Modeling the growth of individuals in plant populations:: Local density variation in a strand population of Xanthium strumarium (Asteraceae)

被引:14
作者
Weiner, J
Kinsman, S
Williams, S
机构
[1] Royal Vet & Agr Univ, Dept Agr Sci, DK-2630 Taastrup, Denmark
[2] Bates Coll, Dept Biol, Lewiston, ME 04240 USA
关键词
annual plants; Asteraceae; beach community; growth curves; plant competition; size inequality; Xanthium strumarium;
D O I
10.2307/2446493
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
We studied the growth of individual Xanthium strumarium plants growing at four naturally occurring local densities on a beach in Maine: (1) isolated plants, (2) pairs of plants less than or equal to 1 cm apart, (3) four plants within 4 cm of each other, and (4) discrete dense clumps of 10-39 plants. A combination of nondestructive measurements every 2 wk and parallel calibration harvests provided very good estimates of the growth in aboveground biomass of over 400 individual plants over 8 wk and afforded the opportunity to fit explicit growth models to 293 of them. There was large individual variation in growth and resultant size within the population and within all densities. Local crowding played a role in determining plant size within the population: there were significant differences in final size between all densities except pairs and quadruples, which were almost identical. Overall, plants growing at higher densities were more variable in growth and final size than plants growing at lower densities, but this was due to increased variation among groups (greater variation in local density and/or greater environmental heterogeneity), not to increased variation within groups. Thus, there was no evidence of size asymmetric competition in this population. The growth of most plants was close to exponential over the study period, but half the plants were slightly better fit by a sigmoidal (logistic) model. The proportion of plants better fit by the logistic model increased with density and with initial plant size. The use of explicit growth models over several growth intervals to describe stand development can provide more biological content and more statistical power than "growth-size" methods that analyze growth intervals separately.
引用
收藏
页码:1638 / 1645
页数:8
相关论文
共 38 条
[1]   FECUNDITY ALLOCATION IN HERBACEOUS PLANTS [J].
AARSSEN, LW ;
TAYLOR, DR .
OIKOS, 1992, 65 (02) :225-232
[2]  
[Anonymous], ONCOIMMUNOLOGY
[3]   THE SIZE STRUCTURE OF THEORETICAL PLANT-POPULATIONS - SPATIAL PATTERNS AND NEIGHBORHOOD EFFECTS [J].
BONAN, GB .
ECOLOGY, 1988, 69 (06) :1721-1730
[4]   INTERPRETING PHENOTYPIC VARIATION IN PLANTS [J].
COLEMAN, JS ;
MCCONNAUGHAY, KDM ;
ACKERLY, DD .
TRENDS IN ECOLOGY & EVOLUTION, 1994, 9 (05) :187-191
[5]   BOOTSTRAPPING THE GINI COEFFICIENT OF INEQUALITY [J].
DIXON, PM ;
WEINER, J ;
MITCHELLOLDS, T ;
WOODLEY, R .
ECOLOGY, 1987, 68 (05) :1548-1551
[6]   A NULL METHOD FOR NEIGHBORHOOD MODELS OF PLANT COMPETITIVE INTERACTIONS [J].
ELLISON, AM ;
DIXON, PM ;
NGAI, J .
OIKOS, 1994, 71 (02) :225-238
[7]   COMPETITION AND STAND STRUCTURE IN SOME EVEN-AGED PLANT MONOCULTURES [J].
FORD, ED .
JOURNAL OF ECOLOGY, 1975, 63 (01) :311-333
[8]   PATTERNS AND CONSEQUENCES OF INTERSPECIFIC COMPETITION IN NATURAL COMMUNITIES - A REVIEW OF FIELD EXPERIMENTS WITH PLANTS [J].
GOLDBERG, DE ;
BARTON, AM .
AMERICAN NATURALIST, 1992, 139 (04) :771-801
[10]   DYNAMICS OF SIZE STRUCTURE IN PLANT-POPULATIONS [J].
HARA, T .
TRENDS IN ECOLOGY & EVOLUTION, 1988, 3 (06) :129-133