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The development of new research methods on the molecular level observed in recent years has opened unique possibilities of characterization and investigation of genome structure. It is necessary to know merits and limitations of these methods before their introducing into basic genetic research as weil as in applied breeding. The most important methods of protein and DNA molecules variability testing were discussed and their properties were compared in this article. Their application in different genetic investigations confirmed the usefulness of these methods for characterization of collection and plant breeding materials, for analysis of genome structure, as well as for taxonomy and phylogeny of plant species.
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Genetic variability of yew (Taxus baccata L.) trees in seven nature reserves (Jasień, Czarne Człu− chowskie, Choczewo, Wierzchlas, Wirty, Rokita and Mogilno/Stary Sącz) in Poland was investigated by RAPD methods. The results showed high genetic differences between populations ranging from 22.7% among the population of Stary Sącz and hedge (+) to 86.1% between Wierzchlas and Rokita (+). Based on the results of RAPD analyses, the studied populations were divided into three groups of similarity. The first include Jasień and Choczewo the populations, the second Rokita (+), hedge (–) and Stary Sącz, and the third remaining populations. High level of genetic diversity was showed among the studied populations, is essential to the adaptability of the population of yew. This theoretically increases the chances of survival species thanks to the possibility of passing to preferred combinations of genes to the future generations.
The aim of our study was to evaluate the genetic relationship of Rhododendrons from Rhododendron collection at Tomaszkowice in Pogórze Wielickie. Leaves and leaf buds of three evergreen Asiatic species: R. aureum, R. brachycarpum, R. purdomii, six cultivars from Catawbiense Hybridum group (R. catawbiense): Catharine van Tol, Nova Zembla, Album Novum, Boursoult, Old Port, Hachmann’s Charmant and one cultivar from Yakushimanum Hybridum group: Koichiro Wada were investigated. Two plants from each accession were analysed. DNA was isolated by Ziegenhagen and Scholz [1998] protocol, dedicated to the difficult species in terms of high quality DNA extraction. After isolation, DNA was amplified with 19 RAPD primers. We obtained 255 RAPD markers and worked out a dendrogram, which illustrated the level of genetic diversity among the tested plants. Our study confirmed a close relationship between rhododendrons from Catawbiense Hybridum group. Another group was constituted by R. aureum and R. purdomii. The third group consisted of R. brachycarpum and Koichiro Wada cv.
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