Sarcoptes Scabiei] Genbank: AWM31286.1 Identical Proteins FASTA Graphics

Total Page:16

File Type:pdf, Size:1020Kb

Sarcoptes Scabiei] Genbank: AWM31286.1 Identical Proteins FASTA Graphics 11/5/2020 cytochrome c oxidase subunit 1, partial (mitochondrion) [Sarcoptes sca - Protein - NCBI Protein COVID-19 is an emerging, rapidly evolving situation. Get the latest public health information from CDC: https://www.coronavirus.gov . Get the latest research from NIH: https://www.nih.gov/coronavirus. GenPept cytochrome c oxidase subunit 1, partial (mitochondrion) [Sarcoptes scabiei] GenBank: AWM31286.1 Identical Proteins FASTA Graphics Go to: LOCUS AWM31286 96 aa linear INV 28-MAY-2018 DEFINITION cytochrome c oxidase subunit 1, partial (mitochondrion) [Sarcoptes scabiei]. ACCESSION AWM31286 VERSION AWM31286.1 DBSOURCE accession MH077557.1 KEYWORDS . SOURCE mitochondrion Sarcoptes scabiei ORGANISM Sarcoptes scabiei Eukaryota; Metazoa; Ecdysozoa; Arthropoda; Chelicerata; Arachnida; Acari; Acariformes; Sarcoptiformes; Astigmata; Psoroptidia; Sarcoptoidea; Sarcoptidae; Sarcoptinae; Sarcoptes. REFERENCE 1 (residues 1 to 96) AUTHORS Lastuti,N.D.R., Rohman,A., Hastutiek,P., Desiandura,K. and Handijatno,D. TITLE Sequence analysis of cytochrome c oxidase subunit 1 gene of Sarcoptes scabiei isolated from goat and rabbit in East Java, Indonesia JOURNAL Unpublished REFERENCE 2 (residues 1 to 96) AUTHORS Lastuti,N.D.R., Rohman,A., Hastutiek,P., Desiandura,K. and Handijatno,D. TITLE Direct Submission JOURNAL Submitted (15-MAR-2018) Department of Veterinary Parasitology, Faculty of Veterinary Medicine, Universitas Airlangga, Kampus C Unair, Jl. Mulyorejo, Surabaya, East Java 60115, Indonesia FEATURES Location/Qualifiers source 1..96 /organism="Sarcoptes scabiei" /organelle="mitochondrion" /host="goat" /db_xref="taxon:52283" /country="Indonesia: Lamongan, East Java" Protein <1..>96 /product="cytochrome c oxidase subunit 1" Region 1..>75 /region_name="Heme_Cu_Oxidase_I" /note="Heme-copper oxidase subunit I. Heme-copper oxidases are transmembrane protein complexes in the respiratory chains of prokaryotes and mitochondria which catalyze the reduction of O2 and simultaneously pump protons across the membrane. The superfamily is...; cl00275" /db_xref="CDD:320873" CDS 1..96 /coded_by="MH077557.1:<1..>290" /codon_start=3 /transl_table=5 ORIGIN 1 lgagfsmlir yqlsqpmgis mnsmfynsvv tahafimiff mvmpimmggf gnlliplmlg 61 sadmayprln nmsfwllpps ltlllisllc gtgsgt // https://www.ncbi.nlm.nih.gov/protein/AWM31286.1 1/1 11/5/2020 cytochrome c oxidase subunit 1, partial (mitochondrion) [Sarcoptes sca - Protein - NCBI Protein COVID-19 is an emerging, rapidly evolving situation. Get the latest public health information from CDC: https://www.coronavirus.gov . Get the latest research from NIH: https://www.nih.gov/coronavirus. GenPept cytochrome c oxidase subunit 1, partial (mitochondrion) [Sarcoptes scabiei] GenBank: AWM31287.1 Identical Proteins FASTA Graphics Go to: LOCUS AWM31287 96 aa linear INV 28-MAY-2018 DEFINITION cytochrome c oxidase subunit 1, partial (mitochondrion) [Sarcoptes scabiei]. ACCESSION AWM31287 VERSION AWM31287.1 DBSOURCE accession MH077558.1 KEYWORDS . SOURCE mitochondrion Sarcoptes scabiei ORGANISM Sarcoptes scabiei