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Resource partitioning among forest owls in the River of No Return Wilderness, Idaho

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Summary

We studied resource partitioning among the forest owls in the River of No Return Wilderness, Idaho, during the winter and spring of 1980 and 1981. The owl assemblage consisted of five abundant species: pygmy (Glaucidium gnoma), saw-whet (Aegolius acadicus), boreal (A. funereus), western screech (Otus kennicottii), and great-horned (Bubo virginianus). Long-eared (Asio otus) and flammulated (O. flammeolus) owls were rarely observed. Information from the literature supplemented our data to describe the pattern of resource partitioning. Stepwise discriminant function analysis and multivariate analysis of variance revealed differences in macrohabitat and microhabitat. The saw-whet, boreal, western screech, and great-horned owls all preferred mammalian prey but exhibited habitat differences. They also differed in activity periods and food habits. The pygmy owl, a food and habitat generalist, foraged diurnally more than the other species and took a higher proportion of brids. The flammulated owl used areas within the territories of other owl species but specialized on forest insects. The observed pattern of resource use was interpreted to result from environmental factors, morphological limitations and interspecific competition. Differences in food and activity time, we suggest, result from environmental factors and differences in owl morphology, while present-day interspecific competition may be important in shaping habitat use. Experiments will be necessary to determine the causal factors responsible for segregation among the forest owls.

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References

  • Alatalo RV, Lundberg A, Ulfstrand S (1985) Habitat selection in the Pied Flycatcher Ficedula hypoleuca. In: Cody ML (ed) Habitat selection in birds. Academic Press, New York, pp 59–83

    Google Scholar 

  • Allen AA (1924) A contribution to the life history and economic status of the screech owl (Otus asio). Auk 51:1–16

    Google Scholar 

  • Ashmole NP (1965) Body size, prey size, and ecological segregation in five sympatric tropical terns (Aves: Laridae). Syst Zool 17:292–304

    Google Scholar 

  • Aspey WP, Blankenship JE (1977) Spiders and snails and statistical tales: Application of multivariate analysis to diverse ethological data. In: Hazlett BE (ed) Qauntitative methods in the study of animal behavior. Academic Press, New York, pp 75–120

    Google Scholar 

  • Belovsky GE (1984) Moose and snowshoe hare competition and a mechanistic explanation from foraging theory. Oecologia (Berlin) 61:150–159

    Google Scholar 

  • Bent AC (1961) Life histories of North American birds of prey: part 2. Dover Publ, New York, NY

    Google Scholar 

  • Bondrup-Nielsen S (1978) Vocalizations, nesting, and habitat preferences of the boreal owl (Aegolius funereus) in North America. Master's Thesis, University of Toronto

  • Brooks A (1930) The pygmy owl. Murrelet 11:7–9

    Google Scholar 

  • Brown JH, Bowers MA (1984) Patterns and processes in three guilds of terrestrial vertebrates. In: Strong DR, Simberloff D, Abele LG, Thistle AB (eds) Ecological communities: conceptual issues and the evidence. Princeton University Press, Princeton, NJ, pp 282–296

    Google Scholar 

  • Burt WH (1952) A field guide to the mammals. Riverside Press, Cambridge, Mass

    Google Scholar 

  • Claar JJ (1973) Correlations of ungulate food habits and winter range conditions in the Idaho Primitive Area. Master's Thesis, University of Idaho, Moscow

    Google Scholar 

  • Clark RJ, Smith DJ, Kelso LH (1978) Working bibliography of owls of the world. Nat Wildl Fed Techn Ser 1

  • Cody ML (1985a) An introduction to habitat selection in birds. In: Cody ML (ed) Habitat selection in birds. Academic Press, New York, pp 3–5

    Google Scholar 

  • Cody ML (1985b) Habitat selection in the warblers of western Europe and northern Africa. In: Cody ML (ed) Habitat selection in birds. Academic Press, New York, pp 85–129

    Google Scholar 

  • Connell JH (1975) Producing structure in natural communities. In: Cody ML, Diamond JM (eds) Ecology and evolution of communities. Belknap Press, Cambridge, Mass., pp 460–490

    Google Scholar 

  • Connell JH (1983) On the prevalence and relative importance of interspecific competition: evidence from field experiments. Am Nat 122:661–691

    Google Scholar 

  • Craighead JJ, Craighead FC (1956) Hawks, owls and wildlife. Stackpole Co, Harrisburg, Pennsylvania, Pa.

