Cogan Noel O I, Newbury H John, Oldacres Angela M, Lynn James R, Kearsey Michael J, King Graham J, Puddephat Ian J
Horticulture Research International, Wellesbourne, CV35 9EF, UK.
Plant Biotechnol J. 2004 Jan;2(1):59-69. doi: 10.1111/j.1467-7652.2004.00051.x.
A commonly encountered difficulty with the genetic engineering of crop plants is that different varieties of a particular species can show great variability in the efficiency with which they can be transformed. This increases the effort required to introduce transgenes into particular genetic backgrounds. The use of Substitution Lines has allowed the finer mapping of three Quantitative Trait Loci (tf1, tf2 and tf3) that explain 26% of the variation in the efficiency of Agrobacterium-mediated transformation in Brassica oleracea. Use of an 'orthogonal set' of genotypes (containing all eight possible combinations of 'positive' and 'negative' alleles at the three QTL), along with time course studies of transgene expression, has allowed the determination of the stages at which these genes have their effects during transformation. With regard to control of the level of transient transgene expression, tf1 (on LGO1) alone has no detectable effect, whilst tf2 (on LGO3) and tf3 (on LGO7) have highly significant effects (P < 0.001). All three loci have highly significant (P < 0.001) effects on the levels of expression of stably integrated transgene. The use of RFLP markers has shown that tf1 and tf2 are in duplicated regions of the B. oleracea genome and appear to be paralogous in origin. Colinearity of these regions with the A. thaliana genome has been identified. The results allow the selection of progeny Brassica oleracea genotypes that are more efficiently transformed than either parent used in the original cross.
作物基因工程中一个常见的难题是,某一特定物种的不同品种在转化效率上可能表现出很大的差异。这增加了将转基因导入特定遗传背景所需的工作量。代换系的使用使得对三个数量性状位点(tf1、tf2和tf3)进行了更精细的定位,这三个位点解释了甘蓝型油菜中农杆菌介导转化效率26%的变异。使用一组“正交”基因型(包含这三个QTL上“正”、“负”等位基因的所有八种可能组合),并结合转基因表达的时间进程研究,已经确定了这些基因在转化过程中发挥作用的阶段。关于瞬时转基因表达水平的控制,单独的tf1(位于LGO1上)没有可检测到的影响,而tf2(位于LGO3上)和tf3(位于LGO7上)有高度显著的影响(P < 0.001)。所有三个位点对稳定整合转基因的表达水平都有高度显著的影响(P < 0.001)。RFLP标记的使用表明,tf1和tf2位于甘蓝型油菜基因组的重复区域,似乎起源于旁系同源基因。已经确定了这些区域与拟南芥基因组的共线性。这些结果使得能够选择比原始杂交中使用的任何一个亲本都更高效转化的甘蓝型油菜后代基因型。