Eukaryota; Metazoa; Ecdysozoa; Arthropoda; Chelicerata; Arachnida; Acari; Acariformes; Sarcoptiformes; Astigmata; Psoroptidia; Sarcoptoidea; Sarcoptidae; Sarcoptinae; Sarcoptes. REFERENCE 1 (residues 1 to 96) AUTHORS Lastuti,N.D.R., Rohman,A., Hastutiek,P., Desiandura,K. and Handijatno,D. TITLE Sequence analysis of cytochrome c oxidase subunit 1 gene of Sarcoptes scabiei isolated from goat and rabbit in East Java, Indonesia JOURNAL Unpublished REFERENCE 2 (residues 1 to 96) AUTHORS Lastuti,N.D.R., Rohman,A., Hastutiek,P., Desiandura,K. and Handijatno,D. TITLE Direct Submission JOURNAL Submitted (15-MAR-2018) Department of Veterinary Parasitology, Faculty of Veterinary Medicine, Universitas Airlangga, Kampus C Unair, Jl. Mulyorejo, Surabaya, East Java 60115, Indonesia FEATURES Location/Qualifiers source 1..96 /organism="Sarcoptes scabiei" /organelle="mitochondrion" /host="rabbit" /db_xref="taxon:52283" /country="Indonesia: Mojokerto, East Java" Protein <1..>96 /product="cytochrome c oxidase subunit 1" Region 1..>75 /region_name="Heme_Cu_Oxidase_I" /note="Heme-copper oxidase subunit I. Heme-copper oxidases are transmembrane protein complexes in the respiratory chains of prokaryotes and mitochondria which catalyze the reduction of O2 and simultaneously pump protons across the membrane. The superfamily is...; cl00275" /db_xref="CDD:320873" CDS 1..96 /coded_by="MH077558.1:<1..>290" /codon_start=3 /transl_table=5 ORIGIN 1 lgagfsmlir yqlsqpmgis mnsmfynsvv tahafimiff mvmpimmggf gnlliplmlg 61 sadmayprln nmsfwllpps ltlllisllc gtgsgt // https://www.ncbi.nlm.nih.gov/protein/AWM31287 1/1.
Recommended publications
  • (Acari: Oribatida: Galumnoidea) in Japan
    Taxonomic studies on oribatid mites of the genera Neoribates, Trichogalumna and Cosmogalumna (Acari: Oribatida: Title Galumnoidea) in Japan Author(s) 萩野, 航 Citation 北海道大学. 博士(理学) 甲第13140号 Issue Date 2018-03-22 DOI 10.14943/doctoral.k13140 Doc URL http://hdl.handle.net/2115/72711 Type theses (doctoral) File Information Wataru_Hagino.pdf Instructions for use Hokkaido University Collection of Scholarly and Academic Papers : HUSCAP Doctoral Dissertation Taxonomic studies on oribatid mites of the genera Neoribates, Trichogalumna and Cosmogalumna (Acari: Oribatida: Galumnoidea) in Japan (, , ()) Wataru HAGINO Graduate School of Science, Hokkaido University Department of Natural History Sciences 2018 March Taxonomic studies of three genera of Oribatida in Japan Table of Contents General Introduction ...................................................................................................... 1 Materials and Methods ................................................................................................ 13 Taxonomy ...................................................................................................................... 17 Superfamily Galumnoidea Jacot, 1925 ........................................................................... 17 Family Parakalummidae Grandjean, 1936 ................................................................. 17 Genus Neoribates Berlese, 1915 .............................................................................. 17 Neoribates incisus Hagino, Shimano, and Aoki, 2016 ........................................
