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119 Genus Amauris Huebner
AFROTROPICAL BUTTERFLIES 17th edition (2018). MARK C. WILLIAMS. http://www.lepsocafrica.org/?p=publications&s=atb Genus Amauris Hübner, [1816] In: Hübner, [1816-[1826]. Verzeichniss bekannter Schmettlinge 14 (432 + 72 pp.). Augsburg. Type-species: Papilio niavius Linnaeus, by subsequent designation (Scudder, 1875. Proceedings of the American Academy of Arts and Sciences 10: 108 (91-293).). The genus Amauris belongs to the Family Nymphalidae Rafinesque, 1815; Subfamily Danainae Boisduval, 1833; Tribe Danaini Boisduval, 1833; Subtribe Amaurina Le Cerf, 1922. Amauris is the only Afrotropical genus in the Subtribe Amaurina. Amauris is an exclusively Afrotropical genus containing 16 species. Relevant literature: De Vries, 2002 [Differential wing toughness with other taxa]. Amauris species. Final instar larva. Images courtesy Raimund Schutte Amauris species. Pupa. 1 Image courtesy Raimund Schutte Subgenus Amauris Hübner, [1816] In: Hübner, [1816-26]. Verzeichniss bekannter Schmettlinge 14 (432 + 72 pp.). Augsburg. Type-species: Papilio niavius Linnaeus, by subsequent designation (Scudder, 1875. Proceedings of the American Academy of Arts and Sciences 10: 108 (91-293).). *Amauris (Amauris) niavius (Linnaeus, 1758)# Friar Male of the Friar Butterfly (Amauris niavius) at Lake Sibaya, Zululand. Image courtesy Steve Woodhall. Papilio niavius Linnaeus, 1758. Systema Naturae 1, Regnum Animale, 10th edition: 470 (824 pp.). Holmiae. Amauris (Amauris) niavius (Linnaeus, 1758). Pringle et al., 1994: 48. Amauris niavius niavius. Male (Wingspan 75 mm). Left -
Species List (Note, There Was a Pre-Tour to Kenya in 2018 As in 2017, but These Species Were Not Recorded
Tanzania Species List (Note, there was a pre-tour to Kenya in 2018 as in 2017, but these species were not recorded. You can find a Kenya list with the fully annotated 2017 Species List for reference) February 6-18, 2018 Guides: Preston Mutinda and Peg Abbott, Driver/guides William Laiser and John Shoo, and 6 participants: Rob & Anita, Susan and Jan, and Bob and Joan KEYS FOR THIS LIST The # in (#) is the number of days the species was seen on the tour (E) – endemic BIRDS STRUTHIONIDAE: OSTRICHES OSTRICH Struthio camelus massaicus – (8) ANATIDAE: DUCKS & GEESE WHITE-FACED WHISTLING-DUCK Dendrocygna viduata – (2) FULVOUS WHISTLING-DUCK Dendrocygna bicolor – (1) COMB DUCK Sarkidiornis melanotos – (1) EGYPTIAN GOOSE Alopochen aegyptiaca – (12) SPUR-WINGED GOOSE Plectropterus gambensis – (2) RED-BILLED DUCK Anas erythrorhyncha – (4) HOTTENTOT TEAL Anas hottentota – (2) CAPE TEAL Anas capensis – (2) NUMIDIDAE: GUINEAFOWL HELMETED GUINEAFOWL Numida meleagris – (12) PHASIANIDAE: PHEASANTS, GROUSE, AND ALLIES COQUI FRANCOLIN Francolinus coqui – (2) CRESTED FRANCOLIN Francolinus sephaena – (2) HILDEBRANDT'S FRANCOLIN Francolinus hildebrandti – (3) Naturalist Journeys [email protected] 866.900.1146 / Caligo Ventures [email protected] 800.426.7781 naturalistjourneys.com / caligo.com P.O. Box 16545 Portal AZ 85632 FAX: 650.471.7667 YELLOW-NECKED FRANCOLIN Francolinus leucoscepus – (4) [E] GRAY-BREASTED FRANCOLIN Francolinus rufopictus – (4) RED-NECKED FRANCOLIN Francolinus afer – (2) LITTLE GREBE Tachybaptus ruficollis – (1) PHOENICOPTERIDAE:FLAMINGOS -
Description of the Final Stadium Larva (Odonata: Libellulidae)
------- Received 22 May 2003; revised and accepted 06 October 2003------- Nesciothemis farinosa: description of the final stadium larva (Odonata: Libellulidae) Frank Suhling', Carsten Schutte' & Ole Muller' ' lnstitut fUr Geookologie, Technische Universitat Braunschweig, Langer Kamp 19c, D-381 02 Braunschweig, Germany. <e-mail [email protected]> ' Birkenweg 6d, D-15306 Libbenichen, Germany. Key words: Odonata, dragonfly, Nesciothemis farinosa, larval description, notes on ecology and development. ABSTRACT A written description and illustrations of the final stadium larva of Nesciothemis farinosa are presented, based on larvae and exuviae collected in Namibia. The larvae were reared in the laboratory until emergence. Additionally, information on larval