Cusco and Puerto Maldonado, Perú 1 Macroinvertebrates of Rivers and Creeks Along the Interoceanic Highway 1 1 2 3 4 Bern Sweeney, David Funk, R

Total Page:16

File Type:pdf, Size:1020Kb

Cusco and Puerto Maldonado, Perú 1 Macroinvertebrates of Rivers and Creeks Along the Interoceanic Highway 1 1 2 3 4 Bern Sweeney, David Funk, R Cusco and Puerto Maldonado, Perú 1 Macroinvertebrates of rivers and creeks along the interoceanic Highway 1 1 2 3 4 Bern Sweeney, David Funk, R. Wills Flowers, Therany Gonzales y Ana Huamantinco 1STROUD Water Research Center, 2 Florida A&M University, 3 The Amazon Center for Environmental Education and Research - ACEER-Peru, 4Universidad Nacional Mayor de San Marcos, Perú Photos: David Funk. Identifications: R. Wills Flowers. Produced by: ACEER in association with the STROUD Water Research Center. Thanks to the Amazon Center for Environmental Education and Research – ACEER Foundation © David Funk [[email protected]] [fieldguides.fieldmuseum.org] [843] version 1 02/2017 1 Baetodes 2 Baetodes 3 Baetodes 4 Andesiops Ephemeroptera BAETIDAE Ephemeroptera BAETIDAE Ephemeroptera BAETIDAE Ephemeroptera BAETIDAE 5 Andesiops 6 Andesiops 7 Andesiops 8 Mayobaetis Ephemeroptera BAETIDAE Ephemeroptera BAETIDAE Ephemeroptera BAETIDAE Ephemeroptera BAETIDAE 9 Cryptonympha 10 Caenis 11 Euthyplocia 12 Leptohyphes Ephemeroptera BAETIDAE Ephemeroptera CAENIDAE Ephemeroptera EUTHYPLOCIIDAE Ephemeroptera LEPTOHYPHIDAE 13 Thraulodes 14 Thraulodes 15 Thraulodes 16 Meridialaris Ephemeroptera LEPTOPHLEBIIDAE Ephemeroptera LEPTOPHLEBIIDAE Ephemeroptera LEPTOPHLEBIIDAE Ephemeroptera LEPTOPHLEBIIDAE 17 Meridialaris 18 Meridialaris 19 Homoeoneuria 20 Campsurus Ephemeroptera LEPTOPHLEBIIDAE Ephemeroptera LEPTOPHLEBIIDAE Ephemeroptera OLIGONEURIIDAE Ephemeroptera POLYMITARCYIDAE Cusco y Puerto Maldonado, Perú 2 Macroinvertebrados de ríos y quebradas a lo largo de la carretera interoceánica 1 1 2 3 4 Bern Sweeney, David Funk, R. Wills Flowers, Therany Gonzales y Ana Huamantinco 1STROUD Water Research Center, 2 Florida A&M University, 3 The Amazon Center for Environmental Education and Research - ACEER-Peru, 4Universidad Nacional Mayor de San Marcos, Perú Fotos: David Funk. Identificaciones: R. Wills Flowers. Producido por: ACEER en asociación con el STROUD Water Research Center. Gracias al Amazon Center for Environmental Education and Research – ACEER Foundation © David Funk [[email protected]] [fieldguides.fieldmuseum.org] [843] versión 1 02/2017 21 Rhionaeschna 22 Rhionaeschna 23 Hetaerina 24 Hetaerina Odonata AESHNIDAE Odonata AESHNIDAE Odonata CALOPTERYGIDAE Odonata CALOPTERYGIDAE 25 Argia 26 Gomphid 27 Myathyria 28 Brechmorhoga Odonata COENAGRIONIDAE Odonata GOMPHIDAE Odonata LIBELLULIDAE Odonata LIBELLULIDAE 29 Libellulidae 30 Philogenia 31 Claudioperla 32 Anacroneuria Odonata LIBELLULIDAE Odonata MEGAPODAGRIONIDAE Plecoptera GRIPOPTERYGIDAE Plecoptera PERLIDAE 33 Anacroneuria 34 Anacroneuria 35 Belostoma-eggs 36 Belostoma Plecoptera PERLIDAE Plecoptera PERLIDAE Hempitera BELOSTOMATIDAE Hempitera BELOSTOMATIDAE 37 Neosigara 38 Cryphocricos 39 Limnocoris 40 Naucorid Hemiptera