Auswahl der wissenschaftlichen Literatur zum Thema „Euphausiacia“

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Zeitschriftenartikel zum Thema "Euphausiacia"

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Shen, Xin, Haiqing Wang, Minxiao Wang, and Bin Liu. "The complete mitochondrial genome sequence of Euphausia pacifica (Malacostraca: Euphausiacea) reveals a novel gene order and unusual tandem repeats." Genome 54, no. 11 (2011): 911–22. http://dx.doi.org/10.1139/g11-053.

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Euphausiid krill are dominant organisms in the zooplankton population and play a central role in marine ecosystems. Euphausia pacifica (Malacostraca: Euphausiacea) is one of the most important and dominant crustaceans in the North Pacific Ocean. In this paper, we described the gene content, organization, and codon usage of the E. pacifica mitochondrial genome. The mitochondrial genome of E. pacifica is 16 898 bp in length and contains a standard set of 13 protein-coding genes, 2 ribosomal RNA genes, and 22 transfer RNA genes. Translocation of three transfer RNAs (trnL1, trnL2, and trnW) was fo
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Gómez-Gutiérrez, J. "HATCHING MECHANISMS AND DEATH OF EUPHAUSIID EMBRYOS DURING HATCHING PROCESS: EVIDENCES FOR EVOLUTIONARY REVERSAL OF THE FREE-LIVING NAUPLIUS." CICIMAR Oceánides 21, no. 1-2 (2006): 63. http://dx.doi.org/10.37543/oceanides.v21i1-2.26.

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This essay attempts to summarize and hypothetically reconstruct the original condition for there productive strategy and hatching mechanisms of the family Euphausiidae (Order Euphausiacea). Comparison is made of the hatching mechanisms and hatching success rates among five broad cast-spawning ( Euphausia pacifica, Euphausia eximia, Euphausia distinguenda, Thysanoes saspinifera, and Thysanoessa inspinata) and two sac-spawning euphausiid species ( Nematoscelis difficilis and Nyctiphanes simplex) collected from the Oregon coast, Bahía Magdalena (west coast of Baja California peninsula), and Gulf
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Gómez-Gutiérrez, J. "HATCHING MECHANISMS AND DEATH OF EUPHAUSIID EMBRYOS DURING HATCHING PROCESS: EVIDENCES FOR EVOLUTIONARY REVERSAL OF THE FREE-LIVING NAUPLIUS." CICIMAR Oceánides 21, no. 1-2 (2006): 63. http://dx.doi.org/10.37543/oceanides.v21i1-2.26.

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This essay attempts to summarize and hypothetically reconstruct the original condition for there productive strategy and hatching mechanisms of the family Euphausiidae (Order Euphausiacea). Comparison is made of the hatching mechanisms and hatching success rates among five broad cast-spawning ( Euphausia pacifica, Euphausia eximia, Euphausia distinguenda, Thysanoes saspinifera, and Thysanoessa inspinata) and two sac-spawning euphausiid species ( Nematoscelis difficilis and Nyctiphanes simplex) collected from the Oregon coast, Bahía Magdalena (west coast of Baja California peninsula), and Gulf
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Casanova, Bernadette, Laetitia De Jong, and Xavier Moreau. "Carapace and mandibles ontogeny in the Dendrobranchiata (Decapoda), Euphausiacea, and Mysidacea (Crustacea): a phylogenetic interest." Canadian Journal of Zoology 80, no. 2 (2002): 296–306. http://dx.doi.org/10.1139/z02-011.