    Google Scholar 

  • Daubenmire RF (1959) A canopy-coverage method of vegetation analysis. Northwest Sci 33:43–46

    Google Scholar 

  • Diamond JM (1973) Distributional ecology of New Guinea birds. Science 179:759–769

    Google Scholar 

  • Douglas LM (1964) Idaho Primitive Area. Sierra Club, San Francisco, Calif

    Google Scholar 

  • Dueser RD, Shugart HH (1979) Niche pattern in a forest floor small-mammal fauna. Ecology 60:108–118

    Google Scholar 

  • Dunham AE (1980) An experimental study of interspecific competition between iguanid lizards Sceloporus merriami and Urosaurus ornatus. Ecol Monogr 50:309–330

    Google Scholar 

  • Earhart CM, Johnson NK (1970) Size dimorphism and food habits of North American owls. Condor 72:251–264

    Google Scholar 

  • Eckert AW, Karalus KE (1974) The owls of North America. Doubleday, Garden City, NY

    Google Scholar 

  • Errington PL (1932) Food habits of southern Wisconsin raptors, Part 1 — Owls. Condor 34:176–186

    Google Scholar 

  • Feinsinger P, Spears EE, Poole RW (1981) A simple measure of niche breadth. Ecology 62:27–32

    Google Scholar 

  • Forbes JE, Warner DW (1974) Behavior of a radio tagged sawwhet owl. Auk 91:783–794

    Google Scholar 

  • Ford HA, Paton DC (1985) Habitat selection in Australian honeyeaters, with special reference to nectar productivity. In: Cody ML (ed) Habitat selection in birds. Academic Press, New York, pp 367–388

    Google Scholar 

  • Frounfelker CR (1977) Prey selection of the great-horned owl with reference to habitat and prey availability. Master's Thesis, University of Idaho, Moscow

    Google Scholar 

  • Fuller MR (1979) Spatiotemporal ecology of four raptor species. PhD Dissertation, University of Minnesota

  • Graber RR (1962) Food and oxygen consumption of three species of owls (Strigidae). Condor 64:473–487

    Google Scholar 

  • Grant P, Schluter D (1984) Interspecific competition inferred from patterns of guild structure. In: Strong DR, Simberloff D, Abele LG, Thistle AB (eds) Ecological communities: conceptual issues and the evidence. Princeton University Press, Princeton, NJ, pp 201–253

    Google Scholar 

  • Green RH (1971) A multivariate statistical approach to the Hutchinsonian niche: bivalve molluscs of central Canada. Ecology 52:543–556

    Google Scholar 

  • Green RH (1974) Multivariate niche analysis with temporally varying environmental factors. Ecology 55:73–83

    Google Scholar 

  • Hairston NG, Smith FE, Slobodkin LB (1960) Community structure, population control, and competition. Am Nat 94:421–425

    Google Scholar 

  • Harris PA (1980) A bibliography on the capturing, aging, sexing, and banding of North American owls. Inland Bird-Banding News 52:49–55

    Google Scholar 

  • Harris RJ (1975) A primer of multivariate statistics. Academic Press, New York

    Google Scholar 

  • Hayward GD (1983) Resource partitioning among six forest owls in the River of No Return Wilderness, Idaho, Master's Thesis, University of Idaho, Moscow

    Google Scholar 

  • Hayward GD (1986) Activity pattern of a pair of nesting flammulated owls (Otus flammeolus) in Idaho. Northwest Sci 60:141–144

    Google Scholar 

  • Hayward GD, Garton EO (1984) Roost habitat selection by three small forest owls. Wilson Bull 96:692–694

    Google Scholar 

  • Herrara CM, Hiraldo F (1976) Food-niche and tropic relationships among European owls. Ornis Scand 7:29–41

    Google Scholar 

  • Hespenheide HA (1973) Ecological inferences from morphological data. Annu Rev Ecol Syst 4:213–229

    Google Scholar 

  • Hespenheide HA (1975) Prey characteristics and predator niche width. In: Cody ML, Diamond JM (eds) Ecology and evolution of communities. Belknap Press, Harvard University, Cambridge, Mass., pp 158–180

    Google Scholar 

  • Hildebrand M (1974) Analysis of vertebrate structure. Wiley, New York

    Google Scholar 

  • Hirons GJM (1982) The effects of fluctuations in rodent numbers on breeding success in the Tawny Owl (Strix aluco). Mammal Rev 12:155–157

    Google Scholar 

  • Hornocker MG (1970) An analysis of mountain lion predation upon mule deer and elk in the Idaho Primitive Area. Wildl Monogr 21

  • Jaksic FM (1981) The guild structure of a community of predatory vertebrates in central Chile. Oecologia (Berlin) 49:21–28

    Google Scholar 

  • Jaksic FM (1982) Inadequacy of activity as a niche difference: the case of diurnal and nocturnal raptors. Oecologia (Berlin) 52:171–175

