This is a test site. The production site with full data is available at GBIF.org
{{nav.loginGreeting}}
  • Get data
      • Occurrences
      • GBIF API
      • Species
      • Datasets
      • Occurrence snapshots
      • Hosted portals
      • Trends
  • How-to
    • Share data

      • Quick-start guide
      • Dataset classes
      • Data hosting
      • Standards
      • Become a publisher
      • Data quality
      • Data papers
    • Use data

      • Featured data use
      • Citation guidelines
      • GBIF citations
      • Citation widget
      • Guides and documentation
  • Tools
    • Publishing

      • IPT
      • Data validator
      • GeoPick
      • New data model
      • GRSciColl
      • Suggest a dataset
      • Metabarcoding data toolkit
    • Data access and use

      • Hosted portals
      • Scientific collections
      • Data processing
      • Derived datasets
      • rgbif
      • pygbif
      • SQL downloads
      • Tools catalogue
    • GBIF labs

      • Species matching
      • Name parser
      • Sequence ID
      • Relative observation trends
      • GBIF data blog
  • Community
    • Network

      • Participant network
      • Nodes
      • Publishers
      • Network contacts
      • Community forum
      • alliance for biodiversity knowledge
    • Volunteers

      • Mentors
      • Ambassadors
      • Translators
      • Citizen scientists
    • Activities

      • Capacity development
      • Programmes & projects
      • Training and learning resources
      • Data Use Club
      • Living Atlases
  • About
    • Inside GBIF

      • What is GBIF?
      • Become a member
      • Governance
      • Strategic framework
      • Work Programme
      • Funders
      • Partnerships
      • Release notes
      • Contacts
    • News & outreach

      • News
      • Subscribe
      • Events
      • Awards
      • Science Review
      • Data use
      • Thematic communities
  • User profile

Thermocyclops inversus Kiefer, 1936

Dataset
GBIF Backbone Taxonomy
Rank
SPECIES
Published in
Kiefer, F. (1936). Brasilianische Ruderfusskrebse (Crustacea Copepoda), gesammelt von Herrn Dr. Otto Schubart. II. Mitteilung. Zoologischer Anzeiger, 114(5–6):129–133, figs. 1–8. (2–v–1936). https://www.marinespecies.org/copepoda/aphia.php?p=sourcedetails&id=96484

Classification

kingdom
Animalia
phylum
Arthropoda
class
Copepoda
order
Cyclopoida
family
Cyclopidae
genus
Thermocyclops
species
Thermocyclops inversus

Name

Synonyms
Mesocyclops inversus Kiefer, 1936
Homonyms
Thermocyclops inversus Kiefer, 1936