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The ontogeny of the carapace and the mandibles has been studied for one species of Dendrobranchiata (Decapoda), four species of Euphausiacea, and three species of Mysidacea (one species of Lophogastrida and two species of Mysida). The protocephalic origin of the carapace, which arises from the antennar tergite, is confirmed. During larval development the progressive dorsal insertion of the carapace leads to the opening of the tergites of both cephalic and thoracic segments. The opening of the eight thoracic segments (TS) occurs in Euphausiacea and Decapoda only, and is done in three steps (TS1
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Castellanos-Osorio, Iván A., and Eduardo Suárez-Morales. "Parasitic isopods (Crustacea: Dajidae) of euphausiids (Crustacea: Euphausiacea) in the western Caribbean Sea." Journal of Natural History 55, no. 13-14 (2021): 921–31. https://doi.org/10.1080/00222933.2021.1931723.

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Castellanos-Osorio, Iván A., Suárez-Morales, Eduardo (2021): Parasitic isopods (Crustacea: Dajidae) of euphausiids (Crustacea: Euphausiacea) in the western Caribbean Sea. Journal of Natural History 55 (13-14): 921-931, DOI: 10.1080/00222933.2021.1931723, URL: http://dx.doi.org/10.1080/00222933.2021.1931723
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Casanova, Bernadette. "Ordre des Euphausiacea Dana, 1852." Crustaceana 76, no. 9 (2003): 1083–121. http://dx.doi.org/10.1163/156854003322753439.

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Mauchline, J. "Feeding appendages of the Euphausiacea (Crustacea)." Journal of Zoology 153, no. 1 (2009): 1–43. http://dx.doi.org/10.1111/j.1469-7998.1967.tb05029.x.

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Eskinazi-Sant'Anna, E. M. "Sticholonche zanclea (Protozoa, Actinopoda) in fecal pellets of copepods and Euphausia sp. in Brazilian coastal waters." Brazilian Journal of Biology 66, no. 3 (2006): 839–47. http://dx.doi.org/10.1590/s1519-69842006000500009.

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Fecal pellets produced by mesozooplanktonic copepods (Centropages velificatus and Paracalanus parvus) and macrozooplanktonic Euphausiacea (Euphausia sp.) were examined using scanning electron microscopy. Fragments of the protozoan Sticholonche zanclea were found in both copepod and in Euphausia sp. fecal pellets, even when the abundance of the protozoan in the water was low. The results suggest that S. zanclea is an important food resource for different trophic levels, including meso- and macrozooplankton, in Brazilian coastal waters.
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Haywood, G. J., and Carolyn W. Burns. "Growth of Nyctiphanes (Euphausiacea) on different diets." Journal of Experimental Marine Biology and Ecology 289, no. 1 (2003): 139–51. http://dx.doi.org/10.1016/s0022-0981(03)00043-1.

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Mikkelsen, Paula M. "The Euphausiacea of eastern Florida (Crustacea: Malacostraca)." Proceedings of the Biological Society of Washington 100 (June 12, 1987): 275–95. https://doi.org/10.5281/zenodo.13522729.

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Dissertationen zum Thema "Euphausiacia"

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Gurney, Leigh Josephine. "Feeding biology of three euphausiid species in the vicinity of the Prince Edward Archipelago (Southern Ocean)." Thesis, Rhodes University, 2000. http://hdl.handle.net/10962/d1005381.

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The feeding biology of three euphausiid species, Euphausia vallentini (adults and juveniles), E. longirostris and Nematoscelis megalops was investigated during austral autumn (April/May) of 1998 and 1999, in the vicinity of the Prince Edward Islands (Southern Ocean). Data on the abundance and biomass of these species, estimated from bongo net tows, were investigated. Trophic position was assessed using gut contents and stable nitrogen isotope measurements. Feeding rate and daily carbon ration were estimated using the gut fluorescence and the gut fullness techniques. Vertical migrations into th
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Bernard, Anthony Thomas Firth. "Euphausiid population structure and grazing in the Indian sector of the Antarctic Polar Frontal Zone, during austral autumn." Thesis, Rhodes University, 2005. http://hdl.handle.net/10962/d1015960.

