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Effect of meteorological factors on the radial growth of pine latewood in northern taiga


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Antonova, A.A., Stasova V.V. 2015. Seasonal distribution of processes responsible for radial diameter and wall thickness of Scots pine tracheids. Siberian Journal of Forest Science, 2, 33–40. DOI: 10.15372/SJFS20150203 AntonovaA.A. StasovaV.V. 2015 Seasonal distribution of processes responsible for radial diameter and wall thickness of Scots pine tracheids Siberian Journal of Forest Science 2 33 40 10.15372/SJFS20150203 Open DOISearch in Google Scholar

Bolbotunov, A.A, Degtjareva, E.V 2020. Features of the seasonal annual increment of conifers wood in forests in the north of Belarus (in Russian). Herald of Polotsk State University. Series F. Civil Engineering Applied Sciences, 8, 29–32. BolbotunovA.A DegtjarevaE.V. 2020 Features of the seasonal annual increment of conifers wood in forests in the north of Belarus (in Russian) Herald of Polotsk State University. Series F. Civil Engineering Applied Sciences 8 29 32 Search in Google Scholar

Campelo, F., Nabais, C., Freitas, H., Gutiérrez, E. 2007. Climatic significance of tree-ring width and intra-annual density fluctuations in Pinus pinea from a dry Mediterranean area in Portugal. Annals of Forest Science, 64, 229–238. DOI: 10.1051/forest:2006107 CampeloF. NabaisC. FreitasH. GutiérrezE. 2007 Climatic significance of tree-ring width and intra-annual density fluctuations in Pinus pinea from a dry Mediterranean area in Portugal Annals of Forest Science 64 229 238 10.1051/forest:2006107 Open DOISearch in Google Scholar

Deslauriers, A., Morin, H., Begin, Y. 2003. Cellular phenology of annual ring formation of Abies balsamea in the Quebec boreal forest (Canada). Canadian Journal of Forest Research, 33, 190–200. DOI: 10.1139/x02-178 DeslauriersA. MorinH. BeginY. 2003 Cellular phenology of annual ring formation of Abies balsamea in the Quebec boreal forest (Canada) Canadian Journal of Forest Research 33 190 200 10.1139/x02-178 Open DOISearch in Google Scholar

Ennos, A.R. 1997. Wind as an ecological factor. Trends in Ecology and Evolution, 12, 108–111. EnnosA.R. 1997 Wind as an ecological factor Trends in Ecology and Evolution 12 108 111 10.1016/S0169-5347(96)10066-5 Search in Google Scholar

Feklistov, P.A., Evdokimov, V.N., Barzut, V.M. 1997. Biological and ecological features of pine growth in the northern subzone of the European taiga (in Russian). CPI AGTU, Arkhangelsk, Russia. FeklistovP.A. EvdokimovV.N. BarzutV.M. 1997 Biological and ecological features of pine growth in the northern subzone of the European taiga (in Russian) CPI AGTU Arkhangelsk, Russia Search in Google Scholar

Forests of the USSR. 1966. Vol. 1. Forests of the northern and middle taiga of the European part of the USSR (in Russian). Nauka, Moscow, USSR. Forests of the USSR 1966 Vol. 1. Forests of the northern and middle taiga of the European part of the USSR (in Russian) Nauka Moscow, USSR Search in Google Scholar

Grace, J. 1988. Plant response to wind. Agriculture. Ecosystems and Environment, 22/23, 71–88. GraceJ. 1988 Plant response to wind. Agriculture Ecosystems and Environment 22/23 71 88 10.1016/0167-8809(88)90008-4 Search in Google Scholar

Huang, J.G., Bergeron, Y., Zhai, L.H., Denneler, B. 2011. Variation in intra-annual radial growth (xylem formation) of Picea mariana (Pinaceae) along a latitudinal gradient in western Quebec, Canada. American Journal of Botany, 98, 792–800. DOI: 10.3732/ajb.1000074 HuangJ.G. BergeronY. ZhaiL.H. DennelerB. 2011 Variation in intra-annual radial growth (xylem formation) of Picea mariana (Pinaceae) along a latitudinal gradient in western Quebec, Canada American Journal of Botany 98 792 800 10.3732/ajb.100007421613181 Open DOISearch in Google Scholar

Jeong, G.Y., Zink-Sharp, A., Hindman, D.P. 2009. Tensile properties of earlywood and latewood from Loblolly pine (Pinus taeda) using digital image correlation. Wood Fiber Science, 41 (1), 51–63. JeongG.Y. Zink-SharpA. HindmanD.P. 2009 Tensile properties of earlywood and latewood from Loblolly pine (Pinus taeda) using digital image correlation Wood Fiber Science 41 1 51 63 Search in Google Scholar

