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Morocco SD 2017 Trip Report
Morocco 9th - 18th March 2017 Desert Sparrow is surely one of the best looking and most sought after of all the sparrows Tour Leader: Lisle Gwynn All photos in this report were taken by Lisle Gwynn on this tour Species depicted in photographs are named in BOLD RED www.tropicalbirding.com +1-409-515-9110 [email protected] Introduction Morocco is a fascinating destination, and one that many world birders have neglected for too long. It is increasingly becoming a go-to country for European birders in Spring, and offers some of the most exciting birding in the Western Palearctic biogeographic region. Not only does it offer a chance to see Afro-European migration at its peak, but it also offers a plethora of exciting and special endemic and near-endemic species at its core. Add to this the fact that throughout the tour we have excellent accommodation and some of the best food available anywhere in the world (in my opinion), it all goes toward making Morocco a must-visit location for any birder branching out into the world. It is also currently by far the safest North African country to visit, with little crime and none of the problems that plague the rest of the region, and therefore presents a comfortable and safe opportunity to experience North Africa. This year’s tour followed our tried and tested route, starting in the manic city of Marrakesh at a serene hotel amongst the craziness, a quick departure to the idyllic Ourika Valley and the high snow-capped peaks of Oukameiden and the high Atlas Mountains, before descending to the stony desert around Boumalne Dades and the ochre-cast dunes of the Sahara at Erg Chebbi. -
Houbara Bustard and Saker Falcon Surveys In
WILDLIFE SCIENCE AND CONSERVATION CENTER OF MONGOLIA Public Disclosure Authorized Houbara Bustard and Saker Falcon surveys in Galba Gobi IBA, southern Mongolia Preliminary technical report to the World Bank and BirdLife International Public Disclosure Authorized Public Disclosure Authorized Nyambayar Batbayar, Bayarjargal Batsukh Wildlife Science and Conservation Center of Mongolia Jonathan Stacey Birdlife International and Axel Bräunlich consultant Public Disclosure Authorized 11/09/2009 Ulaanbaatar, Mongolia 1 Contents Introduction ................................................................................................................................................... 2 Biodiversity issues in Mongolia’s South Gobi region .................................................................................. 3 Two globally threatened species under focus ............................................................................................... 4 Project aim .................................................................................................................................................... 5 Outputs .......................................................................................................................................................... 5 Schedule of activities .................................................................................................................................... 6 Basic outline of Methods ............................................................................................................................. -
Turkey Birding Eastern Anatolia Th Th 10 June to 20 June 2021 (11 Days)
Turkey Birding Eastern Anatolia th th 10 June to 20 June 2021 (11 days) Caspian Snowcock by Alihan Vergiliel Turkey, a country the size of Texas, is a spectacular avian and cultural crossroads. This fascinating nation boasts an ancient history, from even before centuries of Greek Roman and Byzantine domination, through the 500-year Ottoman Empire and into the modern era. Needless to say, with such a pedigree the country holds some very impressive archaeological and cultural sites. Our tour of Eastern Turkey starts in the eastern city of Van, formerly known as Tuspa and 3,000 years ago the capital city of the