Grasshopper ontogeny in relation to time constraints: adaptive divergence and stasis

被引:69
作者
Berner, D
Blanckenhorn, WU
机构
[1] Swiss Fed Res Stn Agroecol & Agr, Agroscope FAL Reckenholz, CH-8046 Zurich, Switzerland
[2] Univ Zurich, Zool Museum, CH-8057 Zurich, Switzerland
关键词
body size; development time; intrinsic growth rate; Omocestus viridulus; trade-off;
D O I
10.1111/j.1365-2656.2005.01028.x
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
1. Life history theory generally predicts a trade-off between short juvenile development and large adult size, assuming invariant growth rates within species. This pivotal assumption has been explicitly tested in few organisms. 2. We studied ontogeny in 13 populations of Omocestus viridulus grasshoppers under common garden conditions. High-altitude populations, facing short growing seasons and thus seasonal time constraints, were found to grow at a similar rate to low altitude conspecifics. 3. Instead, high-altitude grasshoppers evolved faster development, and the correlated change in body size led to an altitudinal size cline mediating a trade-off with female fecundity. 4. An additional juvenile stage occurred in low- but not high-altitude females. This difference is probably due to the evolution of lowered critical size thresholds in high-altitude grasshoppers to accelerate development. 5. We found a strikingly lower growth rate in males than females that we interpret as the outcome of concurrent selection for protandry and small male size. 6. Within populations, large individuals developed faster than small individuals, suggesting within-population genetic variation in growth rates. 7. We provide evidence that different time constraints (seasonal, protandry selection) can lead to different evolutionary responses in intrinsic growth, and that correlations among ontogenetic traits within populations cannot generally be used to predict life history adaptation among populations. Moreover, our study illustrates that comparisons of ontogenetic patterns can shed light on the developmental basis underlying phenotypic evolution.
引用
收藏
页码:130 / 139
页数:10
相关论文
共 75 条
[1]   The effect of flexible growth rates on optimal sizes and development times in a seasonal environment [J].
Abrams, PA ;
Leimar, O ;
Nylin, S ;
Wiklund, C .
AMERICAN NATURALIST, 1996, 147 (03) :381-395
[2]  
Amundson Ron, 2001, P303, DOI 10.1017/CBO9780511609084.011
[3]   Adaptive intrinsic growth rates: An integration across taxa [J].
Arendt, JD .
QUARTERLY REVIEW OF BIOLOGY, 1997, 72 (02) :149-177
[4]   Causes of covariation of phenotypic traits among populations [J].
Armbruster, WS ;
Schwaegerle, KE .
JOURNAL OF EVOLUTIONARY BIOLOGY, 1996, 9 (03) :261-276
[5]   Why are organisms usually bigger in colder environments? Making sense of a life history puzzle [J].
Atkinson, D ;
Sibly, RM .
TRENDS IN ECOLOGY & EVOLUTION, 1997, 12 (06) :235-239
[6]   LOCAL ADAPTATION TO REGIONAL CLIMATES IN PAPILIO-CANADENSIS (LEPIDOPTERA, PAPILIONIDAE) [J].
AYRES, MP ;
SCRIBER, JM .
ECOLOGICAL MONOGRAPHS, 1994, 64 (04) :465-482
[7]  
Bégin M, 2004, EVOLUTION, V58, P2287
[9]   DEVELOPMENTAL POLYMORPHISM IN THE RED-LEGGED GRASSHOPPER, MELANOPLUS-FEMURRUBRUM (DEGEER) (ORTHOPTERA, ACRIDIDAE) [J].
BELLINGER, RG ;
PIENKOWSKI, RL .
ENVIRONMENTAL ENTOMOLOGY, 1987, 16 (01) :120-125
[10]  
Bernardo J, 1996, AM ZOOL, V36, P216