microhabitat, behaviour and development is provided. INTRODUCTION The genus Nesciothemis Longfield, 1955 is composed of five species, N. farinosa (Forster, 1898), N. fitzgeraldi Longfield, 1955, N. minor Gambles, 1966, N. nigeriensis Gambles, 1966 and N. pujoli Pinhey, 1971 (Gambles 1966; Pinhey 1971; Dijkstra 2003) occurring in subsaharan continental Africa, Egypt and the southern Arabian Peninsula, with N. farinosa being the most widespread species, ranging from southern Africa to Egypt and Arabia (Dumont 1991; Schneider & Krupp 1993; Carfl & D'Andrea 1994; Samways 1999; Clausnitzer 2001). N. farinosa reported from western Africa (e.g. Ivory Coast, Tsuda 1991) are questionable, because they differ constantly from typical N. farinosa and might belong to N. pujoli (K.-D.B. Dijkstra in litt.). The larvae of all Nesciothemis species are hitherto not described. Here we describe the final stadium larva and exuvia of N. farinosa from material collected in Namibia. Additionally, information on the larval microhabitat, behaviour in the laboratory and develop ment is provided. -
Phylogenetic Relationships and Historical Biogeography of Tribes and Genera in the Subfamily Nymphalinae (Lepidoptera: Nymphalidae)
Blackwell Science, LtdOxford, UKBIJBiological Journal of the Linnean Society 0024-4066The Linnean Society of London, 2005? 2005 862 227251 Original Article PHYLOGENY OF NYMPHALINAE N. WAHLBERG ET AL Biological Journal of the Linnean Society, 2005, 86, 227–251. With 5 figures . Phylogenetic relationships and historical biogeography of tribes and genera in the subfamily Nymphalinae (Lepidoptera: Nymphalidae) NIKLAS WAHLBERG1*, ANDREW V. Z. BROWER2 and SÖREN NYLIN1 1Department of Zoology, Stockholm University, S-106 91 Stockholm, Sweden 2Department of Zoology, Oregon State University, Corvallis, Oregon 97331–2907, USA Received 10 January 2004; accepted for publication 12 November 2004 We infer for the first time the phylogenetic relationships of genera and tribes in the ecologically and evolutionarily well-studied subfamily Nymphalinae using DNA sequence data from three genes: 1450 bp of cytochrome oxidase subunit I (COI) (in the mitochondrial genome), 1077 bp of elongation factor 1-alpha (EF1-a) and 400–403 bp of wing- less (both in the nuclear genome). We explore the influence of each gene region on the support given to each node of the most parsimonious tree derived from a combined analysis of all three genes using Partitioned Bremer Support. We also explore the influence of assuming equal weights for all characters in the combined analysis by investigating the stability of clades to different transition/transversion weighting schemes. We find many strongly supported and stable clades in the Nymphalinae. We are also able to identify ‘rogue’ -
And Ford, I; Ford, '953) on the Other Hand Have Put Forward a View Intermediate Between the Extreme Ones of Darwin on the One Hand and Goldschmidt on the Other
THE EVOLUTION OF MIMICRY IN THE BUTTERFLY PAPILIO DARDANUS C. A. CLARKE and P. M. SHEPPARD Departments of Medicine and Zoology, University of Liverpool Received23.V.59 1.INTRODUCTION WHENBatesputforward the mimicry hypothesis which bears his name, Darwin (1872), although accepting it, had some difficulty in explaining the evolution of the mimetic resemblance of several distinct species to one distasteful model by a series of small changes, a require- ment of his general theory of evolution. He said "it is necessary to suppose in some cases that ancient members belonging to several distinct groups, before they had diverged to their present extent, accidentally resembled a member of another and protected group in a sufficient degree to afford some slight protection; this having given the basis for the subsequent acquisition of the most perfect resemb- lance ". Punnett (1915) realised that the difficulty is even more acute when one is dealing with a polymorphic species whose forms mimic very distantly related models. Knowing that, in those butterflies which had been investigated genetically, the forms differed by single allelomorphs he concluded that the mimicry did not evolve gradually and did not confer any advantage or disadvantage to the individual. He argued that an allelomorph arises at a single step by mutation and that therefore the mimicry also arises by chance at a single step. Goldschmidt (x) although not denying that mimicry confers some advantage to its possessors also maintained that the resemblance arises fully perfected by a single mutation of a gene distinct from that producing the colour pattern in the model, but producing a similar effect in the mimic. -
