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1 Arroyo-Olarte RD, Bravo Rodriguez R, Morales-Rios E. 2021. Genome editing in bacteria: CRISPR-Cas and beyond. Microorganisms 9: 844./   DOI View Article
2 Song B, Yang S, Hwang G-H, Yu J, Bae S. 2021. Analysis of NHEJ-based DNA repair after CRISPR-mediated DNA cleavage. Int. J. Mol. Sci. 22: 6397./   DOI View Article
3 Rodrigues SD, Karimi M, Impens L, Van Lerberge E, Coussens G, Aesaert S, et al. 2021. Efficient CRISPR-mediated base editing in Agrobacterium spp. Proc. Natl. Acad. Sci. USA 118: e2013338118./   DOI View Article
4 Collias D, Beisel CL. 2021. CRISPR technologies and the search for the PAM-free nuclease. Nat. Commun. 12: 555./   DOI View Article
5 Wege SM, Gejer K, Becker F, Bolker M, Freitag J, Sandrock B. 2021. Versatile CRISPR/Cas9 systems for genome editing in Ustilago maydis. J. Fungi. 7: 149./   DOI View Article
6 Lee HJ, Kim HJ, Lee SJ. 2021. Mismatch intolerance of 5'-truncated sgRNAs in CRISPR/Cas9 enables efficient microbial single-base genome editing. Int. J. Mol. Sci. 22: 6457./   DOI View Article
7 Choi J, Nam J, Seo M-H. 2021. Complete genome sequence of Bacillus velezensis NST6 and comparison with the species belonging to operational group B. amyloliquefaciens. Genomics 113: 380-386./   DOI View Article
8 Koirala S, Anal AK. 2021. Probiotics-based foods and beverages as future foods and their overall safety and regulatory claims. Future Foods 3: 100013./   DOI View Article
9 Jeong GS, Kang MG, Han SZ, Noh JI, Park JE, Nam SJ, et al. 2021. Selective inhibition of human monoamine oxidase B by 5-hydroxy-2-methyl-chroman-4-one isolated from an endogenous lichen fungus Daldinia fissa. J. Fungi. 7: 84./   DOI View Article
10 McDonald M, Khoo W, Ng P, Xiao Y, Zamerli J, Thatcher P, et al. 2021. Osteoclasts recycle via osteomorphs during RANKL-stimulated bone resorption. 184: 1330-1347.e1313./   DOI View Article