Trophic niche differentiation in soil microarthropods (Oribatida, Acari): evidence from stable isotope ratios (15N/14N)

Soil Biology and Biochemistry - Tập 36 Số 11 - Trang 1769-1774 - 2004
Katja Schneider1, Sonja Migge2, Roy A. Norton3, Stefan Scheu1, Reinhard Langel4, A. Reineking4, Mark Maraun1
1Institut für Zoologie, Technische Universität Darmstadt, Schnittspahnstrasse 3, D-64287 Darmstadt, Germany
2Institut für Zoologie und Anthropologie, Universität Göttingen, Abteilung Ökologie, Berliner Strasse 28, 37073 Göttingen, Germany
3Faculty of Environmental and Forest Biology, College of Environmental Science and Forestry, State University of New York, 1 Forestry Drive, Syracuse, NY 13210, USA
4Universität Göttingen, Forschungszentrum Waldökosysteme, Kompetenzzentrum Stabile Isotope, Büsgenweg 2, 37077 Göttingen, Germany

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Anderson, 1975, The enigma of soil animal species diversity, 51

Anderson, 1975, Succession, diversity and trophic relationship of some soil animals in decomposing leaf litter, Journal of Animal Ecology, 44, 475, 10.2307/3607

DeNiro, 1981, Influence of diet on the distribution of nitrogen isotopes in animals, Geochimica et Cosmochimica Acta, 45, 341, 10.1016/0016-7037(81)90244-1

Dierschke, 1982, Die Vegetation der Untersuchungsfläche des SFB 135 und ihrer Umgebung im Göttinger Wald, Arbeitsbericht SFB, 135, 3

Fabian, 1998, The effects of different methods of preservation on the N-15 concentration in Folsomia candida (Collembola), Applied Soil Ecology, 9, 101, 10.1016/S0929-1393(98)00061-4

Hansen, 1999, Red oak litter promotes a microarthropod functional group that accelerates its own decomposition, Plant and Soil, 209, 37, 10.1023/A:1004506414711

Hansen, 2000, Effects of habitat complexity and composition on a diverse litter microarthropod assemblage, Ecology, 81, 1120, 10.1890/0012-9658(2000)081[1120:EOHCAC]2.0.CO;2

Hartenstein, 1962, Soil oribatei I. Feeding specificity among forest soil oribatei (Acarina), Annals of the Entmological Society of America, 55, 202, 10.1093/aesa/55.2.202

Jacot, 1939, Reduction of spruce and fir litter by minute animals, Journal of Forestry, 37, 858

Kaneko, 1988, Feeding habits and cheliceral size of oribatid mites in cool temperate forest soils in Japan, Revue d'Ecologie et de Biologie du Sol, 25, 353

Kempson, 1963, A new extractor for woodland litter, Pedobiologia, 3, 1, 10.1016/S0031-4056(22)00112-3

Kohzu, 1999, Natural C-13 and N-15 abundance of field-collected fungi and their ecological implications, New Phytologist, 144, 323, 10.1046/j.1469-8137.1999.00508.x

Lions, 1988, Adult and immature populations of Adoristes ovatus (Acari, Oribatida) in the litter needles of Abies alba, Revue d'Ecologie et de Biologie du Sol, 25, 343

Luxton, 1972, Studies on the oribatid mites of a Danish beech wood soil. I. Nutritional biology, Pedobiologia, 12, 434, 10.1016/S0031-4056(23)02065-6

Macfadyen, 1961, Improved funnel-type extractors for soil arthropods, Journal of Animal Ecology, 30, 171, 10.2307/2120

Maraun, 2000, The structure of oribatid mite communities (Acari, Oribatida): patterns, mechanisms and implications for future research, Ecography, 23, 374, 10.1111/j.1600-0587.2000.tb00294.x

Maraun, 1998, Selection of microfungal food by six oribatid mite species (Oribatida, Acari) from two different beech forests, Pedobiologia, 42, 232

Maraun, 2003, Adding to ‘the enigma of soil animal diversity’: fungal feeders and saprophagous soil invertebrates prefer similar food substrates, European Journal of Soil Biology, 39, 85, 10.1016/S1164-5563(03)00006-2

