1. Василова Н.З., Асхадуллин Дам.Ф., Асхадуллин Дан.Ф. Эпифитотия стеблевой ржавчины на яровой пшенице в Татарстане. Защита и карантин растений. 2017;(2):27-28. DOI: 10.28983/asj.y2021i8pp23-27 EDN: XWPXQF
Vasilova N.Z., Askhadullin Dam.F., Askhadullin Dan.F. Stem rust epiphytotic on soft spring wheat in Tatarstan. Zashchita i Karantin Rastenij = Plant Protection and Quarantine. 2017;(2):27-28. 10.28983/asj.y2021i8pp23-27 (in Russian). DOI: 10.28983/asj.y2021i8pp23-27(inRussian)
2. Гультяева Е.И., Шайдаюк Е.Л., Казарцев И.А., Аристова М.К. Cтруктура российских популяций гриба Puccinia triticina Eriks. Вестник защиты растений. 2015;(3(85)):5-10. EDN: VQABNN
Gultyaeva E.I., Shaidayuk E.L., Kazartsev I.A., Aristova M.K. Structure of russian populations of Puccinia triticina. Vestnik Zashchity Rastenij = Plant Protection News. 2015;(3(85)):5-10 (in Russian).
3. Синяк Е.В., Волкова Г.В. Распространение и вирулентность популяции возбудителя Puccinia graminis pers. f.sp. Tritici erikss. et henn. на юге России. Молодой ученый. 2015;(9(89)):70-71. EDN: TSEYTZ
Sinyak Е.V., Volkova G. V. Spreading and virulence of Puccinia graminis pers. f. sp. Tritici erikss. et henn. in Southern Russia. Molodoj Uchenyj = Young Scientist. 2015;(9(89)):70-71 (in Russian). EDN: TSEYTZ
4. Сколотнева Е.С., Кельбин В.Н., Моргунов А.И., Бойко Н.И., Шаманин В.П., Салина Е.А. Расовый состав новосибирской популяции Puccinia graminis f. sp. tritici. Микология и фитопатология. 2020;54(1):49-58. DOI: 10.31857/S0026364820010092 EDN: EOCRPN
Skolotneva E.S., Kelbin V.N., Morgunov A.I., Boiko N.I., Shamanin V.P., Salina Е.А. Races Composition of the Novosibirsk Population of Puccinia graminis f. sp. tritici. Mikologiya i fitopatologiya = Mycology and Phytopathology. 2020;54(1):49-58. 10.31857/S0026364820010092 (in Russian). DOI: 10.31857/S0026364820010092(inRussian) EDN: EOCRPN
5. Шаманин В.П., Моргунов А.И., Петуховский С.Л., Лихенко И.Е., Левшунов М.А., Салина Е.А., Потоцкая И.В., Трущенко А.Ю. Селекция яровой мягкой пшеницы на устойчивость к стеблевой ржавчине в Западной Сибири. Под ред. В.П. Шаманина. Омск: ФГБОУ ВПО ОмГАУ им. П.А. Столыпина, 2015.
Shamanin V.P., Morgunov A.I., Petukhovskiy S.L., Likhenko I.E., Levshunov M.A., Salina E.A., Pototskaya I.V., Trushchenko A.Y. Breeding spring bread wheat for resistance to stem rust in Africa. Shamanin V.P. (Ed.). Omsk: P.A. Stolypin Education Omsk State Agrarian University Publ., 2015 (in Russian).
6. Anderson C., Khan M.A., Catanzariti A.M., Jack C.A., Nemri A., Lawrence G.J., Upadhyaya N.M., Hardham A.R., Ellis J.G., Dodds P.N., Jones D.A. Genome analysis and avirulence gene cloning using a highdensity RADseq linkage map of the flax rust fungus, Melampsora lini. BMC Genomics. 2016;17(1):667. DOI: 10.1186/s12864-016-3011-9 EDN: WTBWHN
7. Asad M.A., Xia X., Wang C., He Z. Molecular mapping of stripe rust resistance gene YrSN104 in Chinese wheat line Shaannong 104. Hereditas. 2012;149(4):146-152. DOI: 10.1111/j.1601-5223.2012.02261.x
8. Baranova O.A., Sibikeev S.N., Druzhin A.E., Sozina I.D. Loss of effectiveness of stem rust resistance genes Sr25 and Sr6Agi in the Lower Volga region. PLANT Prot. NEWS. 2021;104(2):105-112. DOI: 10.31993/2308-6459-2021-104-2-14994 EDN: VUBKME
9. Berlin A., Samils B., Andersson B. Multiple genotypes within aecial clusters in Puccinia graminis and Puccinia coronata: improved understanding of the biology of cereal rust fungi. Fungal Biol. Biotechnol. 2017;4(1):1-7. DOI: 10.1186/S40694-017-0032-3 EDN: PVOFCI
10. Chung S.M., Staub J.E., Chen J.F. Molecular phylogeny of Cucumis species as revealed by consensus chloroplast SSR marker length and sequence variation. Genome. 2006;49(3):219-29. DOI: 10.1139/g05-101
11. Dean R., Van Kan J.A.L., Pretorius Z.A., Hammond-Kosack K.E., Di Pietro A., Spanu P.D., Rudd J.J., Dickman M., Kahmann R., Ellis J., Foster G.D. The Top 10 fungal pathogens in molecular plant pathology. Mol. Plant Pathol. 2012;13(4):414-30. DOI: 10.1111/j.1364-3703.2011.00783.x EDN: YCXIBV
12. Earl D.A., vonHoldt B.M. STRUCTURE HARVESTER: A website and program for visualizing STRUCTURE output and implementing the Evanno method. Conserv. Genet. Resour. 2012;4(2):359-361. DOI: 10.1007/s12686-011-9548-7
13. Evanno G., Regnaut S., Goudet J. Detecting the number of clusters of individuals using the software structure: a simulation study. Mol. Ecol. 2005;14(8):2611-2620. DOI: 10.1111/J.1365-294X.2005.02553.X EDN: MEKJRR
14. Hammer Ø., Harper D.A.T., Ryan P.D. Past: Paleontological Statistics Software Package for Education and Data Analysis. Palaeontologia Electronica. 2001;4(1):9. Available at: http://palaeo-electronica.org/2001_1/past/issue1_01.htm.