Urartians. Today there are historical structures from the Seljuk and Ottoman periods, and Urartian artifacts can be seen at its archaeological museum. RBL Turkey Itinerary 2 However, it is the birds that are of primary interest to us as here, at the eastern limits of the Western Palearctic, we expect to find some very special and seldom-seen species, including Mountain ‘Caucasian’ Chiffchaff, Green Warbler, Mongolian Finch and Grey-headed Bunting. Around the shores of Lake Van we will seek out Moustached and Paddyfield Warblers in the dense reed beds, while on the lake itself, our targets include Marbled Teal, the threatened White-headed Duck, Dalmatian Pelican, Pygmy Cormorant and Armenian Gull, plus a selection of waders that may include Terek and Broad-billed Sandpiper. As we move further north-east into the steppe and semi desert areas, we will attempt to find Great Bustards and Demoiselle Cranes, with a potential supporting cast of Montagu’s Harrier, Steppe Eagle, the exquisite Citrine Wagtail and Twite, to name but a few. -
Phylogeography of Finches and Sparrows
In: Animal Genetics ISBN: 978-1-60741-844-3 Editor: Leopold J. Rechi © 2009 Nova Science Publishers, Inc. Chapter 1 PHYLOGEOGRAPHY OF FINCHES AND SPARROWS Antonio Arnaiz-Villena*, Pablo Gomez-Prieto and Valentin Ruiz-del-Valle Department of Immunology, University Complutense, The Madrid Regional Blood Center, Madrid, Spain. ABSTRACT Fringillidae finches form a subfamily of songbirds (Passeriformes), which are presently distributed around the world. This subfamily includes canaries, goldfinches, greenfinches, rosefinches, and grosbeaks, among others. Molecular phylogenies obtained with mitochondrial DNA sequences show that these groups of finches are put together, but with some polytomies that have apparently evolved or radiated in parallel. The time of appearance on Earth of all studied groups is suggested to start after Middle Miocene Epoch, around 10 million years ago. Greenfinches (genus Carduelis) may have originated at Eurasian desert margins coming from Rhodopechys obsoleta (dessert finch) or an extinct pale plumage ancestor; it later acquired green plumage suitable for the greenfinch ecological niche, i.e.: woods. Multicolored Eurasian goldfinch (Carduelis carduelis) has a genetic extant ancestor, the green-feathered Carduelis citrinella (citril finch); this was thought to be a canary on phonotypical bases, but it is now included within goldfinches by our molecular genetics phylograms. Speciation events between citril finch and Eurasian goldfinch are related with the Mediterranean Messinian salinity crisis (5 million years ago). Linurgus olivaceus (oriole finch) is presently thriving in Equatorial Africa and was included in a separate genus (Linurgus) by itself on phenotypical bases. Our phylograms demonstrate that it is and old canary. Proposed genus Acanthis does not exist. Twite and linnet form a separate radiation from redpolls. -
Effect of Right Bank Outfall Drain (Rbod) on Biodiversity of the Wetlands of Haleji Wetland Complex, Sindh
SENRA Academic Publishers, British Columbia Vol. 8, No. 2, pp. 2871-2900, June 2014 Online ISSN: 1920-3853; Print ISSN: 1715-9997 EFFECT OF RIGHT BANK OUTFALL DRAIN (RBOD) ON BIODIVERSITY OF THE WETLANDS OF HALEJI WETLAND COMPLEX, SINDH M Zaheer Khan, *Tanveer Jabeen, S Ali Ghalib, Saima Siddiqui, M Safdar Alvi, Iqbal Saeed Khan, Ghazala Yasmeen, Afsheen Zehra, Fozia Tabbassum, Babar Hussain, and Raheela Sharmeen Wildlife Section, Department of Zoology, University of Karachi, Karachi-75270 ABSTRACT In the present study, the effects of Right Bank Outfall Drain (RBOD) on the fauna of the wetlands were studied and inventories of the fauna and the flora were prepared. During the study period from 2007 – 2012, water samples taken from three sampling sites from the study areas viz., RBOD at Gharo, near Haleji Lake and near Keenjhar Lake were analyzed for physico-chemical parameters, pesticides and heavy metals. The mean salinity value of all sampling sites was recorded. RBOD at Gharo and RBOD near Keenjhar