Faculty of Life Sciences, University of Manchester, Manchester M13 9PT, United Kingdom.
Plant Physiol. 2012 Dec;160(4):2219-26. doi: 10.1104/pp.112.204107. Epub 2012 Oct 18.
Dual-conditional positive/negative selection markers are versatile genetic tools for manipulating genomes. Plastid genomes are relatively small and conserved DNA molecules that can be manipulated precisely by homologous recombination. High-yield expression of recombinant products and maternal inheritance of plastid-encoded traits make plastids attractive sites for modification. Here, we describe the cloning and expression of a dao gene encoding D-amino acid oxidase from Schizosaccharomyces pombe in tobacco (Nicotiana tabacum) plastids. The results provide genetic evidence for the uptake of D-amino acids into plastids, which contain a target that is inhibited by D-alanine. Importantly, this nonantibiotic-based selection system allows the use of cheap and widely available D-amino acids, which are relatively nontoxic to animals and microbes, to either select against (D-valine) or for (D-alanine) cells containing transgenic plastids. Positive/negative selection with d-amino acids was effective in vitro and against transplastomic seedlings grown in soil. The dual functionality of dao is highly suited to the polyploid plastid compartment, where it can be used to provide tolerance against potential D-alanine-based herbicides, control the timing of recombination events such as marker excision, influence the segregation of transgenic plastid genomes, identify loci affecting dao function in mutant screens, and develop D-valine-based methods to manage the spread of transgenic plastids tagged with dao.
双条件正向/负向选择标记是用于基因组操作的多功能遗传工具。质体基因组是相对较小且保守的 DNA 分子,可以通过同源重组进行精确操作。重组产物的高效表达和质体编码性状的母系遗传使质体成为修饰的有吸引力的位点。在这里,我们描述了来自裂殖酵母(Schizosaccharomyces pombe)的 dao 基因(编码 D-氨基酸氧化酶)在烟草(Nicotiana tabacum)质体中的克隆和表达。结果为 D-氨基酸进入质体提供了遗传证据,质体中含有被 D-丙氨酸抑制的靶标。重要的是,这种非抗生素选择系统允许使用廉价且广泛可用的 D-氨基酸,这些氨基酸对动物和微生物相对无毒,可用于选择含有转基因质体的细胞(D-缬氨酸)或用于(D-丙氨酸)。在体外和在土壤中生长的转质体幼苗中,使用 d-氨基酸进行正向/负向选择是有效的。dao 的双重功能非常适合多倍质体隔室,可用于提供对潜在的基于 D-丙氨酸的除草剂的耐受性、控制重组事件(如标记切除)的时机、影响转基因质体基因组的分离、鉴定影响突变筛选中 dao 功能的基因座,并开发基于 D-缬氨酸的方法来管理标记有 dao 的转基因质体的传播。