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夹心 Ct 实时 PCR 鉴定单拷贝 T-DNA 整合,在无骨架转基因 T 拟南芥中积累。

Sandwich Ct real-time PCR identifies single-copy T-DNA integration accumulating in backbone-free transgenic T Arabidopsis.

机构信息

College of Life Sciences, South China Agricultural University, Guangzhou 510642, China.

Instrumental Analysis and Research Center, South China Agricultural University, Guangzhou 510642, China.

出版信息

Plant Sci. 2022 May;318:111204. doi: 10.1016/j.plantsci.2022.111204. Epub 2022 Jan 31.

Abstract

A sandwich Ct real-time PCR (SC-PCR) was used to detect single-copy T-DNA plants by visualizing Ct patterns of T-DNA and two reference amplicons. Detecting the T-DNA copy number directly by visualizing the Ct pattern eliminates the errors introduced by multistep calculations of relative Ct values. Using SC-PCR, we found that single-copy T-DNA integrations were more frequent in transgenic T Arabidopsis without a vector backbone. On the basis of this phenomenon, we combined the negative screen of the vector backbone and SC-PCR to efficiently identify single-copy T-DNA plants. We found that T-DNA copy number detection was underestimated in transgenic plants containing inverted T-DNA repeats due to hairpin structures formed during PCR, indicating that PCR-based methods for detecting T-DNA copy number should be reevaluated. We solved this problem by releasing T-DNA from the complex structures using restriction enzymes before performing SC-PCR. We also demonstrated that latent Agrobacterium contamination in the T transgenic Arabidopsis generated by the floral dip method was exceedingly low and may not affect the detection of T-DNA copy number. Overall, our method provides a whole-set procedure for detecting single-copy T-DNA plants more efficiently than other screening methods including Southern blotting.

摘要

采用三明治实时 PCR (SC-PCR) 通过可视化 T-DNA 和两个参考试剂扩增子的 Ct 模式来检测单拷贝 T-DNA 植物。通过可视化 Ct 模式直接检测 T-DNA 拷贝数消除了相对 Ct 值的多步计算引入的误差。使用 SC-PCR,我们发现无载体骨架的转基因拟南芥中单拷贝 T-DNA 整合更为频繁。基于这一现象,我们将载体骨架的负筛选与 SC-PCR 相结合,有效地鉴定了单拷贝 T-DNA 植物。我们发现,由于 PCR 过程中形成的发夹结构,含有反向 T-DNA 重复的转基因植物中的 T-DNA 拷贝数检测被低估,这表明基于 PCR 的 T-DNA 拷贝数检测方法需要重新评估。我们通过在进行 SC-PCR 之前使用限制性内切酶从复杂结构中释放 T-DNA 来解决这个问题。我们还证明了通过花浸法产生的转基因拟南芥中潜伏的农杆菌污染极低,可能不会影响 T-DNA 拷贝数的检测。总的来说,与包括 Southern blot 在内的其他筛选方法相比,我们的方法提供了一种更有效地检测单拷贝 T-DNA 植物的全套程序。

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