V Jornadas Ibéricas De Ictiologia
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How Does Season Affect Passage Performance and Fatigue of Potamodromous Cyprinids? an Experimental Approach in a Vertical Slot Fishway
water Article How Does Season Affect Passage Performance and Fatigue of Potamodromous Cyprinids? An Experimental Approach in a Vertical Slot Fishway Filipe Romão 1,* ID , José M. Santos 2 ID , Christos Katopodis 3, António N. Pinheiro 1 and Paulo Branco 2 1 CEris-Civil Engineering for Research and Innovation for Sustainability, Instituto Superior Técnico, Universidade de Lisboa, 1049-001 Lisboa, Portugal; [email protected] 2 CEF-Forest Research Centre, Instituto Superior de Agronomia, Universidade de Lisboa, 1349-017 Lisboa, Portugal; [email protected] (J.M.S.); [email protected] (P.B.) 3 Katopodis Ecohydraulics Ltd., 122 Valence Avenue, Winnipeg, MB R3T 3W7, Canada; [email protected] * Correspondence: fi[email protected]; Tel.: +351-91-861-2529 Received: 11 February 2018; Accepted: 27 March 2018; Published: 28 March 2018 Abstract: Most fishway studies are conducted during the reproductive period, yet uncertainty remains on whether results may be biased if the same studies were performed outside of the migration season. The present study assessed fish passage performance of a potamodromous cyprinid, the Iberian barbel (Luciobarbus bocagei), in an experimental full-scale vertical slot fishway during spring (reproductive season) and early-autumn (non-reproductive season). Results revealed that no significant differences were detected on passage performance metrics, except for entry efficiency. However, differences between seasons were noted in the plasma lactate concentration (higher in early-autumn), used as a proxy for muscular fatigue after the fishway navigation. This suggests that, for potamodromous cyprinids, the evaluation of passage performance in fishways does not need to be restricted to the reproductive season and can be extended to early-autumn, when movements associated with shifts in home range may occur. -
Comparison of the Myxobolus Fauna of Common Barbel from Hungary and Iberian Barbel from Portugal
Vol. 100: 231–248, 2012 DISEASES OF AQUATIC ORGANISMS Published September 12 doi: 10.3354/dao02469 Dis Aquat Org Comparison of the Myxobolus fauna of common barbel from Hungary and Iberian barbel from Portugal K. Molnár1,*, E. Eszterbauer1, Sz. Marton1, Cs. Székely1, J. C. Eiras2 1Institute for Veterinary Medical Research, Centre for Agricultural Research, HAS, POB 18, 1581 Budapest, Hungary 2Departamento de Biologia, e CIIMAR, Faculdade de Ciências, Universidade do Porto, Rua do Campo Alegre, s/n, Edifício FC4, 4169-007 Porto, Portugal ABSTRACT: We compared Myxobolus infection of common barbel Barbus barbus from the Danube River in Hungary with that in Iberian barbel Luciobarbus bocagei from the Este River in Portugal. In Hungary, we recorded 5 known Myxobolus species (M. branchialis, M. caudatus, M. musculi, M. squamae, and M. tauricus) and described M. branchilateralis sp. n. In Portugal we recorded 6 Myxobolus species (M. branchialis, M. branchilateralis sp. n., M. cutanei, M. musculi, M. pfeifferi, and M. tauricus). Species found in the 2 habitats had similar spore morphology and only slight differences were observed in spore shape or measurements. All species showed a spe- cific tissue tropism and had a definite site selection. M. branchialis was recorded from the lamellae of the gills, large plasmodia of M. branchilateralis sp. n. developed at both sides of hemibranchia, M. squamae infected the scales, plasmodia of M. caudatus infected the scales and the fins, and M. tauricus were found in the fins and pin bones. In the muscle, 3 species, M. musculi, M. pfeifferi and M. tauricus were found; however they were found in distinct locations. -
