Accesso libero

The assessment of the current status of Gentiana lutea L. populations of the Ukrainian Carpathians: Ecological and genetic approaches

INFORMAZIONI SU QUESTO ARTICOLO

Cita

Bedej, M., Krys’, O.P., Voloschuk, M.І., Makhanets’, І.A., 2010. Tyrlych zhovtyi (Gentiana lutea L.) v Ukrayins’kykh Karpatakh [Gentiana lutea L. in the Ukrainian Carpathians). Uzhgorod: PP «Povch R.M», 2010. 134 p. Search in Google Scholar

Beltyukova, N.N., 2010. Otsenka sostoyaniya tsenopopulyatsiy nekotorykh redkikh vidov rasteniy permskogo kraya s ispolzovaniyem molekulyarnogeneticheskikh metodov. Avtoreferat dissertatsii na soiskaniye uchenoi stepeni kandidata biologicheskikh nauk: spets. 03.00.15 «Genetika» [Assessment of coenopopulations of some plants’ rare species from Perm region using molecular genetic techniques. Dr. Sci. Biol. thesis abstract: special 03.00.15 «Genetics»]. Perm: Perm State University. 19 p. Search in Google Scholar

Chervona knyha Ukrainy. Roslynnyi svit [The Red data book of Ukraine: Plant world], 2009. Didukh, Ya.P., (ed.). Kyiv: Hlobalkonsaltynh. 900 p. Search in Google Scholar

Collard, B.C.Y., Mackill, C.J., 2009. Conserved DNA-derived polymorphism (CDDP): a simple and novel method for generating DNA markers in plants. Plant Molecular Biology Reporter, 27 (4): 558–562. https://doi.org/10.1007/s11105-009-0118-z10.1007/s11105-009-0118-z Search in Google Scholar

Dong, P., Wei, Y.M., Chen, G.Y., Li, W., Nevo, E., Zheng, Y.L., 2009. Resistance gene analog polymorphisms (RGAPs) in wild emmer wheat (Triticum dicoccoides) and their ecological associations. Genetic Resources and Crop Evolution, 56 (1): 121–136. https://doi.org/10.1007/s10722-008-9351-910.1007/s10722-008-9351-9 Search in Google Scholar

Grime, J.P., 1974. Vegetation classification by reference to strategies. Nature, 250: 26–31.10.1038/250026a0 Search in Google Scholar

Grime, J.P., 1978. Interpretation of small-scale patterns in the distribution of plant species in space and time. In Freysen, A.H., Woldendorp, J.W. (eds). Structure and functioning of plant populations. Amsterdam: North Holland, p. 101–124. Search in Google Scholar

Grime, J.P., 1979. Plant strategies and vegetation processes. New York: Wiley. 222 p. Search in Google Scholar

Jiang, L., Zang, D., 2018. Analysis of genetic relationships in Rosa rugosa using conserved DNA- derived polymorphism markers. Biotechnology & Biotechnological Equipment, 32 (1): 88–94. https://doi.org/10.1080/13102818.2017.140725510.1080/13102818.2017.1407255 Search in Google Scholar

Kahmen, S., Poschlod, P., 2000. Population size, plant performance and genetic variation in the rare plant Arnica montana L. in the Rhoen, Germany. Basic and Applied Ecology, 1: 43–51. https://doi.org/10.1078/1439-1791-0000710.1078/1439-1791-00007 Search in Google Scholar

Kery, M., Matthies, D., Spillman, H.-H., 2000. Reduced fecundity and offspring performance in small populations of the declining grassland plants Primula veris and Gentiana lutea. Journal of Ecology, 88: 17–30. https://doi.org/10.1046/j.1365-2745.2000.00422.x10.1046/j.1365-2745.2000.00422.x Search in Google Scholar

Kovalenko, I.M., 2005. Struktura populyatsiy dominantiv trav’yano-chaharnykovoho yarusu v lisovykh fitotsenozakh Desnyans’ko-Starohuts’koho natsional’noho pryrodnoho parku. I. Ontohenetychna struktura [The structure of population, which dominant in the ground layer of woody phytocoenosis at national natural park Desnyansko-Starogutsky. I. Ontogenetic structure]. Ukrainskyi Botanichnyi Zhurnal, 62 (5): 707–714. Search in Google Scholar

