Experimental warming studies on tree species and forest ecosystems: a literature review

被引:94
作者
Chung, Haegeun [1 ]
Muraoka, Hiroyuki [2 ]
Nakamura, Masahiro [3 ]
Han, Saerom [4 ]
Muller, Onno [5 ,6 ]
Son, Yowhan [4 ]
机构
[1] Konkuk Univ, Dept Environm Engn, Seoul 143701, South Korea
[2] Gifu Univ, Inst Basin Ecosyst Studies, Gifu 5011193, Japan
[3] Hokkaido Univ, Nakagawa Res Stn, Field Sci Ctr Northern Biosphere, Otoineppu, Nakagawa 0982501, Japan
[4] Korea Univ, Grad Sch, Dept Environm Sci & Ecol Engn, Seoul 136713, South Korea
[5] Univ Colorado, Dept Ecol & Evolutionary Biol, Boulder, CO 80309 USA
[6] Hokkaido Univ, Field Sci Ctr Northern Biosphere, Tomakomai Res Stn, Takaoka, Tomakomai 0530035, Japan
基金
新加坡国家研究基金会;
关键词
Climate change; Forest ecosystem; Global warming; Insect-plant interaction; Nitrogen cycling; Plant phenology; TRACE GAS FLUXES; PICEA-ASPERATA SEEDLINGS; GLOBAL CLIMATE-CHANGE; BOREAL NORWAY SPRUCE; INSECT HERBIVORES; TERRESTRIAL ECOSYSTEMS; ELEVATED CO2; LEAF PHENOLOGY; SCOTS PINE; BUD BURST;
D O I
10.1007/s10265-013-0565-3
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Temperature affects a cascade of ecological processes and functions of forests. With future higher global temperatures being inevitable it is critical to understand and predict how forest ecosystems and tree species will respond. This paper reviews experimental warming studies in boreal and temperate forests or tree species beyond the direct effects of higher temperature on plant ecophysiology by scaling up to forest level responses and considering the indirect effects of higher temperature. In direct response to higher temperature (1) leaves emerged earlier and senesced later, resulting in a longer growing season (2) the abundance of herbivorous insects increased and their performance was enhanced and (3) soil nitrogen mineralization and leaf litter decomposition were accelerated. Besides these generalizations across species, plant ecophysiological traits were highly species-specific. Moreover, we showed that the effect of temperature on photosynthesis is strongly dependent on the position of the leaf or plant within the forest (canopy or understory) and the time of the year. Indirect effects of higher temperature included among others higher carbon storage in trees due to increased soil nitrogen availability and changes in insect performance due to alterations in plant ecophysiological traits. Unfortunately only a few studies extrapolated results to forest ecosystem level and considered the indirect effects of higher temperature. Thus more intensive, long-term studies are needed to further confirm the emerging trends shown in this review. Experimental warming studies provide us with a useful tool to examine the cascade of ecological processes in forest ecosystems that will change with future higher temperature.
引用
收藏
页码:447 / 460
页数:14
相关论文
共 100 条
[1]   NITROGEN SATURATION IN NORTHERN FOREST ECOSYSTEMS [J].
ABER, JD ;
NADELHOFFER, KJ ;
STEUDLER, P ;
MELILLO, JM .
BIOSCIENCE, 1989, 39 (06) :378-386
[2]  
[Anonymous], 2007, SYNTHESIS REPORT CON
[3]   Provenance-specific growth responses to drought and air warming in three European oak species (Quercus robur, Q.petraea and Q.pubescens) [J].
Arend, Matthias ;
Kuster, Thomas ;
Guenthardt-Goerg, Madeleine S. ;
Dobbertin, Matthias .
TREE PHYSIOLOGY, 2011, 31 (03) :287-297
[4]   Appropriate experimental ecosystem warming methods by ecosystem, objective, and practicality [J].
Aronson, Emma L. ;
McNulty, Steven G. .
AGRICULTURAL AND FOREST METEOROLOGY, 2009, 149 (11) :1791-1799
[5]   Differences in leaf phenology between juvenile and adult trees in a temperate deciduous forest [J].
Augspurger, CK ;
Bartlett, EA .
TREE PHYSIOLOGY, 2003, 23 (08) :517-525
[6]   Assessing the consequences of global change for forest disturbance from herbivores and pathogens [J].
Ayres, MP ;
Lombardero, MJ .
SCIENCE OF THE TOTAL ENVIRONMENT, 2000, 262 (03) :263-286
[7]   Responses of spring phenology to climate change [J].
Badeck, FW ;
Bondeau, A ;
Böttcher, K ;
Doktor, D ;
Lucht, W ;
Schaber, J ;
Sitch, S .
NEW PHYTOLOGIST, 2004, 162 (02) :295-309
[8]   Herbivory in global climate change research: direct effects of rising temperature on insect herbivores [J].
Bale, JS ;
Masters, GJ ;
Hodkinson, ID ;
Awmack, C ;
Bezemer, TM ;
Brown, VK ;
Butterfield, J ;
Buse, A ;
Coulson, JC ;
Farrar, J ;
Good, JEG ;
Harrington, R ;
Hartley, S ;
Jones, TH ;
Lindroth, RL ;
Press, MC ;
Symrnioudis, I ;
Watt, AD ;
Whittaker, JB .
GLOBAL CHANGE BIOLOGY, 2002, 8 (01) :1-16
[9]   Effects of soil warming during spring on photosynthetic recovery in boreal Norway spruce stands [J].
Bergh, J ;
Linder, S .
GLOBAL CHANGE BIOLOGY, 1999, 5 (03) :245-253
[10]   PHOTOSYNTHETIC RESPONSE AND ADAPTATION TO TEMPERATURE IN HIGHER-PLANTS [J].
BERRY, J ;
BJORKMAN, O .
ANNUAL REVIEW OF PLANT PHYSIOLOGY AND PLANT MOLECULAR BIOLOGY, 1980, 31 :491-543