    [Show full text]
  • The External Parasites of Birds: a Review
    THE EXTERNAL PARASITES OF BIRDS: A REVIEW BY ELIZABETH M. BOYD Birds may harbor a great variety and numher of ectoparasites. Among the insects are biting lice (Mallophaga), fleas (Siphonaptera), and such Diptera as hippohoscid flies (Hippohoscidae) and the very transitory mosquitoes (Culicidae) and black flies (Simuliidae), which are rarely if every caught on animals since they fly off as soon as they have completed their blood-meal. One may also find, in birds ’ nests, bugs of the hemipterous family Cimicidae, and parasitic dipterous larvae that attack nestlings. Arachnida infesting birds comprise the hard ticks (Ixodidae), soft ticks (Argasidae), and certain mites. Most ectoparasites are blood-suckers; only the Ischnocera lice and some species of mites subsist on skin components. The distribution of ectoparasites on the host varies with the parasite concerned. Some show no habitat preference while others tend to confine themselves to, or even are restricted to, definite areas on the body. A list of 198 external parasites for 2.55 species and/or subspecies of birds east of the Mississippi has been compiled by Peters (1936) from files of the Bureau of Entomology and Plant Quarantine between 1928 and 1935. Fleas and dipterous larvae were omitted from this list. According to Peters, it is possible to collect three species of lice, one or two hippoboscids, and several types of mites on a single bird. He records as many as 15 species of ectoparasites each from the Bob-white (Co&us uirginianus), Song Sparrow (Melospiza melodia), and Robin (Turdus migratorius). The lice and plumicolous mites, however, are typically the most abundant forms present on avian hosts.
    [Show full text]
  • Hotspots of Mite New Species Discovery: Sarcoptiformes (2013–2015)
    Zootaxa 4208 (2): 101–126 ISSN 1175-5326 (print edition) http://www.mapress.com/j/zt/ Editorial ZOOTAXA Copyright © 2016 Magnolia Press ISSN 1175-5334 (online edition) http://doi.org/10.11646/zootaxa.4208.2.1 http://zoobank.org/urn:lsid:zoobank.org:pub:47690FBF-B745-4A65-8887-AADFF1189719 Hotspots of mite new species discovery: Sarcoptiformes (2013–2015) GUANG-YUN LI1 & ZHI-QIANG ZHANG1,2 1 School of Biological Sciences, the University of Auckland, Auckland, New Zealand 2 Landcare Research, 231 Morrin Road, Auckland, New Zealand; corresponding author; email: [email protected] Abstract A list of of type localities and depositories of new species of the mite order Sarciptiformes published in two journals (Zootaxa and Systematic & Applied Acarology) during 2013–2015 is presented in this paper, and trends and patterns of new species are summarised. The 242 new species are distributed unevenly among 50 families, with 62% of the total from the top 10 families. Geographically, these species are distributed unevenly among 39 countries. Most new species (72%) are from the top 10 countries, whereas 61% of the countries have only 1–3 new species each. Four of the top 10 countries are from Asia (Vietnam, China, India and The Philippines). Key words: Acari, Sarcoptiformes, new species, distribution, type locality, type depository Introduction This paper provides a list of the type localities and depositories of new species of the order Sarciptiformes (Acari: Acariformes) published in two journals (Zootaxa and Systematic & Applied Acarology (SAA)) during 2013–2015 and a summary of trends and patterns of these new species. It is a continuation of a previous paper (Liu et al.
