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Interannual growth response of Norway spruce to climate along an altitudinal gradient in the Tatra Mountains, Poland
Authors:Yuliya Savva  Jacek Oleksyn  Peter B Reich  Mark G Tjoelker  Eugene A Vaganov  Jerzy Modrzynski
Institution:(1) Department of Dendroecology, Forest Institute, Akademgorodok, Krasnoyarsk, 660036, Russia;(2) Polish Academy of Sciences, Institute of Dendrology, Parkowa 5, PL-62-035 Kórnik, Poland;(3) Department of Forest Resources, University of Minnesota, 115 Green Hall, 1530 Cleveland Avenue North, St. Paul, MN 55108, USA;(4) Department of Forest Science, Texas A&M University, 2135 TAMU, College Station, TX 77843-2135, USA;(5) Department of Silviculture, Agricultural University of Poznan, Wojska Polskiego 69, 60-625, PL, Poznan, Poland;(6) Départment des sciences biologiques, CP 8888 Succ. Centre ville, Montréal, Québec, Canada, H3C 3P8
Abstract:Ring-width chronologies of Picea abies (L.) Karst. from ten sites in the Tatra Mountains, Poland, were developed to explore growth/climate responses in stands along an altitudinal gradient ranging from 839 to 1468 m a.s.l. There were positive relationships between current-year radial growth and mean monthly temperatures in March, April, June and July, but with increasing elevation, the strength of this correlation declined for March–April and increased for June–July temperatures. The mean monthly temperature in October of the previous year positively influenced radial growth of trees at all sites. Lower mean temperatures in January negatively affected growth of trees at the high-elevation sites. Trees at the low-elevation sites responded positively to a warm early spring, whereas trees at the high-elevation sites showed positive growth responses to higher summer temperatures. Growth of trees at the high-elevation sites was better explained by the temperature regime than was growth at the lower-elevation sites. Therefore, it is likely that these sites may be particularly sensitive to potential effects of temperature change.
Keywords:Altitudinal gradient  Dendroclimatology                  Picea abies                Tree rings
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