Asian Species Programme Supporting Species at a Critical Time
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Conservation Aquaculture: Shifting the Narrative and Paradigm of MARK Aquaculture's Role in Resource Management
Biological Conservation 215 (2017) 162–168 Contents lists available at ScienceDirect Biological Conservation journal homepage: www.elsevier.com/locate/biocon Perspective Conservation aquaculture: Shifting the narrative and paradigm of MARK aquaculture's role in resource management ⁎ Halley E. Froehlicha, ,1, Rebecca R. Gentryb,2, Benjamin S. Halperna,b,c,1 a University of California, Santa Barbara, National Center for Ecological Analysis and Synthesis, Santa Barbara, CA, USA b University of California, Santa Barbara, Bren School of Environmental Science and Management, Santa Barbara, CA, USA c Imperial College London, Silwood Park Campus, Ascot, UK ARTICLE INFO ABSTRACT Keywords: In the 21st century, aquaculture is generally characterized as a foe to conservation efforts. Yet, much has Conservation changed in the two seemingly disparate practices over the last two decades, motivating an updated evaluation of Aquaculture the scientific evidence for how aquaculture currently impacts conservation, as well as prospects for further Ecosystem services alignment and research. Here we present a new perspective on conservation aquaculture, which we redefine as Recovery “the use of human cultivation of an aquatic organism for the planned management and protection of a natural Restoration resource.” Looking across scales of conservation aquaculture that include single species to ecosystem level benefits (and limitations), we highlight ways aquaculture has historically, and is currently being integrated into conservation (e.g., habitat restoration of oyster beds) and areas that could be improved for the protection of critical species and habitats (e.g., aquarium trade of coral reef species). With a more strategic focus, there appears to be notable conservation aquaculture potential via the cultivation of species for harvest that could provide wild harvest alleviation through replacement or supplement – particularly for over-exploited species – and/or ecosystem services, such as improved water quality and reduction in greenhouse gas emissions. -
§4-71-6.5 LIST of CONDITIONALLY APPROVED ANIMALS November
§4-71-6.5 LIST OF CONDITIONALLY APPROVED ANIMALS November 28, 2006 SCIENTIFIC NAME COMMON NAME INVERTEBRATES PHYLUM Annelida CLASS Oligochaeta ORDER Plesiopora FAMILY Tubificidae Tubifex (all species in genus) worm, tubifex PHYLUM Arthropoda CLASS Crustacea ORDER Anostraca FAMILY Artemiidae Artemia (all species in genus) shrimp, brine ORDER Cladocera FAMILY Daphnidae Daphnia (all species in genus) flea, water ORDER Decapoda FAMILY Atelecyclidae Erimacrus isenbeckii crab, horsehair FAMILY Cancridae Cancer antennarius crab, California rock Cancer anthonyi crab, yellowstone Cancer borealis crab, Jonah Cancer magister crab, dungeness Cancer productus crab, rock (red) FAMILY Geryonidae Geryon affinis crab, golden FAMILY Lithodidae Paralithodes camtschatica crab, Alaskan king FAMILY Majidae Chionocetes bairdi crab, snow Chionocetes opilio crab, snow 1 CONDITIONAL ANIMAL LIST §4-71-6.5 SCIENTIFIC NAME COMMON NAME Chionocetes tanneri crab, snow FAMILY Nephropidae Homarus (all species in genus) lobster, true FAMILY Palaemonidae Macrobrachium lar shrimp, freshwater Macrobrachium rosenbergi prawn, giant long-legged FAMILY Palinuridae Jasus (all species in genus) crayfish, saltwater; lobster Panulirus argus lobster, Atlantic spiny Panulirus longipes femoristriga crayfish, saltwater Panulirus pencillatus lobster, spiny FAMILY Portunidae Callinectes sapidus crab, blue Scylla serrata crab, Samoan; serrate, swimming FAMILY Raninidae Ranina ranina crab, spanner; red frog, Hawaiian CLASS Insecta ORDER Coleoptera FAMILY Tenebrionidae Tenebrio molitor mealworm, -
Balantiocheilos Melanopterus