    [Show full text]
  • Sarcoptes Scabiei: Past, Present and Future Larry G
    Arlian and Morgan Parasites & Vectors (2017) 10:297 DOI 10.1186/s13071-017-2234-1 REVIEW Open Access A review of Sarcoptes scabiei: past, present and future Larry G. Arlian* and Marjorie S. Morgan Abstract The disease scabies is one of the earliest diseases of humans for which the cause was known. It is caused by the mite, Sarcoptes scabiei,thatburrowsintheepidermisoftheskinofhumans and many other mammals. This mite was previously known as Acarus scabiei DeGeer, 1778 before the genus Sarcoptes was established (Latreille 1802) and it became S. scabiei. Research during the last 40 years has tremendously increased insight into the mite’s biology, parasite-host interactions, and the mechanisms it uses to evade the host’s defenses. This review highlights some of the major advancements of our knowledge of the mite’s biology, genome, proteome, and immunomodulating abilities all of which provide a basis for control of the disease. Advances toward the development of a diagnostic blood test to detect a scabies infection and a vaccine to protect susceptible populations from becoming infected, or at least limiting the transmission of the disease, are also presented. Keywords: Sarcoptes scabiei, Biology, Host-seeking behavior, Infectivity, Nutrition, Host-parasite interaction, Immune modulation, Diagnostic test, Vaccine Background Classification of scabies mites The ancestral origin of the scabies mite, Sarcoptes scabiei, Sarcoptes scabiei was initially placed in the genus Acarus that parasitizes humans and many families of mammals is and named Acarus scabiei DeGeer, 1778. As mite no- not known. Likewise, how long ago the coevolution of S. menclature has evolved, so has the classification of S.
    [Show full text]
  • External Parasite and Vector Control Guidelines AAEP External Parasite and Vector Control Guidelines
    American Association of Equine Practitioners External Parasite and Vector Control Guidelines AAEP External Parasite and Vector Control Guidelines Developed by the AAEP External Parasite Control Task Force Dennis French, DVM, Dipl. ABVP (chair) Tom Craig, DVM, PhD Jerome Hogsette, Jr. PhD Angela Pelzel-McCluskey, DVM Linda Mittel, DVM, MSPH Kenton Morgan, DVM, Dipl. ACT David Pugh, DVM, MS, MAg, Dipl. ACT, ACVN, ACVM Wendy Vaala, DVM, Dipl. ACVIM Published by The American Association of Equine Practitioners 4033 Iron Works Parkway Lexington, KY 40511 First Edition, 2016 © American Association of Equine Practitioners AAEP External Parasite and Vector Control Guidelines TABLE OF CONTENTS Introduction ....................................................................................................Page 2 Ticks ...............................................................................................................Page 3 Flies ..............................................................................................................Page 11 Mites .............................................................................................................Page 29 Lice ...............................................................................................................Page 34 Mosquitoes ...................................................................................................Page 42 External Parasite and Vector Control Guidelines 1 INTRODUCTION Commonly used strategies for external It is important to keep in mind that
    [Show full text]
  • Mites Glossary/Terminology
    Mites Glossary/Terminology Chelicerae: piercing mouthparts Coxae: basal segments of the leg that articulate with or are fused to the body wall. Pedicel (stalk): thin extension off the end of the appendages/legs. Setae: hair-like, cuticular process composed of hollow shaft found on the surface of the legs and body. Tarsal suckers: an attachment organ found on the distil segments of the legs, typically on the end of the pedicel. All mites including those of equines are phylum Arthropoda, class Arachnida, subclass Oval body, coxae 1 and 2 separate from Acari, order Acariformes. The suborder Sar- coxae 3 and 4 with tarsal suckers present on coptiformes or Astigmata contains the family short stalks. All stages occur on host: adult Psoroptidae of which the genera Chorioptes g egg g larva g nymph; Egg to egg 3 weeks. and Psoroptes are equine parasites. The mite can survive off the horse for as long as 69 days in a suitable environment. It is more Categories prevalent in cooler areas and during winter. The mites feed on skin, do not burrow. Chorioptes (equi) bovis The infestation is associated with foot stamp- The genus has now been lumped into a single ing and “greasy heel.” The hypersensivity of species although various populations of the mite individual horses to the infestation varies con- are associated with specific areas of the body of siderably so that some horses will be adversely specific host species.Chorioptes is the cause of leg affected by comparatively few mites where as mange of horses and is usually found in feathered others will serve as a source of reinfestation.