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The trophodynamics of the numerically dominant euphausiid species within a region of high mesoscale oceanographic variability in the southwest Indian sector of the Antarctic Polar Frontal Zone (PFZ) were investigated during the austral autumns April/May) of 2004 and 2005. During the 2004 survey, sub-surface (200 m) temperature profiles indicated that an intense frontal feature, formed by the convergence of the Sub-Antarctic Front (SAF) and the Antarctic Polar Front (APF) bisected the survey area into two distinct zones, the Sub- Antarctic Zone (SAZ) and the Antarctic Zone (AAZ). Total integrat
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Harkins, Gordon W. "Studies on the population genetics of Euphausiids: a comparison of patterns in plagic taxa displaying different distributions and life-histories." Thesis, University of the Western Cape, 2006. http://etd.uwc.ac.za/index.php?module=etd&action=viewtitle&id=gen8Srv25Nme4_6509_1184928511.

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<p>The systematic and population genetic relationships were characterised for three ecologically related euphausiid species: Euphausia lucens, E. recurva and E. vallentini. These species have different geographical distributions and life histories. All three species have a circumpolar distribution in the Southern Hemisphere while E. recurva is also distributed in the North Pacific. DNA sequence variation was determined for three regions of mitochondrial DNA and a single nuclear gene. It was conclusively demonstrated that both E. lucens and E. vallentini represent valid taxonomic species with f
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Pillar, Stanley C. "Distribution and population dynamics of Euphausia lucens (Euphausiacea) in the southern Benguela current." Doctoral thesis, University of Cape Town, 1987. http://hdl.handle.net/11427/8406.

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Bibliography: leaves 182-196.<br>The thesis first reviews the research on zooplankton ecology in the Benguela system and then evaluates the contribution of euphausiids to the zooplankton biomass of the southern Benguela region. The study further investigates the population dynamics and maintenance of the dominant euphausiid, Euphausia lucens, principally in the St Helena Bay region because of its importance as a recruitment area for the pelagic fishery.
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Menezes, Barbara Santos. "Distribuição de euphausiacea (Crustacea) (krill) no Arquipélago de São Pedro e São Paulo." Florianópolis, SC, 2012. http://repositorio.ufsc.br/xmlui/handle/123456789/96311.

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Dissertação (mestrado) - Universidade Federal de Santa Catarina, Centro de Ciências Biológicas, Programa de Pós-Graduação em Ecologia, Florianópolis, 2012<br>Made available in DSpace on 2012-10-26T10:48:09Z (GMT). No. of bitstreams: 1 302488.pdf: 4210895 bytes, checksum: 728b1bedc7603ae02f4550f94e42d36b (MD5)<br>Eufausiáceos podem ter sua distribuição afetada por diversos fatores, como a temperatura, massas d'água e a presença de uma topografia abrupta, como quebras de plataformas continentais e cordilheiras submarinas. O Arquipélago de São Pedro e São Paulo (ASPSP) (0°55'00"N e 29°20'45"W) co
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LIMA, Cynthia Dayanne Mello de. "Distribuição vertical de Euphausiacea ao largo do arquipélago de São Pedro e São Paulo." Universidade Federal de Pernambuco, 2016. https://repositorio.ufpe.br/handle/123456789/18330.

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Submitted by Fabio Sobreira Campos da Costa (fabio.sobreira@ufpe.br) on 2017-02-16T13:22:40Z No. of bitstreams: 2 license_rdf: 1232 bytes, checksum: 66e71c371cc565284e70f40736c94386 (MD5) Dissertaçãofinal_CynthiaLima.pdf: 1671444 bytes, checksum: a618adc7ce746bd89739101831df619e (MD5)<br>Made available in DSpace on 2017-02-16T13:22:40Z (GMT). No. of bitstreams: 2 license_rdf: 1232 bytes, checksum: 66e71c371cc565284e70f40736c94386 (MD5) Dissertaçãofinal_CynthiaLima.pdf: 1671444 bytes, checksum: a618adc7ce746bd89739101831df619e (MD5) Previous issue date: 2016-06-29<br>CNPq<br>Este estudo
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Albessard, Eric. "Etude de la structure et du métabolisme lipidique de l'euphausiacé Meganyctiphanes norvegica : influence d'un gradient tropho-climatique." Lyon 1, 2003. http://www.theses.fr/2003LYO10045.

