Western Isles Local Biodiversity Action Plan
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Methods and Work Profile
REVIEW OF THE KNOWN AND POTENTIAL BIODIVERSITY IMPACTS OF PHYTOPHTHORA AND THE LIKELY IMPACT ON ECOSYSTEM SERVICES JANUARY 2011 Simon Conyers Kate Somerwill Carmel Ramwell John Hughes Ruth Laybourn Naomi Jones Food and Environment Research Agency Sand Hutton, York, YO41 1LZ 2 CONTENTS Executive Summary .......................................................................................................................... 8 1. Introduction ............................................................................................................ 13 1.1 Background ........................................................................................................................ 13 1.2 Objectives .......................................................................................................................... 15 2. Review of the potential impacts on species of higher trophic groups .................... 16 2.1 Introduction ........................................................................................................................ 16 2.2 Methods ............................................................................................................................. 16 2.3 Results ............................................................................................................................... 17 2.4 Discussion .......................................................................................................................... 44 3. Review of the potential impacts on ecosystem services ....................................... -
Species Summary Table
VERTEBRATES: MAMMALS Scientific name Common Name Number of 10 km sqs & (population estimate) Scotland (1970 GB (1960 on WI Status on - unless unless stated) stated) Western Isles St Kilda Lewis Harris North Uist Monach Isles Berneray & Boreray Benbecula South Uist Eriskay Barra & Vatersay Lutra lutra lutra Otter >1,050 (6,600) >1,308 (>7,350) P X X X X X X X X Pipistrellus Pipistrelle bat 492 (550,000) >1,438 P X pipisterllus & P. (2,000,000) pygmaeus Phocoena Harbour porpoise No data 350,000 in Sea P O phocoena and adjacent waters (Anon 1999a) Balaena glacialis Northern right No data Not more than P O whale 300 in Atlantic Balaenoptera Minke whale 8,500 in N Sea 110,000 in East P O acutorostrata and adjacent N. Atlantic in waters 1995 Balaenoptera Sei whale No data N Atlantic - P O borealis probably low thousands (Corbet & Harris 1991) Balaenoptera Blue whale No data N Atlantic P O musculus population reduced to 300- 500 (Corbett & Harris 1991) Balaenoptera Fin whale No data N Atlantic P O physalus population 9,000 - 14,000 (Corbet & Harris 1991) Megaptera Humpback whale No data 10-15,000 in N P O novaeangilea Atlantic Tursiops truncatus Bottle-nosed 130 in Moray No data P O dolphin Firth (Anon 1999a) Grampus griseus Risso's dolphin At least 142 in No data P O North Minches (Anon 1999a) 113 VERTEBRATES: MAMMALS Scientific name Common Name Number of 10 km sqs & (population estimate) Scotland (1970 GB (1960 on WI Status on - unless unless stated) stated) Western Isles St Kilda Lewis Harris North Uist Monach Isles Berneray & Boreray Benbecula -
Iconic Bees: 12 Reports on UK Bee Species
Iconic Bees: 12 reports on UK bee species Bees are vital to the ecology of the UK and provide significant social and economic benefits through crop pollination and maintaining the character of the landscape. Recent years have seen substantial declines in many species of bees within the UK. This report takes a closer look at how 12 ‘iconic’ bee species are faring in each English region, as well as Wales, Northern Ireland and Scotland. Authors Rebecca L. Evans and Simon G. Potts, University of Reading. Photo: © Amelia Collins Contents 1 Summary 2 East England Sea-aster Mining Bee 6 East Midlands Large Garden Bumblebee 10 London Buff-tailed Bumblebee 14 North East Bilberry Bumblebee 18 North West Wall Mason Bee 22 Northern Ireland Northern Colletes 26 Scotland Great Yellow Bumblebee 30 South