Kellomäki, S. 1979. The effect of solar radiation and air temperature on basic density of Scots pine wood. Silva Fennica, 13, 304–315. KellomäkiS. 1979 The effect of solar radiation and air temperature on basic density of Scots pine wood Silva Fennica 13 304 315 10.14214/sf.a14905 Search in Google Scholar

Kilpeläinen, A., Peltola, H., Ryyppö, A., Sauvala, K., Laitinen, K., Kellomäki, S. 2003. Wood properties of Scots pines (Pinus sylvestris) grown at elevated temperature and carbon dioxide concentration. Tree Physiology, 23 (13), 889–897. DOI: 10.1093/tree-phys/23.13.889 KilpeläinenA. PeltolaH. RyyppöA. SauvalaK. LaitinenK. KellomäkiS. 2003 Wood properties of Scots pines (Pinus sylvestris) grown at elevated temperature and carbon dioxide concentration Tree Physiology 23 13 889 897 10.1093/tree-phys/23.13.889 Open DOISearch in Google Scholar

Kimmins, J.P. 1987. Forest Ecology. Macmillan, New York, Collier Macmillan, London. KimminsJ.P. 1987 Forest Ecology Macmillan New York Collier Macmillan London Search in Google Scholar

Kiseleva, A.V., Platonova, A.S. 2016. Assessment of the quality of common pine wood by the percentage of late wood (in Russian). New Science: Strategies and Vectors of Development, 3–2 (70), 110–113. KiselevaA.V. PlatonovaA.S. 2016 Assessment of the quality of common pine wood by the percentage of late wood (in Russian) New Science: Strategies and Vectors of Development 3–2 70 110 113 Search in Google Scholar

Kiseleva, A.V., Sakharova, V.N. 2014. Changes in the percentage of late wood along the radius of trunks of scots pine under different environmental conditions (in Russian). Actual Directions of Scientific Researches of the XXI Century: Theory and Practice, 2 (2, 1), 240–246. DOI: 10.12737/3010 KiselevaA.V. SakharovaV.N. 2014 Changes in the percentage of late wood along the radius of trunks of scots pine under different environmental conditions (in Russian) Actual Directions of Scientific Researches of the XXI Century: Theory and Practice 2 2, 1 240 246 10.12737/3010 Open DOISearch in Google Scholar

Kosichenko, N.E., Kiseleva, A.V., Snegireva, S.N. 2011. Patterns of formation of high-quality wood (in Russian). Forest Engineering Journal, 4, 68–72. KosichenkoN.E. KiselevaA.V. SnegirevaS.N. 2011 Patterns of formation of high-quality wood (in Russian) Forest Engineering Journal 4 68 72 Search in Google Scholar

Koval, I. 2013. Climatic signal in earlywood, latewood and total ring width of Crimean pine (Pinus nigra subsp. pallasiana) from Crimean Mountains, Ukraine. Baltic Forestry, 19 (2), 245–251. KovalI. 2013 Climatic signal in earlywood, latewood and total ring width of Crimean pine (Pinus nigra subsp. pallasiana) from Crimean Mountains, Ukraine Baltic Forestry 19 2 245 251 Search in Google Scholar

Lebourgeois, F. 2000. Climatic signals in earlywood, latewood and total ring width of Corsican pine from western France. Annals of Forest Science, 57 (2), 155–164. LebourgeoisF. 2000 Climatic signals in earlywood, latewood and total ring width of Corsican pine from western France Annals of Forest Science 57 2 155 164 10.1051/forest:2000166 Search in Google Scholar

Leikola, M. 1969. The influence of environmental factors on the diameter growth of forest trees. Auxanometric study. Acta Forestalia Fennica, 92, 1–144. LeikolaM. 1969 The influence of environmental factors on the diameter growth of forest trees. Auxanometric study Acta Forestalia Fennica 92 1 144 10.14214/aff.7610 Search in Google Scholar

Miina, J. 2000. Dependence of tree-ring, earlywood and latewood indices of Scots pine and Norway spruce on climatic factors in eastern Finland. Ecological Modelling, 132, 259–273. MiinaJ. 2000 Dependence of tree-ring, earlywood and latewood indices of Scots pine and Norway spruce on climatic factors in eastern Finland Ecological Modelling 132 259 273 10.1016/S0304-3800(00)00296-9 Search in Google Scholar

Mikola, P. 1950. On variations in tree growth and their significance to growth studies. Communicationes Instituti Forestalis Fenniae, 38, 1–131. MikolaP. 1950 On variations in tree growth and their significance to growth studies Communicationes Instituti Forestalis Fenniae 38 1 131 Search in Google Scholar