Habitat Use by Pseudochondrostoma Duriense and Squalius Carolitertii Downstream of a Small-Scale Hydropower Plant
water Article Habitat Use by Pseudochondrostoma duriense and Squalius carolitertii Downstream of a Small-Scale Hydropower Plant Isabel Boavida 1,* , Filipa Ambrósio 2, Maria João Costa 1 , Ana Quaresma 1 , Maria Manuela Portela 1, António Pinheiro 1 and Francisco Godinho 3 1 CERIS, Civil Engineering Research and Innovation for Sustainability, Instituto Superior Técnico, University of Lisbon, 1049-001 Lisbon, Portugal; [email protected] (M.J.C.); [email protected] (A.Q.); [email protected] (M.M.P.); [email protected] (A.P.) 2 Instituto Superior Técnico, University of Lisbon, 1049-001 Lisbon, Portugal; fi[email protected] 3 Hidroerg, Projectos Energéticos, Lda, 1300-365 Lisbon, Portugal; [email protected] * Correspondence: [email protected] Received: 24 July 2020; Accepted: 5 September 2020; Published: 9 September 2020 Abstract: Downstream of small-scale hydropower plants (SHPs), the intensity, frequency and persistence of hydropeaking events often cause an intolerable stress on fish of all life stages. Rapid increases in flow velocity result in fish avoiding unstable habitats and seeking refuge to reduce energy expenditure. To understand fish movements and the habitat use of native Iberian cyprinids in a high-gradient peaking river, 77 individuals were PIT tagged downstream of Bragado SHP in the North of Portugal. Tagged fish species included Pseudochondrostoma duriense and Squalius carolitertii. Fish positions were recorded manually on two different occasions: during hydropeaking events (HP) and without hydropeaking events (NHP). From the 77 tagged fish, we were able to record habitat use for 33 individuals (20 P. duriense and 13 S. -
Fishfriendly Innovative Technologies for Hydropower D1.1 Metadata
Ref. Ares(2017)5306028 - 30/10/2017 Fishfriendly Innovative Technologies for Hydropower Funded by the Horizon 2020 Framework Programme of the European Union D1.1 Metadata overview on fish response to disturbance Project Acronym FIThydro Project ID 727830 Work package 1 Deliverable Coordinator Christian Wolter Author(s) Ruben van Treeck (IGB), Jeroen Van Wich- elen (INBO), Johan Coeck (INBO), Lore Vandamme (INBO), Christian Wolter (IGB) Deliverable Lead beneficiary INBO, IGB Dissemination Level Public Delivery Date 31 October 2017 Actual Delivery Date 30 October 2017 Acknowledgement This project has received funding from the European Union’s Horizon 2020 research and inno- vation program under grant agreement No 727830. Executive Summary Aim Environmental assessment of hydropower facilities commonly includes means of fish assem- blage impact metrics, as e.g. injuries or mortality. However, this hardly allows for conclusion at the population or community level. To overcome this significant knowledge gap and to enable more efficient assessments, this task aimed in developing a fish species classification system according to their species-specific sensitivity against mortality. As one result, most sensitive fish species were identified as suitable candidates for in depth population effects and impact studies. Another objective was providing the biological and autecological baseline for developing a fish population hazard index for the European fish fauna. Methods The literature has been extensively reviewed and analysed for life history traits of fish providing resilience against and recovery from natural disturbances. The concept behind is that species used to cope with high natural mortality have evolved buffer mechanisms against, which might also foster recovery from human induced disturbances. -