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Le but de cette étude est d'évaluer l'impact d'un gradient climatique et trophique sur la structure et le métabolisme des lipides de l'euphausiacé Meganyctiphanes norvegica entre trois biotopes très contrastés: la Mer Ligure, La Mer de Clyde et le Kattegat afin de préciser les mécanismes adaptatifs de l'espèce. L'étude de la reproduction et des facteurs environnementaux (conditions trophiques, température et salinité) agissant sur les lipides, composante énergétique essentielle, rassemble les variables majeures déterminant le succès de l'espèce. La reproduction de M. Norvegica fait largement a
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Saunders, Ryan Alexander. "Ecological investigations of euphausiids at high latitudes." Thesis, St Andrews, 2007. http://hdl.handle.net/10023/347.

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DEMONER, L. E. "Distribuição e Diversidade de Euphausiacea (crustacea) na Bacia do Espírito Santo e na Bacia de Campos (brasil)." Universidade Federal do Espírito Santo, 2017. http://repositorio.ufes.br/handle/10/9125.

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Made available in DSpace on 2018-08-01T23:42:36Z (GMT). No. of bitstreams: 1 tese_10178_Dissertacao Lilian Demoner.pdf: 1566710 bytes, checksum: 6b0deea80061b242ada5a487d9fa0f25 (MD5) Previous issue date: 2017-03-02<br>Os eufausiáceos representam uma parcela importante do zooplâncton, atuando no controle top-down e bottom-up nas redes alimentares marinhas e desempenhando um importante papel no transporte de carbono para o fundo oceânico. Porém, ainda pouco se sabe sobre a ocorrência e distribuição dos eufausiáceos nas águas da região Sudeste do Brasil, principalmente em águas profundas. Este
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Sterley, Jessica Anne. "Trophodynamics of carnivorous zooplankton in the region of the subtropical convergence within the Indian sector of the Southern Ocean, with particular emphasis on chaetognaths." Thesis, Rhodes University, 2009. http://hdl.handle.net/10962/d1005478.

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Trophodynamics of carnivorous zooplankton in the region of the Subtropical Convergence (STC) in the Indian sector of the Southern Ocean was investigated during austral autumn (April 2007) as part of the first cruise of the Southern Ocean Ecosystem Variability Study. Within the region of the study, the STC was well defined by the 14°C surface isotherm which separated the Agulhas Return Current and Subtropical water in the north from Sub-Antarctic waters to the south. Total average abundance (3.89 ± 5.46ind 100m-3) and biomass (0.14 ± 0.27mg Dwt 100m-3) of carnivorous zooplankton south of the fr
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Bücher zum Thema "Euphausiacia"

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Timofeev, S. F. Biologii︠a︡ i︠a︡it︠s︡ ėvfauzievykh rakoobraznykh (Euphausiacea). Kolʹskiĭ nauch. t︠s︡entr RAN, 2006.

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Laubitz, Diana R. Synopsis speciorum: Crustacea: Euphausiacea et Mysidacea. National Museum of Natural Sciences, National Museums of Canada, 1986.

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Drobysheva, S. S. Ėvfauziidy Barent͡s︡eva mori͡a︡ i ikh rolʹ v formirovanii promyslovoĭ bioprodukt͡s︡ii. Izd-vo PINRO, 1994.

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Budziński, E. Possibilities of processing and marketing of products made from Antarctic krill: By E. Budziński, P. Bykowski and D. Dutkiewicz. Food and Agriculture Organization of the United Nations, 1985.