Balantiocheilos melanopterus Balantiocheilos melanopterus est une espèce de poissons d'eau douce de la famille des Cyprinidés. Il est Balantiocheilos melanopterus appelé couramment Barbu-requin ou Requin argenté en raison de son apparence. Sommaire Distribution Description Aquariophilie Liens externes Barbu-requin Classification Distribution Règne Animalia Embranchement Chordata Cette espèce se rencontre dans les fleuves et lacs d'Asie Cette espèce se rencontre dans les fleuves et lacs d Asie du Sud-Est et est considéré comme menacé dans sa Sous-embr. Vertebrata région d'origine. Description Super-classe Osteichthyes Classe Actinopterygii Balantiocheilos melanopterus mesure jusqu'à 50 cm à l'état sauvage (mais les dépasse rarement en captivité), Sous-classe Neopterygii sans différence notable selon les sexes. Sa couleur est Infra-classe Teleostei gris métallique avec le bout des nageoires noir. Son nez est pointu et sa nageoire caudale est en forme de Super-ordre Ostariophysi fourche. Son espérance de vie varie de 5 à 10 ans. Il Ordre Cypriniformes s'agit d'un poisson grégaire. Super-famille Cyprinoidea Aquariophilie Famille Cyprinidae Cette espèce est difficile à maintenir en aquarium. Elle Sous-famille Barbinae nécessite un bac présentant un grand volume d'eau, Genre Balantiocheilos sinon elle a tendance à devenir agressive. Espèce Liens externes Balantiocheilos melanopterus (Bleeker, 1851) (fr) Référence Aquabase (http://www.aquab ase.org/) : Balantiocheilos melanopterus (htt Statut de conservation UICN p://www.aquabase.org/balantiocheilos-mela -
(0399912) Establishing Baseline Data for the Conservation of the Critically Endangered Isabela Oriole, Philippines
ORIS Project (0399912) Establishing Baseline Data for the Conservation of the Critically Endangered Isabela Oriole, Philippines Joni T. Acay and Nikki Dyanne C. Realubit In cooperation with: Page | 0 ORIS Project CLP PROJECT ID (0399912) Establishing Baseline Data for the Conservation of the Critically Endangered Isabela Oriole, Philippines PROJECT LOCATION AND DURATION: Luzon Island, Philippines Provinces of Bataan, Quirino, Isabela and Cagayan August 2012-July 2014 PROJECT PARTNERS: ∗ Mabuwaya Foundation Inc., Cabagan, Isabela ∗ Department of Natural Sciences (DNS) and Department of Development Communication and Languages (DDCL), College of Development Communication and Arts & Sciences, ISABELA STATE UNIVERSITY-Cabagan, ∗ Wild Bird Club of the Philippines (WBCP), Manila ∗ Community Environmental and Natural Resources Office (CENRO) Aparri, CENRO Alcala, Provincial Enviroment and Natural Resources Office (PENRO) Cagayan ∗ Protected Area Superintendent (PASu) Northern Sierra Madre Natural Park, CENRO Naguilian, PENRO Isabela ∗ PASu Quirino Protected Landscape, PENRO Quirino ∗ PASu Mariveles Watershed Forest Reserve, PENRO Bataan ∗ Municipalities of Baggao, Gonzaga, San Mariano, Diffun, Limay and Mariveles PROJECT AIM: Generate baseline information for the conservation of the Critically Endangered Isabela Oriole. PROJECT TEAM: Joni Acay, Nikki Dyanne Realubit, Jerwin Baquiran, Machael Acob Volunteers: Vanessa Balacanao, Othniel Cammagay, Reymond Guttierez PROJECT ADDRESS: Mabuwaya Foundation, Inc. Office, CCVPED Building, ISU-Cabagan Campus, -
Cagayan Riverine Zone Development Framework Plan 2005—2030
Cagayan Riverine Zone Development Framework Plan 2005—2030 Regional Development Council 02 Tuguegarao City Message The adoption of the Cagayan Riverine Zone Development Framework Plan (CRZDFP) 2005-2030, is a step closer to our desire to harmonize and sustainably maximize the multiple uses of the Cagayan River as identified in the Regional Physical Framework Plan (RPFP) 2005-2030. A greater challenge is the implementation of the document which requires a deeper commitment in the preservation of the integrity of our environment while allowing the development of the River and its environs. The formulation of the document involved the wide participation of concerned agencies and with extensive consultation the local government units and the civil society, prior to its adoption and approval by the Regional Development Council. The inputs and proposals from the consultations have enriched this document as our convergence framework for the sustainable development of the Cagayan Riverine Zone. The document will provide the policy framework to synchronize efforts in addressing issues and problems to accelerate the sustainable development in the Riverine Zone and realize its full development potential. The Plan should also provide the overall direction for programs and projects in the Development Plans of the Provinces, Cities and Municipalities in the region. Let us therefore, purposively use this Plan to guide the utilization and management of water and land resources along the Cagayan River. I appreciate the importance of crafting a good plan and give higher degree of credence to ensuring its successful implementation. This is the greatest challenge for the Local Government Units and to other stakeholders of the Cagayan River’s development. -