Cenozoic Tectonic and Climatic Events in Southern Iberian Peninsula: Implications
Research paper Cenozoic tectonic and climatic events in southern Iberian Peninsula: implications for the evolutionary history of freshwater fish of the genus Squalius (Actinopterygii, Cyprinidae) Silvia Perea 1*, Marta Cobo-Simon2 and Ignacio Doadrio1 1 Biodiversity and Evolutionary Group. Museo Nacional de Ciencias Naturales, CSIC, C/ José Gutiérrez Abascal, 2. 28006, Madrid, Spain 2 National Center of Biotechnology, Systems Biology Department, C/ Darwin 3. 28049, Madrid, Spain. *Corresponding author: Silvia Perea; Tel.: +34 91 4111328; fax: +34 91 5645078. Museo Nacional de Ciencias Naturales, CSIC, Biodiversity and Evolutionary Group, C/ José Gutiérrez Abascal, 2. 28006, Madrid, Spain E-mail addresses: SP: [email protected] (Corresponding author) ID: [email protected] MCS: [email protected] 1 ABSTRACT Southern Iberian freshwater ecosystems located at the border between the European and African plates represent a tectonically complex region spanning several geological ages, from the uplifting of the Betic Mountains in the Serravalian-Tortonian periods to the present. This area has also been subjected to the influence of changing climate conditions since the Middle-Upper Pliocene when seasonal weather patterns were established. Consequently, the ichthyofauna of southern Iberia is an interesting model system for analyzing the influence of Cenozoic tectonic and climatic events on its evolutionary history. The cyprinids Squalius malacitanus and Squalius pyrenaicus are allopatrically distributed in southern Iberia and their evolutionary history may have been defined by Cenozoic tectonic and climatic events. We analyzed MT-CYB (510 specimens) and RAG1 (140 specimens) genes of both species to reconstruct phylogenetic relationships and to estimate divergence times and ancestral distribution ranges of the species and their populations. -
Barbo Común – Luciobarbus Bocagei (Steindachner, 1864)
Salvador, A. (2017). Barbo común – Luciobarbus bocagei. En: Enciclopedia Virtual de los Vertebrados Españoles. Sanz, J. J., Elvira, B. (Eds.). Museo Nacional de Ciencias Naturales, Madrid. http://www.vertebradosibericos.org/ Barbo común – Luciobarbus bocagei (Steindachner, 1864) Alfredo Salvador Museo Nacional de Ciencias Naturales (CSIC) Versión 20-10-2017 Versiones anteriores: 20-12-2012 © I. Doadrio ENCICLOPEDIA VIRTUAL DE LOS VERTEBRADOS ESPAÑOLES Sociedad de Amigos del MNCN – MNCN - CSIC Salvador, A. (2017). Barbo común – Luciobarbus bocagei. En: Enciclopedia Virtual de los Vertebrados Españoles. Sanz, J. J., Elvira, B. (Eds.). Museo Nacional de Ciencias Naturales, Madrid. http://www.vertebradosibericos.org/ Sinónimos y combinaciones Barbua bocagei Steindachner, 1864; Barbus barbus bocagei – Lozano Rey, 1935; Barbus capito bocagei – Karaman, 1971; Barbus bocagei - Kottelat, 1997; Messinobarbus bocagei – Bianco, 1998; Luciobarbus bocagei - Kottelat y Freyhof, 2008. Origen y evolución L. bocagei pertenece a un grupo de especies relacionadas con especies del norte de África (Doadrio, 1990); estas afinidades parecen deberse al aislamiento de la Península Ibérica del resto de Europa desde el Oligoceno-Mioceno (Machordom et al., 1995). El aislamiento y evolución de las especies del género Luciobarbus habría tenido lugar durante la formación en el Plioceno-Pleistoceno de las cuencas hidrográficas actuales (Doadrio et al., 2002). L. bocagei y L. comizo se habrían diferenciado del resto de especies ibéricas del género en el Messiniense-Plioceno Inferior, hace unos 3,7-6,9 millones de años (Mesquita et al., 2007). Identificación Se diferencia de otros Luciobarbus por tener el último radio de la aleta dorsal con denticulaciones, que en los adultos ocupan menos de la mitad inferior; aleta dorsal de perfil recto o algo cóncavo; pedúnculo caudal estrecho (Doadrio et al., 2011). -
