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The study of the interacting factors that constrain resource use in organisms and promote diversity is an important task, especially in a mega diverse area, in which the increasing transformation of ecosystems modifies the interactions among organisms. among the hypotheses that explain resource use and diversity of insects are the Top­ down and the Bottom­up hypotheses, in which experimental studies have shown trade­offs between these factors. The influence of parasitism, host plant and competition was evaluated to determine their effect on mortality of the seed beetle Stator limbatus from populations adapted to different host plants. Mortality of eggs caused by parasitism, and mortality of larvae caused by competition was recorded for seven populations that use a single host seed, and for one population that uses two hosts. Populations that use Acacia greggii experienced the lowest mortality, and populations that use Parkinsonia florida suffered the highest mortality, demonstrating no evidence of trade­offs between bottom­up and top­down factors. Interactions between host and larval density, and between host and number of eggs on seeds, showed variation between hosts in the mortality of beetles caused by competition and by parasitism, respectively. In addition, there was no evidence of egg size affecting parasitism of eggs. These results show the need of including in the traditional bottom­up and top­down explanations, the study of factors that could be mediating their outcome such as the one examined here (competition). This need is more urgent now that we are exposing ecosystems to accelerated changes in structure, functioning, and composition.

AMARILLO­-SUÁREZ, ÁNGELA R. (2010). Top-down, bottom-up, and horizontal mortality variation in a generalist seed beetle. Revista Colombiana De Entomología, 36(2), 269–276. https://doi.org/10.25100/socolen.v36i2.9158

AMARILLO-SUÁREZ, A.; FOX, C. W. 2006. Population differences in host use by a seed beetle: Local adaptation, phenotypic plasticity y maternal effects. Oecologia 150 (2): 247-258.

AMARILLO-SUÁREZ, A.; STILLWELL, R. C.; FOX, C. W. Host size and larval competition mediate natural selection on body size in a seed-feeding beetle. Submitted to Oikos in August 2010.

AQUILINO, K. M.; CARDINALE, B. J.; IVES, A. R. 2005. Reciprocal effects of host plant and natural enemy diversity on herbivore suppression: an empirical study of a model tritrophic system. Oikos 108 (2): 275-282.

BAI, B.; MACKAUER, M. 1992. Influence of super parasitism on development rate and adult size in a solitary parasitoid Aphidius ervi. Functional Ecology 6 (3): 302-307.

BARTHOLOMÄUS, A.; De la ROSA CORTÉS, A.; SANTOS GUTIÉRREZ, J. O.; ACERO DUARTE, L.E. MOOSBRUGGER, W. 1990. El manto de la tierra: flora de los Andes. Ediciones Lerner. 332 p.

BERNAYS, E. A.; CHAPMAN, F. F. 1994. Host-plant selection by phytophagous insects. Chapman & Hall. New York. 312 p.

CAMARA, M. D. 1997. A recent host range expansion in Junonia coenia Hubner (Nymphalidae): Oviposition preference, survival, growth, and chemical defense. Evolution 51 (3): 873-884.

DEAS, J.; HUNTER, M. S. 2008. Host egg-size plasticity affects preference and performance in the egg parasitoid Uscana semifumipennis (Hymenoptera: Trichogrammatidae) as a result of host size selection. Entomological Society of America. Annual Meeting. Available in: http://esa.confex.com/esa/2008/techprogram/ paper_39078.htm. [Consulted on July 10th. 2010].

ETTER, A.; McALPINE, C.; POSSINNGHAM, H. 2008. Historical Patterns and drivers of dandscape change in Colombia since 1500: A regionalized spatial approach. Annals of the Association of American Geographers 98 (1): 2-23.

FEDER, J. L. 1995. The effects of parasitoids on sympatric host races of Rhagoletis pomonella (Diptera: Tephritidae). Ecology 76 (3): 801-813.

FOX, C. W.; MARTIN, J. D; THAKAR, M. S.; MOUSSEAU, T. 1996. Clutch size manipulations in two seed beetles: consequences for progeny fitness. Oecologia 108 (1): 88-94.

FOX, C. W. 2000. Natural selection on seed-beetle egg size in nature and the laboratory: Variation among environments. Ecology 81 (11): 3029-3035.

FOX, C. W.; CZESAK, M. E.; FOX, R. W. 2001. Consequences of plant resistance for herbivore survivorship, growth, and selection on egg size. Ecology 82 (10): 2790-2804.

FUTUYMA, D. J.; MORENO, G. 1988. The evolution of ecological specialization. Annual Review of Ecology and Systematics 19 : 207-233.

GRIPENBERG, S.; ROSLIN, T. 2007. Up or down in space? Uniting the bottom-up versus top-down paradigm and spatial ecology. Oikos 116 (2): 181-188.

HAIRSTON, N. G.; SMITH, F. E.; SLOBODKIN, L. B. 1960. Community structure, population control and competition. The American Naturalist 94 (879): 421-425.

HARDY, I. C.; GRIFFITHS, T; GODFRAY, H. C. J. 1992. Clutch size in a parasitoid wasp: A manipulation experiment. Journal of Animal Ecology 61 (1): 121-129.