Ecological Assessments in the B+WISER Sites
Ecological Assessments in the B+WISER Sites (Northern Sierra Madre Natural Park, Upper Marikina-Kaliwa Forest Reserve, Bago River Watershed and Forest Reserve, Naujan Lake National Park and Subwatersheds, Mt. Kitanglad Range Natural Park and Mt. Apo Natural Park) Philippines Biodiversity & Watersheds Improved for Stronger Economy & Ecosystem Resilience (B+WISER) 23 March 2015 This publication was produced for review by the United States Agency for International Development. It was prepared by Chemonics International Inc. The Biodiversity and Watersheds Improved for Stronger Economy and Ecosystem Resilience Program is funded by the USAID, Contract No. AID-492-C-13-00002 and implemented by Chemonics International in association with: Fauna and Flora International (FFI) Haribon Foundation World Agroforestry Center (ICRAF) The author’s views expressed in this publication do not necessarily reflect the views of the United States Agency for International Development or the United States Government. Ecological Assessments in the B+WISER Sites Philippines Biodiversity and Watersheds Improved for Stronger Economy and Ecosystem Resilience (B+WISER) Program Implemented with: Department of Environment and Natural Resources Other National Government Agencies Local Government Units and Agencies Supported by: United States Agency for International Development Contract No.: AID-492-C-13-00002 Managed by: Chemonics International Inc. in partnership with Fauna and Flora International (FFI) Haribon Foundation World Agroforestry Center (ICRAF) 23 March -
Indiana Aquatic Nuisance Species (ANS) Management Plan
Indiana Aquatic Nuisance Species (ANS) Management Plan Aruana caught by angler in Lake George, Lake County, Indiana Photo credit: Brian Breidert, IDNR Indiana Department of Natural Resources Funded by: Division of Fish and Wildlife Edited by: Phil Seng and Gwen White, D.J. Case & Associates, Mishawaka, Indiana October 1, 2003 Indiana Aquatic Nuisance Species (ANS) Management Plan Table of Contents Page Executive summary 3 Introduction 6 Why should we be concerned? 6 Why are we hearing about more nuisance exotics? 6 Are all exotic species causing problems? 7 Why do some of these species become nuisances? 7 What principles should guide invasive species management in Indiana? 8 Which species are top priorities for management in Indiana? 8 Table 1. Aquatic nuisance species on the watch list and detected 9 Nuisance fish 10 Nuisance insects and crustaceans 13 Nuisance mussels and snails 14 Diseases, pathogens and parasites 15 Aquarium pets caught from Indiana waters 17 Nuisance plants 20 Which programs are engaged in management of invasive species? 23 What regulatory authorities control management of exotic species? 29 Federal role 30 Regional role 32 State role 33 Designing an integrated comprehensive regulatory approach 33 What can Hoosiers do to prevent and control the impacts of ANS? 40 Index to the strategic management plan 41 Description of strategic management plan 44 How will we know if we succeed? 58 Literature cited 60 Glossary of terms 63 List of agency and organization acronyms 64 Appendix A. List of introduced fish and crayfish 65 Appendix B. List of invasive aquatic plants 67 Appendix C. Priority list of ANS in the Great Lakes basin 69 Appendix D. -
Freshwater Fishes of Southeast Asia: Potential for the Aquarium
Aquarium Sciences and Conservation, 1, 79±90 (1997) Freshwater ®shes of Southeast Asia: potential for the aquarium ®sh trade and conservation issues Peter K.L. Ngà and H.H. Tan School of Biological Sciences, National University of Singapore, Singapore 119260, Republic of Singapore Southeast Asia is an area rich in biodiversity, with a high degree of endemism in both ¯ora and fauna. Many freshwater ®sh species have been exploited for the ornamental ®sh trade. As the population in South East Asia increases, vast tracts of forests are cleared for agricultural, industrial and urbanization purposes. To conserve and sustainably exploit the wild ®sh population, measures should be adopted to protect this natural resource. Already, several ornamental species have been severely