Iberian Cyprinids: Habitat Requirements and Vulnerabilities
Session 1 Cyprinid species: ecology and constraints Iberian cyprinids: habitat requirements and vulnerabilities 2nd Stakeholder Workshop – Iberia – Lisboa, Portugal 20.03.2019 Francisco Godinho Hidroerg 20/03/2018 Francisco Godinho 1 Setting the scene 22/03/2018 Francisco Godinho 2 Relatively small river catchmentsIberian fluvial systems Douro/Duero is the largest one, with 97 600 km2 Loire – 117 000 km2, Rhinne -185 000 km2, Vistula – 194 000 km2, Danube22/03/2018 – 817 000 km2, Volga –Francisco 1 380 Godinho 000 km2 3 Most Iberian rivers present a mediterranean hydrological regime (temporary rivers are common) Vascão river, a tributary of the Guadiana river 22/03/2018 Francisco Godinho 4 Cyprinidae are the characteristic fish taxa of Iberian fluvial ecosystems, occurring from mountain streams (up to 1000 m in altitude) to lowland rivers Natural lakes are rare in the Iberian Peninsula and most natural freshwater bodies are rivers and streams 22/03/2018 Francisco Godinho 5 Six fish-based river types have been distinguished in Portugal (INAG and AFN, 2012) Type 1 - Northern salmonid streams Type 2 - Northern salmonid–cyprinid trans. streams Type 3 - Northern-interior medium-sized cyprinid streams Type 4 - Northern-interior medium-sized cyprinid streams Type 5 - Southern medium-sized cyprinid streams Type 6 - Northern-coastal cyprinid streams With the exception of assemblages in small northern, high altitude streams, native cyprinids dominate most unaltered fish assemblages, showing a high sucess in the hidrological singular 22/03/2018 -
Colecciones De Invertebrados Del Museo Nacional De Ciencias Naturales (Csic)
HISTORIA Y PRESENTE DE LAS COLECCIONES DE INVERTEBRADOS DEL MUSEO NACIONAL DE CIENCIAS NATURALES (CSIC) Miguel Villena Sánchez-Valero Conservador de las colecciones de Invertebrados 1 .- RESEÑA HISTÓRICA Para encontrar el origen de la Colección de Invertebrados de Museo Nacional de Ciencias Naturales de Madrid tenemos que remontarnos al último tercio del siglo XVIII, cuando, tras numerosas gestiones y diversos intentos, una Real Orden de Carlos III, promulgada el 17 de octubre de 1771, crea el Real Gabinete de Historia Natural y pone punto final a las enormes carencias que, en ese sentido, tenía España respecto a otros países europeos. En estos momentos iniciales, y hasta que se inaugure de forma definitiva el 4 de noviembre de 1776, las colecciones custodiadas en este establecimiento tendrán como base el excelente Gabinete de Historia Natural formado en París por el sabio ilustrado Pedro Franco Dávila, quien, gracias a sus desvelos en la formación del Gabinete y, sobre todo, gracias a los conocimientos en Historia Natural, adquiridos en una estancia de casi 26 años en París, en contacto con los científicos más reputados del momento, será nombrado Primer Director del establecimiento. Con este nombramiento Don Pedro recibió un triple encargo: que se coloquen en Madrid en debida forma las preciosidades actuales del Gabinete, y las demás con que el Rey providenciará enriquecerle, que se verifique la instrucción pública y, sobre todo, el encargo especial de que le tenga a su cuidado y procure difundir el gusto y nociones de tan importante materia.1 A partir de ese momento el interés principal del Gabinete recién creado y de sus dirigentes será el incremento de las colecciones con ese, cuando menos, triple objetivo que tiene que tener todo Museo2 que se precie de tal, es decir: • Conservar, catalogar, restaurar y exhibir de forma ordenada sus colecciones. -
