CRISPR/Cas9-mediated single and biallelic knockout of poplar STERILE APETALA (PopSAP) leads to complete reproductive sterility.
Identifieur interne : 000533 ( Main/Exploration ); précédent : 000532; suivant : 000534CRISPR/Cas9-mediated single and biallelic knockout of poplar STERILE APETALA (PopSAP) leads to complete reproductive sterility.
Auteurs : Abdul Azeez [États-Unis] ; Victor Busov [États-Unis]Source :
- Plant biotechnology journal [ 1467-7652 ] ; 2020.
DOI: 10.1111/pbi.13451
PubMed: 32663371
Affiliations:
Links toward previous steps (curation, corpus...)
Le document en format XML
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<ReferenceList><Title>References</Title>
<Reference><Citation>Azeez, A. and Busov, V.B. (2019) Improved heat FT induction ieads to earlier and more prolific flowering in poplar. J. Botanical Res. 1, 15-18.</Citation>
</Reference>
<Reference><Citation>Brunner, A.M., Li, J., DiFazio, S.P., Shevchenko, O., Montgomery, B.E., Mohamed, R., Wei, H. et al. (2007) Genetic containment of forest plantations. Tree Genet. Genomes, 3, 75-100.</Citation>
</Reference>
<Reference><Citation>Byzova, M.V., Franken, J., Aarts, M.G., de Almeida-Engler, J., Engler, G., Mariani, C., Van Lookeren Campagne, M.M. et al. (1999) Arabidopsis STERILE APETALA, a multifunctional gene regulating inflorescence, flower, and ovule development. Genes Develop. 13, 1002-1014.</Citation>
</Reference>
<Reference><Citation>Li, N., Liu, Z., Wang, Z., Ru, L., Gonzalez, N., Baekelandt, A., Pauwels, L. et al. (2018) STERILE APETALA modulates the stability of a repressor protein complex to control organ size in Arabidopsis thaliana. Plos Genet. 14, e1007218.</Citation>
</Reference>
<Reference><Citation>Ma, X., Zhang, Q., Zhu, Q., Liu, W., Chen, Y., Qiu, R., Wang, B. et al. (2015) A Robust CRISPR/Cas9 system for convenient, high-efficiency multiplex genome editing in monocot and dicot plants. Mol. Plant, 8, 1274-1284.</Citation>
</Reference>
<Reference><Citation>Mariani, C., Debeuckeleer, M., Truettner, J., Leemans, J. and Goldberg, R.B. (1990) Induction of male-sterility in plants by a chimeric ribonuclease gene. Nature, 347, 737-741.</Citation>
</Reference>
<Reference><Citation>Snow, A.A., Andow, D.A., Gepts, P., Hallerman, E.M., Power, A., Tiedje, J.M. and Wolfenbarger, L.L. (2005) Genetically engineered organisms and the environment: Current status and recommendations. Ecol. Appl. 15, 377-404.</Citation>
</Reference>
<Reference><Citation>Wei, H., Meilan, R., Brunner, A.M., Skinner, J.S., Ma, C., Gandhi, H.T. and Strauss, S.H. (2006) Field trial detects incomplete barstar attenuation of vegetative cytotoxicity in Populus trees containing a poplar LEAFY promoter:barnase sterility transgene. Mol. Breed. 19, 69-85.</Citation>
</Reference>
<Reference><Citation>Yordanov, Y.S., Ma, C., Yordanova, E., Meilan, R., Strauss, S.H. and Busov, V.B. (2017) BIG LEAF is a regulator of organ size and adventitious root formation in poplar. PLoS One, 12, e0180527.</Citation>
</Reference>
<Reference><Citation>Zhang, H., Harry, D.E., Ma, C., Yuceer, C., Hsu, C.-Y., Vikram, V., Shevchenko, O. et al. (2010) Precocious flowering in trees: the FLOWERING LOCUS T gene as a research and breeding tool in Populus. J. Exp. Botany, 61, 2549-2560.</Citation>
</Reference>
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