overexploited, e.g. bala shark (Balantiocheilos melanopterus), pygmy loach (Botia sidthimunki) and arowana (Scleropages formosus), but the extirpation of local populations occurs for many reasons, including deforestation, and not just because of ®shing for the trade. There are also still many species that have great ornamental ®sh potential. Wild ®sh species have also been successfully bred in captivity and conserved, e.g. tiger barb (Puntius tetrazona), bala shark, pygmy loach and arowana. Other methods of conservation include public education, leaving pristine forests intact and reforestation. The aquarium trade of the bala shark, harlequin rasbora (Rasbora heteromorpha), clown loach (Botia macracanthus), arowana and saw®sh (Pristis microdon) is discussed. KEYWORDS: Freshwater ®shes, Southeast Asia, aquarium ®sh, conservation, biodiversity INTRODUCTION Southeast Asia is a conglomerate of continental landmasses and numerous islands, all of which lie within the equatorial belt. The region composed of the countries of Thailand, Malaysia, Indonesia, Singapore, Brunei and the Philippines enjoys year- round warmth, high humidity and light, which has resulted in an environment that is extremely diverse and varied in habitats (Whitmore, 1986). -
Sexual Selection and Extinction in Deer Saloume Bazyan
Sexual selection and extinction in deer Saloume Bazyan Degree project in biology, Master of science (2 years), 2013 Examensarbete i biologi 30 hp till masterexamen, 2013 Biology Education Centre and Ecology and Genetics, Uppsala University Supervisor: Jacob Höglund External opponent: Masahito Tsuboi Content Abstract..............................................................................................................................................II Introduction..........................................................................................................................................1 Sexual selection........................................................................................................................1 − Male-male competition...................................................................................................2 − Female choice.................................................................................................................2 − Sexual conflict.................................................................................................................3 Secondary sexual trait and mating system. .............................................................................3 Intensity of sexual selection......................................................................................................5 Goal and scope.....................................................................................................................................6 Methods................................................................................................................................................8 -
Karyotype Relationships Among Selected Deer Species and Cattle Revealed by Bovine FISH Probes
RESEARCH ARTICLE Karyotype relationships among selected deer species and cattle revealed by bovine FISH probes Jan Frohlich1*, Svatava Kubickova1, Petra Musilova1, Halina Cernohorska1, Helena Muskova1, Roman Vodicka2, Jiri Rubes1 1 Central European Institute of Technology - Veterinary Research Institute, Brno, Czech Republic, 2 Zoo Prague, Prague, Czech Republic a1111111111 a1111111111 * [email protected] a1111111111 a1111111111 a1111111111 Abstract The Cervidae family comprises more than fifty species divided into three subfamilies: Capreolinae, Cervinae and Hydropotinae. A characteristic attribute for the species included in this family is the great karyotype diversity, with the chromosomal numbers ranging from OPEN ACCESS 2n = 6 observed in female Muntiacus muntjak vaginalis to 2n = 70 found in Mazama goua- Citation: Frohlich J, Kubickova S, Musilova P, Cernohorska H, Muskova H, Vodicka R, et al. zoubira as a result of numerous Robertsonian and tandem fusions. This work reports chro- (2017) Karyotype relationships among selected mosomal homologies between cattle (Bos taurus, 2n = 60) and nine cervid species using a deer species and cattle revealed by bovine FISH combination of whole chromosome and region-specific paints and BAC clones derived from probes. PLoS ONE 12(11): e0187559. https://doi. cattle. We show that despite the great diversity of karyotypes in the studied species, the org/10.1371/journal.pone.0187559 number of conserved chromosomal segments detected by 29 cattle whole chromosome Editor: Roscoe Stanyon, University of Florence, painting probes was 35 for all Cervidae samples. The detailed analysis of the X chromo- ITALY somes revealed two different morphological types within Cervidae. The first one, present in Received: August 23, 2017 the Capreolinae is a sub/metacentric X with the structure more similar to the bovine X. -