Materna, 2000, Oribatid communities (Acari: Oribatida) inhabiting saxicolous mosses and lichens in the Krkonose Mts. (Czech Republic), Pedobiologia, 44, 40, 10.1078/S0031-4056(04)70027-X

Migge, 1998, The oribatid mite community (Acarina) of pure and mixed stands of beech (Fagus sylvatica) and spruce (Picea abies) of different age, Applied Soil Ecology, 9, 115, 10.1016/S0929-1393(98)00065-1

Minagawa, 1984, Stepwise enrichment of 15N along food chains: further evidence and the relationship between δ15N and animal age, Geochimica et Cosmochimica Acta, 48, 1135, 10.1016/0016-7037(84)90204-7

Muraoka, 1976, Nematode-feeding mites and their feeding behaviour, Applied Entomology and Zoology, 11, 1, 10.1303/aez.11.1

Pande, 1973, Studies on the food and feeding habits of soil Oribatei in a black pine plantation, Oecologia, 12, 413, 10.1007/BF00345051

Ponsard, 2000, What can stable isotopes (δ15N and δ13C) tell about the food web of soil macro-invertebrates?, Ecology, 81, 852

Post, 2002, Using stable isotopes to estimate trophic position: models, methods, and assumptions, Ecology, 83, 703, 10.1890/0012-9658(2002)083[0703:USITET]2.0.CO;2

Reineking, 1993, 15N, 13C-on-line measurements with an elemental analyser (Carlo Erba, NA 1500), a modified trapping box and a gas isotope mass spectrometer (Finnigan, MAT 251), Environmental Health Studies, 29, 169

Riha, 1951, Zur Ökologie der Oribatiden in Kalksteinböden, Zoologische Jahrbücher Abteilung für Systematik, Ökologie und Geographie der Tiere, 80, 407

Rockett, 1980, Nematode predation by oribatid mites (Acari:Oribatida), International Journal of Acarology, 6, 219, 10.1080/01647958008683222

Rockett, 1966, Oribatid mites as predators of soil nematodes, Annals of the Entmological Society of America, 59, 669, 10.1093/aesa/59.4.669

Schatz, 2002, Die Oribatidenliteratur und die beschriebenen Oribatidenarten (1758–2001)—Eine Analyse, Abhandlungen und Berichte des Naturkundemuseums Görlitz, 74, 37

Scheu, 2002, The soil food web: structure and perspectives, European Journal of Soil Biology, 38, 11, 10.1016/S1164-5563(01)01117-7

Scheu, 2000, The soil food web of two beech forests (Fagus sylvatica) of contrasting humus types: stable isotope analysis of a macro- and a mesofauna-dominated system, Oecologia, 123, 285, 10.1007/s004420051015

Scheu, 2002, Multitrophic interactions in decomposer foodwebs, 233

Scheu, 2004, Single and mixed diets in Collembola: effects on reproduction and stable isotope fractionation, Oecologia, 18, 94

Schoener, 1974, Resource partitioning in ecological communities, Science, 185, 27, 10.1126/science.185.4145.27

Schuster, 1956, Der Anteil der Oribatiden an den Zersetzungsvorgängen im Boden, Zeitschrift für Morphologie und Ökologie der Tiere, 45, 1, 10.1007/BF00699814

Siepel, 1993, Feeding guilds of oribatid mites based on their carbohydrase activities, Soil Biology & Biochemistry, 25, 1491, 10.1016/0038-0717(93)90004-U

Smrz, 1999, Mite communities of two epiphytic lichen species (Hypogymnia physodes and Parmelia sulcata) in the Czech Republic, Pedobiologia, 43, 385

Visser, 1985, Role of the soil invertebrates in determining the composition of soil microbial communities, 279

Wada, 1991, The use of stable isotopes for food web analysis, Critical Reviews in Food Science and Nutrition, 30, 361, 10.1080/10408399109527547

Wohler, 1998, The occurrence of terrestrial algae on two beech sites on a Cambisol, Zeitschrift für Pflanzenernährung und Bodenkunde, 161, 31, 10.1002/jpln.1998.3581610106

Wunderle, 1992, Die Oribatiden-Gemeinschaften (Acari) der verschiedenen Habitate eines Buchenwaldes, Carolinea, 50, 79