15. Herrman A., Dinoor A., Schachte G., Kosman E. Virulence Analysis Tool (VAT). 2008.
16. Kalia R.K., Rai M.K., Kalia S., Singh R., Dhawan A.K. Microsatellite markers: An overview of the recent progress in plants. Euphytica. 2011;177:309-344. DOI: 10.1007/s10681-010-0286-9 EDN: OAOSGR
17. Karaoglu H., Lee C.M.Y., Park R. Simple sequence repeats in Puccinia graminis: Abundance, cross-formae speciales and intra-species utility, and development of novel markers. Australas. Plant Pathol. 2013;42(3):271-281. DOI: 10.1007/s13313-013-0199-x EDN: MLYREI
18. Lapochkina I.F., Baranova O.A., Shamanin V.P., Volkova G. V., Gainullin N.R., Anisimova A. V., Galinger D.N., Lazareva E.N., Gladkova E. V., Vaganova O.F. The development of the initial material of spring common wheat for breeding for resistance to stem rust (Puccinia graminis Pers. f. sp. tritici), including the Ug99 race, in Russia. Russ. J. Genet. Appl. Res. 2017;7(3):308-317. DOI: 10.1134/S207905971703008X EDN: XMYGRA
19. Michiels A., Van Den Ende W., Tucker M., Van Riet L., Van Laere A. Extraction of high-quality genomic DNA from latex-containing plants. Anal. Biochem. 2003;315(1):85-89. DOI: 10.1016/S0003-2697(02)00665-6 EDN: KDXLHZ
20. Peakall R., Smouse P.E. GenAlEx 6.5: genetic analysis in Excel. Population genetic software for teaching and research-an update. Bioinformatics. 2012;28(19):2537. DOI: 10.1093/BIOINFORMATICS/BTS460
21. Powell W., Machray G., Provan J. Polymorphism revealed by simple sequence repeats. Trends Plant Sci. 1996;1:215-222. DOI: 10.1016/s1360-1385(96)86898-0 EDN: AOFRWV
22. Rsaliyev A.S., Rsaliyev S.S. Principal approaches and achievements in studying race composition of wheat stem rust. Vavilovskii Zhurnal Genetiki i Selektsii = Vavilov Journal of Genetics and Breeding. 2018;22(8):967-977. DOI: 10.18699/VJ18.439 EDN: YQNNRJ
23. Selkoe K.A., Toonen R.J. Microsatellites for ecologists: A practical guide to using and evaluating microsatellite markers. Ecol. Lett. 2006;9(5):615-29. DOI: 10.1111/j.1461-0248.2006.00889.x
24. Skolotneva E.S., Lekomtseva S.N., Kosman E. The wheat stem rust pathogen in the central region of the Russian Federation. Plant Pathol. 2013;62(5):1003-1010. DOI: 10.1111/PPA.12019 EDN: RFNPOZ
25. Szabo L.J. Development of simple sequence repeat markers for the plant pathogenic rust fungus, Puccinia graminis. Mol. Ecol. Notes. 2007;7(1):92-94. DOI: 10.1111/j.1471-8286.2006.01540.x
26. Visser B., Herselman L., Pretorius Z.A. Genetic comparison of Ug99 with selected South African races of Puccinia graminis f.sp. tritici. Mol. Plant Pathol. 2009;10(2):213-222. DOI: 10.1111/j.1364-3703.2008.00525.x
27. Zhong S., Leng Y., Friesen T.L., Faris J.D., Szabo L.J. Development and characterization of expressed sequence tag-derived microsatellite markers for the wheat stem rust fungus Puccinia graminis f. sp. tritici. Phytopathology. 2009;99(3):282-289. DOI: 10.1094/PHYTO-99-3-0282