East England Potter Flower Bee 34 South West England Scabious Bee 38 Wales Large Mason Bee 42 West Midlands Long-horned Bee 46 Yorkshire Tormentil Mining Bee Through collating information on the 12 iconic bee species, common themes have Summary emerged on the causes of decline, and the actions that can be taken to help reverse it. The most pervasive causes of bee species decline are to be found in the way our countryside has changed in the past 60 years. Intensification of grazing regimes, an increase in pesticide use, loss of biodiverse field margins and hedgerows, the trend towards sterile monoculture, insensitive development and the sprawl of towns and cities are the main factors in this. I agree with the need for a comprehensive Bee Action Plan led by the UK Government in order to counteract these causes of decline, as called for by Friends of the Earth. -
Biodiverse Master
Montane, Heath and Bog Habitats MONTANE, HEATH AND BOG HABITATS CONTENTS Montane, heath and bog introduction . 66 Opportunities for action in the Cairngorms . 66 The main montane, heath and bog biodiversity issues . 68 Main threats to UK montane, heath and bog Priority species in the Cairngorms . 72 UK Priority species and Locally important species accounts . 73 Cairngorms montane, heath and bog habitat accounts: • Montane . 84 • Upland heath . 87 • Blanket bog . 97 • Raised bog . 99 ‘Key’ Cairngorms montane, heath and bog species . 100 65 The Cairngorms Local Biodiversity Action Plan MONTANE, HEATH AND BOG INTRODUCTION Around one third of the Cairngorms Partnership area is over 600-650m above sea level (above the natural woodland line, although this is variable from place to place.). This comprises the largest and highest area of montane habitat in Britain, much of which is in a relatively pristine condition. It contains the main summits and plateaux with their associated corries, rocky cliffs, crags, boulder fields, scree slopes and the higher parts of some glens and passes. The vegeta- tion is influenced by factors such as exposure, snow cover and soil type. The main zone is considered to be one of the most spectacular mountain areas in Britain and is recognised nationally and internationally for the quality of its geology, geomorphology and topographic features, and associated soils and biodiversity. c14.5% of the Cairngorms Partnership area (75,000ha) is land above 600m asl. Upland heathland is the most extensive habitat type in the Cairngorms Partnership area, covering c41% of the area, frequently in mosaics with blanket bog. -
Aculeate Conservation Group/ Hymettus Report for 2006
Aculeate Conservation Group/ Hymettus Report for 2006 1. Background to 2006 Research. 1.1 During 2006 a new body, Hymettus Ltd., was constituted. Hymettus will take over and extend the role of the Aculeate Conservation Group. This report deals with research originally agreed at the 2005 ACG Annual Review and funded by English Nature (now also re-incarnated as Natural England), but executed under Hymettus Ltd.. During 2006 work was financially supported by English Nature, Earthwatch, Syngenta and the RSPB in accordance with the relevant Annex a documents, which see for details. 1.2 2005 Projects are reported in the following order of taxonomic group: ants, wasps, bees, other projects. 2. Ant Projects. 2.1 Formica exsecta 2.1.1 At the 2005 Review meeting Stephen Caroll was asked to enquire of the Devon Trust as to whether they would be prepared to consider looking at the possibility of proposing a landscape project for the Bovey Basin which would include the habitat requirements of Formica exsecta and , if so, whether a contribution from the ACG towards the costs of looking at this would be appropriate. 2.1.2 The Trust received this request enthusiastically and have submitted a copy of Andrew Taylor’s (their Officer) Report. Stephen Caroll will be able to bring us up to date with developments at the Review meting. The Report is presented here (appendices may be obtained from Mike Edwards): Landscape-scale habitat work in Devon’s Bovey Basin Report to Hymettus Limited, October 2006 1. Introduction The Bovey Basin is located in the Teignbridge district of South Devon. -
