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First Record of Hose's Civet Diplogale Hosei from Indonesia
First record of Hose’s Civet Diplogale hosei from Indonesia, and records of other carnivores in the Schwaner Mountains, Central Kalimantan, Indonesia Hiromitsu SAMEJIMA1 and Gono SEMIADI2 Abstract One of the least-recorded carnivores in Borneo, Hose’s Civet Diplogale hosei , was filmed twice in a logging concession, the Katingan–Seruyan Block of Sari Bumi Kusuma Corporation, in the Schwaner Mountains, upper Seruyan River catchment, Central Kalimantan. This, the first record of this species in Indonesia, is about 500 km southwest of its previously known distribution (northern Borneo: Sarawak, Sabah and Brunei). Filmed at 325The m a.s.l., IUCN these Red List records of Threatened are below Species the previously known altitudinal range (450–1,800Prionailurus m). This preliminary planiceps survey forPardofelis medium badia and large and Otter mammals, Civet Cynogalerunning 100bennettii camera-traps in 10 plots for one (Bandedyear, identified Civet Hemigalus in this concession derbyanus 17 carnivores, Arctictis including, binturong on Neofelis diardi, three Endangered Pardofe species- lis(Flat-headed marmorata Cat and Sun Bear Helarctos malayanus, Bay Cat . ) and six Vulnerable species , Binturong , Sunda Clouded Leopard , Marbled Cat Keywords Cynogale bennettii, as well, Pardofelis as Hose’s badia Civet), Prionailurus planiceps Catatan: PertamaBorneo, camera-trapping, mengenai Musang Gunung Diplogale hosei di Indonesia, serta, sustainable karnivora forest management lainnya di daerah Pegunungan Schwaner, Kalimantan Tengah Abstrak Diplogale hosei Salah satu jenis karnivora yang jarang dijumpai di Borneo, Musang Gunung, , telah terekam dua kali di daerah- konsesi hutan Blok Katingan–Seruyan- PT. Sari Bumi Kusuma, Pegunungan Schwaner, di sekitar hulu Sungai Seruya, Kalimantan Tengah. Ini merupakan catatan pertama spesies tersebut terdapat di Indonesia, sekitar 500 km dari batas sebaran yang diketa hui saat ini (Sarawak, Sabah, Brunei). -
1 the Origin and Evolution of the Domestic Cat
1 The Origin and Evolution of the Domestic Cat There are approximately 40 different species of the cat family, classification Felidae (Table 1.1), all of which are descended from a leopard-like predator Pseudaelurus that existed in South-east Asia around 11 million years ago (O’Brien and Johnson, 2007). Other than the domestic cat, the most well known of the Felidae are the big cats such as lions, tigers and panthers, sub-classification Panthera. But the cat family also includes a large number of small cats, including a group commonly known as the wildcats, sub-classification Felis silvestris (Table 1.2). Physical similarity suggests that the domestic cat (Felis silvestris catus) originally derived from one or more than one of these small wildcats. DNA examination shows that it is most closely related to the African wildcat (Felis silvestris lybica), which has almost identical DNA, indicating that the African wildcat is the domestic cat’s primary ancestor (Lipinski et al., 2008). The African Wildcat The African wildcat is still in existence today and is a solitary and highly territorial animal indigenous to areas of North Africa and the Near East, the region where domestication of the cat is believed to have first taken place (Driscoll et al., 2007; Faure and Kitchener, 2009). It is primarily a nocturnal hunter that preys mainly on rodents but it will also eat insects, reptiles and other mammals including the young of small antelopes. Also known as the Arabian or North African wildcat, it is similar in appearance to a domestic tabby, with a striped grey/sandy-coloured coat, but is slightly larger and with longer legs (Fig. -
Savannah Cat’ ‘Savannah the Including Serval Hybrids Felis Catus (Domestic Cat), (Serval) and (Serval) Hybrids Of