CORIXIDAE Hemiptera NAUCORIDAE Hemiptera NAUCORIDAE Hemiptera NAUCORIDAE Cusco and Puerto Maldonado, Perú 3 Macroinvertebrates of rivers and creeks along the interoceanic Highway 1 1 2 3 4 Bern Sweeney, David Funk, R. Wills Flowers, Therany Gonzales y Ana Huamantinco 1STROUD Water Research Center, 2 Florida A&M University, 3 The Amazon Center for Environmental Education and Research - ACEER-Peru, 4Universidad Nacional Mayor de San Marcos, Perú Photos: David Funk. Identifications: R. Wills Flowers. Produced by: ACEER in association with the STROUD Water Research Center. Thanks to the Amazon Center for Environmental Education and Research – ACEER Foundation © David Funk [[email protected]] [fieldguides.fieldmuseum.org] [843] version 1 02/2017 41 Rhagovelia 42 Corydalus 43 Paraponyx 44 Anomalopschidae Hemiptera VELIIDAE Megaloptera CORYDALIDAE Lepidoptera CRAMBIDAE Trichoptera ANOMALOPSYCHIDAE 45 Phylloicus-pupa 46 Phylloicus-case 47 Banyallarga 48 Culoptila Trichoptera CALAMOCERATIDAE Trichoptera CALAMOCERATIDAE Trichoptera CALAMOCERATIDAE Trichoptera GLOSSOSOMATIDAE 49 Helicopsyche 50 Helicopsyche 51 Atopsyche 52 Neatophyche Trichoptera HELICOPSYCHIDAE Trichoptera HELICOPSYCHIDAE Trichoptera HYDROBIOSIDAE Trichoptera HYDROBIOSIDAE 53 Atopsyche 54 Leptonema 55 Smicridea 56 Metrichia Trichoptera HYDROBIOSIDAE Trichoptera HYDROPSYCHIDAE Trichoptera HYDROPSYCHIDAE Trichoptera HYDROPTILIDAE 57 Rhyacopsyche 58 Nectopsyche 59 Nectopsyche 60 Nectopsyche Trichoptera HYDROPTILIDAE Trichoptera LEPTOCERIDAE Trichoptera LEPTOCERIDAE Trichoptera LEPTOCERIDAE Cusco y Puerto Maldonado, Perú 4 Macroinvertebrados de ríos y quebradas a lo largo de la carretera interoceánica 1 1 2 3 4 Bern Sweeney, David Funk, R. Wills Flowers, Therany Gonzales y Ana Huamantinco 1STROUD Water Research Center, 2 Florida A&M University, 3 The Amazon Center for Environmental Education and Research - ACEER-Peru, 4Universidad Nacional Mayor de San Marcos, Perú Fotos: David Funk. Identificaciones: R. Wills Flowers. Producido por: ACEER en asociación con el STROUD Water Research Center. Gracias al Amazon Center for Environmental Education and Research – ACEER Foundation © David Funk [[email protected]] [fieldguides.fieldmuseum.org] [843] versión 1 02/2017 61 Nectopsyche 62 Nectopsyche 63 Anomalocosmoecus 64 Odontocerid Trichoptera LEPTOCERIDAE Trichoptera LEPTOCERIDAE Trichoptera LIMNEPHILIDAE Trichoptera ODONTOCERIDAE 65 Chimarra 66 Polycentropus 67 Dytiscid-larva 68 Dytiscid Trichoptera PHILOPOTAMIDAE Trichoptera POLYCENTROPODIDAE Coleoptera DYTISCIDAE Coleoptera DYTISCIDAE 69 Dytiscid 70 Pharceonus 71 Elmid 72 Tropisternus Coleoptera DYTISCIDAE Coleoptera ELMIDAE Coleoptera ELMIDAE Coleoptera HYDROPHILIDAE 73 Derallus 74 Hydrophilidae 75 Psephenus 76 Anchytarsus Coleoptera HYDROPHILIDAE Coleoptera HYDROPHILIDAE Coleoptera PSEPHENIDAE Coleoptera PTILODACTYLIDAE 77 Blepharocerid 78 Blepharocerid 79 Generic midge 80 Chironominae Diptera BLEPHARICERIDAE Diptera BLEPHARICERIDAE Diptera CHIRONOMIDAE Diptera CHIRONOMIDAE Cusco and Puerto Maldonado, Perú 5 Macroinvertebrates of rivers and creeks along the interoceanic Highway 