Lake showed high salinity value as per limit of World Health Organization standard. Water samples taken from RBOD near Keenjhar Lake showed pesticide OC compounds below the Maximum Acceptable Concentration (MAC). However, no serious adverse effects of environmental pollution were detected on the aquatic biodiversity except for some minor toxic effects due to the presence of heavy metals in water. Regarding biodiversity, two species of protozoans, 104 species of arthropods, 23 species of zooplanktons, 13 species of molluscs, 228 species of birds, 28 species of mammals, 31 species of reptiles, 2 species of amphibians and 59 species of fishes were recorded from the study areas. -
Report on Baseline Study of Avian Fauna of Sukkur Riverine Forests, Sindh, Pakistan
Report on Baseline study of Avian Fauna of Sukkur Riverine Forests, Sindh, Pakistan Project title: Sustainable forest management to secure multiple benefits in Pakistan's high conservation value forests 1 TABLE OF CONTENTS 1. CONTENTS PAGE # 2. List of Figures and Tables 02 3. Project Brief 03 4. Summary 07 5. Introduction 08 6. Methodology 10 7. Results & Discussion 12 8. Threats and Recommendation 15 9. References 16 List of Figures and Tables 1 Fig. 1. Map of Study Area 11 2 Fig. 2. Order Wise Species Richness Recorded From Study 13 Area 3 Fig. 3. Family Wise Species Richness Recorded From 14 Study Area 1 Table 1. Checklist of Avian Fauna Recorded From Study 18 Area 2 Project Brief Project Title: Sustainable forest management to secure multiple benefits in Pakistan's high conservation value forestss Duration: Five years (January 2017 to December 2021) Project Areas: i). Khyber Pakhtunkhwa (Temperate forest) ii). Sind (Riverine forest) iii. Punjab (Scrub forest and Riverine forest) Project objective: The objective of the proposed project is to promote sustainable forest management in Pakistan's Western Himalayan Temperate coniferous, Sub-tropical broadleaved evergreen thorn (Scrub) and Riverine forests for biodiversity conservation, mitigation of climate change and securing of forest ecosystem services. In particular, it aims at implementation of three inter-related and mutually complementary components that are focussed at addressing the barriers of inadequate planning, regulatory and institutional frameworks to integrated forest resource -
An Update of Wallacels Zoogeographic Regions of the World
REPORTS To examine the temporal profile of ChC produc- specification of a distinct, and probably the last, 3. G. A. Ascoli et al., Nat. Rev. Neurosci. 9, 557 (2008). tion and their correlation to laminar deployment, cohort in this lineage—the ChCs. 4. J. Szentágothai, M. A. Arbib, Neurosci. Res. Program Bull. 12, 305 (1974). we injected a single pulse of BrdU into pregnant A recent study demonstrated that progeni- CreER 5. P. Somogyi, Brain Res. 136, 345 (1977). Nkx2.1 ;Ai9 females at successive days be- tors below the ventral wall of the lateral ventricle 6. L. Sussel, O. Marin, S. Kimura, J. L. Rubenstein, tween E15 and P1 to label mitotic progenitors, (i.e., VGZ) of human infants give rise to a medial Development 126, 3359 (1999). each paired with a pulse of tamoxifen at E17 to migratory stream destined to the ventral mPFC 7. S. J. Butt et al., Neuron 59, 722 (2008). + 18 8. H. Taniguchi et al., Neuron 71, 995 (2011). label NKX2.1 cells (Fig. 3A). We first quanti- ( ). Despite species differences in the develop- 9. L. Madisen et al., Nat. Neurosci. 13, 133 (2010). fied the fraction of L2 ChCs (identified by mor- mental timing of corticogenesis, this study and 10. J. Szabadics et al., Science 311, 233 (2006). + phology) in mPFC that were also BrdU+. Although our findings raise the possibility that the NKX2.1 11. A. Woodruff, Q. Xu, S. A. Anderson, R. Yuste, Front. there was ChC production by E15, consistent progenitors in VGZ and their extended neurogenesis Neural Circuits 3, 15 (2009). -
Biodiversity Profile of Afghanistan