Peltola, H., Gort, J., Pulkkinen, P., Zubizarreta Gerendiain, A., Karppinen, J., Ikonen, V. 2009. Differences in growth and wood density traits in Scots pine (Pinus sylvestris L.) genetic entries grown at different spacing and sites. Silva Fennica, 43 (3), 339–354. PeltolaH. GortJ. PulkkinenP. Zubizarreta GerendiainA. KarppinenJ. IkonenV. 2009 Differences in growth and wood density traits in Scots pine (Pinus sylvestris L.) genetic entries grown at different spacing and sites Silva Fennica 43 3 339 354 10.14214/sf.192 Search in Google Scholar

Polubojarinov, O.I. 1976. Wood density (in Russian). Forest Industry, Moscow, USSR. PolubojarinovO.I. 1976 Wood density (in Russian) Forest Industry Moscow, USSR Search in Google Scholar

Pritzkow, C., Heinrich, I., Grudd, H., Helle, G. 2014. Relationship between wood anatomy, tree-ring widths and wood density of Pinus sylvestris L. and climate at high latitudes in northern Sweden. Dendrochronologia, 32 (4), 295–302. DOI: 10.1016/j.dendro.2014.07.003 PritzkowC. HeinrichI. GruddH. HelleG. 2014 Relationship between wood anatomy, tree-ring widths and wood density of Pinus sylvestris L. and climate at high latitudes in northern Sweden Dendrochronologia 32 4 295 302 10.1016/j.dendro.2014.07.003 Open DOISearch in Google Scholar

Rinn, F. 2003. TSAP-Win TM: Time series analysis and presentation for dendrochronology and related applications. Rinntech Heidelberg, Heidelberg. RinnF. 2003 TSAP-Win TM: Time series analysis and presentation for dendrochronology and related applications Rinntech Heidelberg Heidelberg Search in Google Scholar

Saikku, O. 1975. The effect of fertilization on the basic density at Scots pine (Pinus sylvestris L.). A densiometric study on the x-ray chart curves of wood. Communicationes Instituti Forestalis Fenniae, 85, 1–49. SaikkuO. 1975 The effect of fertilization on the basic density at Scots pine (Pinus sylvestris L.). A densiometric study on the x-ray chart curves of wood Communicationes Instituti Forestalis Fenniae 85 1 49 Search in Google Scholar

Shchekalyov, R.V., Korovin, V.V., Tarkhanov, S.N. 2005. The content of late wood in the annual ring of scots pine (in Russian). Actual Problems of the Forest Complex, 10, 71–74. ShchekalyovR.V. KorovinV.V. TarkhanovS.N. 2005 The content of late wood in the annual ring of scots pine (in Russian) Actual Problems of the Forest Complex 10 71 74 Search in Google Scholar

Smith, D.M., Jarvis, P.G. 1998. Physiological and environmental control of transpiration by trees in wind breaks. Forest Ecology and Management, 105 (1/3), 159–173. DOI: 10.1016/S0378-1127(97)00292-2 SmithD.M. JarvisP.G. 1998 Physiological and environmental control of transpiration by trees in wind breaks Forest Ecology and Management 105 1/3 159 173 10.1016/S0378-1127(97)00292-2 Open DOISearch in Google Scholar

Soultson, S.M. 2018. The influence of growing conditions on the growth of scots pine (in Russian). Bulletin of Modern Research, 5.3 (20), 20–22. SoultsonS.M. 2018 The influence of growing conditions on the growth of scots pine (in Russian) Bulletin of Modern Research 5.3 20 20 22 Search in Google Scholar

Zhai, L., Bergeron, Y., Huang, J.G., Berninger, F. 2012. Variation in intra-annual wood formation, and foliage and shoot development of three major Canadian boreal tree species. American Journal of Botany, 99, 827–837. DOI: 10.3732/ajb.1100235 ZhaiL. BergeronY. HuangJ.G. BerningerF. 2012 Variation in intra-annual wood formation, and foliage and shoot development of three major Canadian boreal tree species American Journal of Botany 99 827 837 10.3732/ajb.1100235 Open DOISearch in Google Scholar

Zhu, J.J., Matsuzaki, T., Sakioka, K. 2000. Wind speeds within a single crown of Japanese black pine (Pinus thunbergii Parl.). Forest Ecology and Management, 135, 19–31. DOI: 10.1016/S0378-1127(00)00295-4 ZhuJ.J. MatsuzakiT. SakiokaK. 2000 Wind speeds within a single crown of Japanese black pine (Pinus thunbergii Parl.) Forest Ecology and Management 135 19 31 10.1016/S0378-1127(00)00295-4 Open DOISearch in Google Scholar

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Life Sciences, Plant Science, Medicine, Veterinary Medicine