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Original Articles

Can viable pollen carry Scots pine genes over long distances?

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Pages 64-69 | Accepted 03 Jun 1994, Published online: 01 Sep 2009

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Tzvetelina Zagorcheva, Krasimir Rusanov, Eirini Bosmali, Andreas Savvides, Panagiotis Madesis, Vasileios Fotopoulos, Mila Rusanova, Filip Ustabashiev & Ivan Atanassov. (2024) SRAP markers for characterization of the genetic diversity and differentiation of Pinus nigra populations in protected forested areas in Bulgaria, Greece, and Cyprus. Biotechnology & Biotechnological Equipment 38:1.
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Tomas Funda, Ulfstand Wennström, Curt Almqvist, Takeshi Torimaru, Bengt Andersson Gull & Xiao-Ru Wang. (2015) Low rates of pollen contamination in a Scots pine seed orchard in Sweden: the exception or the norm?. Scandinavian Journal of Forest Research 30:7, pages 573-586.
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Hajime Ozawa, Atsushi Watanabe, Kentaro Uchiyama, Yoko Saito & Yuji Ide. (2012) Genetic diversity of Pinus densiflora pollen flowing over fragmented populations during a mating season. Journal of Forest Research 17:6, pages 488-498.
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Hanna Ranta, Catherina Sokol, Sheila Hicks, Saini Heino & Eero Kubin. (2008) How do airborne and deposition pollen samplers reflect the atmospheric dispersal of different pollen types? An example from northern Finland. Grana 47:4, pages 285-296.
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Articles from other publishers (63)

Alina K. Niskanen, Sonja T. Kujala, Katri Kärkkäinen, Outi Savolainen & Tanja Pyhäjärvi. (2024) Does the seed fall far from the tree? Weak fine-scale genetic structure in a continuous Scots pine population. Peer Community Journal 4.
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Darius Danusevičius, Om P. Rajora, Darius Kavaliauskas, Virgilijus Baliuckas & Algirdas Augustaitis. (2024) Stronger genetic differentiation among within-population genetic groups than among populations in Scots pine provides new insights into within-population genetic structuring. Scientific Reports 14:1.
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Darius Danusevicius, Om P. Rajora, Darius Kavaliauskas, Virgilijus Baliuckas & Algirdas Augustaitis. (2023) Genetic diversity and fine-scale spatial genetic structure of unmanaged old-growth versus managed second-growth populations of Scots pine (Pinus sylvestris L.) in Lithuania. European Journal of Forest Research 142:4, pages 773-793.
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Csaba Mátyás. (2023) Migratory, Genetic and Phenetic Response Potential of Forest Tree Populations Facing Climate Change. Acta Silvatica et Lignaria Hungarica 2:1, pages 33-46.
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Azucena Jiménez‐Ramírez, Aida Solé‐Medina, José A. Ramírez‐Valiente & Juan J. Robledo‐Arnuncio. (2023) Microgeographic variation in early fitness traits of Pinus sylvestris from contrasting soils . American Journal of Botany 110:4.
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Artur Pliszko & Artur Górecki. (2022) Potencjał inwazyjny obcych drzew i krzewów iglastych uprawianych jako choinki w Polsce. Wiadomości Botaniczne 66.
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Paweł Przybylski, Anna Tereba, Joanna Meger, Iwona Szyp-Borowska & Łukasz Tyburski. (2022) Conservation of Genetic Diversity of Scots Pine (Pinus sylvestris L.) in a Central European National Park Based on cpDNA Studies. Diversity 14:2, pages 93.
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Azucena Jiménez-Ramírez, Delphine Grivet & Juan José Robledo-Arnuncio. (2021) Measuring recent effective gene flow among large populations in Pinus sylvestris: Local pollen shedding does not preclude substantial long-distance pollen immigration. PLOS ONE 16:8, pages e0255776.
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Rūta Kembrytė, Darius Danusevičius, Jurata Buchovska, Virgilijus Baliuckas, Darius Kavaliauskas, Barbara Fussi & Marta Kempf. (2021) DNA-based tracking of historical introductions of forest trees: the case of European beech (Fagus sylvatica L.) in Lithuania. European Journal of Forest Research 140:2, pages 435-449.
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Darius Danusevičius, Jurata Buchovska, Vladas Žulkus, Linas Daugnora & Algirdas Girininkas. (2021) DNA Markers Reveal Genetic Associations among 11,000-Year-Old Scots Pine (Pinus sylvestris L.) Found in the Baltic Sea with the Present-Day Gene Pools in Lithuania. Forests 12:3, pages 317.
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Paweł Bogawski, Katarzyna Borycka, Łukasz Grewling & Idalia Kasprzyk. (2019) Detecting distant sources of airborne pollen for Poland: Integrating back-trajectory and dispersion modelling with a satellite-based phenology. Science of The Total Environment 689, pages 109-125.
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P González-Díaz, S Cavers, GR Iason, A Booth, J Russell & AS Jump. (2018) Weak isolation by distance and geographic diversity gradients persist in Scottish relict pine forest. iForest - Biogeosciences and Forestry 11:4, pages 449-458.
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Claire G. Williams & Viviane Després. (2017) Northern Hemisphere forests at temperate and boreal latitudes are substantial pollen contributors to atmospheric bioaerosols. Forest Ecology and Management 401, pages 187-191.
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Matthew D. Miller. (2016) The Modifiable Conceptual Unit Problem demonstrated using pollen and seed dispersal. Global Ecology and Conservation 6, pages 93-104.
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Leila Pazouki, Parvin Salehi Shanjani, Peter D. Fields, Karina Martins, Marina Suhhorutšenko, Haldja Viinalass & Ülo Niinemets. (2015) Large within-population genetic diversity of the widespread conifer Pinus sylvestris at its soil fertility limit characterized by nuclear and chloroplast microsatellite markers. European Journal of Forest Research 135:1, pages 161-177.
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