Bibliographic References

  1. Alvarez-Silva, C., S. Gómez-Aguirre & M.G. Miranda-Arce. (2002). Primer registro de Thermocylops inversus (Copepoda: Cyclopidae) en los Pantanos de Cental, Tabasco, Mexico. [First record of Thermocyclops inverses (Copepoda: Cyclopidae) in Centla Swamps, Tabasco, Mexico. <em>Hidrobiologia.</em> 12(2):170-171.
  2. Alves, R.C.P. (2011). Inter-relações entre zooplâncton e fitoplâncton mediante herbivoria na Lagoa do Camargo (zona de desembocadura do Rio Paranapanema na Represa de Jurumirim). [Interrelationships between zooplankton and phytoplankton through herbivory in Camargo Lake (mouth area of the Paranapanema River at the Jurumirim Reservoir).]. <em>Tese de Doutorado, Instituto de Biociências, Universidade Estadual Paulista “Júlio de Mesquita Filho” (UNESP), Campus de Botucatu, Botucatu, São Paulo, Brazil.</em> 143 pp. [In Portuguese; English abstract].
  3. Bezerra-Neto, J.F. & R.M. Pinto-Coelho. (2007). Diel vertical migration of the copepod Thermocyclops inversus (Kiefer, 1936) in a tropical reservoir: the role of oxygen and the spatial overlap with Chaoborus. Aquatic Ecology 41(4):535-545.
  4. Cervantes-Martínez, A., M.A. Gutiérrez-Aguirre, M. Elías-Gutiérrez, A.M. Arce-Ibarra & A. García-Morales. (2018). Aquatic biodiversity in cenotes from the Yucatán Peninsula (Quintana Roo, México). <em>Teoría y Praxis.</em> 25:49-68.
  5. Coelho, P.N. (2020). Diversidade beta e funcional do zooplâncton em lagoas marginais com conectividade hidrológica com um rio tropical. [Beta and functional diversity of zooplankton in marginal lagoons with hydrological connectivity to a tropical river.]. <em>Tese,Instituto de Biociências de Botucatu, Universidade Estadual Paulista Júlio de Mesquita Filho (UNESP) - Campus de Botucatu, Botucatu, São Paulo, Brazil.</em> 93 pp. [In Portuguese; English abstract].
  6. Elías-Gutiérrez, M. (2006). Estudio comparativo del zooplancton en dos regiones de México. [Comparative study of the zooplankton in two regions of Mexico.]. <em>El Colegio de la Frontera Sur, Informe final SNIB CONABIO proyecto No. AS019, México, D.F., Mexico.</em> 61 pp. [In Spanish and English].
  7. Elías-Gutiérrez, M., F. Martínez-Jeronimo, N.V. Ivanova, M. Valdez-Moreno & P.D.N. Hebert. (2008). DNA barcodes for Cladocera and Copepoda from Mexico and Guatemala, highlights and new discoveries. Zootaxa 1839:1-42.
  8. Franke, U. (1989). Katalog zur Sammlung limnischer Copepoden von Prof. Dr. Friedrich Kiefer (Mit einem Gesamtverzeichnis seiner Publikationen). [Catolog of the freshwater copepods of Dr. Friedrich Kiefer.]. <em>Carolinea Beiheft, Karlsrühe.</em> 5:1-433, figs. 1-2.
  9. Gomes, M.M.C.C. (2013). Estrutura e composição em espécies da comunidade zooplanctônica de lagoas naturais da região de Lagoa Santa, Minas Gerais. [Structure and species composition of the zooplankton community of natural lakes in the Lagoa Santa region, Minas Gerais.]. <em>Dissertação de Mestrado, Universidade Federal de Minas Gerais, Belo Horizonte, Minas Gerais, Brazil.</em> 92 pp. [In Portuguese; English abstract].
  10. Kiefer, F. (1936). Brasilianische Ruderfusskrebse (Crustacea Copepoda), gesammelt von Herrn Dr. Otto Schubart. II. Mitteilung. [Brazilian copepods (Crustacea Copepoda), collected by Dr. Otto Schubart, II. Communication.]. <em>Zoologischer Anzeiger.</em> 114(5-6):129-133, figs. 1-8. (2-v-1936).
  11. Kiefer, F. (1938). Ruderfusskrebse (Crustacea Copepoda.) aus Mexiko. [Copepods (Crustacea Copepoda.) from Mexico. <em>Zoologischer Anzeiger.</em> 123(10-12):274-280, figs. 1-20. (15-ix-1938).
