Gancho Slavov

NameGancho Slavov
Job titleVisiting Scientist
Email addressgancho.slavov@rothamsted.ac.uk
DepartmentPlant Sciences and the Bioeconomy
Research clusterCAS: Genomics and Bioinformatics
Preferred citationSlavov, G.
OfficeHarpenden

Research outputs

Investigating the origins and evolution of a glyphosate-resistant weed invasion in South America

Gaines, T., Slavov, G., Hughes, D. J., Kupper, A., Sparks, C., Oliva, J., Vila-Aiub, M., Alejandro Garcia, M., Aldo Merotto Jr and Neve, P. 2021. Investigating the origins and evolution of a glyphosate-resistant weed invasion in South America. Molecular Ecology. 30 (21), pp. 5360-5372. https://doi.org/10.1111/mec.16221

Population genomics of selectively neutral genetic structure and herbicide resistance in UK populations of Alopecurus myosuroides

Dixon, A., Comont, D., Slavov, G. and Neve, P. 2020. Population genomics of selectively neutral genetic structure and herbicide resistance in UK populations of Alopecurus myosuroides. Pest Management Science. https://doi.org/10.1002/ps.6174

Functional QTL mapping and genomic prediction of canopy height in wheat measured using a robotic field phenotyping platform

Lyra, D. H., Virlet, N., Sadeghi-Tehran, P., Hassall, K. L., Wingen, L. U., Orford, S., Griffiths, S., Hawkesford, M. J. and Slavov, G. 2020. Functional QTL mapping and genomic prediction of canopy height in wheat measured using a robotic field phenotyping platform . Journal of Experimental Botany. p. erz545. https://doi.org/10.1093/jxb/erz545

Improving disease resistance in mungbean - A combined genetic and biotechnological approach

Bansal, A., Nekrasov, V., Rout, G. R., Rudd, J. J., Slavov, G., Chand, R. and Kanyuka, K. 2019. Improving disease resistance in mungbean - A combined genetic and biotechnological approach. BSPP 2019: Arms race: Evolution of plant pathogens and their hosts. Exhibition and Conference Centre, University of West England, Bristol, UK 02 Sep 2019

Genomic index selection provides a pragmatic framework for setting and refining multi-objective breeding targets in Miscanthus

Slavov, G. T., Davey, C. L., Bosch, M., Robson, P. R. H., Donnison, I. S. and MacKay, I. J. 2018. Genomic index selection provides a pragmatic framework for setting and refining multi-objective breeding targets in Miscanthus. Annals of Botany. pp. 1-9. https://doi.org/10.1093/aob/mcy187

Breeding progress and preparedness for mass-scale deployment of perennial lignocellulosic biomass crops switchgrass, miscanthus, willow, and poplar

Clifton-Brown, J., Harfouche, A., Casler, M. D., Jones, H. D., Macalpine, W. J., Murphy-Bokern, D., Smart, L. B., Adler, A., Ashman, C., Awty-Carroll, D., Bastien, C., Bopper, S., Botnari, V., Brancourt-Hulmel, M., Chen, Z., Clark, L. V., Cosentino, S., Dalton, S., Davey, C., Dolstra, O., Donnison, I., Flavell, R., Greef, J., Hanley, S. J., Hastings, A., Hertzberg, M., Hsu, T., Huang, L., Iurato, A., Jensen, E., Jin, X., Jørgensen, U., Kiesel, A., Kim, D., Liu, J., McCalmont, J. P., McMahon, B. G., Mos, M., Robson, P., Sacks, E. J., Sandu, A., Scalici, G., Schwarz, K., Scordia, D., Shafiei, R., Shield, I. F., Slavov, G., Stanton, B. J., Swaminathan, K., Taylor, G., Torres, A. F., Trindade, L. M., Tschaplinski, T., Tuskan, J., Yamada, T., Yu, C. Y., Zalesny, R., Zong, J. and Lewandowski, I. 2018. Breeding progress and preparedness for mass-scale deployment of perennial lignocellulosic biomass crops switchgrass, miscanthus, willow, and poplar. Global Change Biology. Bioenergy. https://doi.org/10.1111/gcbb.12566

Genetic relationships between spring emergence, canopy phenology, and biomass yield increase the accuracy of genomic prediction in Miscanthus

Davey, C. L., Robson, P., Hawkins, S., Farrar, K., Clifton-Brown, J. C., Donnison, I. S. and Slavov, G. 2017. Genetic relationships between spring emergence, canopy phenology, and biomass yield increase the accuracy of genomic prediction in Miscanthus. Journal of Experimental Botany. 68 (18), pp. 5093-5102. https://doi.org/10.1093/jxb/erx339

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