with which DNA can be transformed and recombined. In this study, we determined how the size of both homologous and nonhomologous regions affects transformation and recombination efficiencies in Xylella fastidiosa, a naturally competent generalist pathogen responsible for many emerging plant diseases. Our experimental data indicate that 96 bp of flanking homology is sufficient to initiate recombination, with recombination efficiencies increasing exponentially with the size of the homologous flanking region up to 1 kb. Recombination efficiencies also decreased with the size of the nonhomologous insert, with no recombination detected when 6 kb of nonhomologous DNA was flanked on either side by 1 kb of homologous sequences. Upon analyzing sequenced X. fastidiosa subsp. fastidiosa genomes for evidence of allele conversion, we estimated the mean size of recombination events to be 1,906 bp, with each event modifying, on average, 1.79% of the nucleotides in the recombined region. There is increasing evidence that horizontally acquired genes significantly affect the genetic diversity of X. fastidiosa, and DNA acquired through natural transformation could be a prominent mode of this horizontal transfer.
机译:通过转化和重组获得的水平转移的DNA具有促进天然感受态细菌多样性和进化的潜力。但是,许多不同的因素都会影响DNA转化和重组的效率。在这项研究中,我们确定了同源和非同源区域的大小如何影响Xylella fastidiosa的转化和重组效率,Xylella fastidiosa是负责许多新兴植物病害的自然胜任的通才病原体。我们的实验数据表明,侧翼同源性的96 bp足以启动重组,重组效率随着同源侧翼区域的大小(高达1 kb)而呈指数增加。重组效率也随非同源插入片段的大小而降低,当6 kb的非同源DNA两侧两侧各有1 kb的同源序列时,未检测到重组。经分析测序的X.fastidiosa亚种。对于等位基因转换证据的fastidiosa基因组,我们估计重组事件的平均大小为1,906 bp,每个事件平均修饰了重组区域中1.79%的核苷酸。越来越多的证据表明,水平获得的基因显着影响耐腐线虫的遗传多样性,而通过自然转化获得的DNA可能是这种水平转移的主要方式。

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