1 1 2 3 4 Bern Sweeney, David Funk, R. Wills Flowers, Therany Gonzales y Ana Huamantinco 1STROUD Water Research Center, 2 Florida A&M University, 3 The Amazon Center for Environmental Education and Research - ACEER-Peru, 4Universidad Nacional Mayor de San Marcos, Perú Photos: David Funk. Identifications: R. Wills Flowers. Produced by: ACEER in association with the STROUD Water Research Center. Thanks to the Amazon Center for Environmental Education and Research – ACEER Foundation © David Funk [[email protected]] [fieldguides.fieldmuseum.org] [843] version 1 02/2017 81 Clinotanypus 82 Dixid 83 Simuliid 84 Tabanid Diptera CHIRONOMIDAE Diptera DIXIDAE Diptera SIMULIIDAE Diptera TABANIDAE 85 Tipulid 86 Tipulid 87 Tipulid 88 Mite Diptera TIPULIDAE Diptera TIPULIDAE Diptera TIPULIDAE No Insecta ACARI 89 Amphipod 90 Palaeomonid 91 Trichodactylid 92 Oligochaete No Insecta AMPHIPODA No Insecta PALEOMONIDAE No Insecta TRICHODACTYLIDAE No Insecta OLIGOCHAETA 93 Oligochaete 94 Snail No Insecta OLIGOCHAETA No Insecta GASTROPODA .
Recommended publications
  • The Mayfly Newsletter: Vol
    Volume 20 | Issue 2 Article 1 1-9-2018 The aM yfly Newsletter Donna J. Giberson The Permanent Committee of the International Conferences on Ephemeroptera, [email protected] Follow this and additional works at: https://dc.swosu.edu/mayfly Part of the Biology Commons, Entomology Commons, Systems Biology Commons, and the Zoology Commons Recommended Citation Giberson, Donna J. (2018) "The aM yfly eN wsletter," The Mayfly Newsletter: Vol. 20 : Iss. 2 , Article 1. Available at: https://dc.swosu.edu/mayfly/vol20/iss2/1 This Article is brought to you for free and open access by the Newsletters at SWOSU Digital Commons. It has been accepted for inclusion in The Mayfly eN wsletter by an authorized editor of SWOSU Digital Commons. An ADA compliant document is available upon request. For more information, please contact [email protected]. The Mayfly Newsletter Vol. 20(2) Winter 2017 The Mayfly Newsletter is the official newsletter of the Permanent Committee of the International Conferences on Ephemeroptera In this issue Project Updates: Development of new phylo- Project Updates genetic markers..................1 A new study of Ephemeroptera Development of new phylogenetic markers to uncover island in North West Algeria...........3 colonization histories by mayflies Sereina Rutschmann1, Harald Detering1 & Michael T. Monaghan2,3 Quest for a western mayfly to culture...............................4 1Department of Biochemistry, Genetics and Immunology, University of Vigo, Spain 2Leibniz-Institute of Freshwater Ecology and Inland Fisheries, Berlin, Germany 3 Joint International Conf. Berlin Center for Genomics in Biodiversity Research, Berlin, Germany Items for the silent auction at Email: [email protected]; [email protected]; [email protected] the Aracruz meeting (to sup- port the scholarship fund).....6 The diversification of evolutionary young species (<20 million years) is often poorly under- stood because standard molecular markers may not accurately reconstruct their evolutionary How to donate to the histories.
