Department of Plant Pathology and Microbiology, Iowa State University, Ames, IA 50011, USA.
Interdisciplinary Genetics and Genomics Graduate Program, Iowa State University, Ames, IA 50011, USA.
G3 (Bethesda). 2023 Sep 30;13(10). doi: 10.1093/g3journal/jkad166.
In maize, the community-standard transformant line B104 is a useful model for dissecting features of transfer DNA (T-DNA) integration due to its compatibility with Agrobacterium-mediated transformation and the availability of its genome sequence. Knowledge of transgene integration sites permits the analysis of the genomic environment that governs the strength of gene expression and phenotypic effects due to the disruption of an endogenous gene or regulatory element. In this study, we optimized a fusion primer and nested integrated PCR (FPNI-PCR) technique for T-DNA detection in maize to characterize the integration sites of 89 T-DNA insertions in 81 transformant lines. T-DNA insertions preferentially occurred in gene-rich regions and regions distant from centromeres. Integration junctions with and without microhomologous sequences as well as junctions with de novo sequences were detected. Sequence analysis of integration junctions indicated that T-DNA was incorporated via the error-prone repair pathways of nonhomologous (predominantly) and microhomology-mediated (minor) end-joining. This report provides a quantitative assessment of Agrobacterium-mediated T-DNA integration in maize with respect to insertion site features, the genomic distribution of T-DNA incorporation, and the mechanisms of integration. It also demonstrates the utility of the FPNI-PCR technique, which can be adapted to any species of interest.
在玉米中,由于其与农杆菌介导转化的兼容性以及其基因组序列的可用性,标准转化体 B104 是解析转移 DNA(T-DNA)整合特征的有用模型。转基因整合位点的知识允许分析控制基因表达强度和由于内源性基因或调节元件破坏而产生表型效应的基因组环境。在这项研究中,我们优化了一种融合引物和嵌套整合 PCR(FPNI-PCR)技术,用于玉米中的 T-DNA 检测,以表征 81 个转化体系中 89 个 T-DNA 插入的整合位点。T-DNA 插入优先发生在基因丰富的区域和远离着丝粒的区域。检测到带有和不带有微同源序列的整合接头以及具有从头序列的接头。整合接头的序列分析表明,T-DNA 通过非同源(主要)和微同源介导(次要)末端连接的易错修复途径掺入。本报告定量评估了玉米中农杆菌介导的 T-DNA 整合,涉及插入位点特征、T-DNA 掺入的基因组分布以及整合机制。它还证明了 FPNI-PCR 技术的实用性,该技术可适用于任何感兴趣的物种。