Scottish Bees
Scottish Bees Introduction to bees Bees are fascinating insects that can be found in a broad range of habitats from urban gardens to grasslands and wetlands. There are over 270 species of bee in the UK in 6 families - 115 of these have been recorded in Scotland, with 4 species now thought to be extinct and insufficient data available for another 2 species. Bees are very diverse, varying in size, tongue-length and flower preference. In the UK we have 1 species of honey bee, 24 species of bumblebee and the rest are solitary bees. They fulfil an essential ecological and environmental role as one of the most significant groups of pollinating insects, all of which we depend upon for the pollination of 80% of our wild and cultivated plants. Some flowers are in fact designed specifically for bee pollination, to the exclusion of generalist pollinators. Bees and their relatives Bees are classified in the complex insect order Hymenoptera (meaning membrane-winged), which also includes many kinds of parasitic wasps, gall wasps, hunting wasps, ants and sawflies. There are about 150,000 species of Hymenoptera known worldwide separated into two sub-orders. The first is the most primitive sub-order Symphyta which includes the sawflies and their relatives, lacking a wasp-waist and generally with free-living caterpillar-like larvae. The second is the sub-order Apocrita, which includes the ants, bees and wasps which are ’wasp-waisted’ and have grub-like larvae that develop within hosts, galls or nests. The sub-order Apocrita is in turn divided into two sections, the Parasitica and Aculeata. -
Taxonomic Review of the Genus Coelopisthia Förster (Hymenoptera: Pteromalidae) from China, with Four New Species
Zoological Systematics, 39(4): 545–554 (October 2014), DOI: 10.11865/zs.20140407 ORIGINAL ARTICLE Taxonomic review of the genus Coelopisthia Förster (Hymenoptera: Pteromalidae) from China, with four new species Tian-Yang Jiao1, 2, Hui Xiao1* 1 Key Laboratory of Zoological Systematics and Evolution, Institute of Zoology, Chinese Academy of Sciences, Beijing 100101, China 2 College of Life Sciences, University of Chinese Academy of Sciences, Beijing 100049, China * Corresponding author, E-mail: [email protected] Abstract The pteromalid genus Coelopisthia from China is studied with eight species including four new species and two newly recorded species: C. dasycladus sp. nov., C. gracilentus sp. nov., C. pseudaletia sp. nov., C. condensus sp. nov., C. areolata Askew and C. caledonica Askew. A key to Chinese species is provided. All the specimens are deposited in the Zoological Museum, Institute of Zoology, Chinese Academy of Sciences. Key words Hymenoptera, Pteromalidae, Coelopisthia, new species, China. 1 Introduction The genus Coelopisthia was described by Förster in a key to genera of Chalcidoidea, but without any species in 1856. Ashmead formally designated Pteromalus cephalotes Walker as the type species of Coelopisthia in 1904. However, Graham discovered that Pteromalus cephalotes Walker sensu Thomson (1878) was misidentified and actually was Pteromalus extentus Walker (Graham, 1956). He erected the new genus Kranophorus with the type species Pteromalus extentus Walker, and Coelopisthia was treated as synonym of Pteromalus Swederus. Subsequently, Baur and Bouček discussed on the history of the genus Coelopisthia in detail and published their study in 2002. In their study, Coelopisthia is treated as valid, Pteromalus extentus Walker is designated as type species of Coelopisthia, and Kranophorus become a junior objective synonym of Coelopisthia. -
Greenland Barnacle 2003 Census Final