    [Show full text]
  • A Systematic Review of the Bacterial Flora of Mites
    View metadata, citation and similar papers at core.ac.uk brought to you by CORE provided by University of Liverpool Repository 1152 Symbiosis in an overlooked microcosm: a systematic review of the bacterial flora of mites KITTIPONG CHAISIRI1,2, JOHN W. MCGARRY3, SERGE MORAND4 and BENJAMIN L. MAKEPEACE1* 1 Institute of Infection and Global Health, University of Liverpool, 146 Brownlow Hill, Liverpool L3 5RF, UK 2 Department of Helminthology, Faculty of Tropical Medicine, Mahidol University, Bangkok 10400, Thailand 3 School of Veterinary Science, University of Liverpool, 401 Great Newton Street, Liverpool L3 5RP, UK 4 CNRS CIRAD AGIRs, Centre d’Infectiologie Christophe Mérieux du Laos, Vientiane, Lao PDR (Received 12 February 2015; revised 23 March 2015; accepted 20 April 2015; first published online 25 May 2015) SUMMARY A dataset of bacterial diversity found in mites was compiled from 193 publications (from 1964 to January 2015). A total of 143 mite species belonging to the 3 orders (Mesostigmata, Sarcoptiformes and Trombidiformes) were recorded and found to be associated with approximately 150 bacteria species (in 85 genera, 51 families, 25 orders and 7 phyla). From the lit- erature, the intracellular symbiont Cardinium, the scrub typhus agent Orientia, and Wolbachia (the most prevalent sym- biont of arthropods) were the dominant mite-associated bacteria, with approximately 30 mite species infected each. Moreover, a number of bacteria of medical and veterinary importance were also reported from mites, including species from the genera Rickettsia, Anaplasma, Bartonella, Francisella, Coxiella, Borrelia, Salmonella, Erysipelothrix and Serratia. Significant differences in bacterial infection patterns among mite taxa were identified. These data will not only be useful for raising awareness of the potential for mites to transmit disease, but also enable a deeper understanding of the relationship of symbionts with their arthropod hosts, and may facilitate the development of intervention tools for disease vector control.
    [Show full text]
  • 21 March 2017 CURRICULUM VITAE Barry M. Oconnor Personal Born
    21 March 2017 CURRICULUM VITAE Barry M. OConnor Personal Born November 9, 1949, Des Moines, Iowa, USA Citizenship: USA. Education Michigan State University, 1967-69. Major: Biology. Iowa State University, 1969-71. B.S. Degree, June, 1971, awarded with Distinction. Major: Zoology; Minors: Botany, Education. Cornell University, 1973-79. Ph.D. Degree, August, 1981. Major Subject: Acarology; Minor Subjects: Insect Taxonomy, Vertebrate Ecology. Professional Employment Research Zoologist, Department of Zoology, University of California, Berkeley, California; October, 1979 - September, 1980. Assistant Professor of Biology/Assistant Curator of Insects, Museum of Zoology, University of Michigan, Ann Arbor, Michigan; October, 1980 - December, 1986. Associate Professor of Biology/Associate Curator of Insects, Museum of Zoology, University of Michigan, Ann Arbor, Michigan; January, 1987 - April 1999. Professor of Biology/Curator of Insects, Museum of Zoology, University of Michigan, Ann Arbor, Michigan; September 1999 - June 2001. Professor of Ecology and Evolutionary Biology/Curator of Insects, Museum of Zoology, University of Michigan, Ann Arbor, Michigan; July 2001-present Visiting Professor, Escuela Nacional de Ciencias Biologicas, Instituto Politecnico Nacional, Mexico City, Mexico; January-February, 1985. Visiting Professor, The Acarology Summer Program, Ohio State University, Columbus, Ohio; June-July 1980 - present. Honors, Awards and Fellowships National Merit Scholar, 1967-71. B.S. Degree awarded with Distinction, 1971. National Science Foundation Graduate Fellowship, 1973-76. Cornell University Graduate Fellowship, 1976-77. 2 Tawfik Hawfney Memorial Fellowship, Ohio State University, 1977. Outstanding Teaching Assistant, Cornell University Department of Entomology, 1978. President, Acarological Society of America, 1985. Fellow, The Willi Hennig Society, 1984. Excellence in Education Award, College of Literature, Science and the Arts, University of Michigan, 1995 Keynote Speaker, Acarological Society of Japan, 1999.
