Plant responses to low [CO2] of the past

被引:149
作者
Gerhart, Laci M. [1 ]
Ward, Joy K. [1 ]
机构
[1] Univ Kansas, Dept Ecol & Evolutionary Biol, Lawrence, KS 66045 USA
基金
美国国家科学基金会;
关键词
glacial plants; Last Glacial Maximum; low CO2; photosynthesis; plant evolution; Pleistocene; selection experiments; subambient CO2; LOW ATMOSPHERIC CO2; LAST GLACIAL MAXIMUM; CARBON-DIOXIDE CONCENTRATION; ELEVATED CO2; STOMATAL DENSITY; CLIMATE-CHANGE; GLOBAL CHANGE; ECOPHYSIOLOGICAL RESPONSES; EVOLUTIONARY RESPONSES; ARABIDOPSIS-THALIANA;
D O I
10.1111/j.1469-8137.2010.03441.x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
During the Last Glacial Maximum (LGM; 18 000-20 000 yr ago) and previous glacial periods, atmospheric [CO2] dropped to 180-190 ppm, which is among the lowest concentrations that occurred during the evolution of land plants. Modern atmospheric CO2 concentrations ([CO2]) are more than twice those of the LGM and 45% higher than pre-industrial concentrations. Since CO2 is the carbon source for photosynthesis, lower carbon availability during glacial periods likely had a major impact on plant productivity and evolution. From the studies highlighted here, it is clear that the influence of low [CO2] transcends several scales, ranging from physiological effects on individual plants to changes in ecosystem functioning, and may have even influenced the development of early human cultures (via the timing of agriculture). Through low-[CO2] studies, we have determined a baseline for plant response to minimal [CO2] that occurred during the evolution of land plants. Moreover, an increased understanding of plant responses to low [CO2] contributes to our knowledge of how natural global change factors in the past may continue to influence plant responses to future anthropogenic changes. Future work, however, should focus more on the evolutionary responses of plants to changing [CO2] in order to account for the potentially large effects of genetic change.
引用
收藏
页码:674 / 695
页数:22
相关论文
共 149 条
[81]   High-resolution carbon dioxide concentration record 650,000-800,000 years before present [J].
Luethi, Dieter ;
Le Floch, Martine ;
Bereiter, Bernhard ;
Blunier, Thomas ;
Barnola, Jean-Marc ;
Siegenthaler, Urs ;
Raynaud, Dominique ;
Jouzel, Jean ;
Fischer, Hubertus ;
Kawamura, Kenji ;
Stocker, Thomas F. .
NATURE, 2008, 453 (7193) :379-382
[82]  
MacFadden BJ, 2005, ECOL STU AN, V177, P273
[83]   Stomatal acclimation over a subambient to elevated CO2 gradient in a C3/C4 grassland [J].
Maherali, H ;
Reid, CD ;
Polley, HW ;
Johnson, HB ;
Jackson, RB .
PLANT CELL AND ENVIRONMENT, 2002, 25 (04) :557-566
[84]   Domestication and the origins of agriculture: an appraisal [J].
Mannion, AM .
PROGRESS IN PHYSICAL GEOGRAPHY, 1999, 23 (01) :37-56
[85]   A CONTROLLED ENVIRONMENT CHAMBER FOR GROWING PLANTS ACROSS A SUBAMBIENT CO2 GRADIENT [J].
MAYEUX, HS ;
JOHNSON, HB ;
POLLEY, HW ;
DUMESNIL, MJ ;
SPANEL, GA .
FUNCTIONAL ECOLOGY, 1993, 7 (01) :125-133
[86]  
MCELWAIN JC, 2005, HIST ATMOSPHERIC CO2, P133
[87]   Free-air carbon dioxide enrichment (FACE) in global change research: A review [J].
McLeod, AR ;
Long, SP .
ADVANCES IN ECOLOGICAL RESEARCH, VOL 28, 1999, 28 :1-56
[88]   IMPROVING PLANT-PRODUCTION BY SELECTION FOR SURVIVAL AT LOW CO2 CONCENTRATIONS [J].
MEDRANO, H ;
KEYS, AJ ;
LAWLOR, DW ;
PARRY, MAJ ;
AZCONBIETO, J ;
DELGADO, E .
JOURNAL OF EXPERIMENTAL BOTANY, 1995, 46 :1389-1396
[89]   Plant survival in relation to seed size along environmental gradients: a long-term study from semi-arid and Mediterranean annual plant communities [J].
Metz, Johannes ;
Liancourt, Pierre ;
Kigel, Jaime ;
Harel, Danny ;
Sternberg, Marcelo ;
Tielboerger, Katja .
JOURNAL OF ECOLOGY, 2010, 98 (03) :697-704
[90]   Elevated CO2 concentration, nitrogen use, and seed production in annual plants [J].
Miyagi, Kay-May ;
Kinugasa, Toshihiko ;
Hikosaka, Kouki ;
Hirose, Tadaki .
GLOBAL CHANGE BIOLOGY, 2007, 13 (10) :2161-2170