NEPA Biodiversity Profile of Afghanistan An Output of the National Capacity Needs Self-Assessment for Global Environment Management (NCSA) for Afghanistan June 2008 United Nations Environment Programme Post-Conflict and Disaster Management Branch First published in Kabul in 2008 by the United Nations Environment Programme. Copyright © 2008, United Nations Environment Programme. This publication may be reproduced in whole or in part and in any form for educational or non-profit purposes without special permission from the copyright holder, provided acknowledgement of the source is made. UNEP would appreciate receiving a copy of any publication that uses this publication as a source. No use of this publication may be made for resale or for any other commercial purpose whatsoever without prior permission in writing from the United Nations Environment Programme. United Nations Environment Programme Darulaman Kabul, Afghanistan Tel: +93 (0)799 382 571 E-mail: [email protected] Web: http://www.unep.org DISCLAIMER The contents of this volume do not necessarily reflect the views of UNEP, or contributory organizations. The designations employed and the presentations do not imply the expressions of any opinion whatsoever on the part of UNEP or contributory organizations concerning the legal status of any country, territory, city or area or its authority, or concerning the delimitation of its frontiers or boundaries. Unless otherwise credited, all the photos in this publication have been taken by the UNEP staff. Design and Layout: Rachel Dolores -
Genetic Applications in Avian Conservation
University of Nebraska - Lincoln DigitalCommons@University of Nebraska - Lincoln USGS Staff -- Published Research US Geological Survey 2011 Genetic Applications in Avian Conservation Susan M. Haig U.S. Geological Survey, [email protected] Whitcomb M. Bronaugh Oregon State University Rachel S. Crowhurst Oregon State University Jesse D'Elia U.S. Fish and Wildlife Service Collin A. Eagles-Smith U.S. Geological Survey See next page for additional authors Follow this and additional works at: https://digitalcommons.unl.edu/usgsstaffpub Haig, Susan M.; Bronaugh, Whitcomb M.; Crowhurst, Rachel S.; D'Elia, Jesse; Eagles-Smith, Collin A.; Epps, Clinton W.; Knaus, Brian; Miller, Mark P.; Moses, Michael L.; Oyler-McCance, Sara; Robinson, W. Douglas; and Sidlauskas, Brian, "Genetic Applications in Avian Conservation" (2011). USGS Staff -- Published Research. 668. https://digitalcommons.unl.edu/usgsstaffpub/668 This Article is brought to you for free and open access by the US Geological Survey at DigitalCommons@University of Nebraska - Lincoln. It has been accepted for inclusion in USGS Staff -- Published Research by an authorized administrator of DigitalCommons@University of Nebraska - Lincoln. Authors Susan M. Haig, Whitcomb M. Bronaugh, Rachel S. Crowhurst, Jesse D'Elia, Collin A. Eagles-Smith, Clinton W. Epps, Brian Knaus, Mark P. Miller, Michael L. Moses, Sara Oyler-McCance, W. Douglas Robinson, and Brian Sidlauskas This article is available at DigitalCommons@University of Nebraska - Lincoln: https://digitalcommons.unl.edu/ usgsstaffpub/668 The Auk 128(2):205–229, 2011 The American Ornithologists’ Union, 2011. Printed in USA. SPECIAL REVIEWS IN ORNITHOLOGY GENETIC APPLICATIONS IN AVIAN CONSERVATION SUSAN M. HAIG,1,6 WHITCOMB M. BRONAUGH,2 RACHEL S. -
The Phylogenetic Relationships and Generic Limits of Finches
Molecular Phylogenetics and Evolution 62 (2012) 581–596 Contents lists available at SciVerse ScienceDirect Molecular Phylogenetics and Evolution journal homepage: www.elsevier.com/locate/ympev The phylogenetic relationships and generic limits of finches (Fringillidae) ⇑ Dario Zuccon a, , Robert Pryˆs-Jones b, Pamela C. Rasmussen c, Per G.P. Ericson d a Molecular Systematics Laboratory, Swedish Museum of Natural History, Box 50007, SE-104 05 Stockholm, Sweden b Bird Group, Department of Zoology, Natural History Museum, Akeman St., Tring, Herts HP23 6AP, UK c Department of Zoology and MSU Museum, Michigan State University, East Lansing, MI 48824, USA d Department of Vertebrate Zoology, Swedish Museum of Natural History, Box 50007, SE-104 05 