Lienert, J., Diemer, M., Schmid, B., 2002. Effects of habitat fragmentation on population structure and fitness components of the wetland specialist Swertia perennis L. (Gentianaceae). Basic and Applied Ecology, 3: 101–114. https://doi.org/10.1078/1439-1791-0008910.1078/1439-1791-00089 Search in Google Scholar

Liu, H., Zang, F., Wu, Q., Ma, Ya., Zheng, Y., Zang, D., 2020. Genetic diversity and population structure of the endangered plant Salix taishanensis based on CDDP markers. Global Ecology and Conservation, 24: e01242. https://doi.org/10.1016/j.gecco.2020.e0124210.1016/j.gecco.2020.e01242 Search in Google Scholar

Malynovskyi, K.A. (ed.), 1998. Struktura populiatsii ridkisnykh vydiv flory Karpat [Population structure of rare species in the Carpathians flora]. Kyiv: Naukova dumka. 176 p. Search in Google Scholar

Mansureh, K., Mohammad, T.H., Abdolreza, B., Farshad, A., 2004. Identification of resistance gene(s) to yellow rust in wheat bulked genomic DNAs using RGAP and RAPD markers. In The international cereal rusts and powdery mildews conference. Norwich, UK: John Innes Centre, p. 22–27. Search in Google Scholar

Mayorova, O.Yu., Hrytsak, L.R., Drobyk, N.M., 2015. The strategy of Gentiana lutea L. populations in the Ukrainian Carpathians. Russian Journal of Ecology. 46: 43–50. https://doi.org/10.1134/S106741361405010510.1134/S1067413614050105 Search in Google Scholar

Mayorova, O. Yu., Hrytsak, L.R., Terekhova, H.I., Melnyk, V.M., Andryeyev, I.O., Drobyk, N.M, 2013. Gentiana lutea L. (Gentianaceae) u flori Ukrainskykh Karpat: Kharakterystyka ta suchasnyi stan populiatsii. [Gentiana lutea L. (Gentianaceae) in the flora of Ukrainian Carpathians: Current status of populations and phytocoenotic characteristics of habitats]. Ukrainskyi Botanichnyi Zhurnal, 70 (6): 780–787. Search in Google Scholar

Mosula, М.Z., Andreev, I.O., Melnyk, V.M., Konvalyuk, I.I., Drobyk, N.M., Kunakh, V.A., 2015. Molecular markers to assess genetic diversity of Gentiana lutea L. from the Ukrainian Carpathians. Plant Genetic Resources, 13: 266–273. DOI: 10.1017/S147926211400104X.10.1017/S147926211400104X Search in Google Scholar

Mosula, M.Z., Konvalyuk, I.I., Melnyk, V.M., Drobyk, N.M., Tsaryk, Y.V., Nesteruk, Yu.Y., Kunakh, V.A., 2014a. Genetic polymorphism of Gentiana lutea L. (Gentianaceae) populations from the Chornohora ridge of the Ukrainian Carpathians. Cytology and Genetics, 48 (6): 371–377. https://doi.org/10.3103/S009545271406007310.3103/S0095452714060073 Search in Google Scholar

Mosula, M.Z., Mayorova, O.Yu., Grytsak L.R, Mel`nyk, V.M., Drobyk, N.M., Kunakh, V.A., 2014b. Ekolohohenetychnyy analiz populyatsiy Gentiana lutea L. v Ukrayins’kykh Karpatakh [Ecological and genetic analysis of Gentiana lutea L. populations from Ukrainian Carpatians]. Ecology and Noospherology, 25 (3–4): 5–13. https://doi.org/10.15421/03141510.15421/031415 Search in Google Scholar

Mosula, M.Z., Melnyk, V.M., Konvalyuk, I.I., Drobyk, N.M., Andryeyev, I.O., Kunakh, V.A., 2014c. Genetychna struktura i dyferentsiatsiya populyatsiy Gentiana lutea L. (Gentianaceae) v Ukrayins’kykh Karpatakh [Genetic structure and differentiation in Gentiana lutea L. populations (Gentianaceae) from the Ukrainian Carpathians]. Visnyk Ukrayins’koho Tovarystva Henetykiv i Selektsioneriv, 12 (2): 174–183. Search in Google Scholar

