CRISPR/Cas9-mediated efficient targeted mutagenesis has the potential to accelerate the domestication of Coffea canephora

被引:53
作者
Breitler, Jean-Christophe [1 ,2 ,3 ]
Dechamp, Eveline [1 ,2 ]
Campa, Claudine [2 ,4 ]
Zebral Rodrigues, Leonardo Augusto [1 ,5 ]
Guyot, Romain [2 ,4 ,6 ]
Marraccini, Pierre [1 ,2 ,7 ]
Etienne, Herve [1 ,2 ]
机构
[1] CIRAD, UMR IPME, F-34394 Montpellier, France
[2] Univ Montpellier, CIRAD, IRD, UMR IPME, F-34394 Montpellier, France
[3] INECOL, Cluster BioMim, Xalapa Enriquez 34394, Ver, Mexico
[4] Univ Montpellier, CIRAD, IPME, IRD, Montpellier, France
[5] Univ Fed Lavras, LCBM, Caixa Postal 3037, Lavras, Brazil
[6] CENICAFE, Manizales, Caldas, Colombia
[7] Univ Montpellier, Agr Genet Inst, CIRAD, UMR IPME,IRD,LMI RICE2, Pham Van Dong St KM2, Hanoi, Vietnam
关键词
CRISPR/Cas9; Coffea canephora; Phytoene desaturase; Somatic embryogenesis; Targeted mutagenesis; RHIZOGENES-TRANSFORMED ROOTS; GENE-EXPRESSION; GENOME; ARABICA; PLANTS; GROWTH; BIOSYNTHESIS; CRISPR-CAS9; EMBRYOS; RNA;
D O I
10.1007/s11240-018-1429-2
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Genome editing, which is an unprecedented technological breakthrough, has provided a valuable means of creating targeted mutations in plant genomes. In this study, we developed a genomic web tool to identify all gRNA target sequences in the coffee genome, along with potential off-targets. In all, 8,145,748 CRISPR guides were identified in the draft genome of Coffea canephora corresponding to 5,338,568 different sequences and, of these, 4,655,458 were single, and 514,591 were covering exons. The proof of concept was established by targeting the phytoene desaturase gene (CcPDS) using the Agrobacterium tumefaciens transformation technique and somatic embryogenesis as the plant regeneration method. An analysis of the RNA-guided genome-editing events showed that 22.8% of the regenerated plants were heterozygous mutants and 7.6% were homozygous mutants. Mutation efficiency at the target site was estimated to be 30.4%. We demonstrated that genome editing by the CRISPR/Cas9 method is an efficient and reliable way of knocking out genes of agronomic interest in the coffee tree, opening up the way for coffee molecular breeding. Our results also showed that the use of somatic embryogenesis, as the method for regenerating genome-edited plants, could restrict the choice of targeted genes to those that are not essential to the embryo development and germination steps.
引用
收藏
页码:383 / 394
页数:12
相关论文
共 60 条
[1]   Photoautotrophic culture of Coffea arabusta somatic embryos:: Photosynthetic ability and growth of different stage embryos [J].
Afreen, F ;
Zobayed, SMA ;
Kozai, T .
ANNALS OF BOTANY, 2002, 90 (01) :11-19
[2]   Agrobacterium rhizogenes-transformed roots of coffee (Coffea arabica):: Conditions for long-term proliferation, and morphological and molecular characterization [J].
Alpizar, E. ;
Dechamp, E. ;
Lapeyre-Montes, F. ;
Guilhaumon, C. ;
Bertrand, B. ;
Jourdan, C. ;
Lashermes, P. ;
Etienne, H. .
ANNALS OF BOTANY, 2008, 101 (07) :929-940
[3]   Efficient production of Agrobacterium rhizogenes-transformed roots and composite plants for studying gene expression in coffee roots [J].
Alpizar, E. ;
Dechamp, E. ;
Espeout, S. ;
Royer, M. ;
Lecouls, A. C. ;
Nicole, M. ;
Bertrand, B. ;
Lashermes, P. ;
Etienne, H. .
PLANT CELL REPORTS, 2006, 25 (09) :959-967
[4]   Advancing Crop Transformation in the Era of Genome Editing [J].
Altpeter, Fredy ;
Springer, Nathan M. ;
Bartley, Laura E. ;
Blechl, Ann E. ;
Brutnell, Thomas P. ;
Citovsky, Vitaly ;
Conrad, Liza J. ;
Gelvin, Stanton B. ;
Jackson, David P. ;
Kausch, Albert P. ;
Lemaux, Peggy G. ;
Medford, June I. ;
Orozco-Cardenas, Martha L. ;
Tricoli, David M. ;
Van Eck, Joyce ;
Voytas, Daniel F. ;
Walbot, Virginia ;
Wang, Kan ;
Zhang, Zhanyuan J. ;
Stewart, C. Neal, Jr. .
PLANT CELL, 2016, 28 (07) :1510-1520
[5]  
[Anonymous], P 24 INT C COFF SCI
[6]  
[Anonymous], LAB PROTOCOLS
[7]  
[Anonymous], P 23 INT SCI C COFF
[8]  
[Anonymous], PLANT AN GEN 18 C SA
[9]  
[Anonymous], 2012, BIOTECHNOL RES INT, DOI DOI 10.1155/2012/580857
[10]  
[Anonymous], COMPENDIUM TRANSGENI