Invasive animal risk assessment Biosecurity Queensland Agriculture Fisheries and Department of Serval hybrids Hybrids of Leptailurus serval (serval) and Felis catus (domestic cat), including the ‘savannah cat’ Anna Markula, Martin Hannan-Jones and Steve Csurhes First published 2009 Updated 2016 © State of Queensland, 2016. The Queensland Government supports and encourages the dissemination and exchange of its information. The copyright in this publication is licensed under a Creative Commons Attribution 3.0 Australia (CC BY) licence. You must keep intact the copyright notice and attribute the State of Queensland as the source of the publication. Note: Some content in this publication may have different licence terms as indicated. For more information on this licence visit http://creativecommons.org/licenses/ by/3.0/au/deed.en" http://creativecommons.org/licenses/by/3.0/au/deed.en Front cover: Close-up of a 4-month old F1 Savannah cat. Note the occelli on the back of the relaxed ears, and the tear-stain markings which run down the side of the nose. Photo: Jason Douglas. Image from Wikimedia Commons under a Public Domain Licence. Invasive animal risk assessment: Savannah cat Felis catus (hybrid of Leptailurus serval) 2 Contents Introduction 4 Identity of taxa under review 5 Identification of hybrids 8 Description 10 Biology 11 Life history 11 Savannah cat breed history 11 Behaviour 12 Diet 12 Predators and diseases 12 Legal status of serval hybrids including savannah cats (overseas) 13 Legal status of serval hybrids including savannah cats -
2007 No. 1437 ANIMALS the Dangerous
STATUTORY INSTRUMENTS 2007 No. 1437 ANIMALS The Dangerous Wild Animals Act 1976 (Modification) Order 2007 Made - - - - 8th May 2007 Laid before Parliament 14th May 2007 Coming into force - - 1st October 2007 The Secretary of State in exercise of the powers conferred upon him by section 8(1) of the Dangerous Wild Animals Act 1976(a), being satisfied that the scope of that Act should be both extended so as to include animals of a kind not for the time being specified in the Schedule to that Act and diminished so as to exclude animals of a kind for the time being specified in that Schedule, makes the following Order: Citation and commencement 1. This Order may be cited as the Dangerous Wild Animals Act 1976 (Modification) Order 2007 and shall come into force on 1st October 2007. Modification 2. For the Schedule to the Dangerous Wild Animals Act 1976 substitute the Schedule set out in the Schedule to this Order. Revocation 3. The Dangerous Wild Animals Act 1976 (Modification) Order 1984(b) is revoked. Barry Gardiner Parliamentary Under Secretary of State 8th May 2007 Department for Environment, Food and Rural Affairs (a) 1976 c.38. (b) S.I. 1984/1111. SCHEDULE Article 2 “SCHEDULE Section 7 KINDS OF DANGEROUS WILD ANIMALS NOTE: See section 7(5) of this Act for the effect of the second column of this Schedule Scientific name of kind Common name or names MAMMALS Marsupials Family Dasyuridae: The Tasmanian devil. The species Sarcophilus laniarius. Family Macropodidae: The western and eastern grey kangaroos, the The species Macropus fuliginosus, Macropus wallaroo and the red kangaroo. -
Revealed Via Genomic Assessment of Felid Cansines
Evolutionary and Functional Impacts of Short Interspersed Nuclear Elements (SINEs) Revealed via Genomic Assessment of Felid CanSINEs By Kathryn B. Walters-Conte B. S., May 2000, University of Maryland, College Park M. S., May 2002, The George Washington University A Dissertation Submitted to The Faculty of Columbian College of Arts and Sciences of The George Washington University in partial fulfillment of the requirements for the Degree of Doctor of Philosophy May 15 th , 2011 Dissertation Directed By Diana L.E. Johnson Associate Professor of Biology Jill Pecon-Slattery Staff Scientist, National Cancer Institute . The Columbian College of Arts and Sciences of The George Washington University certifies that Kathryn Walters-Conte has passed the Final Examination for the degree of Doctor of Philosophy as of March 24 th , 2011. This is the final and approved form of the dissertation. Evolutionary and Functional Impacts of Short Interspersed Nuclear Elements (SINEs) Revealed via Genomic Assessment of Felid CanSINEs Kathryn Walters-Conte Dissertation Research Committee: Diana L.E. Johnson, Associate Professor of Biology, Dissertation Co-Director Jill Pecon-Slattery, Staff Scientist, National Cancer Institute, Dissertation Co-Director Diana Lipscomb, Ronald Weintraub Chair and Professor, Committee Member Marc W. Allard, Research Microbiologist, U.S. Food and Drug Administration, Committee Member ii Acknowledgements I would like to first thank my advisor and collaborator, Dr. Jill Pecon-Slattery, at the National Cancer Institute of the National Institutes of Health, for generously permitting me to join her research group. Without her mentorship this dissertation would never have been possible. I would also like to express gratitude to my advisor at the George Washington University, Dr. -