HATCH, S. L.; PLUHAR, J. 1993. Texas range plants. Texas A&M Univ. Press. College Station. 326 p.

HEISSWOLF, A; JOACJIM, J.; OBERMAIER, E. 2006. Multitrophic influences on egg distribution in a specialized leaf beetle at multiple spatial scales. Basic and Applied Ecology 7 (6): 565576.

HETZ, M.; JOHNSON, C. D. 1988. Hymenopterous parasites of some bruchid beetles of North and Central America. Journal of Stored Products Research 24 (3): 131-143.

JAENIKE, J. 1990. Host specialization in phytophagous insects. Annual Review of Ecology and Systematics 21: 243-273.

JOHNSON, C. D.; KINGSOLVER, J. M. 1976. Systematics of Stator of North and Central America (Coleoptera: Bruchidae). USDA. Technical Bulletin 1537 101p.

JOHNSON, C. D.; KINGSOLVER, J. M; TERAN, A. L. 1989. Sistemática del género Stator (Insecta: Coleoptera: Bruchidae) en Sudamérica. Opera Lilloana 37 J. M.105 p.

LEWINSOHN, T.; NOVOTNY, V.; BASSET Y. 2005. Insects on plants: Diversity of herbivore assemblages revisited. Annual Review Ecology Evolution and Systematics 36: 597–620.

MACKAUER, M.; CHAU, A. 2001. Adaptive self superparasitism in a solitary parasitoid wasp: the influence of clutch size on offspring size. Functional Ecology 15 (3): 335-343.

MAINKA, S. 2002. Biodiversity, poverty and hunger where do they meet? En: MAINKA, S.; TRIVEDI, M. Links between Biodiversity, Conservation, Livelihoods, and Food Security. The sustainable use of wild species for meat. IUCN, Gland, Switzerland and Cambridge, UK. 135 p.

MESSINA, F. J.; MITCHEL, R. 1989. Intraspecific variation in the egg-spacing behavior of the seed beetle Callosobruchus maculatus. Journal of Insect Behavior 2 (6):727-742.

MESSINA, F. J.; RENWICK, A. 1985. Ability of ovipositing seed beetles to discriminate between seeds with differing egg loads. Ecological Entomology 10 (2): 225-230.

MIRA, A.; BERNAYS, E. A. 2002. Trade-offs in host use by Manduca sexta: plant characters vs natural enemies. Oikos 97 (3): 387-397.

MORSE, G.: FARREL, B. 2005. Interspecic phylogeography of the Stator limbatus species complex: The geographic context of speciation and specialization. Evolution 59 (6): 1165-1388. Figure 6. Differences in egg size between parasitized and unparasitized eggs in populations of S. limbatus. Standard errors are sometimes smaller than the symbols. Variation in mortality factors of a beetle Egg size (mm) Host seed A. berlandieri A. greggii P. florida P. guachapele Unparasitized Parasitized 276

ODE, P. 2006. Plant chemistry and natural enemy fitness: Effects on herbivore and natural enemy interactions. Annual Review of Entomology 51: 163-85.

ODE, P. J.; ANTOLIN, M. F.; STRAND, M. R. 1996. Sex allocation and sexual asymmetries in intra-brood competition in the parasitic wasp Bracon hebetor. Journal of Animal Ecology 65 (6): 690-700.

ROOT, R. B. 1973. Organization of a plant-arthropod association in simple and diverse habitats: the fauna of collards (Brassica oleracea). Ecological Monographs 43 (1): 95-124.

SARGENT, C. S. 1965. Manual of trees of North America, vol. 2. Dover Publications Inc., New York. 934 p.

SCHOWALTER T. D. 2006. Insect ecology. Academic Press, Burlington. 536 p.

SIEMENS, D. H.; JONHNSON, C. D. 1990. Host-associated differences in fitness of a seed beetle (Bruchidae): effects of plant variability. Oecologia 82 (3): 408-413.

SIEMENS D. H.; JOHNSON, C. D. WOODMAN, R. L. 1991. Determinants of Host Range In Bruchid Beetles Ecology 72 (5): 1560-1566.

SIEMENS, D. H.; JOHNSON, C. D.; RIBARDO, K. J. 1992. Alternative seed defense mechanisms in congeneric plants. Ecology 73 (6): 2152-2166.

SIEMENS, D. H.; JONHNSON, C. D. 1992. Density-dependent egg parasitism as a determinant of clutch size in bruchid beetles (Coleoptera: Bruchidae). Environmental Entomology 21(3): 610-619.

SIEMENS, D. H., B. E. RALSTON, and C. D. JOHNSON. 1994. Alternative seed defense mechanisms in a palo verde (Fabaceae) hybrid zone effects on bruchid beetle abundance. Ecological Entomology 19 (4): 381-390.

STILLWELL, R. C.; MORSE, G. E.; FOX, C. W. 2007. Geographic variation in body size and sexual size dimorphism of a seed beetle. The American Naturalist 170 (3): 358-369.

VAN ZANDT, P.; MOPPER, S. 1998. A meta-analysis of adaptive deme formation in phytophagous insect populations. The American Naturalist 152 (4): 597-606.