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研究论文

长白山过渡带红松和鱼鳞云杉径向生长对气候因子的响应

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  • 北京林业大学省部共建森林培育与保护教育部重点实验室, 北京 100083

收稿日期: 2010-03-11

  录用日期: 2010-08-25

  网络出版日期: 2011-01-24

Response of Pinus koraiensis and Picea jezoensis var. komarovii to climate in the transition zone of Changbai Mountain, China

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  • Key Laboratory for Silviculture and Conservation of Ministry of Education, Beijing Forestry University, Beijing 100083, China

Received date: 2010-03-11

  Accepted date: 2010-08-25

  Online published: 2011-01-24

摘要

利用树轮生态学方法, 研究了长白山阔叶红松林和暗针叶林过渡带优势树种红松(Pinus koraiensis)和鱼鳞云杉(Picea jezoensis var. komarovii)的生长特征及其与气候因子的关系, 以期揭示气候响应关系的种间差异性。结果表明, 红松和鱼鳞云杉年平均径向生长量与生理年龄显著相关, 红松先于鱼鳞云杉达到最大年生长量, 且红松年平均生长速率显著高于鱼鳞云杉(p < 0.001); 红松和鱼鳞云杉对气候的响应存在差异, 红松与7月份的月平均温度和降水显著正相关, 而鱼鳞云杉与5月平均温度显著正相关, 与5月降水显著负相关。响应面分析进一步证实, 红松生长主要与生长季温度和降水相关, 而生长季初期的降水是限制鱼鳞云杉生长的主要原因。全球变暖有利于红松径向生长, 红松种群有向高海拔上升的可能。

本文引用格式

高露双, 王晓明, 赵秀海 . 长白山过渡带红松和鱼鳞云杉径向生长对气候因子的响应[J]. 植物生态学报, 2011 , 35(1) : 27 -34 . DOI: 10.3724/SP.J.1258.2011.00027

Abstract

Aims Our objective was to reveal the climate sensitivity of Pinus koraiensis and Picea jezoensis var. komarovii.
Methods We used dendroecological methods to analyze growth characteristics and responses to climate of Pinus koraiensis and Picea jezoensis var. komarovii, dominant species in the transition of broad-leaved Korean pine forest and dark coniferous forest in Changbai Mountain, China, to reveal their climate sensitivity.
Important findings Radial growth of both species was significantly correlated with the age. Maximum annual growth occurred earlier in Pinus koraiensis than Picea jezoensis var. komarovii. Annual growth rate was significantly higher in Pinus koraiensis than Picea jezoensis var. komarovii (p < 0.001). Response to climate also differed. Radial growth of Pinus koraiensis was significantly positively correlated with monthly mean temperature in July and precipitation in September (p < 0.05). However, radial growth in Picea jezoensis var. komarovii was significantly positively related to monthly mean and maximum temperature in May and was negatively related to May precipitation. Results from response surface analysis suggested that radial growth was mainly controlled by the temperature and precipitation of the growing season, but precipitation during the early growing season was the most important factor for growth of Picea jezoensis var. komarovii. Global warming will favor radial growth of Pinus koraiensis, and this species will be able to extend to higher elevation.