ECFF2012 Book of Abstracts.Pdf
28th May – 2nd June 2012 Vila Nova de Cerveira - Portugal - Book of abstracts ECFF2012 © ECFF2012 PRINTSETTING: © ECFF2012 Coordenador: Carlos Antunes Editor: Comissão Organizadora ECFF 2012 ISBN: 978-989-96062-3-4 Despósito Legal: 344663/12 Impressão: Candeias Artes Gráficas Maio de 2012 ORGANIZING COMMITTEE Carlos Antunes (CIMAR/CIIMAR; CI-ESG, ESGallaecia; Aquamuseu do Rio Minho, Portugal) Eric Rochard (Cemagref, France) Javier Lobón-Cerviá (MNCN-CSIC, Spain) Mariana Correia (CI-ESG, Higher Education School Gallaecia, Portugal) Micaela Mota (CIMAR/CIIMAR, University of Porto, Portugal) Ronaldo Sousa (CIMAR/CIIMAR, University of Minho, Portugal) Sérgia Costa-Dias (CIMAR/CIIMAR, University of Porto, Portugal; MNCN-CSIC, Spain) SCIENTIFIC COMMITTEE Carlos Antunes (CIMAR/CIIMAR; CI-ESG, ESGallaecia; Aquamuseu do Rio Minho, Portugal) Eric Rochard (Cemagref, France) Javier Lobón-Cerviá (MNCN-CSIC, Spain) Fernando Cobo (Dept. of Animal Biology; University of Santiago de Compostela, Spain) João Coimbra (CIMAR/CIIMAR, University of Porto, Portugal) Jonathan Wilson (CIMAR/CIIMAR, University of Porto, Portugal) Micaela Mota (CIMAR/CIIMAR, University of Porto, Portugal) Pedro Raposo de Almeida (Center of Oceanography, Lisbon; University of Évora, Portugal) Ronaldo Sousa (CIMAR/CIIMAR, University of Porto; University of Minho, Portugal) Rui Cortes (Universidade de Trás-os-Montes e Alto Douro, Portugal) Sérgia Costa-Dias (CIMAR/CIIMAR, University of Porto, Portugal; MNCN-CSIC, Spain) PROGRAMME Monday 28th Tuesday 29th Wednesday 30th 08:00h Secretariat -
Identification and Modelling of a Representative Vulnerable Fish Species for Pesticide Risk Assessment in Europe
Identification and Modelling of a Representative Vulnerable Fish Species for Pesticide Risk Assessment in Europe Von der Fakultät für Mathematik, Informatik und Naturwissenschaften der RWTH Aachen University zur Erlangung des akademischen Grades eines Doktors der Naturwissenschaften genehmigte Dissertation vorgelegt von Lara Ibrahim, M.Sc. aus Mazeraat Assaf, Libanon Berichter: Universitätsprofessor Dr. Andreas Schäffer Prof. Dr. Christoph Schäfers Tag der mündlichen Prüfung: 30. Juli 2015 Diese Dissertation ist auf den Internetseiten der Universitätsbibliothek online verfügbar Erklärung Ich versichere, dass ich diese Doktorarbeit selbständig und nur unter Verwendung der angegebenen Hilfsmittel angefertigt habe. Weiterhin versichere ich, die aus benutzten Quellen wörtlich oder inhaltlich entnommenen Stellen als solche kenntlich gemacht zu haben. Lara Ibrahim Aachen, am 18 März 2015 Zusammenfassung Die Zulassung von Pflanzenschutzmitteln in der Europäischen Gemeinschaft verlangt unter anderem eine Abschätzung des Risikos für Organismen in der Umwelt, die nicht Ziel der Anwendung sind. Unvertretbare Auswirkungen auf den Naturhalt sollen vermieden werden. Die ökologische Risikoanalyse stellt die dafür benötigten Informationen durch eine Abschätzung der Exposition der Organismen und der sich daraus ergebenden Effekte bereit. Die Effektabschätzung beruht dabei hauptsächlich auf standardisierten ökotoxikologischen Tests im Labor mit wenigen, oft nicht einheimischen Stellvertreterarten. In diesen Tests werden z. B. Effekte auf das Überleben, das Wachstum und/oder die Reproduktion von Fischen bei verschiedenen Konzentrationen der Testsubstanz gemessen und Endpunkte wie die LC50 (Lethal Concentrations for 50%) oder eine NOEC (No Observed Effect Concentration, z. B. für Wachstum oder Reproduktionsparameter) abgeleitet. Für Fische und Wirbeltiere im Allgemeinen beziehen sich die spezifischen Schutzziele auf das Überleben von Individuen und die Abundanz und Biomasse von Populationen. -
