References
- Ali, E., Hudson, O., Waliullah, S., Ji, P., Williams-Woodward, J., Oliver, J. 2020. First report of bacterial leaf scorch disease of American elm caused by Xylella fastidiosa in Georgia, USA. Plant Disease, 104 (6). DOI: 10.1094/PDIS-11-19-2367-PDN.
- Alizadeh, M. 2017. Bacterial wetwood disease. Journal of Plant Chemistry and Ecophysiology, 2 (1), 1015.
- Alizadeh, M., Khakvar, R., Babai-Ahari, A. 2017. Isolation and characterization of bacterial agents associated of wetwood disease on Elm trees in Iran. Acta Phytopathologica et Entomologica Hungarica, 52, 1–11. DOI: 10.1556/038.52.2017.028.
- Alizadeh, M., Moharrami, M., Rasuly Pirouzian, A. 2017. Geographic Information System (GIS) as a tool in the epidemiological assessment of wet-wood disease on elm trees in Tabriz city, Iran. Cercetari Agronomice in Moldova, 50. DOI: 10.1515/cerce-2017-0018.
- Aravanopoulos, F.A. et al. 2015. Development of genetic monitoring methods for genetic conservation units of forest trees in Europe. European Forest Genetic Resources Programme (EUFORGEN), Bioversity International, Rome, Italy.
- Asplund, J., Wardle, D.A. 2017. How lichens impact on terrestrial community and ecosystem properties. Biological Reviews, 92 (3), 1720–1738. DOI: 10.1111/brv.12305.
- Bernier, L. 2022. Dutch elm disease. In: Forest microbiology. Volume 2: Forest tree health (eds. F.O. Asiegbu, A. Kovalchuk). Elsevier, Amsterdam, The Netherlands, 291–309. DOI: 10.1016/B978-0-323-85042-1.00010-0.
- Brady, C., Cleenwerck, I., Venter, S., Coutinho, T. 2013. Taxonomic evaluation of the genus Enterobacter based on multilocus sequence analysis (MLSA): proposal to reclassify E. nimipressuralis and E. amnigenus into Lelliottia gen. nov. as Lelliottia nimipressuralis comb. nov. and Lelliottia amnigena comb. nov. Systematic and Applied Microbiology, 36 (5), 309–319. DOI: 10.1016/j.syapm.2013.03.005.
- Braun-Blanquet, J. 1964. Plant sociology. Basics of vegetation science (in German). Springer, Wien, New York.
- Brenner, D.J. et. al. 2005. Bergey’s Manual of Systematic Bacteriology. Springer Science, New York, USA. DOI: 10.1111/j.1574-695X.2005.00055.x.
- Büchel, K., Fenning, T., Gershenzon, J., Hilker, M., Meiners, T. 2016. Elm defence against herbivores and pathogens: Morphological, chemical and molecular regulation aspects. Phytochemistry Reviews, 15. DOI: 10.1007/s11101-015-9442-0.
- Caudullo, G., De Rigo, D. 2016. Ulmus-elms in Europe: distribution, habitat, usage and threats. In: European atlas of forest tree species (eds. J. San-Miguel-Ayanz, D. de Rigo, G. Caudullo, T. Houston Durrant, A. Mauri). Publication Office of the European Union, Luxembourg, 186–188.
- Debryniyuk, Iu.M., Skol’skyy, I.M. 2012. Cultivation characteristics of forest plantations with the presence of Ulmus L. family in Western Forest Steppe region of Ukraine (in Ukrainian). Scientific Works: Forestry Academy of Sciences of Ukraine, 10, 94–103.
- Devetakovic, J., Čortan, D., Maksimović, Z. 2019. Conservation of European white elm and black poplar forest genetic resource: Case study in Serbia. Advances in Global Change Research, 165–186. DOI: 10.1007/978-3-319-95267-3_14.
- Didukh, Ya.P. 2009. Red Data Book of Ukraine. Vegetable Kingdom. Globalkonsaltyng, Kiyv.
- Domínguez, J., Macaya-Sanz, D., Gil, L., Martín, J.A. 2022. Excelling the progenitors: Breeding for resistance to Dutch elm disease from moderately resistant and susceptible native stock. Forest Ecology and Management, 511, 120113. DOI: 10.1016/j.foreco.2022.120113.
- Firbas, F. 1949. Spät- und nachtszeitliche Waldgeschichte Mitteleuropas nordlich der Alpen. Bd. I. Gustav Fischer, Jena.
- Flower, C., Hayes-Plazolles, N., Rosa, C., Slavicek, J. 2017. First report of ‘Candidatus phytoplasma trifolii’-related strain of 16SrVI-A phytoplasma subgroup, associated with elm yellows disease in American elm (Ulmus americana L.) in Ohio, USA. Plant Disease, 102 (2), 438. DOI: 10.1094/PDIS-08-17-1154-PDN.
- Golubec, M.A. 2003. Geobotanical zoning of the Ukrainian Carpathians is the basis of rationalnature utilization (in Ukrainian). Proceedings of the Scientific Society of them. Shevchenko, 12, 283–292.
- Goychuk, A., Drozda, V., Shvets, M., Kulbanska, I. 2020. Bacterial wetwood of silver birch (Betula pendula Roth): symptomology, etiology and pathogenesis. Folia Forestalia Polonica, Ser. A – Forestry, 62 (3), 145–159. DOI: 10.2478/ffp-2020-0015.
- Gravendeel, B., Eurlings, M., Heijerman, T. 2009. Use of DNA barcoding for host plant identification. Entomologische Berichten, 69 (2), 30–35.