    Google Scholar 

  • Jaksic FM (1983) The trophic structure of sympatric assemblages of diurnal and nocturnal birds of prey. Am Midl Nat 109:152–162

    Google Scholar 

  • James FC, Boeklen WJ (1984) Interspecific morphological relationships and the densities of birds. In: Strong DR, Simberloff D, Abele LG, Thistle AB (eds) Ecological communities: conceptual issues and the evidence. Princeton University Press, Princeton, NJ, pp 458–477

    Google Scholar 

  • Jarvinen O, Haila Y (1984) Assembly of land bird communities on northern islands: a quantitative analysis of insular impoverishment. In: Strong DR, Simberloff D, Abele LG, Thistle AB (eds) Ecological communities: conceptual issues and the evidence. Princeton University Press, Princeton, NJ, pp 138–150

    Google Scholar 

  • Johnson NK, Russell WC (1962) Distributional data on certain owls in the Western Great Basin. Condor 64:513–514

    Google Scholar 

  • Johnson RA, Wichern DW (1982) Applied multivariate statistical analysis. Prentice-Hall, Englewood Cliffs, NJ

    Google Scholar 

  • Kintner PJ (1987) A new method for measuring niche overlap using Monte Carlo techniques. Master's Thesis, University of Idaho, Moscow

    Google Scholar 

  • Klaus VS, Mikkola H, Wiesner J (1975) Activity and food of Tengmalm's owl (Aegolius funereus) (L.) during the breeding season. Zool Jahrb Syst Bd 102:485–507

    Google Scholar 

  • Klecka WR (1975) Discriminant analysis. In: Nie HH, Hull CH, Jenkins JG, Steinbrenner K, Bent DH (eds) Statistical package for the social sciences. McGraw Hill, New York

    Google Scholar 

  • Lack D (1946) Competition for food by birds of prey. J Ann Ecol 15:123–129

    Google Scholar 

  • Lofgren O, Hornfeldt B, Carlsson BG (1986) Site tenacity and nomadism in Tengmalm's owl (Aegolius funereus) in relation to cyclic food production. Oecologia (Berlin) 69:321–326

    Google Scholar 

  • Lundberg A (1979) Residency, migration and a compromise: adaptations to nest site scarcity and food specialization in three Fennoscandian owl species. Oecologia (Berlin) 41:273–281

    Google Scholar 

  • Lundberg A (1980) Why are the Ural Owl Strix uralensis and the Tawny Owl S. aluco parapatric in Scandinavia? Ornis Scand 11:116–120

    Google Scholar 

  • Marks JS, Yensen E (1980) Nest sites and food habits of long-eared owls in southwestern Idaho. Murrelet 61:86–91

    Google Scholar 

  • Marshall JT (1939) Territorial behavior of the flammulated screech owl. Condor 41:71–78

    Google Scholar 

  • Marti CD (1974) Feeding ecology of four sympatric owls. Condor 76:45–61

    Google Scholar 

  • Mikkola H (1983) Owls of Europe. Buteo Books, Vermillion, South Dakota

    Google Scholar 

  • Mysterud I (1970) Hypothesis concerning characteristics and causes of population movements in Tengmalm's owl (Aegolius funereus (L.). Nutt Mag Zool 18:49–74

    Google Scholar 

  • Noon BR (1981) The distribution of an avian guild along a temperate elevation gradient: the importance and expression of competition. Ecol Monogr 51:105–125

    Google Scholar 

  • Norberg A (1964) Studies on the ecology and ethology of Tengmalm's owl (Aegolius funereus). Var Fagelvarld 23:228–244

    Google Scholar 

  • Ott L (1977) An introduction to statistical methods and data analysis. Duxbury Press, Belmont, Calif

    Google Scholar 

  • Orians GH (1971) Ecological aspects of behavior. In: Farner DS, King J (eds) Avian biology, vol 1. Academic Press, New York, pp 513–546

    Google Scholar 

  • Pianka ER (1978) Evolutionary ecology. Harper and Row, New York

    Google Scholar 

  • Poole EL (1938) Weights and wing areas in North American birds. Auk 55:511–517

    Google Scholar 

  • Poysa H (1983) Resource utilization pattern and guild structure in a watefowl community. Oikos 40:295–307

    Google Scholar 

  • Quinn JF, Dunham AE (1983) On hypothesis testing in ecology and evolution. Am Nat 122:602–617

    Google Scholar 

  • Reynolds RT, Meslow EC (1984) Partitioning of food and habitat niche characteristics of coexisting Accipiter during breeding. Auk 101:761–779

    Google Scholar 

  • Roughgarden J (1983) Competition and theory in community ecology. Am Nat 122:583–601