GREENLAND BARNACLE GEESE BRANTA LEUCOPSIS IN BRITAIN AND IRELAND: RESULTS OF THE INTERNATIONAL CENSUS, MARCH 2003 WWT Report Authors Jenny Worden, Carl Mitchell, Oscar Merne & Peter Cranswick March 2004 Published by: The Wildfowl & Wetlands Trust Slimbridge Gloucestershire GL2 7BT T 01453 891900 F 01453 891901 E [email protected] Reg. charity no. 1030884 © The Wildfowl & Wetlands Trust All rights reserved. No part of this document may be reproduced, stored in a retrieval system or transmitted, in any form or by any means, electronic, mechanical, photocopying, recording or otherwise without the prior permission of WWT. This publication should be cited as: Worden, J, CR Mitchell, OJ Merne & PA Cranswick. 2004. Greenland Barnacle Geese Branta leucopsis in Britain and Ireland: results of the international census, March 2003 . The Wildfowl & Wetlands Trust, Slimbridge. gg CONTENTS Summary v 1 Introduction 6 2 Methods 7 3 Results 8 4 Discussion 13 4.1 Census total and accuracy 13 4.2 Long-term trend and distribution 13 4.3 Internationally and nationally important sites 17 4.4 Future recommendations 19 5 Acknowledgements 20 6 References 21 Appendices 22 ggg SUMMARY Between 1959 and 2003, eleven full international surveys of the Greenland population of Barnacle Geese have been conducted at wintering sites in Ireland and Scotland using a combination of aerial survey and ground counts. This report presents the results of the 2003 census, conducted between 27th and 31 March 2003 surveying a total of 323 islands and mainland sites along the west and north coasts of Scotland and Ireland. In Ireland, 30 sites were found to hold 9,034 Greenland Barnacle Geese and in Scotland, 35 sites were found to hold 47,256. -
Additions, Deletions and Corrections to An
Bulletin of the Irish Biogeographical Society No. 36 (2012) ADDITIONS, DELETIONS AND CORRECTIONS TO AN ANNOTATED CHECKLIST OF THE IRISH BUTTERFLIES AND MOTHS (LEPIDOPTERA) WITH A CONCISE CHECKLIST OF IRISH SPECIES AND ELACHISTA BIATOMELLA (STAINTON, 1848) NEW TO IRELAND K. G. M. Bond1 and J. P. O’Connor2 1Department of Zoology and Animal Ecology, School of BEES, University College Cork, Distillery Fields, North Mall, Cork, Ireland. e-mail: <[email protected]> 2Emeritus Entomologist, National Museum of Ireland, Kildare Street, Dublin 2, Ireland. Abstract Additions, deletions and corrections are made to the Irish checklist of butterflies and moths (Lepidoptera). Elachista biatomella (Stainton, 1848) is added to the Irish list. The total number of confirmed Irish species of Lepidoptera now stands at 1480. Key words: Lepidoptera, additions, deletions, corrections, Irish list, Elachista biatomella Introduction Bond, Nash and O’Connor (2006) provided a checklist of the Irish Lepidoptera. Since its publication, many new discoveries have been made and are reported here. In addition, several deletions have been made. A concise and updated checklist is provided. The following abbreviations are used in the text: BM(NH) – The Natural History Museum, London; NMINH – National Museum of Ireland, Natural History, Dublin. The total number of confirmed Irish species now stands at 1480, an addition of 68 since Bond et al. (2006). Taxonomic arrangement As a result of recent systematic research, it has been necessary to replace the arrangement familiar to British and Irish Lepidopterists by the Fauna Europaea [FE] system used by Karsholt 60 Bulletin of the Irish Biogeographical Society No. 36 (2012) and Razowski, which is widely used in continental Europe. -
Diverse Population Trajectories Among Coexisting Species of Subarctic Forest Moths
Popul Ecol (2010) 52:295–305 DOI 10.1007/s10144-009-0183-z ORIGINAL ARTICLE Diverse population trajectories among coexisting species of subarctic forest moths Mikhail V. Kozlov • Mark D. Hunter • Seppo Koponen • Jari Kouki • Pekka Niemela¨ • Peter W. Price Received: 19 May 2008 / Accepted: 6 October 2009 / Published online: 12 December 2009 Ó The Society of Population Ecology and Springer 2009 Abstract Records of 232 moth species spanning 26 years times higher than those of species hibernating as larvae or (total catch of ca. 230,000 specimens), obtained by con- pupae. Time-series analysis demonstrated that periodicity tinuous light-trapping in Kevo, northernmost subarctic in fluctuations of annual catches is generally independent Finland, were used to examine the hypothesis that life- of life-history traits and taxonomic affinities of the species. history traits and taxonomic position contribute to both Moreover, closely related species with similar life-history