    [Show full text]
  • Universidad Ute
    UNIVERSIDAD UTE FACULTAD DE CIENCIAS DE LA INGENIERÍA E INDUSTRIAS CARRERA INGENIERÍA AMBIENTAL Y MANEJO DE RIESGOS NATURALES BIODIVERSIDAD DE MACROINVERTEBRADOS BENTÓNICOS, COMO BIOINDICADORES DE CALIDAD DEL AGUA EN EL RÍO SARDINAS, PARROQUIA DE PACTO, CANTÓN QUITO, PROVINCIA DE PICHINCHA TRABAJO PREVIO A LA OBTENCIÓN DEL TÍTULO DE INGENIERA AMBIENTAL Y MANEJO DE RIESGOS NATURALES VERÓNICA SILVANA MACHADO ZÚÑIGA DIRECTORA: MSc. MARÍA ALEXANDRA ENDARA GONZÁLEZ Quito, septiembre, 2018 © Universidad UTE. 2018 Reservados todos los derechos de reproducción FORMULARIO DE REGISTRO BIBLIOGRÁFICO PROYECTO DE TITULACIÓN DATOS DE CONTACTO CÉDULA DE IDENTIDAD: 1717707234 APELLIDOS Y NOMBRES: Machado Zúñiga Verónica Silvana DIRECCIÓN: Luis Tufiño Nº 59 – 91 y Río Timbara EMAIL: [email protected] TELÉFONO FIJO: 02- 2297 - 582 TELÉFONO MOVIL: 09- 9600- 0749 DATOS DE LA OBRA BIODIVERSIDAD DE MACROINVERTEBRADOS BENTÓNICOS, COMO BIOINDICADORES DE CALIDAD DEL TITULO: AGUA EN EL RÍO SARDINAS, PARROQUIA DE PACTO, CANTÓN QUITO, PROVINCIA DE PICHINCHA AUTOR O AUTORES: Verónica Machado FECHA DE ENTREGA DEL 04/09/2018 PROYECTO DE TITULACIÓN: DIRECTOR DEL PROYECTO DE MSc. María Alexandra Endara González TITULACIÓN: PROGRAMA PREGRADO X POSGRADO Ingeniería Ambiental y Manejo de Riesgos TITULO POR EL QUE OPTA: Naturales En este proyecto técnico se realizó un análisis integral de la calidad del agua del Río Sardinas, ubicado en la parroquia rural Pacto del Distrito Metropolitano de Quito, en dos épocas climáticas: lluviosa (abril) y seca (julio). Para su análisis se establecieron a lo largo del río 5 puntos de muestreo, seleccionados por su representatividad. Para la recolección de especímenes se emplearon técnicas in situ, mediante el método cualitativo llevando a cabo la RESUMEN: Mínimo 250 palabras técnica manual y la de red de patada, y el método cuantitativo empleando la técnica de red tipo Surber, después se analizó e identificó el nivel taxonómico según su orden y familia en el laboratorio de la UTE.
    [Show full text]
  • The African Euthyplociidae (Ephemeroptera) (Exeuthyplo~Iinae Subfam
    Aquatic Insects, Vol. 2 (1980), Number4, pp. 217-224. The African Euthyplociidae (Ephemeroptera) (Exeuthyplo~iinae subfam. n.) by M. T. GILLIES ABSTRACT A description is given of the larva of Exeuthyplocia Lestage, which closely resembles that of Afroplocia Lestage. On the basis of larval and adult characters and the apparent burrowing habits of the larvae, a new subfamily, Exeuthyplociinae, is proposed for the two African genera of Euthyplociidae. The Euthyplociidae are a mainly tropical and subtropical family, represented in Africa by the two monotypic genera, Exeuthyplocia Lestage and Afroplocia Lestage. Lestage (1921), in recognising the subfamily Euthyplociinae, never­ theless placed Exeuthyplocia in the Polymitarcinae on the grounds of greater affinity with the latter group than the former. Demoulin (1952), in a comprehensive review, transferred Exeuthyplocia to the Euthyplociinae, treating this as a subfamily of the Ephoronidae. Dealing with the adults only, he characterised the Euthyplociinae as having the fore wing with small inter­ calaries or with marginal anastomoses, MA forking distal to or at the same level as RS and the cubital field with numerous sigmoidal veinlets. Edmunds and Traver (1954) endorsed this action by elevating the group to family level. The larvae of the Euthyplociidae have generally been regarded as sprawling forms, related to but separate from the true, burrowing forms such as the Ephemeridae and Polymitarcidae (Edmunds, Allen and Peters, 1963; De­ moulin, 1970; Edmunds, Jensen and Berner, 1976). However, while this is true for most members of the family of which the larvae are known, it overlooks the fact that in Afroplocia the fore tibia is flattened to an extent that suggests fossorial habits (Barnard, 1940; Edmunds, 1972).
