BarrangouR, FremauxC, DeveauH, et al.CRISPR provides acquired resistance against viruses in prokaryotes. Science, 2007; 315:1709–1712. DOI: 10.1126/science.1138140.
2.
MarraffiniLA, SontheimerE. CRISPR interference limits horizontal gene transfer in staphylococci by targeting DNA. Science, 2008; 322:1843–1845. DOI: 10.1126/science.1165771.
3.
AnderssonAF, BanfieldJF. Virus population dynamics and acquired virus resistance in natural microbial communities. Science, 2008; 320:1047–1050. DOI: 10.1126/science.1157358.
4.
BikardD, Hatoum-AslanA, MucidaD, et al.CRISPR interference can prevent natural transformation and virulence acquisition during in vivo bacterial infection. Cell Host Microbe, 2012; 12:177–186. DOI: 10.1016/j.chom.2012.06.003.
5.
DeltchevaE, ChylinskiK, SharmaCM, et al.CRISPR RNA maturation by trans-encoded small RNA and host factor RNase III. Nature, 2011; 471:602–607. DOI: 10.1038/nature09886.
6.
CongL, RanFA, CoxD, et al.Multiplex genome engineering using CRISPR/Cas systems. Science, 2013; 339:819–823. DOI: 10.1126/science.1231143.
7.
JinekM, ChylinskiK, FonfaraI, et al.A programmable dual-RNA-guided DNA endonuclease in adaptive bacterial immunity. Science, 2012; 337:816–821. DOI: 10.1126/science.1225829.
8.
MaliP, YangL, EsveltKM, et al.RNA-guided human genome engineering via Cas9. Science, 2013; 339:823–826. DOI: 10.1126/science.1232033.
9.
JiangW, BikardD, CoxD, et al.RNA-guided editing of bacterial genomes using CRISPR-Cas systems. Nat Biotechnol, 2013; 31:233–239. DOI: 10.1038/nbt.2508.