relative abundance and temporal variability of Lepidoptera. traits often show different population dynamics, under- Species with detritophagous or moss-feeding larvae, spe- mining the phylogenetic constraints hypothesis. Species cies hibernating in the larval stage, and species pupating with the shortest (1 year) time lag in the action of negative during the first half of the growing season were over-rep- feedback processes on population growth exhibit the larg- resented among 42 species classified as abundant during est magnitude of fluctuations. Our analyses revealed that the entire sampling period. The coefficients of variation in only a few consistent patterns in the population dynamics annual catches of species hibernating as eggs averaged 1.7 of herbivorous moths can be deduced from life-history characteristics of the species. -
Hymenoptera: Aculeata Part 1 – Bees
SCOTTISH INVERTEBRATE SPECIES KNOWLEDGE DOSSIER Hymenoptera: Aculeata Part 1 – Bees A. NUMBER OF SPECIES IN UK: 318 B. NUMBER OF SPECIES IN SCOTLAND: 110 (4 thought to be extinct, 2 may be found – insufficient data) C. EXPERT CONTACTS Please contact [email protected] for details. D. SPECIES OF CONSERVATION CONCERN Listed species UK Biodiversity Action Plan Species known to occur in Scotland (the current list was published in August 2007): Andrena tarsata Tormentil mining bee Bombus distinguendus Great yellow bumblebee Bombus muscorum Moss (Large) carder bumblebee Bombus ruderarius Red-shanked (Red-tailed) carder bumblebee Colletes floralis Northern colletes Osmia inermis a mason bee Osmia parietina a mason bee Osmia uncinata a mason bee Bombus distinguendus is also listed under the Species Action Framework of Scottish Natural Heritage, launched in 2007 (Category 1: Species for Conservation Action). 1 Other species The Scottish Biodiversity List was published in 2005 and lists the additional species (arranged below by sub-family): Andreninae Andrena cineraria Andrena helvola Andrena marginata Andrena nitida 1 Andrena ruficrus Anthophorinae Anthidium maniculatum Anthophora furcata Epeolus variegatus Nomada fabriciana Nomada leucophthalma Nomada obtusifrons Nomada robertjeotiana Sphecodes gibbus Apinae Bombus monticola Colletinae Colletes daviesanus Colletes fodiens Hylaeus brevicornis Halictinae Lasioglossum fulvicorne Lasioglossum smeathmanellum Lasioglossum villosulum Megachillinae Osmia aurulenta Osmia caruelescens Osmia rufa Stelis -
Chapter 3-1 Sexuality: Sexual Strategies Janice M
Glime, J. M. and Bisang, I. 2017. Sexuality: Sexual Strategies. Chapt. 3-1. In: Glime, J. M. Bryophyte Ecology. Volume 1. 3-1-1 Physiological Ecology. Ebook sponsored by Michigan Technological University and the International Association of Bryologists. Last updated 2 April 2017 and available at <http://digitalcommons.mtu.edu/bryophyte-ecology/>. CHAPTER 3-1 SEXUALITY: SEXUAL STRATEGIES JANICE M. GLIME AND IRENE BISANG TABLE OF CONTENTS Expression of Sex............................................................................................................................................... 3-1-2 Unisexual and Bisexual Taxa............................................................................................................................. 3-1-2 Sex Chromosomes....................................................................................................................................... 3-1-6 An unusual Y Chromosome........................................................................................................................ 3-1-7 Gametangial Arrangement.......................................................................................................................... 3-1-8 Origin of Bisexuality in Bryophytes ................................................................................................................ 3-1-11 Monoicy as a Derived/Advanced Character.............................................................................................. 3-1-11 Anthocerotophyta and Multiple Reversals...............................................................................................