INTER-GENERIC AND INTRA-GENERIC DIFFERENCES IN GROWTH, REPRODUCTION, AND FITNESS OF 9 HERBACEOUS ANNUAL SPECIES GROWN IN ELEVATED CO2 ENVIRONMENTS

被引:69
作者
FARNSWORTH, EJ
BAZZAZ, FA
机构
[1] Department of Organismic and Evolutionary Biology, Harvard University Herbaria, Cambridge, 02138, MA
关键词
CASSIA; IPOMOEA; POLYGONUM; CO2; REPRODUCTION;
D O I
10.1007/BF00341343
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
In assessing the capacity of plants to adapt to rapidly changing global climate, we must elucidate the impacts of elevated carbon dioxide on reproduction, fitness and evolution. We investigated how elevated CO2 influenced reproduction and growth of plants exhibiting a range of floral morphologies, the implications of shifts in allocation for fitness in these species, and whether related taxa would show similar patterns of response. Three herbaceous, annual species each of the genera Polygonum, Ipomoea, and Cassia were grown under 350 or 700 ppm CO2. Vegetative growth and reproductive output were measured non-destructively throughout the full life span, and vegetative biomass was quantified for a subsample of plants in a harvest at first flowering. Viability and germination studies of seed progeny were conducted to characterize fitness precisely. Early vegetative growth was often enhanced in high-CO2 grown plants of Polygonum and Cassia (but not Ipomoea). However, early vegetative growth was not a strong predictor of subsequent reproduction. Phenology and production of floral buds, flowers, unripe and abscised fruits differed between CO2 treatments, and genera differed in their reproductive and fitness responses to elevated CO2. Polygonum and Cassia species showed accelerated, enhanced reproduction, while Ipomoea species generally declined in reproductive output in elevated CO2. Seed ''quality'' and fitness (in terms of viability and percentage germination) were not always directly correlated with quantity produced, indicating that output alone may not reliably indicate fitness or evolutionary potential. Species within genera typically responded more consistently to CO2 than unrelated species. Cluster analyses were performed separately on suites of vegetative and reproductive characters. Some species assorted within genera when these reproductive responses were considered, but vegetative responses did not reflect taxonomic affinity in these plants. Congeners may respond similarly in terms of reproductive output under global change, but fitness and prognoses of population persistence and evolutionary performance can be inferred only rarely from examination of vegetative characters alone.
引用
收藏
页码:454 / 466
页数:13
相关论文
共 53 条
[1]   FECUNDITY ALLOCATION IN HERBACEOUS PLANTS [J].
AARSSEN, LW ;
TAYLOR, DR .
OIKOS, 1992, 65 (02) :225-232
[2]  
[Anonymous], GRAYS MANUAL BOTANY
[3]   PLANT PLANT INTERACTIONS IN ELEVATED CO2 ENVIRONMENTS [J].
BAZZAZ, FA ;
MCCONNAUGHAY, KDM .
AUSTRALIAN JOURNAL OF BOTANY, 1992, 40 (4-5) :547-563
[4]   CO2 ENRICHMENT AND DEPENDENCE OF REPRODUCTION ON DENSITY IN AN ANNUAL PLANT AND A SIMULATION OF ITS POPULATION-DYNAMICS [J].
BAZZAZ, FA ;
ACKERLY, DD ;
WOODWARD, FI ;
ROCHEFORT, L .
JOURNAL OF ECOLOGY, 1992, 80 (04) :643-651
[5]   THE RESPONSE OF ANNUALS IN COMPETITIVE NEIGHBORHOODS - EFFECTS OF ELEVATED CO2 [J].
BAZZAZ, FA ;
GARBUTT, K .
ECOLOGY, 1988, 69 (04) :937-946
[6]   USING GROWTH ANALYSIS TO INTERPRET COMPETITION BETWEEN A C-3 AND A C-4 ANNUAL UNDER AMBIENT AND ELEVATED CO2 [J].
BAZZAZ, FA ;
GARBUTT, K ;
REEKIE, EG ;
WILLIAMS, WE .
OECOLOGIA, 1989, 79 (02) :223-235
[7]  
BRADSHAW AD, 1991, ANN BOT, V67, P15
[8]   EFFECTS OF A CO2-ENRICHED ATMOSPHERE ON THE GROWTH AND COMPETITIVE INTERACTION OF A C-3 AND A C-4 GRASS [J].
CARTER, DR ;
PETERSON, KM .
OECOLOGIA, 1983, 58 (02) :188-193
[9]  
Chiariello N. R., 1991, RESPONSE PLANTS MULT, P161, DOI DOI 10.1016/B978-0-08-092483-0.50013-X
[10]   GROWTH AND SENESCENCE IN PLANT-COMMUNITIES EXPOSED TO ELEVATED CO2 CONCENTRATIONS ON AN ESTUARINE MARSH [J].
CURTIS, PS ;
DRAKE, BG ;
LEADLEY, PW ;
ARP, WJ ;
WHIGHAM, DF .
OECOLOGIA, 1989, 78 (01) :20-26