    Google Scholar 

  • Schmutz JK, Schmutz SM, Boag DA (1980) Coexistance of three species of hawks (Buteo spp) in the prairie — parkland ecotone. Can J Zool 58:1075–1089

    Google Scholar 

  • Schoener TW (1970) Nonsynchronous spatial overlap of lizards in patchy habitats. Ecology 51:408–418

    Google Scholar 

  • Schoener TW (1974) Resource partitioning in ecological communities. Science 185:27–38

    Google Scholar 

  • Schoener TW (1982) The controversy over interspecific competition. Am Sci 70:586–595

    Google Scholar 

  • Schoener TW (1983) Field experiments on interspecific competition. Am Nat 122:240–285

    Google Scholar 

  • Schoener TW (1986) Resource partitioning. In: Anderson DJ, Kikkawa J (eds) Community ecology: pattern and process. Blackwell Scientific Publ, Melbourne, pp 91–126

    Google Scholar 

  • Sherry TW, Holmes RT (1985) Dispersion patterns and habitat responses of birds in northern hardwood forests. In: Cody ML (ed) Habitat selection in birds. Academic Press, New York, pp 283–309

    Google Scholar 

  • Simberloff D (1983) Competition theory, hypothesis testing, and other community ecology buzzwords. Am Nat 122:626–635

    Google Scholar 

  • Snyder NF, Wiley JW (1976) Sexual size dimorphism in hawks and owls of North America. Am Ornithol Monogr 20:1–96

    Google Scholar 

  • Southern HN (1970) The natural control of a population of Tawny owls (Strix aluco). J Zool (Lond) 162:197–285

    Google Scholar 

  • Southern HN, Lowe VPW (1968) The pattern of distribution of prey and predation in Tawny owl territories. J Anim Ecol 37:75–97

    Google Scholar 

  • Sprunt A (1955) North American birds of prey. Harper & Bros, New York

    Google Scholar 

  • Spurr SH (1952) Ecological notes on long-eared and saw-whet owls in southwestern Ohio. Ecology 33:422–427

    Google Scholar 

  • Steele R, Pfister RD, Ryker RA, Kittams JA (1981) Forest habitat types of central Idaho. US For Serv Gen Tech Report INT-114

  • Strong DR (1983) Natural variability and the manifold mechanisms of ecological communities. Am Nat 122:636–660

    Google Scholar 

  • Strong DR (1984) Exorcising the ghost of competition past: Phytophagous insects. In: Strong DR, Simberloff D, Abele LG, Thistle AB (eds) Ecological communties: conceptual issues and the evidence. Princeton University Press, Princeton, NJ, pp 28–41

    Google Scholar 

  • Sulkava P, Sulkava S (1971) Die nistzeitliche Nahrung des Rauhfusskauzes Aegolius funereus in Finland 1958–67. Ornis Fenn 48:117–124

    Google Scholar 

  • Terborgh J, Weske JS (1975) The role of competition in the distribution of Andean birds. Ecology 56:562–576

    Google Scholar 

  • Toft CA (1985) Resource partitioning in amphibians and reptiles. Copeia 1985:1–21

    Google Scholar 

  • VanCamp LF, Henny CJ (1975) The screech owl: its life history and population ecology in northern Ohio. US Dept Interior Am Fauna Ser No 71

  • Wiens JA (1977) On competition and variable environments. Am Sci 65:590–597

    Google Scholar 

  • Wiens JA (1984a) Resource systems, populations, and communities. In: Price PW, Slobodchikoff CN, Gaud WS (eds) A new ecology: novel approaches to interactive systems. Wiley, New York, pp 397–435

    Google Scholar 

  • Wiens JA (1984b) Habitat selection in variable environments: shrubsteppe birds. In: Cody ML (ed) Habitat selection in birds. Academic Press, New York, pp 227–251

    Google Scholar 

  • Wiens JA, Rotenberry JT (1981) Habitat associations and community structure of birds in shrubsteppe environments. Ecol Monogr 51:21–41

    Google Scholar 

  • Werner EE (1984) The mechanisms of species interactions and community organization in fish. In: Strong DR, Simberloff D, Abele LG, Thistle AB (eds) Ecological communities: conceptual issues and the evidence. Princeton University Press, Princeton, NJ, pp 360–382

    Google Scholar 

  • Werner PA, Platt WJ (1976) Ecological relationships of co-occuring goldenrods (Solidago: Compositae). Am Midl Natur 110:959–971

    Google Scholar 

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Hayward, G.D., Garton, E.O. Resource partitioning among forest owls in the River of No Return Wilderness, Idaho. Oecologia 75, 253–265 (1988). https://doi.org/10.1007/BF00378606

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