    [Show full text]
  • Feeding Habits, Fine Structure and Microhabitat Preference of Euthyplocia Hecuba (Hagen, 1861) (Ephemeroptera: Euthyplociidae) Nymphs from Honduras
    Folia biologica (Kraków), vol. 56 (2008), No 1-2 doi:10.3409/fb56_1-2.43-49 Feeding Habits, Fine Structure and Microhabitat Preference of Euthyplocia hecuba (Hagen, 1861) (Ephemeroptera: Euthyplociidae) Nymphs from Honduras Stefano FENOGLIO, Tiziano BO, Artur CZEKAJ, and El¿bieta ROŒCISZEWSKA Accepted October 10, 2007 FENOGLIO S., BO T., CZEKAJ A., ROŒCISZEWSKA E. 2008. Feeding habits, fine structure and microhabitat preference of Euthyplocia hecuba (Hagen, 1861) (Ephemeroptera: Euthyplociidae) nymphs from Honduras. Folia biol. (Kraków) 56: 43-49. The Euthyplociidae are a tropical and subtropical Ephemeropteran group. The aim of this study was to augment knowledge on some aspects of the biology and ecology of Euthyplocia hecuba (Hagen, 1861) nymphs. Mayflies were collected in the Rio El Padre, located on the Caribbean slope of Honduras. Diet, microhabitat preference and some fine morphological aspects of the nymphs were examined. E. hecuba nymphs are very specialised organisms that occupy a specific ecological niche in the lotic/benthic community. Immature stages show an evident preference for life in soft and fine substrata. They are detritivorous burrowers that ingest large amounts of fine particles deposited by river flow in sedimentation areas. They show peculiar morphological adaptations for life in this particular substratum, such as mouthparts modified for digging and collection of fine organic sediments, digging legs with shovel-like tibiae and massive femora, and filamentous gills. Key words: Euthyplocia hecuba, Euthyplociidae, Ephemeroptera, neotropics, ecology, morphology. Stefano FENOGLIO, Tiziano BO, University of Piemonte Orientale, Department of Life and Environment Science, Via Bellini 25, 15100 Alessandria, Italy E-mail: [email protected] [email protected] Artur CZEKAJ, Jagiellonian University, Institute of Zoology, Zoological Museum, R.
    [Show full text]
  • Ephemeroptera) with Key to Their Identification
    Rec. %001. Surv. India, 88 ( 1 ): 135 -145, 1991 ON AN ACCOUNT OF INDIAN HEPTAGENllDAE (EPHEMEROPTERA) WITH KEY TO THEIR IDENTIFICATION v. D. SRIVASTAVA Zoological Survey ofIndia, New A lipo re , Calcutta - 700053. INTRODUCTION Mayflies are amphibiotic insect and represent order Ephemeroptera, which inhabit both lotie and len tic ecosystem of our water. Heptageniidae is one of the family of these insects, which in our country is represented by 13 species under 7 genera. It represents almost one seventh of the whole component of Indian mayflies, others are represented by 77 species under 24 genera and 11 families. This is the third biggest, family among Indian Ephemeroptera. World over this family is represented by 378 species under 28 genera (Table - 1, page 144). All the species of this family are endemic to India, though one has extended distribution in orient, thus we have essentially and exclusively oriental element represented under this family. Heptageniidae has 7 species represented in the zone of higher elevation ranging between 1900 to 5297 meters above mean sea level. Ororotsia hutchinsoni Traver (1939) has been recorded as larvae in a lentic fresh water lake at an altitude of 5297 m which happens to be highest elevation record for any mayfly within our limits. Ofour 13 Heptageniidse, male of9, female of 12 and larvae ofonly 1 is known (Table - II, page 145), A key has been formulated to distinguish all 7 genera and 13 species of Indian Heptageniids. SYSTEMATIC Heptageniidae is one of the most distinctive family of mayflies represented almost ·all over the world by 378 species under 28 genera.
