Frontiers
Browse

Table_4_CRISPR-mediated genome editing in poplar issued by efficient transformation.xlsx

Download (11.85 kB)
dataset
posted on 2023-04-17, 04:32 authored by Ali Movahedi, Hui Wei, Saeid Kadkhodaei, Weibo Sun, Qiang Zhuge, Liming Yang, Chen Xu
Background<p>CRISPR has been increasingly used for plant genetic improvements because of its high efficiency and precision. Recently, the authors have reported the possibility of homology-directed repair (HDR) using CRISPR/Cas9 through woody plants such as poplar. HDR often replaces nucleotides with one donor DNA template (DDT), including homologous sequences.</p>Methods<p>CRISPR–Cas9 was recruited, and three variables, Agrobacteria inoculator concentration, pDDT/pgRNA ratio, and homologous arm length, were designed to integrate nptII and 2XCamV 35S into the MKK2 promoter zone.</p>Results<p>Here, we showed that recovered poplars on kanamycin-supplemented media exhibited enhanced expression of MKK2 affected by the precise integration of 2XcamV 35S and nptII, improving biochemical and phenotypic properties. Our findings confirmed that Agrobacterium inoculator OD<sub>600</sub> = 2.5, increased DDT numbers during cell division to 4:1 pDDT/pgRNA, and optimized homologous arms 700 bp caused efficient HDR and increased MKK2 expression.</p>Conclusion<p>Efficient transformations resulted from optimized variables, directly affecting the HDR efficiency through woody plants such as poplar.</p>

History