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Adaptations of pupae of Chironomidae (Insecta: Diptera) to oxygen-poor habitats

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Morphological, behavioural and physiological adaptations of chironomids pupae to oxygen-poor habitats, such as the profundal zone of lakes, are discussed. Lentic and oxyregulator species possess developed respiratory organs (thoracic horns) and an extensive anal fringe to perform respiratory movements, whereas in rheophilic and oxy-conformer species these structures are reduced or absent. This led to the hypothesis that the number of thoracic horn branches, the number of anal macrosetae and the body size could consititute a measure of a species' oxygen requirements. These characters were analyzed in 12 species groups collected in 39 Italian lakes. Numbers were correlated to the optimum value of oxygen level, total phosphorus concentration and transparency calculated for each taxon. Taxa with plumose thoracic horns, extensive anal fringe and large body size (Chironomus) inhabited habitats poorer in oxygen than those inhabited by taxa with less extensive respiratory surface and fringe and small body size (Paratendipes, Polypedilum, Microtendipes). Stictochironomus was less tolerant than expected. Further studies are needed into the physiological adaptations of chironomid pupae.
Twórcy
  • Section of Ecology, Department of Biology, University of Milan, Via Celoria 26, 20133 Milan, Italy
  • Section of Invertebrate Zoology and Hydrobiology, Museo Tridentino di Scienze Naturali, Via Calepina 14, 38100 Trento, Italy
  • Section of Ecology, Department of Biology, University of Milan, Via Celoria 26, 20133 Milan, Italy
  • Section of Ecology, Department of Biology, University of Milan, Via Celoria 26, 20133 Milan, Italy, laura.marziali@unimi.it
Bibliografia
  • Ashe P., Murray D.A., Reiss F. 1987 – The zoogeographical distribution of Chironomidae (Insecta: Diptera) – Annal. Limnol. 23: 27–60.
  • Berra E., Forcella M., Giacchini R., Marziali L., Rossaro B., Parenti P. 2004 – Evaluation of enzyme biomarkers in freshwater invertebrates from Taro and Ticino river, Italy – Annal. Limnol. 40: 169–180.
  • Brodersen K.P., Pedersen O., Lindegaard C., Hamburger K. 2004 – Chironomids (Diptera) and oxy-regulatory capacity: an experimental approach to paleolimnological interpretation – Limnol. Oceanogr. 49: 1549–1559.
  • Coffman W.P. 1979 – Neglected characters in pupal morphology as tools in taxonomy and phylogeny of Chironomidae (Diptera) – Ent. Scand. Suppl. 10: 37–46.
  • Cranston P.S. 1995 – Morphology (In: The Chironomidae. The biology and ecology of non-biting midges, Eds: P. Armitage, P.S. Cranston, L.C.V. Pinder) – Chapman and Hall, London, pp. 12–30.
  • Hamburger K., Dall P.C., Lindegaard C., Nilson I.B. 2000 – Survival and energy metabolism in an oxygen deficient environment. Field and laboratory studies on the bottom fauna from the profundal zone of Lake Esrom, Denmark – Hydrobiologia, 432: 173–188.
  • Heinis T., Crommentuijn T. 1989 – The natural habitat of the deposit feeding chironomid larvae Stictochironomus histrio (Fabricius) and Chironomus anthracinus Zett. in relation to their responses to changing oxygen concentrations – Acta Biol. Debr. Oecol. Hung. 3: 135–140.
  • Heinis F., Van De Bund W.J., Davids C. 1989 – Avoidance of low oxygen and food concentrations by the larvae of Tanytarsus sp. – Acta Biol. Debr. Oecol. Hung. 3: 141–145.
  • Int Panis L., Goddeeris B., Verheyen R.F. 1995 – On the relationship between the oxygen microstratification in a pond and the spatial distribution of the benthic chironomid fauna (In: The Chironomidae: from genes to ecosystem. Proceedings of the 12th International Symposium on Chironomidae, Canberra, Ed. P. Cranston) – C.S.I.R.O. Publications, Melbourne, pp. 323–328.
  • Int Panis L., Goddeeris B., Verheyen R. 1996 – On the relationship between vertical microdistribution and adaptations to oxygen stress in littoral Chironomidae (Diptera) – Hydrobiologia, 318: 61–67.
  • Langton P.H. 1989 – Functional and phylogenetic interpretation of chironomid pupal structure – Acta Biol. Debr. Oecol. Hung. 2: 247–252.
  • Langton P.H. 1995 – The pupa and events leading to eclosion (In: The Chironomidae. The biology and ecology of non-biting midges, Eds: P. Armitage, P.S. Cranston, L.C.V. Pinder) – Chapman and Hall, London, pp. 169–193.
  • Lindegaard C. 1995. Classification of waterbodies and pollution (In: The Chironomidae. The biology and ecology of non-biting midges, Eds: P. Armitage, P.S. Cranston, L.C.V. Pinder) – Chapman and Hall, London, pp. 385–404.
  • Mangum C., Van Winkle W. 1973 – Responses of aquatic invertebrates to declining oxygen conditions – Am. Zool. 3: 529–541.
  • Marziali L., Casalegno C., Lencioni V., Rossaro B. – Definition and assignment of indicator weights to different chironomid species. (In: Proceedings of the 15th International Symposium on Chironomidae, Minneapolis 2003. Ed. L. Ferrington) – University of Minnesota, Minneapolis, USA, (in press).
  • Pinder L.C.V. 1995 – The habitats of chironomid larvae (In: The Chironomidae. The biology and ecology of non-biting midges, Eds: P. Armitage, P.S. Cranston, L.C.V. Pinder) – Chapman and Hall, London, pp. 107–135.
  • Rosenberg D. M. 1992 – Freshwater biomonitoring and Chironomidae (In: Proceedings of the 11th International Symposium on Chironomidae, Amsterdam 1991, Eds: W.J. van de Bund, M.H.S. Kraak) – Neth. J. Aquat. Ecol. 26: 101–122.
  • Ruse L. 2002 – Chironomid pupal exuviae as indicators of lake status – Arch. Hydrobiol. 153: 367–390.
  • Thienemann A. 1910 – Das Sammeln von Puppenhäuten der Chironomiden – Arch. Hydrobiol. 6: 213–214. (in German)
  • Thienemann A. 1954 – Chironomus. Leben, Verbreitung und wirtschaftliche Bedeutung der Chironomiden – Die Binnengewässer, 20: 1–834. (in German)
  • Wiederholm T. 1980 – Use of benthos in lake monitoring – J. Wat. Poll. Cont. Fed. 52: 537–547.
  • Wiederholm T. (Ed.) 1986 – Chironomidae of the Holarctic region. Keys and diagnoses. Part 2. Pupae – Ent. Scand. Suppl. 28: 1–482.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BGPK-1546-5890
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