    [Show full text]
  • Diversity and Ecosystem Services of Trichoptera
    Review Diversity and Ecosystem Services of Trichoptera John C. Morse 1,*, Paul B. Frandsen 2,3, Wolfram Graf 4 and Jessica A. Thomas 5 1 Department of Plant & Environmental Sciences, Clemson University, E-143 Poole Agricultural Center, Clemson, SC 29634-0310, USA; [email protected] 2 Department of Plant & Wildlife Sciences, Brigham Young University, 701 E University Parkway Drive, Provo, UT 84602, USA; [email protected] 3 Data Science Lab, Smithsonian Institution, 600 Maryland Ave SW, Washington, D.C. 20024, USA 4 BOKU, Institute of Hydrobiology and Aquatic Ecology Management, University of Natural Resources and Life Sciences, Gregor Mendelstr. 33, A-1180 Vienna, Austria; [email protected] 5 Department of Biology, University of York, Wentworth Way, York Y010 5DD, UK; [email protected] * Correspondence: [email protected]; Tel.: +1-864-656-5049 Received: 2 February 2019; Accepted: 12 April 2019; Published: 1 May 2019 Abstract: The holometabolous insect order Trichoptera (caddisflies) includes more known species than all of the other primarily aquatic orders of insects combined. They are distributed unevenly; with the greatest number and density occurring in the Oriental Biogeographic Region and the smallest in the East Palearctic. Ecosystem services provided by Trichoptera are also very diverse and include their essential roles in food webs, in biological monitoring of water quality, as food for fish and other predators (many of which are of human concern), and as engineers that stabilize gravel bed sediment. They are especially important in capturing and using a wide variety of nutrients in many forms, transforming them for use by other organisms in freshwaters and surrounding riparian areas.
    [Show full text]
  • A Phylogenetic Review of the Species Groups of Phylocentropus Banks (Trichoptera: Dipseudopsidae)
    Zoosymposia 18: 143–152 (2020) ISSN 1178-9905 (print edition) https://www.mapress.com/j/zs ZOOSYMPOSIA Copyright © 2020 · Magnolia Press ISSN 1178-9913 (online edition) https://doi.org/10.11646/zoosymposia.18.1.18 http://zoobank.org/urn:lsid:zoobank.org:pub:964C864A-89AC-4ECC-B4D2-F5ACD9F2C05C A phylogenetic review of the species groups of Phylocentropus Banks (Trichoptera: Dipseudopsidae) JOHN S. WEAVER USDA, 230-59 International Airport Cen. Blvd., Bldg. C, Suite 100, Rm 109, Jamaica, New York, 11431, USA. [email protected]; https://orcid.org/0000-0002-5684-0899 ABSTRACT A phylogenetic review of the three species groups of the caddisfly genus Phylocentropus Banks, proposed by Ross (1965), is provided. The Phylocentropus auriceps Species Group contains 9 species: †P. antiquus, P. auriceps, †P. cretaceous, †P. gelhausi, †P. ligulatus, †P. simplex, †P. spiniger, †P. succinolebanensis, and †P. swolenskyi,; the P. placidus Species Group, 4 species: P. carolinus, P. harrisi, P. lucidus, and P. placidus; and the P. orientalis Species Group, 7 species: P. anas, P. narumonae, P. ngoclinh, P. orientalis, P. shigae, P. tohoku, and P. vietnamellus. A hypothetical phylogenetic tree of the genus is presented along with its historic biogeography. Keywords: Trichoptera, Dipseudopsidae, Phylocentropus, amber, systematics, phylogeny, biogeography, Cretaceous, Eocene Ross (1965) proposed three species groups for the genus Phylocentropus which at the time contained 10 spe- cies: 6 extant species (4 from eastern North America and 2 from eastern Asia) and 4 extinct species from Baltic amber. Since then 10 additional species of Phylocentropus have been discovered: 6 extant species (1 from southeastern North America and 5 from Southeast Asia) and 4 fossil species from New Jersey and Lebanese amber.