    [Show full text]
  • Proquest Dissertations
    Evolution of Uniparental Genetic Systems in Dermanyssine Mites (Acari: Mesostigmata) A THESIS SUBMITTED FOR THE DEGREE OF DOCTOR OF PHILOSOPHY OF THE UNIVERSITY OF LONDON by Robert Hamish Cruickshank Molecular Biology Unit, Department of Zoology, The Natural History Museum, Cromwell Road, South Kensington, LONDON SW7 5BD, England, UK Department of Biology, The Galton Laboratory, University College London, 4 Stephenson Way, LONDON NW l 2HE, England, UK September 1997 ProQuest Number: 10045787 All rights reserved INFORMATION TO ALL USERS The quality of this reproduction is dependent upon the quality of the copy submitted. In the unlikely event that the author did not send a complete manuscript and there are missing pages, these will be noted. Also, if material had to be removed, a note will indicate the deletion. uest. ProQuest 10045787 Published by ProQuest LLC(2016). Copyright of the Dissertation is held by the Author. All rights reserved. This work is protected against unauthorized copying under Title 17, United States Code. Microform Edition © ProQuest LLC. ProQuest LLC 789 East Eisenhower Parkway P.O. Box 1346 Ann Arbor, Ml 48106-1346 DEDICATION This thesis is dedicated, with love, to my wife Alice who I met and married whilst working on this project and who has put up with so much to help me get it finished. "The meaning of this degree is that the recipient of instruction is examined for the last time in his life, and is pronounced completely full. After this, no new ideas can be imparted to him. " Stephen Leacock "Sunshine Sketches of a Little Town” ACKNOWLEDGEMENTS This thesis could not have been completed without the guidence, enthusiasm and patience of my supervisor Dr.
    [Show full text]
  • Mites and Ticks (Acari)
    A peer-reviewed open-access journal BioRisk 4(1): 149–192 (2010) Mites and ticks (Acari). Chapter 7.4: 149 doi: 10.3897/biorisk.4.58 RESEARCH ARTICLE BioRisk www.pensoftonline.net/biorisk Mites and ticks (Acari) Chapter 7.4 Maria Navajas1, Alain Migeon1, Agustin Estrada-Peña2, Anne-Catherine Mailleux3, Pablo Servigne4, Radmila Petanović5 1 Institut National de la Recherche Agronomique, UMR CBGP (INRA/IRD/Cirad/Montpellier SupAgro), Campus International de Baillarguet, CS 30016, F-34988 Montferrier sur Lez, cedex, France 2 Faculty of Veterinary Medicine, Department of Parasitology, Miguel Servet 177, 50013-Zaragoza, Spain 3 Université catholique de Louvain, Unité d’écologie et de biogéographie, local B165.10, Croix du Sud, 4-5 (Bâtiment Car- noy), B-1348 Louvain-La-Neuve, Belgium 4 Service d’Ecologie Sociale, Université libre de Bruxelles, CP231, Avenue F. D. Roosevelt, 50, B-1050 Brussels, Belgium 5 Department of Entomology and Agricultural Zoology, Faculty of Agriculture University of Belgrade, Nemanjina 6, Belgrade-Zemun,11080 Serbia Corresponding author: Maria Navajas ([email protected]) Academic editor: David Roy | Received 4 February 2010 | Accepted 21 May 2010 | Published 6 July 2010 Citation: Navajas M et al. (2010) Mites and ticks (Acari). Chapter 7.4. In: Roques A et al. (Eds) Arthropod invasions in Europe. BioRisk 4(1): 149–192. doi: 10.3897/biorisk.4.58 Abstract Th e inventory of the alien Acari of Europe includes 96 species alien to Europe and 5 cryptogenic species. Among the alien species, 87 are mites and 9 tick species. Besides ticks which are obligate ectoparasites, 14 mite species belong to the parasitic/predator regime.