Biodiversity Change in the Panay Mountain Range from 2014 to 2017
Biodiversity Change in the Panay Mountain Range from 2014 to 2017 Imprint This publication is by the Deutsche Gesellschaft für Internationale Zusammenarbeit (GIZ) GmbH through the Forest and Climate Protection in Panay-Phase II (ForClim II) Project, funded by the German Federal Ministry for the Environment, Nature Conservation and Nuclear Safety (BMU) under its International Climate Initiative. BMU supports this Initiative based on a decision of the German Parliament. For more information, see http://www.international-climate-initiative.com. As a federally owned enterprise, GIZ supports the German Government in achieving its objectives in the field of international cooperation for sustainable development. Published by: Deutsche Gesellschaft für Internationale Zusammenarbeit (GIZ) GmbH Registered offices Bonn and Eschborn Ground Floor Forest Management Bureau Annex Building Department of Environment and Natural Resources Compound Visayas Avenue, Diliman, Quezon City 1101, Philippines T +63 2 697 3127 Programme: Forest and Climate Protection in Panay – Phase II Author: Ruth Martinez Photo credits/sources: ©GIZ/Bernie Agaloos ©GIZ/Haribon Foundation ©GIZ/Jürgen Schade Forest and Climate Protection in Panay-Phase II Project URL links: This publication contains links to external websites. Responsibility for the content of the listed external sites always lies with their respective publishers. When the links to these sites were first posted, GIZ checked the third-party content to establish whether it could give rise to civil or criminal liability. However, the constant review of the links to external sitescannot reasonably be expected without concrete indication of a violation of rights. If GIZ itself becomes aware or is notified by a third party that an external site it has provided a link to gives rise to civil or criminal liability, it will remove the link to this site immediately. -
Anchoring the Cerela1.0 Genome Assembly to Red Deer
animals Article Anchoring the CerEla1.0 Genome Assembly to Red Deer (Cervus elaphus) and Cattle (Bos taurus) Chromosomes and Specification of Evolutionary Chromosome Rearrangements in Cervidae Miluse Vozdova * , Svatava Kubickova , Halina Cernohorska, Jan Fröhlich and Jiri Rubes Department of Genetics and Reproductive Biotechnologies, Central European Institute of Technology—Veterinary Research Institute, 62100 Brno, Czech Republic; [email protected] (S.K.); [email protected] (H.C.); [email protected] (J.F.); [email protected] (J.R.) * Correspondence: [email protected]; Tel.: +42-05-3333-1422 Simple Summary: The red deer (Cervus elaphus) de novo genome assembly (CerEla1.0) has provided a great resource for genetic studies in various deer species. In this study, we used gene order comparisons between C. elaphus CerEla1.0 and B. taurus ARS-UCD1.2 genome assemblies and fluorescence in situ hybridization (FISH) with bovine BAC probes to verify the red deer-bovine chromosome relationships and anchor the CerEla1.0 C-scaffolds to karyotypes of both species. We showed the homology between bovine and deer chromosomes and determined the centromere- Citation: Vozdova, M.; Kubickova, telomere orientation of the CerEla1.0 C-scaffolds. Using a set of BAC probes, we were able to S.; Cernohorska, H.; Fröhlich, J.; narrow the positions of evolutionary chromosome breakpoints defining the family Cervidae. In Rubes, J. Anchoring the CerEla1.0 Genome Assembly to Red Deer addition, we revealed several errors in the current CerEla1.0 genome assembly. Finally, we expanded (Cervus elaphus) and Cattle (Bos taurus) our analysis to other Cervidae and confirmed the locations of the cervid evolutionary fissions and Chromosomes and Specification of orientation of the fused chromosomes in eight cervid species.