    [Show full text]
  • Zootaxa, Fifteen New Trichoptera (Insecta) Species from Sumatra
    Zootaxa 2618: 1–35 (2010) ISSN 1175-5326 (print edition) www.mapress.com/zootaxa/ Article ZOOTAXA Copyright © 2010 · Magnolia Press ISSN 1175-5334 (online edition) Fifteen new Trichoptera (Insecta) species from Sumatra, Indonesia JÁNOS OLÁH1 & KJELL ARNE JOHANSON2 1Szent István University, Gödöllő, Centre of Environmental Health. Residence postal address: Tarján u. 28, H-4032 Debrecen, Hungary. E-mail: [email protected] 2Swedish Museum of Natural History, Entomology Department, Box 50007, S-10405 Stockholm, Sweden. E-mail: [email protected] Table of contents Abstract ............................................................................................................................................................................... 2 Introduction ......................................................................................................................................................................... 2 Material and methods .......................................................................................................................................................... 3 Systematics .......................................................................................................................................................................... 3 Stenopsychidae .................................................................................................................................................................... 3 Stenopsyche ochripennis Albarda ...............................................................................................................................
    [Show full text]
  • Bibliographia Trichopterorum
    Entry numbers checked/adjusted: 23/10/12 Bibliographia Trichopterorum Volume 4 1991-2000 (Preliminary) ©Andrew P.Nimmo 106-29 Ave NW, EDMONTON, Alberta, Canada T6J 4H6 e-mail: [email protected] [As at 25/3/14] 2 LITERATURE CITATIONS [*indicates that I have a copy of the paper in question] 0001 Anon. 1993. Studies on the structure and function of river ecosystems of the Far East, 2. Rep. on work supported by Japan Soc. Promot. Sci. 1992. 82 pp. TN. 0002 * . 1994. Gunter Brückerman. 19.12.1960 12.2.1994. Braueria 21:7. [Photo only]. 0003 . 1994. New kind of fly discovered in Man.[itoba]. Eco Briefs, Edmonton Journal. Sept. 4. 0004 . 1997. Caddis biodiversity. Weta 20:40-41. ZRan 134-03000625 & 00002404. 0005 . 1997. Rote Liste gefahrdeter Tiere und Pflanzen des Burgenlandes. BFB-Ber. 87: 1-33. ZRan 135-02001470. 0006 1998. Floods have their benefits. Current Sci., Weekly Reader Corp. 84(1):12. 0007 . 1999. Short reports. Taxa new to Finland, new provincial records and deletions from the fauna of Finland. Ent. Fenn. 10:1-5. ZRan 136-02000496. 0008 . 2000. Entomology report. Sandnats 22(3):10-12, 20. ZRan 137-09000211. 0009 . 2000. Short reports. Ent. Fenn. 11:1-4. ZRan 136-03000823. 0010 * . 2000. Nattsländor - Trichoptera. pp 285-296. In: Rödlistade arter i Sverige 2000. The 2000 Red List of Swedish species. ed. U.Gärdenfors. ArtDatabanken, SLU, Uppsala. ISBN 91 88506 23 1 0011 Aagaard, K., J.O.Solem, T.Nost, & O.Hanssen. 1997. The macrobenthos of the pristine stre- am, Skiftesaa, Haeylandet, Norway. Hydrobiologia 348:81-94.
    [Show full text]
  • The Role of Aquatic Invertebrates in Processing of Wood Debris in Coniferous Forest Streams
    The Role of Aquatic Invertebrates in Processing of Wood Debris in Coniferous Forest Streams N. H. ANDERSON J. R. SEDELL L. M. ROBERTS and F. J. TRISKA • Reprinted from THE AMERICAN MIDLAND NATURALIST Vol. 100, No. 1, July, 1978, pp. 64-82 University of Notre Dame Press Notre Dame, Indiana ,,. The Role of Aquatic Invertebrates in Processing of Wood Debris in Coniferous Forest Streams N. H. ANDERSON Department of Entomology, Oregon State University, Corvallis 97331 J. R. SEDELL, L. M. ROBERTS and F. J. TRISKA Department of Fisheries and Wildlife, Oregon State University, Corvallis 97331 ABSTRACT: A study of the wood-associated invertebrates was undertaken in seven streams of the Coast and Cascade Mountains of Oregon. The amount of wood debris was determined in terms of both weight and surface area. Standing crop of wood per unit area decreases with increasing stream order. Invertebrates associated with wood were functionally categorized and their bio- mass on wood determined. Major xylophagous species were the caddisfly (Heteroplectron californicum), the elmid beetle (Lora avara) and the snail (Oxytrema silicula). Stand- ing crop of these species is greater on wood in the Coast Range than in the Cascades, which is attributed to species composition of available wood debris. The density of L. avara was strongly correlated with the amount of wood available irrespective of stream size within a drainage. The standing crop of invertebrates was about two orders of mag- nitude greater on leaf debris than on wood. A potential strategy for wood consumption, based on microbial conditioning, is pre- sented. The data are used to develop a general scheme of wood processing by inverte- brates in small stream ecosystems.