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参考文献

[1] Armstrong W, Jackson MB, Br?ndle R (1994). Mechanism of flood tolerance in plants. Acta Botanica Neerlandica, 43, 307-358.
[2] Bai RH (白人海), Guo JL (郭家林) (1985). Correlation between the phenomenon of ENSO and the atmospheric circulation in northern hemisphere, and the low temperatures in Heilongjiang Province. Journal of Tropical Meteorology (热带气象), 1, 264-268. (in Chinese with English abstract)
[3] Berninger F (1997). Effects of drought and phenology on GPP in Pinus sylvestris: a simulation study along a geographical gradient. Functional Ecology, 11, 33-42.
[4] Biondi F, Waikul K (2004). DENDROCLIM2002: AC++ program for statistical calibration of climate signals in tree- ring chronologies. Computer & Geoscience, 30, 303-311.
[5] Chen LX (陈隆勋), Zhu WQ (朱文琴) (1998). The climate change in China in nearly 45 years. Acta Meteorologica Sinica (气象学报), 56, 257-271. (in Chinese with English abstract)
[6] Cook ER, Holmes RL (1986). Users Manual for ARSTAN. Laboratory of Tree-ring Research, University of Arizona, Tucson, AZ, USA.
[7] Davi H, Dufreane E, Francois C, Le MG, Loustau D, Bosc A, Rambal S, Granier A, Moors E (2006). Sensitivity of water and carbon fluxes to climate changes from 1960 to 2100 in European forest ecosystems. Agricultural and Forest Meteorology, 141, 35-56.
[8] Duncan R (1989). An evaluation of errors in tree age estimates based on increment cores in kahikatea ( Dacrycarpus dacrydioides). New Zealand Natural Sciences, 16, 31-37.
[9] Easterling DR, Evans JL, Groisman PY, Karl TR (2000). Observed variability and trends in extreme climate events: a brief review. Bulletin of American Meteorology Society, 8, 417-425.
[10] Eilmann B, Weber P, Rigling A, Eckstein D (2006). The influence of drought on the wood structure of Pinus sylvestris L. and Quercus pubescens Willd in Valais, Switzerland. Dendrochronologia, 23, 121-132.
[11] Fritts HC (1976). Tree Rings and Climate. Academic Press, New York. 261-268.
[12] Gao XJ (高学杰), Zhao ZC (赵宗慈), Ding YH (丁一汇) (2003). Climate change due to greenhouse effects in China as simulated by a regional climate model (Part II). Acta Meteorologica Sinica (气象学报), 61, 30-38. (in Chinese with English abstract)
[13] Goldblum D, Rigg LS (2005). Tree growth response to climate change at the deciduous-boreal forest ecotone, Ontario, Canada. Canadian Journal of Forest Research, 35, 2709-2718.
[14] Guetter PJ, Kutzbach JE (1990). A modified Koppen classification applied to model simulations of glacial and interglacial climates. Climate Change, 16, 193-215.
[15] Guo QY (郭其蕴) (1983). Analysis of the intensity index and the change of East Asia wind. Acta Geographica Sinica (地理学报), 38, 207-217. (in Chinese with English abstract)
[16] Han SJ (韩士杰), Liao LP (廖利平), Jiang FQ (姜凤岐) (1998). Considerations on forest interface ecology. Chinese Journal of Applied Ecology (应用生态学报), 9, 538-542. (in Chinese with English abstract)
[17] He JS, Zhang QB, Bazzaz FA (2005). Differential drought responses between saplings and adult trees in four co-occurring species of New England. Trees, 19, 442-450.
[18] Holmes RL (1983). Computer-assisted quality control in tree- ring dating and measurement. Tree-Ring Bulletin, 43, 69-75.
[19] IPCC (Intergovernmental Panel on Climate Change)) (2001). Contribution of Working Group I to the third assessment report of the intergovernmental panel on climate change. In: Houghton JT, Ding Y, Griggs DG, Noguer M, Linden PJ, Xiaosu D eds. Climate Change in 2001: the Scientific Basis. Cambridge University Press, Cambridge, UK.
[20] IPCC (Intergovernmental Panel on Climate Change) (2007). Contribution of Working Group I to the fourth assessment report of the IPCC intergovernmental panel on climate change In: Solomon S, Qin D, Manning M, Chen Z, Marquis M, Averyt KB, Tignor M, Miller HL eds. Climate Change in 2007: the Physical Science Basis. Cambridge University Press, Cambridge, UK.
[21] Kendall MG (1970). Rank Correlation Methods. Griffin, London. 125-130.
[22] Kohler MA (1949). On the use of double-mass analysis for testing the consistency of meteorological records and for making required adjustments. Bulletin of the American Meteorology Society, 82, 96-97.
[23] Kozlowski TT, Pallardy SG (1997). Growth Control in Woody Plants. Academic Press, San Diego, USA.
[24] Kramer K, Leinonen I, Loustau D (2000). The importance of phenology for the evaluation of impact of climate change on growth of boreal, temperate and Mediterranean forests ecosystems: an overview. International Journal of Biometeorology, 44, 67-75.
[25] Kroon H, Schieving F (1991). Resource allocation patterns as a function of clonal morphology: a general model applied to a foraging clonal plant. Ecology, 9, 519-530.
