South African Journal of Science Volume 116 Issue 11/12

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Wheat rusts in South Africa Page 8 of 8

74. Leng P, Lübberstedt T, Xu M. Genomics-assisted breeding – A revolutionary strategy for crop improvement. J Integr Agric. 2017;16:2674–2685. https:// doi.org/10.1016/S2095-3119(17)61813-6

77. Ali S, Rodriguez-Algaba J, Thach T, Sørensen CK, Hansen JG, Lassen P, et al. Yellow rust epidemics worldwide were caused by pathogen races from divergent genetic lineages. Front Plant Sci. 2017;8:1057. https://doi. org/10.3389/fpls.2017.01057

75. Crossa J, De Los Campos G, Pérez P, Gianola D, Burgueño J, Araus JL, et al. Prediction of genetic values of quantitative traits in plant breeding using pedigree and molecular markers. Genetics. 2010;186(2):713–724. https:// doi.org/10.1534/genetics.110.118521

78. Olivera PD, Sikharulidze Z, Dumbadze R, Szabo LJ, Newcomb M, Natsarishvili K, et al. Presence of a sexual population of Puccinia graminis f. sp. tritici in Georgia provides a hotspot for genotypic and phenotypic diversity. Phytopathology. 2019;109(12):2152–2160. https://doi.org/10.1094/PHYTO06-19-0186-R

76. Poland J, Endelman J, Dawson J, Rutkoski J, Wu S, Manes Y, et al. Genomic selection in wheat breeding using genotyping-by-sequencing. The Plant Genome. 2012;5(3):103–113. https://doi.org/10.3835/plantgenome2012.06.0006

Review Article https://doi.org/10.17159/sajs.2020/7688

79. Pretorius ZA, Bender CM, Visser B. The rusts of wild rye in South Africa. S Afr J Bot. 2015;96(1):94–98. https://doi.org/10.1016/j.sajb.2014.10.005

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Volume 116| Number 11/12 November/December 2020


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