Flat Headed Cat Andean Mountain Cat Discover the World's 33 Small
Meet the Small Cats Discover the world’s 33 small cat species, found on 5 of the globe’s 7 continents. AMERICAS Weight Diet AFRICA Weight Diet 4kg; 8 lbs Andean Mountain Cat African Golden Cat 6-16 kg; 13-35 lbs Leopardus jacobita (single male) Caracal aurata Bobcat 4-18 kg; 9-39 lbs African Wildcat 2-7 kg; 4-15 lbs Lynx rufus Felis lybica Canadian Lynx 5-17 kg; 11-37 lbs Black Footed Cat 1-2 kg; 2-4 lbs Lynx canadensis Felis nigripes Georoys' Cat 3-7 kg; 7-15 lbs Caracal 7-26 kg; 16-57 lbs Leopardus georoyi Caracal caracal Güiña 2-3 kg; 4-6 lbs Sand Cat 2-3 kg; 4-6 lbs Leopardus guigna Felis margarita Jaguarundi 4-7 kg; 9-15 lbs Serval 6-18 kg; 13-39 lbs Herpailurus yagouaroundi Leptailurus serval Margay 3-4 kg; 7-9 lbs Leopardus wiedii EUROPE Weight Diet Ocelot 7-18 kg; 16-39 lbs Leopardus pardalis Eurasian Lynx 13-29 kg; 29-64 lbs Lynx lynx Oncilla 2-3 kg; 4-6 lbs Leopardus tigrinus European Wildcat 2-7 kg; 4-15 lbs Felis silvestris Pampas Cat 2-3 kg; 4-6 lbs Leopardus colocola Iberian Lynx 9-15 kg; 20-33 lbs Lynx pardinus Southern Tigrina 1-3 kg; 2-6 lbs Leopardus guttulus ASIA Weight Diet Weight Diet Asian Golden Cat 9-15 kg; 20-33 lbs Leopard Cat 1-7 kg; 2-15 lbs Catopuma temminckii Prionailurus bengalensis 2 kg; 4 lbs Bornean Bay Cat Marbled Cat 3-5 kg; 7-11 lbs Pardofelis badia (emaciated female) Pardofelis marmorata Chinese Mountain Cat 7-9 kg; 16-19 lbs Pallas's Cat 3-5 kg; 7-11 lbs Felis bieti Otocolobus manul Fishing Cat 6-16 kg; 14-35 lbs Rusty-Spotted Cat 1-2 kg; 2-4 lbs Prionailurus viverrinus Prionailurus rubiginosus Flat -
Predicted Distribution of the Bay Cat Catopuma Badia (Mammalia: Carnivora: Felidae) on Borneo
RAFFLES BULLETIN OF ZOOLOGY 2016 RAFFLES BULLETIN OF ZOOLOGY Supplement No. 33: 165–172 Date of publication: 30 May 2016 Predicted distribution of the bay cat Catopuma badia (Mammalia: Carnivora: Felidae) on Borneo Andrew J. Hearn1*, Joanna Ross, David W. Macdonald, Hiromitsu Samejima, Matt Heydon, Henry Bernard, Dave M. Augeri, Gabriella Fredriksson, Jason Hon, John Mathai, Azlan Mohamed, Rustam, Erik Meijaard, Luke T.B. Hunter, Christine Breitenmoser-Würsten, Stephanie Kramer-Schadt and Andreas Wilting Wilting et al. (2016: Table 2) list all co-authors’ affiliations. Abstract. The bay cat Catopuma badia is a small cat endemic to the tropical forests of Borneo. One of only seven cats to be listed as Endangered by The IUCN Red List of Threatened Species, the bay cat is seldom seen, rarely photographed and is widely held to be one of the least known of the world’s wild cats. Consequently its distribution is known only poorly, hindering efforts for its conservation. Here we use MaxEnt niche distribution modelling to make predictions regarding its current distribution on Borneo. We collected a total of 71 occurrence records for the bay cat, stemming from all Bornean regions apart from Brunei and South Kalimantan, of which 40 were used in our modelling. Our habitat suitability modelling predicts that an extensive, contiguous area of interior Borneo, much of it hill forest, but also containing lowland and submontane forest, is suitable for the bay cat, supporting an earlier hypothesis that this cat is widespread across the island. Extreme lowlands, supporting mangrove and swamp forest habitats, were typically predicted as low suitability, as were the considerable areas of Borneo now converted to oil palm plantations. -
Camera Trapping of Wildlife in the Newly Established Baleh National Park, Sarawak