[26] Liu GH (刘国华), Fu BJ (傅伯杰) (2001). Effects of global climate change on forest ecosystems. Journal of Natural Resource (自然资源学报), 16, 71-78. (in Chinese with English abstract)
[27] Liu S (刘实), Wang N (王宁) (2001). The effect of previous ENSO event to the summer temperature in the northeast. Journal of Tropical Meteorology (热带气象学报), 17, 314-319. (in Chinese with English abstract)
[28] Liu SE (刘慎谔) (1955). Northeast Woody Plant Logos (东北木本植物志). Science Press, Beijing. (in Chinese)
[29] Liu SE (刘慎谔) (1985). Dynamical Geo-botany―Basic Theory and Its Application (动态地植物学――基本理论的探讨及其应用). Science Press, Beijing. (in Chinese)
[30] Nicholls N, Gruza GV, Jouzel J, Karl TR, Ogallo LA, Parker DE (1996). Observed climate variability and change. In: Houghton JT, Filho-Meira LG, Callander BA, Harris N, Kattenberg A, Maskell K eds. The Science of Climatic Change. Cambridge University Press, Cambridge, UK. 132-192.
[31] Norton DA, Palmer JG, Ogden J (1987). Dendroecological studies in New Zealand. I. An evaluation of tree age estimates based on increment cores. New Zealand Journal of Botany, 25, 373-383.
[32] Rigling A, Br?ker O, Schneiter G, Schweingruber F (2002). Intra-annual tree-ring parameters indicating differences in drought stress of Pinus sylvestris forests within the Erico-Pinion in the Valais (Switzerland). Plant Ecology, 163, 105-121.
[33] Stephenson PL, Demetry A (1995). Estimating ages of giant sequoias. Canadian Journal of Forest Research, 25, 223-233.
[34] Sun R (孙睿), Zhu QJ (朱启疆) (2001). Effects of climate change of terrestrial net primary production in China. Journal of Remote Sensing (遥感学报), 5, 58-61. (in Chinese with English abstract)
[35] Vicente RZ (2003). Tree age estimates in Fagus sylvatica and Quercus robur: testing previous and improved methods. Plant Ecology, 167, 193-212.
[36] Walther GR (2003). Plants in a warmer world. Perspectives in Plant Ecology, Evolution and Systematics, 6, 169-185.
[37] Wang J (王冀), Jiang ZH (江志红), Ding YG (丁裕国) (2008). Multi-Model Ensemble prediction of extreme temperature indices in China. Resource Science (资源科学), 30, 1084-1092. (in Chinese with English abstract)
[38] Weber P, Bugmann H, Rigling A (2007). Radial growth responses to drought of Pinus sylvestris and Quercus pubescens in an inner-alpine dry valley. Journal of Vegetation Science, 18, 777-792.
[39] Wu XD (吴祥定) (1990). Tree-Ring and Climate Change (树木年轮与气候变化). Meteorology Press, Beijing. (in Chinese)
[40] Wu XD (吴祥定), Shao XM (邵雪梅) (1997). Reconstruction of climate change on Changbai Mountain, Northeast China using tree-ring data. Quaternary Sciences (第四纪研究), 1, 76-85. (in Chinese with English abstract)
[41] Yang SY (杨素英), Wang QQ (王谦谦) (2003). The abnormal spatial and temporal changes of the summer temperature in nearly 50 a in the Northeast of China. Journal of Nanjing Institute of Meteorology (南京气象学院学报), 26, 653-660. (in Chinese with English abstract)
[42] Yu DP (于大炮), Wang SZ (王顺忠), Tang LN (唐立娜), Dai LM (代力民), Wang QL (王庆礼), Wang SX (王绍先) (2005). Relationship between tree-ring chronology of Larix olgensis in Changbai Mountains and the climate change. Chinese Journal of Applied Ecology (应用生态学报), 16, 14-20. (in Chinese with English abstract)
[43] Yu DP (于大炮), Zhai LJ (翟连江), Dai LM (代力民), Wang QL (王庆礼) (2006). Dynamics of dominant tree species in a forest ecotone on the northern slop of Changbai Mountain. Journal of Forestry Research (林业研究), 17, 216-220. (in Chinese with English abstract)
[44] Yu DP (于大炮), Zhou L (周莉), Dong BL (董百丽), Dai LM (代力民), Wang QL (王庆礼) (2004). Structure and dynamics of Betula ermanii population on the Northern slope of Changbai Mountain. Chinese Journal of Ecology (生态学杂志), 23, 30-34. (in Chinese with English abstract)
[45] Yueh-Hsin L, Blanco JA, Brad S, Welham C, Kimmins JP (2010). Relationships between climate and tree radial growth in interior British Columbia, Canada. Forest Ecology and Management, 259, 932-942.
[46] Zhang HS (张寒松), Han SJ (韩士杰), Li YW (李玉文), Zhang JH (张军辉) (2007). Reconstruction of temporal variations of precipitation Changbai Mountains area over past 240 years by using tree-ring width data. Chinese Journal of Ecology (生态学杂志), 26, 1924-1929. (in Chinese with English abstract)
[47] Zhang QB, Alfaro RI, Hebda RJ (1999). Dendroecological studies of tree growth, climate and spruce beetle outbreaks in Central British Columbia, Canada. Forest Ecology and Management, 121, 215-225.
[48] Zhao ZC (赵宗慈), Wang SW (王绍武), Luo Y (罗勇) (2007). The assessment and predictor of the increasing temperature since the founding of IPCC. Advances in Climate Change (气候变化研究进展), 3(3), 183-184. (in Chinese with English abstract)
[49] Zhou Y (周园), Zou CJ (邹春静), Xu WD (徐文铎) (2009). Study on the relationship between global warming and vegetation distribution in Northeast China. Journal of Anhui Agriculture Science (安徽农业科学), 37, 5229-5231. (in Chinese with English abstract)
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