    [Show full text]
  • Aquatic Insects and Their Potential to Contribute to the Diet of the Globally Expanding Human Population
    insects Review Aquatic Insects and their Potential to Contribute to the Diet of the Globally Expanding Human Population D. Dudley Williams 1,* and Siân S. Williams 2 1 Department of Biological Sciences, University of Toronto Scarborough, 1265 Military Trail, Toronto, ON M1C1A4, Canada 2 The Wildlife Trust, The Manor House, Broad Street, Great Cambourne, Cambridge CB23 6DH, UK; [email protected] * Correspondence: [email protected] Academic Editors: Kerry Wilkinson and Heather Bray Received: 28 April 2017; Accepted: 19 July 2017; Published: 21 July 2017 Abstract: Of the 30 extant orders of true insect, 12 are considered to be aquatic, or semiaquatic, in either some or all of their life stages. Out of these, six orders contain species engaged in entomophagy, but very few are being harvested effectively, leading to over-exploitation and local extinction. Examples of existing practices are given, ranging from the extremes of including insects (e.g., dipterans) in the dietary cores of many indigenous peoples to consumption of selected insects, by a wealthy few, as novelty food (e.g., caddisflies). The comparative nutritional worth of aquatic insects to the human diet and to domestic animal feed is examined. Questions are raised as to whether natural populations of aquatic insects can yield sufficient biomass to be of practicable and sustained use, whether some species can be brought into high-yield cultivation, and what are the requirements and limitations involved in achieving this? Keywords: aquatic insects; entomophagy; human diet; animal feed; life histories; environmental requirements 1. Introduction Entomophagy (from the Greek ‘entoma’, meaning ‘insects’ and ‘phagein’, meaning ‘to eat’) is a trait that we Homo sapiens have inherited from our early hominid ancestors.
    [Show full text]
  • Trichopterological Literature This List Is Informative Which Means
    49 Trichopterological literature Springer, Monika 2006 Clave taxonomica para larvas de las familias del orden Trichoptera This list is informative which means- that it will include any papers (Insecta) de Costa Rica. - Revista de Biologia Tropical 54 from which fellow workers can get information on caddisflies, (Suppl.1):273-286. including dissertations, short notes, newspaper articles ect. It is not limited to formal publications, peer-reviewed papers or publications Szcz§sny, B. 2006 with high impact factor etc. However, a condition is that a minimum The types of caddis fly (Insecta: Trichoptera). - Scientific collections of one specific name of a caddisfly must be given (with the of the State Natural History Museum, Issue 2: R.J.Godunko, exception of fundamental papers e.g. on fossils). The list does not V.K.Voichyshyn, O.S.KIymyshyn (eds.): Name-bearing types and include publications from the internet. - To make the list as complete type series (1). - HaqioanbHa axafleMia Hay« YKpamM. as possible, it is essential that authors send me reprints or ), pp.98-104. xerocopies of their papers, and, if possible, also papers by other authors which they learn of and when I do not know of them. If only Torralba Burrial, Antonio 2006 references of such publications are available, please send these to Contenido estomacal de Lepomis gibbosus (L.1758) (Perciformes: me with the complete citation. - The list is in the interest of the Centrarchidae), incluyendo la primera cita de Ecnomus tenellus caddis workers' community. (Rambur, 1842) (Trichoptera: Ecnomidae) para Aragon (NE Espana). - Boletin de la SEA 39:411-412. 1999 Tsuruishi.Tatsu; Ketavan, Chitapa; Suwan, Kayan; Sirikajornjaru, rionoB.AneKCM 1999 Warunee 2006 Kpacwviup KyiwaHCKM Ha 60 TOAMHU.
    [Show full text]