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Budziński, E. Possibilities of processing and marketing of products made from Antarctic krill. British Library, Lending Division, 1986.

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P, Bykov V., ed. Tekhnologii͡a︡ krili͡a︡. Vses. nauchno-issl. in-t morskogo rybnogo khozi͡a︡ĭstva i okeanografii, 1989.

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Baker, A. de C. A practical guide to the Euphausiids of the world. Natural History Museum, 1990.

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D, Kathman R., and Canada. Dept. of Fisheries and Oceans., eds. Identification manual to the Mysidacea and Euphausiacea of the Northeast Pacific. Dept. of Fisheries and Oceans, 1986.

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Canada. Dept. of Fisheries and Oceans. Identification Manual to the Mysidacea and Euphausiacea of the Northeast Pacific. s.n, 1985.

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(1913-1918), Canadian Arctic Expedition, ed. Crustacea. Part B: Schizopod crustaceans. J. de L. Taché, 1997.

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Buchteile zum Thema "Euphausiacia"

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Ax, Peter. "N. N.: Euphausiacea, Pancarida + Peracarida." In Multicellular Animals. Springer Berlin Heidelberg, 2000. http://dx.doi.org/10.1007/978-3-662-10396-8_49.

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Ax, Peter. "Syncarida — N. N. (Euphausiacea, Pancarida + Peracarida)." In Multicellular Animals. Springer Berlin Heidelberg, 2000. http://dx.doi.org/10.1007/978-3-662-10396-8_48.

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Schram, Frederick R., and Stefan Koenemann. "Euphausiacea." In Evolution and Phylogeny of Pancrustacea. Oxford University Press, 2021. http://dx.doi.org/10.1093/oso/9780195365764.003.0035.

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Euphausiacea were once united with “mysidaceans” in a more inclusive taxon, Schizopoda, “split legs,” so named for their biramous thoracopods. Both of these schizopods stood as almost perfect caridoids, expressing the “caridoid facies” that Calman utilized to create the ancestral malacostracan. Calman also united Euphausiacea with the Decapoda as Eucarida with carapaces fused to the thorax. The group is configured simply, only 86 species in 11 genera, and the classification of the order is compact. Currently, the “krill” and allies are critical members of the pelagic food chain. A non-feeding
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"euphausiacean, n." In Oxford English Dictionary, 3rd ed. Oxford University Press, 2023. http://dx.doi.org/10.1093/oed/1511947994.

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Olesen, Jørgen. "Crustacean Life Cycles—Developmental Strategies and Environmental Adaptations." In Life Histories. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780190620271.003.0001.

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Crustacea (or Pancrustacea) have explored virtually all possible milieus in different parts of their life cycle, including freshwater, marine, and terrestrial habitats, and even the air (pterygote insects). Many crustacean taxa display complex life cycles that involve prominent shifts in environment, lifestyle, or both. In this chapter, the overwhelming diversity of crustacean life cycles will be explored by focusing on changes in the life cycles, and on how different phases in a life cycle are adapted to their environment. Shifts in crustacean life cycles may be dramatic such as those seen in
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Rivadeneira, Marcelo M., and Gary C. B. Poore. "Latitudinal Gradient of Diversity of Marine Crustaceans: TOWARDS a Synthesis." In Evolution and Biogeography. Oxford University Press, 2020. http://dx.doi.org/10.1093/oso/9780190637842.003.0015.

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The latitudinal diversity gradient (LDG) is a phenomenon acknowledged for over two centuries. The LDG of marine crustaceans has been studied often but without reaching consensus on its ultimate causative processes. We have undertaken a new synthesis to assess the generality of the LDG and evaluated how potential sampling and other biases, spatial scale, geographic regions, taxonomic aggregation, and differences between clades affect patterns. A meta-analysis of 186 datasets, encompassing 20 studies and 7 crustacean orders, revealed a strong effect size of the species richness-latitude correlat
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