Peakall, R., Smouse, P.E., 2007. GENALEX 6: Genetic analysis in Excel. Population genetic software for teaching and research. Molecular Ecology Notes, 6: 288–295. https://doi.org/10.1111/j.1471-8286.2005.01155.x10.1111/j.1471-8286.2005.01155.x Search in Google Scholar

Poczai, P., Varga, I., Laos, M., Cseh, A., Bell, N., Valkonen, J., Hyvönen, J., 2013. Advances in plant gene-targeted and functional markers: A review. Plant Methods, 9 (6): article no. 2013. https://doi.org/10.1186/1746-4811-9-610.1186/1746-4811-9-6358379423406322 Search in Google Scholar

Prakash, O., Singh, R., Kumar, S., Srivastava, Sh., Ved, A., 2017. Gentiana lutea Linn. (Yellow Gentian): A comprehensive review. Journal of Ayurvedic and Herbal Medicine, 3 (3): 175–181.10.31254/jahm.2017.3314 Search in Google Scholar

Rabotnov, T.A., 1950. Voprosyi izucheniya sostava tsenopopulyatsiy dlya tseley fitotsenologii [Problems in studies on the composition of cenopopulations for phytocenological purposes]. In Problemy Botaniki. Moscow: Nauka, 1, p. 465–483. Search in Google Scholar

Rogers, S.O., Bendich, A.J., 1985. Extraction of DNA from milligram amounts of fresh herbarium and mummified plant tissues. Plant Molecular Biology, 5: 69–76.10.1007/BF0002008824306565 Search in Google Scholar

Smirnova, O.V., 1987. Struktura travyanogo pokrova shirokolistvennykh lesov [Structure of herbaceous layer in broadleaf forests]. Moskva: Nauka. 207 p. Search in Google Scholar

Sokal, R.R., Rohlf, F.J., 1995. Biometry. 3rd edition. New York: W.H. Freeman and company. 850 p. Search in Google Scholar

Tsaryk, Y., Holubets, M. (eds), 2001. Stratehiia populiatsii roslyn u pryrodnykh i antropohennozminenykh ekosystemakh Karpat [Strategy of plant populations in natural and anthropogenically transformed ecosystems of the Carpathians]. Lviv: Yevrosvit. 160 p. Search in Google Scholar

Uranov, A.A., 1975. Vozrastnoy spektr fitotsenopopulyatsiy kak funktsiya vremeni i energeticheskih volnovyih protsessov [The age spectrum of phytocenopopulations as a function of time and energy wave processes]. Nauchnyie Dokladyi Vyisshey Shkolyi. Biolicheskie Nauki, 2: 7–33. Search in Google Scholar

Uranov, A.A., Serebryakova, T.I. (eds), 1976. Tsenopopulyatsij rastenij (osnovnye ponyatiya i struktura) [Plant cenopopulations: Basic concepts and structure]. Moskva: Nauka. 217 p. Search in Google Scholar

Zhang, X.-L., Yuan, Y.-M., Ge, X.-J., 2007. Genetic structure and differentiation of Gentiana atuntsiensis W.W. Smith and G. striolata T.N. Ho (Gentianaceae) as revealed by ISSR markers. Botanical Journal of the Linnean Society. 154 (2): 225–232. https://doi.org/10.1111/j.1095-8339.2007.00635.x10.1111/j.1095-8339.2007.00635.x Search in Google Scholar

Zhivotovskiy, L.A., 2001. Ontogenetic states, effective density, and classification of plant populations. Russian Journal of Ecology. 32: 1–5. https://doi.org/10.1023/A:100953612891210.1023/A:1009536128912 Search in Google Scholar

Zlobin, Yu.A., 1989. Printsipyi i metodyi izucheniya tsenoticheskih populyatsiy rasteniy: Uchebnometodicheskoe posobie [Principles and methods for the study of the coenotical plant populations]. Kazan: Izdatelstvo Kazanskogo universiteta. 147 p. Search in Google Scholar

eISSN:
1338-7014
Lingua:
Inglese
Frequenza di pubblicazione:
2 volte all'anno
Argomenti della rivista:
Life Sciences, other, Plant Science, Zoology, Ecology