Detecting potential regional effects of increased atmospheric CO2 on growth rates of western juniper

被引:69
作者
Knapp, PA [1 ]
Soulé, PT
Grissino-Mayer, HD
机构
[1] Georgia State Univ, Dept Geog & Anthropol, Atlanta, GA 30303 USA
[2] Appalachian State Univ, Dept Geog & Planning, Boone, NC 28608 USA
[3] Univ Tennessee, Dept Geog, Knoxville, TN 37996 USA
关键词
atmospheric CO2 enrichment; climate-growth responses; western juniper;
D O I
10.1046/j.1365-2486.2001.00452.x
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
Evidence of an atmospheric CO2 fertilization effect on radial growth rates was uncovered by examining climate-growth relationships for seven western juniper tree-ring chronologies in central Oregon using multiple regression models. Consistent upward trends of the residuals from dendroclimatic models indicated a decreased ability for climate parameters to predict growth with time. Additionally, an assessment was made of whether enhanced growth was detectable under drought conditions, because a major benefit of elevated atmospheric CO2 is the reduction of water stress. Mean ring indices were compared between ecologically comparable drought years, when atmospheric CO2 was lower (1896-1949), and more recent drought years that occurred under higher atmospheric CO2 concentrations (1950-96/98). The results presented herein show that: (i) residuals from climate/growth models had a significant positive trend at six of seven sites, suggesting the presence of a nonclimatic factor causing increased growth during recent decades; (ii) overall growth was 23% greater in the latter half of the 20th century; (iii) growth indices during matched drought and matched wet years were 63% and 30% greater, respectively, in the later 20th century than the earlier 20th century; and (iv) harsher sites had greater responses during drought periods between early and late periods. While it is not possible to rule out other factors, these results are consistent with expectations for CO2 fertilization effects.
引用
收藏
页码:903 / 917
页数:15
相关论文
共 69 条
[51]   PREDICTING ECOSYSTEM RESPONSES TO ELEVATED CO2 CONCENTRATIONS [J].
MOONEY, HA ;
DRAKE, BG ;
LUXMOORE, RJ ;
OECHEL, WC ;
PITELKA, LF .
BIOSCIENCE, 1991, 41 (02) :96-104
[52]   First-year growth response of trees in an intact forest exposed to elevated CO2 [J].
Naidu, SL ;
DeLucia, EH .
GLOBAL CHANGE BIOLOGY, 1999, 5 (05) :609-613
[53]  
Neftel A., 1994, TRENDS COMPENDIUM DA
[54]  
NICOLUSSI K, 1995, TREES-STRUCT FUNCT, V9, P181, DOI 10.1007/BF00195270
[55]  
NORBY RL, 1999, PLANT CELL ENVIRON, V357, P322
[56]  
Oechel W. C., 1995, GLOBAL CHANGE MEDITE, P58
[57]   Biomass production and species composition change in a tallgrass prairie ecosystem after long-term exposure to elevated atmospheric CO2 [J].
Owensby, CE ;
Ham, JM ;
Knapp, AK ;
Auen, LM .
GLOBAL CHANGE BIOLOGY, 1999, 5 (05) :497-506
[58]  
Palmer W. C., 1965, METEOROLOGICAL DROUG
[59]  
Phipps R.L., 1985, COLLECTING PREPARING
[60]   Implications of rising atmospheric carbon dioxide concentration for rangelands [J].
Polley, HW .
JOURNAL OF RANGE MANAGEMENT, 1997, 50 (06) :562-577