    [Show full text]
  • Beaulieu, F., W. Knee, V. Nowell, M. Schwarzfeld, Z. Lindo, V.M. Behan
    A peer-reviewed open-access journal ZooKeys 819: 77–168 (2019) Acari of Canada 77 doi: 10.3897/zookeys.819.28307 RESEARCH ARTICLE http://zookeys.pensoft.net Launched to accelerate biodiversity research Acari of Canada Frédéric Beaulieu1, Wayne Knee1, Victoria Nowell1, Marla Schwarzfeld1, Zoë Lindo2, Valerie M. Behan‑Pelletier1, Lisa Lumley3, Monica R. Young4, Ian Smith1, Heather C. Proctor5, Sergei V. Mironov6, Terry D. Galloway7, David E. Walter8,9, Evert E. Lindquist1 1 Canadian National Collection of Insects, Arachnids and Nematodes, Agriculture and Agri-Food Canada, Otta- wa, Ontario, K1A 0C6, Canada 2 Department of Biology, Western University, 1151 Richmond Street, London, Ontario, N6A 5B7, Canada 3 Royal Alberta Museum, Edmonton, Alberta, T5J 0G2, Canada 4 Centre for Biodiversity Genomics, University of Guelph, Guelph, Ontario, N1G 2W1, Canada 5 Department of Biological Sciences, University of Alberta, Edmonton, Alberta, T6G 2E9, Canada 6 Department of Parasitology, Zoological Institute of the Russian Academy of Sciences, Universitetskaya embankment 1, Saint Petersburg 199034, Russia 7 Department of Entomology, University of Manitoba, Winnipeg, Manitoba, R3T 2N2, Canada 8 University of Sunshine Coast, Sippy Downs, 4556, Queensland, Australia 9 Queensland Museum, South Brisbane, 4101, Queensland, Australia Corresponding author: Frédéric Beaulieu ([email protected]) Academic editor: D. Langor | Received 11 July 2018 | Accepted 27 September 2018 | Published 24 January 2019 http://zoobank.org/652E4B39-E719-4C0B-8325-B3AC7A889351 Citation: Beaulieu F, Knee W, Nowell V, Schwarzfeld M, Lindo Z, Behan‑Pelletier VM, Lumley L, Young MR, Smith I, Proctor HC, Mironov SV, Galloway TD, Walter DE, Lindquist EE (2019) Acari of Canada. In: Langor DW, Sheffield CS (Eds) The Biota of Canada – A Biodiversity Assessment.
    [Show full text]
  • (Acari: Prostigmata: Cunaxidae) from the Philippines Leonila A
    Additional contributions to the knowledge of predatory mites of the subfamily Coleoscirinae (Acari: Prostigmata: Cunaxidae) from the Philippines Leonila A. Corpuz-Raros, Jeremy C.B. Naredo, Rufino C. Garcia To cite this version: Leonila A. Corpuz-Raros, Jeremy C.B. Naredo, Rufino C. Garcia. Additional contributions tothe knowledge of predatory mites of the subfamily Coleoscirinae (Acari: Prostigmata: Cunaxidae) from the Philippines. Acarologia, Acarologia, 2017, 57 (45), pp.913-939. 10.24349/acarologia/20174216. hal-01598425 HAL Id: hal-01598425 https://hal.archives-ouvertes.fr/hal-01598425 Submitted on 29 Sep 2017 HAL is a multi-disciplinary open access L’archive ouverte pluridisciplinaire HAL, est archive for the deposit and dissemination of sci- destinée au dépôt et à la diffusion de documents entific research documents, whether they are pub- scientifiques de niveau recherche, publiés ou non, lished or not. The documents may come from émanant des établissements d’enseignement et de teaching and research institutions in France or recherche français ou étrangers, des laboratoires abroad, or from public or private research centers. publics ou privés. ACAROLOGIA A quarterly journal of acarology, since 1959 Publishing on all aspects of the Acari All information: http://www1.montpellier.inra.fr/CBGP/acarologia/ [email protected] Acarologia is proudly non-profit, with no page charges and free open access Please help us maintain this system by encouraging your institutes to subscribe to the print version of the journal and by sending
    [Show full text]