Journal of Sustainability Science and Management eISSN: 2672-7226 Volume 14 Number 4, August 2019: 38-51 © Penerbit UMT CAMERA TRAPPING OF WILDLIFE IN THE NEWLY ESTABLISHED BALEH NATIONAL PARK, SARAWAK JAYASILAN MOHD-AZLAN*1, MELYNDA CHEOK KA YI1, BELINDA LIP2 AND JASON HON2 1Faculty of Resource Science and Technology, Universiti Malaysia Sarawak, Kota Samarahan, Sarawak, Malaysia. 2World Wildlife Fund for Nature, 7th Floor, Bangunan Binamas, Lot 138, Section 54, Jalan Padungan, Kuching, Sarawak, Malaysia. *Corresponding author: [email protected] Abstract: The persistence of biodiversity in the Bornean rainforest depends on its ability to adapt to anthropogenic exploitation. The remaining forests in Sarawak are fragmented and isolated and their ability to support large sized mammals is of great concern. In view of this, camera trapping survey was conducted in the recently gazetted Baleh National Park to record the richness, activity pattern and distribution of medium-to-large sized mammals. A total of 15 infrared camera traps were set within the park. We identified at least 27 species of mammals, 12 birds and two reptiles. From the total mammalian species detected, four were listed as “totally protected” and 15 as “protected” under the Sarawak Wild Life Protection Ordinance 1998. Additionally, under the IUCN 2018 Red List criteria, one species was identified as “critically endangered” (Manis javanica), one as “endangered” (Catopuma badia), seven as “vulnerable” and four as “near threatened”. This study had identified the occurrence and distribution of some rare, endangered and threatened species. The presence of these species can be used to identify core conservation sites within Baleh National Park. -
Cats on the 2009 Red List of Threatened Species
ISSN 1027-2992 CATnewsN° 51 | AUTUMN 2009 01 IUCNThe WorldCATnews Conservation 51Union Autumn 2009 news from around the world KRISTIN NOWELL1 Cats on the 2009 Red List of Threatened Species The IUCN Red List is the most authoritative lists participating in the assessment pro- global index to biodiversity status and is the cess. Distribution maps were updated and flagship product of the IUCN Species Survi- for the first time are being included on the val Commission and its supporting partners. Red List website (www.iucnredlist.org). Tex- As part of a recent multi-year effort to re- tual species accounts were also completely assess all mammalian species, the family re-written. A number of subspecies have Felidae was comprehensively re-evaluated been included, although a comprehensive in 2007-2008. A workshop was held at the evaluation was not possible (Nowell et al Oxford Felid Biology and Conservation Con- 2007). The 2008 Red List was launched at The fishing cat is one of the two species ference (Nowell et al. 2007), and follow-up IUCN’s World Conservation Congress in Bar- that had to be uplisted to Endangered by email with others led to over 70 specia- celona, Spain, and since then small changes (Photo A. Sliwa). Table 1. Felid species on the 2009 Red List. CATEGORY Common name Scientific name Criteria CRITICALLY ENDANGERED (CR) Iberian lynx Lynx pardinus C2a(i) ENDANGERED (EN) Andean cat Leopardus jacobita C2a(i) Tiger Panthera tigris A2bcd, A4bcd, C1, C2a(i) Snow leopard Panthera uncia C1 Borneo bay cat Pardofelis badia C1 Flat-headed -
Ecosystem Services Certification Document for Ratah Timber, Long Hubung Sub-District, Ulu Mahakam District, East Kalimantan
Forest Stewardship Council® Ecosystem Services Programme March 2017 Ecosystem Services Certification Document for Ratah Timber, Long Hubung sub-district, Ulu Mahakam District, East Kalimantan Part I: Information regarding the demonstration of impact Declaration of the ecosystem services for which a claim is being or will be made (Step 1) Please state the ecosystem service(s) for which you are making or plan to make FSC claims for the maintenance and/or enhancement of ecosystem services. You can choose more than one option. Carbon sequestration and storage Watershed services Biological diversity conservation Soil conservation Recreational services Management objectives related to maintenance and/or enhancement of each declared ecosystem service (Step 1) Biodiversity To maintain and protect terrestrial mammal and bird species. – 1 of 21 – FSC International Center GmbH · https://ic.fsc.org · FSC® F000100 Charles de Gaulle Strasse 5 · 53113 Bonn · Germany T +49 (0) 228 367 660 · F +49 (0) 228 367 66 30 Geschäftsführer | Director: Dr Hans-Joachim Droste Handelsregister | Commercial Register: Bonn HRB12589 Chosen ecosystem services impact to be demonstrated1 (Step 4) Biodiversity: Maintenance of native species or genetic diversity 1 Please define a theory of change for each chosen ecosystem service impact. You can use as many arrows and boxes for management activities, outputs, and outcomes as you need. FSC-PRO-30-006 V1-0 EN DEMONSTRATING THE IMPACT OF FOREST STEWARDSHIP ON ECOSYSTEM SERVICES – 2 of 21 – Theory of change template (Step 5) MANAGEMENT ACTIVITIES OUTPUTS OUTCOMES IMPACT Around 300–400 ha replanted Replanting trees after harvesting with native/local species Protecting habitat in HCV forests 12,080 ha HCV area protected Species inventory – all Maintenance Monitoring species via camera traps species including rarity and Species included in of native endangered status the inventory are species or maintained genetic diversity Cut only >40 cm (HP); >50 cm (HPT) of diameter. -
