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Agrobacterium rhizogenes-mediated marker-free transformation and gene editing system revealed that AeCBL3 mediates the formation of calcium oxalate crystal in kiwifruit

Pengwei Li,Yiling Zhang,Jing Liang,Xufan Hu, Yan He, Tonghao Miao, Zhiyin Ouyang, Zuchi Yang,Abdul Karim Amin,Chengcheng Ling, Yize Liu,Xiuhong Zhou,Xiaoran Lv, Runze Wang, Yajing Liu,Heqiang Huo,Yongsheng Liu,Wei Tang,Songhu Wang

Molecular Horticulture(2024)

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Abstract
The transformation and gene editing of the woody species kiwifruit are difficult and time-consuming. The fast and marker-free genetic modification system for kiwifruit has not been developed yet. Here, we establish a rapid and efficient marker-free transformation and gene editing system mediated by Agrobacterium rhizogenes for kiwifruit. Moreover, a removing-root-tip method was developed to significantly increase the regeneration efficiency of transgenic hairy roots. Through A. rhizogenes-mediated CRISPR/Cas9 gene editing, the editing efficiencies of CEN4 and AeCBL3 achieved 55 and 50
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Key words
Marker-free transformation,Agrobacterium rhizogenes,CRISPR/Cas9,Kiwifruit,AeCBL3
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