Author: Huang, Tengâ€Kuei; Armstrong, Brittney; Schindele, Patrick; Puchta, Holger
Title: Efficient gene targeting in Nicotiana tabacum using CRISPR/SaCas9 and temperature tolerant LbCas12a Cord-id: n16wq7yu Document date: 2021_1_28
ID: n16wq7yu
Snippet: Nicotiana tabacum is a nonâ€food herb that has the potential to be utilized as bioâ€factory for generating medicines, vaccines or valuable small metabolites. To achieve these goals, the improvement of genetic tools for preâ€designed genome modifications is indispensable. The development of CRISPR/Cas nucleases allows the induction of siteâ€specific doubleâ€strand breaks to enhance homologous recombinationâ€mediated gene targeting (GT). However, the efficiency of GT is still a challenging o
Document: Nicotiana tabacum is a nonâ€food herb that has the potential to be utilized as bioâ€factory for generating medicines, vaccines or valuable small metabolites. To achieve these goals, the improvement of genetic tools for preâ€designed genome modifications is indispensable. The development of CRISPR/Cas nucleases allows the induction of siteâ€specific doubleâ€strand breaks to enhance homologous recombinationâ€mediated gene targeting (GT). However, the efficiency of GT is still a challenging obstacle for many crops including tobacco. Recently, studies in several plant species indicated that by replacing SpCas9 with other CRISPR/Casâ€based nucleases, GT efficiencies might be enhanced considerably. Therefore, we tested SaCas9 as well as a temperatureâ€insensitive version of LbCas12a (ttLbCas12a) for targeting the tobacco SuRB gene. At the same time, we also optimized the protocol for Agrobacteriumâ€mediated tobacco transformation and tissue culture. In this way, we could improve GT efficiencies to up to a third of the inoculated cotyledons when using ttLbCas12a, which outperformed SaCas9 considerably. In addition, we could show that the conversion tract length of the GT reaction can be up to 606 bp long and in the majority of cases, it is longer than 250 bp. We obtained multiple heritable GT events, mostly heterozygous, but also biallelic GT events and some without Tâ€DNA integration. Thus, we were not only able to obtain CRISPR/Casâ€based heritable GT events in allotetraploid Nicotiana tabacum for the first time, but our results also indicate that ttLbCas12a might be a superior alternative for gene editing and GT in tobacco as well as in other crops.
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