2012 the Conservation Biology of the African Golden
Wildlife Conservation Research Unit (WildCRU) Department of Zoology, University of Oxford Report to the Trustees of The People’s Trust for Endangered Species (PTES) February 2012 Ms Laila Bahaa-el-din – African Golden Cat: conservation biology Ms Femke Broekhuis – Cheetah ecology and coexistence with other large carnivores Dr Lauren Harrington – Reintroductions Mr Andrew J. Hearn and Ms Joanna Ross – Bornean Clouded Leopard Programme Dr Chris Newman and Dr Christina Buesching – The Badger Project The Conservation Biology of the African Golden Cat Ms Laila Bahaa-el-din Introduction and background The African golden cat (Caracal aurata or Profelis aurata) project in Gabon began in 2010 when the need for baseline information on this almost unstudied felid was recognised. The organisation, Panthera, initiated the project and continues to support it through a Kaplan Graduate Award to Laila Bahaa-el-din, in partnership with WildCRU and the University of KwaZulu-Natal. Although Africa is recognised for its big cats, the golden cat is the only cat on the continent to depend on forest habitat. Its range is restricted to equatorial Africa (see map, right). Threats such as bushmeat hunting, forest clearing for agriculture and commercial logging have caused an estimated 44% loss of golden cat habitat to date, but so little is known about this species that it is as yet impossible to state the extent to which human activities are really affecting it. The African golden cat was previously believed to be the relative of the Asiatic golden cat but recent molecular evidence places it with the more open-habitat species, the caracal (Caracal caracal) and the serval (Caracal serval or Leptailurus serval). -
Phylogenomic Evidence for Ancient Hybridization in the Genomes of Living Cats (Felidae)
Downloaded from genome.cshlp.org on September 29, 2021 - Published by Cold Spring Harbor Laboratory Press Phylogenomic evidence for ancient hybridization in the genomes of living cats (Felidae). Gang Li1, Brian W. Davis1,2#, Eduardo Eizirik3, and William J. Murphy1,2 1Department of Veterinary Integrative Biosciences, Texas A&M University, College Station, TX 77843, USA. 2Interdisciplinary Program in Genetics, Texas A&M University, College Station, TX 77843, USA. 3Faculdade de Biociências, PUCRS, Porto Alegre, RS 90619-900, Brazil. #Current address: National Human Genome Research Institute, National Institutes of Health, Bethesda, MD 20892, USA. Corresponding author: William Murphy Department of Veterinary Integrative Biosciences 4458 TAMU Texas A&M University College Station, TX 77843-4458 Tel: (979)458-0906 Fax: (979)845-9972 [email protected] Running Title: Cat speciation and hybridization Keywords: cats, hybridization, speciation, introgression 1 Downloaded from genome.cshlp.org on September 29, 2021 - Published by Cold Spring Harbor Laboratory Press Abstract Interspecies hybridization has been recently recognized as potentially common in wild animals, but the extent to which it shapes modern genomes is still poorly understood. Distinguishing historical hybridization events from other processes leading to phylogenetic discordance among different markers requires a well-resolved species tree that considers all modes of inheritance, and overcomes systematic problems due to rapid lineage diversification by sampling large genomic character sets. Here we assessed genome-wide phylogenetic variation across a diverse mammalian family, Felidae (cats). We combined genotypes from a genome-wide SNP array with additional autosomal, X- and Y-linked variants to sample ~150 kilobases of nuclear sequence, in addition to complete mitochondrial genomes generated using light-coverage Illumina sequencing.