  12. Meirinho, P.A. & M. Pompêo. (2015). Capitulo 4. Histórico de estudos sobre a comunidade zooplanctônica do reservatório Rio Grande ao longo de tempo e sua heterogeneidade espacial. [Chapter 4. History of studies on the zooplankton community of the Rio Grande reservoir over time and its spatial heterogeneity.]. <em>In: Pompêo, M., V. Moschini-Carlos, P.Y. Nishimura, S. Cardoso da Silva & J.C. Lopez Doval (Orgs.). Ecologia de reservatórios e interfaces. Instituto de Biociências da Universidade de São Paulo, São Paulo, Brazil.</em> :59-71. [In Portuguese]. 10.11606/9788585658526
  13. Mercado-Salas, N.F. & E. Suárez-Morales. (2011). Morfologia, diversidad y distribucion de los Cyclopoida (Copepoda) de zonas aridas del centro-norte de Mexico. I. Cyclopinae. [Morphology, diversity, and distribution of the Cyclopoida (Copepoda) from arid areas of central-north Mexico. I. Cyclopinae. ]. <em>Hidrobiologica.</em> 21(1):1-25.(Spanish).
  14. Nishimura, P.Y., P. do A. Meirinho, V. Moschini-Carlos & M.L.M. Pompêo. (2014). Does the plankton community follow the horizontal water quality heterogeneity in a tropical urban reservoir (Guarapiranga reservoir, São Paulo, Brazil)?. <em>Limnetica.</em> 33(2):263-280. 10.23818/limn.33.21
  15. Perbiche-Neves, G., P.H.C. Corgosinho, D. Previattelli, E. Suárez-Morales, M.G. Nogueira & C.E.F. Rocha. (2025). Catalogue for identification of the most common lacustrine and riverine cyclopoid copepod (Crustacea) species in plankton of La Plata Basin, South America. <em>Zoologia (Curitiba).</em> 42: 1-47. e24023. 10.1590/S1984-4689.v42.e24023
  16. Pereira, R.H.G. (2003). Análise da distribuiçao, densidade e diversidade de Copepoda Calanoida e Cyclopoida nos reservatórios e tributários do médio e baixo rio Tietê e sua relaço com as características limnológicas do sistema. [Analysis of the distribution, density and diversity of Copepoda Calanoida and Cyclopoida in the reservoirs and tributaries of the middle and lower Tietê River and their relationship with the limnological characteristics of the system.]. <em>Tese de Doutoramento, Núcleo de Estudos em Ecossistemas Aquáticos (NEEA), Escola de Engenharia de Sao Carlos, Universidade de So Paulo, Sao Carlos, Brazil.</em> 289 pp. (Portuguese).
  17. Ramírez-Razo, R.A. (2008). Análisis del recurso acuático (sistemas lénticos) de Morelos en la parte norte-oriente. [Analysis of the aquatic resource (lentic systems) in the northeast part of Morelos.]. <em>Tesis del Titulo de Biologo, Facultad de Estudios Superiores "Zaragoza", Universidad Nacional Autónoma de México, México, D.F., Mexico.</em> 178 pp. [In Spanish].
  18. Retana-Ramírez, J. & G.D. Vázquez-Arroyo. (2015). Importancia ecológica y abundancia del zooplancton, en el Microreservorio Huitchila en el Estado de Morelos, México. [Ecological importance and abundance of zooplankton in the Huitchila Microreservoir in the State of Morelos, Mexico.]. <em>Tesis del Titulo de Biologo, Facultad de Estudios Superiores Zaragoza, Universidad Nacional Autónoma de México, México, D.F., Mexico.</em> 98 pp. [In Spanish].
  19. Silva, W.M. & T. Matsumura-Tundisi. (2005). DNA extraction and ITS2 (internal transcribed spacer 2) gene sequences of some Brazilian freshwater copepods. Proceedings of the International Association of Theoretical and Applied Limnology 29(1):409-413.
  20. Silva, W.M. & T. Matsumura-Tundisi. (2005). Taxonomy, ecology, and geographical distribution of the species of the genus Thermocyclops Kiefer, 1927 (Copepoda, Cyclopoida) in Sao Paulo State, Brazil, with description of a new species. Brazilian Journal of Biology 65(3):521-531.
What is GBIF? API FAQ Newsletter Privacy Terms and agreements How to cite? Code of Conduct Acknowledgements
Contact GBIF Secretariat Universitetsparken 15 DK-2100 Copenhagen Ø Denmark
GBIF is a Global Core Biodata Resource