ALLOMETRY AND STILT ROOT STRUCTURE OF THE NEOTROPICAL PALM EUTERPE PRECATORIA (ARECACEAE) ACROSS SITES AND SUCCESSIONAL STAGES

被引:19
作者
Avalos, Gerardo [1 ,2 ]
Fernandez Otarola, Mauricio [1 ]
机构
[1] Univ Costa Rica, Escuela Biol, San Jose 2060, Costa Rica
[2] Ctr Sustainable Dev Studies, Sch Field Studies, Salem, MA 01970 USA
基金
美国国家科学基金会;
关键词
allometry; Arecaceae; Costa Rica; Euterpe precatoria; mechanical stability; palm growth; stilt root structure; tree architecture; RAIN-FOREST PALMS; SOCRATEA-EXORRHIZA; IRIARTEA-DELTOIDEA; MECHANICAL DESIGN; ARBORESCENT PALMS; PLANT HEIGHT; GROWTH; TREES; STEM; DIAMETER;
D O I
10.3732/ajb.0900149
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The lack of secondary meristems shapes allometric relationships of the palms, influencing species segregation according to their capacity to adjust form and function to spatial and temporal changes in environmental conditions. We examined the stem height vs. diameter allometry of Euterpe precatoria across environmental gradients and measured how terrain inclination and palm size affected stilt root structure at two sites in Costa Rica. We dissected the root cone into eight variables and used principal component analysis to summarize their correlation structure. The fit of the stem diameter-height relationship to the stress, elastic, and geometric similarity models was examined using data from 438 palms. Terrain inclination did not affect stilt roots, whose structure was determined by palm size. Palms under 1 m showed geometric similarity, whereas palms above 1 m had slope values that were one and a half times higher, independent of successional stage, and did not adjust to any mechanical model. Taller palms departed from these models when they were large because they had stilt root support. We conclude that height in E. precatoria is constrained by structural support at the base and that diameter at the base of the stem and stilt roots balances height increments over all the size ranges examined.
引用
收藏
页码:388 / 394
页数:7
相关论文
共 61 条
[21]  
Henderson Andrew., 1995, Field Guide to the Palms of the Americas
[22]   The interpretation of stem diameter-height allometry in trees: biomechanical constraints, neighbour effects, or biased regressions? [J].
Henry, HAL ;
Aarssen, LW .
ECOLOGY LETTERS, 1999, 2 (02) :89-97
[23]  
Homeier Juergen, 2002, Ecotropica (Bonn), V8, P239
[24]   THE PALM COMMUNITY IN A FOREST OF CENTRAL AMAZONIA, BRAZIL [J].
KAHN, F ;
DECASTRO, A .
BIOTROPICA, 1985, 17 (03) :210-216
[25]   ALLOMETRY OF SAPLINGS AND UNDERSTOREY TREES OF A PANAMANIAN FOREST [J].
KING, DA .
FUNCTIONAL ECOLOGY, 1990, 4 (01) :27-32
[26]   Significance of architecture and allometry in saplings [J].
Kohyama, T. .
FUNCTIONAL ECOLOGY, 1987, 1 (04) :399-404
[27]   Flowering, pollination, nectar standing crop, and nectaries of Euterpe precatoria (Arecaceae), an Amazonian rain forest palm [J].
Kuchmeister, H ;
SilberbauerGottsberger, I ;
Gottsberger, G .
PLANT SYSTEMATICS AND EVOLUTION, 1997, 206 (1-4) :71-97
[28]  
Kuppers M., 1994, Exploitation of environmental heterogeneity by plants, P111
[29]  
LEGENDRE L., 1983, NUMERICAL ECOLOGY
[30]   AGE-SIZE RELATIONSHIPS AND GROWTH-BEHAVIOR OF THE PALM WELFIA-GEORGII [J].
LIEBERMAN, M ;
LIEBERMAN, D ;
VANDERMEER, JH .
BIOTROPICA, 1988, 20 (04) :270-273