Stockholm, Sweden article info abstract Article history: Phylogenetic relationships among the true finches (Fringillidae) have been confounded by the recurrence Received 30 June 2011 of similar plumage patterns and use of similar feeding niches. Using a dense taxon sampling and a com- Revised 27 September 2011 bination of nuclear and mitochondrial sequences we reconstructed a well resolved and strongly sup- Accepted 3 October 2011 ported phylogenetic hypothesis for this family. We identified three well supported, subfamily level Available online 17 October 2011 clades: the Holoarctic genus Fringilla (subfamly Fringillinae), the Neotropical Euphonia and Chlorophonia (subfamily Euphoniinae), and the more widespread subfamily Carduelinae for the remaining taxa. Keywords: Although usually separated in a different -
Ararat Marz Guidebook
ARARAT MARZ GUIDEBOOK 2014 ARARAT FACTS ARARAT Ararat is one of Armenia’s 10 provinces, whose capital is Artashat. Named after Mount Ararat, the province borders Turkey to the west and Azerbaijan’s Nakhchivan Autonomous Republic to the south. Two former Armenian capitals are located in this region, Artashat and Dvin, as well as the Khor Virap monastery, significant as the place of Gregory the Illuminator’s 13-year imprisonment and for being the closest point to Mount Ararat within Armenian borders. The province consists of 97 com- munities, known as hamaynkner, of which four are considered urban and 93 rural. Spanning an area of 1995 km2 and home to a population of 311,400 people, its administrative Center is Artashat which is 29km from Yerevan. Ararat borders the following provinces: Armavir to the northwest, Kotayk to the north, Gegharkunik 1. It is rumoured that Sir Winston’s favourite tipple came out of the Ararat valley in the east and Vayots Dzor to the southeast. Ararat also has a border with the city of Yerevan in the north, between its borders with Armavir and Kotayk. Ararat’s moun- tains include the Yeranos range, Vishapasar 3157m, Geghasar 3443m, and Kotuts 2061m, Urts 2445m. The province also has a number of lakes including: Sev, Azat, Armush, and Karalich as well as the Arax, Azat, Hrazdan, Yotnakunk, Vedi, and Artashat Rivers. During the period from 331 BC to 428 AD, the Armenian Kingdom was also known as Greater Armenia (Mets Hayk) and consisted of 15 states. One of those original states was Ayrarat. -
OSME List V3.4 Passerines-2
The Ornithological Society of the Middle East, the Caucasus and Central Asia (OSME) The OSME Region List of Bird Taxa: Part C, Passerines. Version 3.4 Mar 2017 For taxa that have unproven and probably unlikely presence, see the Hypothetical List. Red font indicates either added information since the previous version or that further documentation is sought. Not all synonyms have been examined. Serial numbers (SN) are merely an administrative conveninence and may change. Please do not cite them as row numbers in any formal correspondence or papers. Key: Compass cardinals (eg N = north, SE = southeast) are used. Rows shaded thus and with yellow text denote summaries of problem taxon groups in which some closely-related taxa may be of indeterminate status or are being studied. Rows shaded thus and with white text contain additional explanatory information on problem taxon groups as and when necessary. A broad dark orange line, as below, indicates the last taxon in a new or suggested species split, or where sspp are best considered separately. The Passerine Reference List (including References for Hypothetical passerines [see Part E] and explanations of Abbreviated References) follows at Part D. Notes↓ & Status abbreviations→ BM=Breeding Migrant, SB/SV=Summer Breeder/Visitor, PM=Passage Migrant, WV=Winter Visitor, RB=Resident Breeder 1. PT=Parent Taxon (used because many records will antedate splits, especially from recent research) – we use the concept of PT with a degree of latitude, roughly equivalent to the formal term sensu lato , ‘in the broad sense’. 2. The term 'report' or ‘reported’ indicates the occurrence is unconfirmed.