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Comparative whole-genome analyses of selection marker–free rice-based cholera toxin B-subunit vaccine lines and wild-type lines

机译:不含选择标记的水稻霍乱毒素B亚单位疫苗株和野生型株的全基因组比较分析

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We have developed a rice-based oral cholera vaccine named MucoRice-CTB (Cholera Toxin B-subunit) by using an Agrobacterium tumefaciens–mediated co-transformation system. To assess the genome-wide effects of this system on the rice genome, we compared the genomes of three selection marker–free MucoRice-CTB lines with those of two wild-type rice lines (Oryza sativa L. cv. Nipponbare). Mutation profiles of the transgenic and wild-type genomes were examined by next-generation sequencing (NGS). Using paired-end short-read sequencing, a total of more than 300 million reads for each line were obtained and mapped onto the rice reference genome. The number and distribution of variants were similar in all five lines: the numbers of line-specific variants ranged from 524 to 842 and corresponding mutation rates ranged from 1.41?×?10?6 per site to 2.28?×?10?6 per site. The frequency of guanine-to-thymine and cytosine-to-adenine transversions was higher in MucoRice-CTB lines than in WT lines. The transition-to-transversion ratio was 1.12 in MucoRice-CTB lines and 1.65 in WT lines. Analysis of variant-sharing profiles showed that the variants common to all five lines were the most abundant, and the numbers of line-specific variant for all lines were similar. The numbers of non-synonymous amino acid substitutions in MucoRice-CTB lines (15 to 21) were slightly higher than those in WT lines (7 or 8), whereas the numbers of frame shifts were similar in all five lines. We conclude that MucoRice-CTB and WT are almost identical at the genomic level and that genome-wide effects caused by the Agrobacterium-mediated transformation system for marker-free MucoRice-CTB lines were slight. The comparative whole-genome analyses between MucoRice-CTB and WT lines using NGS provides a reliable estimate of genome-wide differences. A similar approach may be applicable to other transgenic rice plants generated by using this Agrobacterium-mediated transformation system.
机译:我们已经使用根癌农杆菌介导的共转化系统开发了一种基于水稻的口服霍乱疫苗,称为MucoRice-CTB(霍乱毒素B亚基)。为了评估该系统对水稻基因组的全基因组影响,我们比较了三种无选择标记的MucoRice-CTB系和两种野生型水稻系(Oryza sativa L. cv。Nipponbare)的基因组。通过下一代测序(NGS)检查了转基因和野生型基因组的突变情况。使用配对末端短读测序,每个品系总共获得了超过3亿条读物,并定位到水稻参考基因组上。在所有五个品系中,变体的数量和分布都相似:特定于品系的变体的数量在524至842之间,相应的突变率从每个位点1.41?×?10?6到每个位点2.28?×?10?6 。 MucoRice-CTB系的鸟嘌呤-胸腺嘧啶和胞嘧啶-腺嘌呤的转化频率高于WT系。 MucoRice-CTB品系的转化率为1.12,WT品系为1.65。变异共享图谱的分析表明,所有五个品系共有的变异最丰富,并且所有品系的特定品系变异数量相似。 MucoRice-CTB品系(15至21)中非同义氨基酸取代的数量略高于WT品系(7或8)中的同义氨基酸取代数量,而所有五个品系中的移码数量均相似。我们得出的结论是,MucoRice-CTB和WT在基因组水平上几乎相同,并且由农杆菌介导的无标记MucoRice-CTB系转化系统引起的全基因组影响很小。使用NGS对MucoRice-CTB和WT品系进行的比较全基因组分析提供了对全基因组差异的可靠估计。类似的方法可能适用于使用该农杆菌介导的转化系统产生的其他转基因水稻植物。

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