1. Chen XM. Epidemiology and control of stripe rust [ Puccinia striiformis f. sp. tritici ] on wheat. Can J Plant Pathol. 2005;27(3):314–37.
2. AGIR I, Université de Toulouse INPT, Purpan INP-EI, Castanet-Tolosan F, Université de Toulouse AGIRI, Purpan INPTINP-EI, Castanet-Tolosan F. School of Integrative Plant Science CU, Cornell AgriTech at The New York State Agricultural Experiment Station, Geneva, NY, USA., Pathology DoP, Environmental Microbiology PSU, University Park, PA, USA., Plant Pathology Department UoC, Davis, Davis, CA, USA., Science FoG-I, Earth Observation UoT, Enschede, the Netherlands. a.nelson@utwente.nl.: The global burden of pathogens and pests on major food crops. Nature ecology & evolution 2019, 3(3):430–439.
3. G LT, L PY, Q CW YZZ. First detection of virulence in Puccinia Striiformis f. sp. tritici in China to Resistance genes Yr24 (= Yr26) Present in Wheat Cultivar Chuanmai 42. Plant Dis. 2010;94(9):1163.
4. Jin H, Qiuzhen J, Bo Z, Zhenyu S, Miaomiao H, Shelin J. Epidemic forecasting of the new strains G22-9 (CYR34) and G22-14 of Puccinia Striiformis f. sp. tritici in wheat in Gansu Province. J Plant Prot. 2018;45(01):101–8.
5. Chen L, Awais M, Yang H, Shen YY, Li GK, Gao HF, Ma JB. Races CYR34 and Suwon11-1 of Puccinia Striiformis f. sp. tritici played an important role in causing the stripe rust epidemic in Winter Wheat in Yili, Xinjiang, China. J Fungi 2023, 9(4).