- Index Fungorum. Available at http://www.indexfungorum.org (access on 02 July 2023).
- Jernelöv, A. 2017. Dutch elm disease in Europe and North America. In: The long-term fate of invasive species (ed. A. Jernelöv). Springer International Publishing, Cham, 161–176. DOI: 10.1007/978-3-319-55396-2_12.
- Jürisoo, L., Adamson, K., Padari, A., Drenkhan, R. 2019. Health of elms and Dutch elm disease in Estonia. European Journal of Plant Pathology, 154, 823–841. DOI: 10.1007/s10658-019-01707-0.
- Khodaygan, P., Sedaghati, E., Sherafati, F. 2011. Isolation of Enterobacter nimipressuralis associated with bacterial wet wood from elm (Ulmus spp.) in Rafsanjan. Iranian Journal of Plant Pathology, 4 (188), 481–482.
- Kulbanska, I. et al. 2023. Phytopathogenic bacteria associated with bacterioses of common oak (Quercus robur L.) in Ukraine. Forests, 14 (1), Article 1. DOI: 10.3390/f14010014.
- Kulbanska, I.M., Plikhtyak, P.P., Shvets, M.V., Soroka, M.I., Goychuk, A.F. 2022. Lelliottia nimipressuralis (Carter 1945) Brady et al. 2013 as the causative agent of bacterial wetwood disease of common silver fir (Abies alba Mill.). Folia Forestalia Polonica, Ser. A – Forestry, 64 (3), 173–183. DOI: 10.2478/ffp-2022-0017.
- Kuznetsova, O.A., Turenko, V.P., Tovstukha, O.V., Davydenko, K.V. 2023. Incidence of diseases and pests of Ulmus sp. in forest shelter belts along the Kyiv-Kharkiv highway (in Ukrainian). Forestry and Forest Melioration, 143, 102–111. DOI: 10.33220/1026-3365.143.2023.102.
- List of Prokaryotic names with Standing in Nomenclature. Available at http://www.bacterio.cict.fr/e/erwinia.html (access on 02 July 2023).
- Łańcucka-Środoniowa, M. 1963. The state of paleobotanical research on the Miocene of southern Poland (in Polish). Annales Societatis Geologorum Poloniae, 33 (2), 129–158.
- Martín, J.A., Sobrino-Plata, J., Rodríguez-Calcerrada, J., Collada, C., Gil, L. 2019. Breeding and scientific advances in the fight against Dutch elm disease: Will they allow the use of elms in forest restoration? New Forests, 50 (2), 183–215. DOI: 10.1007/s11056-018-9640-x.
- Matuszkiewicz, W. 2013. Guide for the determination of plant communities in Poland (in Polish). PWN, Warszawa.
- Meshkova, V.L., Kuznetsova, O.A., Khimenko, N.L. 2022 Occurrence of Ulmus L. in the different forest site conditions of eastern Ukraine. Forestry and Forest Melioration, 140, 9–11. DOI: 10.33220/1026-3365.140.2022.3.
- Monteiro-Henriques, T., Costa, J.C., Bellu, A., Aguiar, C. 2010. Fraxino Angustifoliae-Ulmetum glabrae: An original endemic and extremely localized forest from mainland Portugal. Braun-Blanquetia, 46, 323–327.
- Patyka, V.P. et al. 2017. Phytopathogenic bacteria. Methods of research. Monograph. Volume 2 (in Ukrainian). Windruck. Vinnytsia, Ukraine.
- Polyanina, K., Mandelshtam, M., Ryss, A. 2019. Brief review of the associations of Xylobiont nematodes with bark beetles (Coleoptera, Curculionidae: Scolytinae). Entomological Review, 99, 598–614. DOI: 10.1134/S0013873819050038.
- Sanitary Forests Regulations in Ukraine. 2016. Resolution of the Cabinet of Ministers of Ukraine No 756 dated 26 October 2016 (in Ukrainian). Available at: https://zakon.rada.gov.ua/laws/show/756-2016-%D0%BF#n11 (access on 02 October 2023).
- Santini, A., Faccoli, M. 2014. Dutch elm disease and elm bark beetles: A century of association. iForest – Biogeosciences and Forestry, 8. DOI: 10.3832/ifor1231-008.
- Scheffer, R.J., Strobel, G.A. 2020. Dutch elm disease, a model tree disease for biological control. In: Biocontrol of plant diseases (eds. K.G. Mukerji, K.L. Garg). CRC Press, Boca Raton, 103–119.
- Shvydenko, A.Z., Buksha, I.F., Krakovskaya S.V. 2018. Vulnerability of Ukraine’s forests to climate change (in Ukrainian). Nika-Center, Kyiv.
- Soroka, M.I. 2008. Vegetation of the Ukrainian Rostochia (in Ukrainian). Svit, Lviv.
- The World Flora Online. Available at http://www.worldfloraonline.org (access on 02 July 2023).
- Thomas, P.A., Stone, D., La Porta, N. 2018. Biological flora of the British Isles: Ulmus glabra. Journal of Ecology, 106 (4), 1724–1766. DOI: 10.1111/1365-2745.12994.
- Zhang, L., Jiang, Yu., Zhao, Sh., Jiao, L., Wen, Ya. 2018. Relationships between tree age and climate sensitivity of radial growth in different drought conditions of Qilian Mountains, Northwestern China. Forests, 9 (3), 135–138. DOI: 10.3390/f9030135.