THREATENED FISHES of the WORLD: Squalius Malacitanus Doadrio and Carmona, 2006 (Cyprinidae)
Croatian Journal of Fisheries, 2014, 72, 136-137 C. Sousa-Santos et al.: Endangered southern Iberian cyprinid http://dx.doi.org/10.14798/72.3.739 CODEN RIBAEG ISSN 1330-061X THREATENED FISHES OF THE WORLD: Squalius malacitanus Doadrio and Carmona, 2006 (Cyprinidae) Carla Sousa-Santos1* , Joana Isabel Robalo1, Ana Pereira1, Ignacio Doadrio2 1 Eco-Ethology Research Unit, ISPA Universitary Institute, Rua Jardim do Tabaco 34, 1149-041 Lisbon, Portugal 2 Museo Nacional de Ciencias Naturales, CSIC, José Gutiérrez Abascal 2, 28006 Madrid, Spain * Corresponding author, E-mail: [email protected] ARTICLE INFO ABSTRACT Received: 12 March 2014 Squalius malacitanus is an endemic cyprinid fish from the south of the Received in revised form: 5 May 2014 Iberian Peninsula. This species is endangered due to habitat destruction, Accepted: 5 May 2014 damming and low water availability. Available online: 7 May 2014 Keywords: Squalius malacitanus Endemic species Conservation COMMON NAME in the dorsal and anal fins, low caudal peduncle and nar- row third infraorbital bone, while the fourth and fifth infra- Cachuelo de Málaga (Spanish) – Figure 1. orbital bones are wide (Doadrio and Carmona, 2006). It has 5+2/5+5 pharyngeal teeth, 9-11 gill rakers, 38 vertebrae, 39-43 scales in the lateral line, 7-8 scales above the lateral line and three scales below the lateral line (Doadrio and Car- mona, 2006). Its head is short with a small preorbital length and large fourth and fifth infraorbital bones (Doadrio and Carmona, 2006). Its body is silvery, although darker dorsally, and the scales have one big black spot on the base and a series of small black spots on the distal border (Doadrio and Carmona, 2006). -
Annex 1: Field Protocol
Annex 1: Field protocol Annex 1-Table 1: Fish data Fish data Date (dd/mm/yyyy) Site code Sampling method Site name Sampling location Name of watercourse Main river region XY co-ordinates GPS co-ordinates Longitude Transect length [m] Latitude Fished area [m2] Altitude[m] Wetted width [m] Fish data Fish species number of specimen number of specimen length ≤150 mm length >150 mm 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 Annex 1-Table 2: Abiotic and method data Reference fields Site code Date dd/mm/yyyy Site name Name of watercourse or River name River region XY co-ordinates or longitude, latitude GPS co-ordinates Altitude m Sampling location Main channel/Backwaters/Mixed Sampling method Boat/Wading Fished area m2 Wetted width m Abiotic variables Altitude m Lakes upstream affecting Yes / No the site Distance from source km Flow regime Permanent / Summer dry/Winter dry/Intermittent Geomophology Naturally constrained no modification/ Braided/Sinuous/Meand regular/Meand tortuous Former floodplain No/Small/Medium/Large/Some waterbodies remaining/ Water source type Glacial/Nival/Pluvial/Groundwater Former sediment size Organic/Silt/Sand/ Gravel-Pebble-Cobble/Boulder-Rock Upstream drainage area km2 Distance from source km River slope m/km (‰) Mean air temperature Celsius (°C) Annex 1-Table 3: Human impact data (optional) Site code hChemical data Name watercourse Oxygen (mg/l or % saturation) XYZ co-ordinates or X:……………………(N) Conductivity (mS/cm) longitude latitude altitude Y:……………………(E) Z :…………………….m