4.7 Article

ABE8e with Polycistronic tRNA-gRNA Expression Cassette Sig-Nificantly Improves Adenine Base Editing Efficiency in Nicotiana benthamiana

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出版社

MDPI
DOI: 10.3390/ijms22115663

关键词

CRISPR; base editor; ABE; ABE8e; STU; PTG

资金

  1. National Key R&D Program of China [2019YFD1000201]
  2. ChineseAcademy of Sciences Strategic Leading Science and Technology Project [XDA24030404]

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ABE8e with PTG structure showed higher editing efficiency for A-to-G conversion in Nicotiana benthamiana compared to ABE7.10. Optimization of ABE8e editing efficiency was achieved by modifying the sgRNA expression cassette design. The potential off-target effects of PTG-ABE8e were also evaluated, showing specific A-to-G conversion without off-target editing events at selected sites.
Adenine base editor containing TadA8e (ABE8e) has been reported in rice. However, the application of ABE8e in other plant species has not been described, and the comparison between ABE8e and ABE7.10, which is widely used in plants, has also been poorly studied. Here, we developed the ABE8e with the polycistronic tRNA-gRNA expression cassette (PTG-ABE8e) and PTG-ABE7.10 and compared their A-to-G editing efficiencies using both transient and stable transformation in the allotetraploid Nicotiana benthamiana. We found that the editing efficiency of PTG-ABE8e was significantly higher than that of PTG-ABE7.10, indicating that ABE8e was more efficient for A-to-G conversion in N. benthamiana. We further optimized the ABE8e editing efficiency by changing the sgRNA expression cassette and demonstrated that both PTG and single transcript unit (STU) enhanced ABE8e efficiency for A-to-G conversion in N. benthamiana. We also estimated the potential off-target effect of PTG-ABE8e at potential off-targeting sites predicted using an online tool in transgenic plants, and no off-target editing event was found for potential off-targeting sites selected, indicating that ABE8e could specifically facilitate A-to-G conversion. Our results showed that ABE8e with PTG structure was more suitable for A-to-G conversion in N. benthamiana and provided valuable clues for optimizing ABE tools in other plants.

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