Environmental and Social Impact Assessment Seismic Reflection Survey and Well Drilling, Umkhanyakude District Municipality, Northern Kzn
SFG1897 v2 Public Disclosure Authorized ENVIRONMENTAL AND SOCIAL IMPACT ASSESSMENT SEISMIC REFLECTION SURVEY AND WELL DRILLING, UMKHANYAKUDE DISTRICT MUNICIPALITY, NORTHERN KZN Public Disclosure Authorized Client: SANEDI–SACCCS Consultant: G.A. Botha (PhD, Pr.Sci.Nat) in association with specialist consultants; Brousse-James and Associates, WetRest, Jeffares & Green, S. Allan Council for Geoscience, P.O. Box 900, Pietermaritzburg, 3200 Council for Geoscience report: 2016-0009 June, 2016 Copyright © Council for Geoscience, 2016 Public Disclosure Authorized Public Disclosure Authorized Table of Contents Executive Summary ..................................................................................................................................... vii 1 Introduction ........................................................................................................................................... 1 2 Project description ................................................................................................................................ 4 2.1 Location and regional context ....................................................................................................... 5 2.2 2D seismic reflection survey and well drilling; project description and technical aspects ............ 7 2.2.1 Seismic survey (vibroseis) process ....................................................................................... 7 2.2.2 Well drilling ........................................................................................................................... -
Contribution to the Lepidopterans of Visakhapatnam Region, Andhra Pradesh, India
ANALYSIS Vol. 21, Issue 68, 2020 ANALYSIS ARTICLE ISSN 2319–5746 EISSN 2319–5754 Species Contribution to the Lepidopterans of Visakhapatnam Region, Andhra Pradesh, India Solomon Raju AJ1, Venkata Ramana K2 1Department of Environmental Sciences, Andhra University, Visakhapatnam 530 003, India 2Department of Botany, Andhra University, Visakhapatnam 530 003, India Corresponding author: A.J. Solomon Raju, Department of Environmental Sciences, Andhra University, Visakhapatnam 530 003, India Mobile: 91-9866256682, email: [email protected] Article History Received: 28 June 2020 Accepted: 02 August 2020 Published: August 2020 Citation Solomon Raju AJ, Venkata Ramana K. Contribution to the Lepidopterans of Visakhapatnam Region, Andhra Pradesh, India. Species, 2020, 21(68), 275-280 Publication License This work is licensed under a Creative Commons Attribution 4.0 International License. General Note Article is recommended to print as color digital version in recycled paper. ABSTRACT The butterflies Byblia ilithyia (Nymphalidae), Pieris canidia (Pieridae) and Azanus jesous (Lycaenidae) and the day-flying moth, Nyctemera adversata (Erebidae) are oligophagous. Previously, only B. ilithyia has been reported to be occurring in this region while the other three species are being reported for the first time from this region. The larval host plants include Jatropha gossypiifolia and Tragia involucrata for B. ilithyia, Brassica oleracea var. oleracea and B. oleracea var. botrytis for P. canidia, and Acacia auriculiformis for Azanus jesous. The nectar plants include Tragia involucrata, Euphorbia hirta and Jatropha gossypiifolia for B. ilithyia, Premna latifolia and Cleome viscosa for P. canidia, Lagascea mollis, Tridax procumbens and Digera muricata for A. jesous and Bidens pilosa for 275 N. adversata. The study recommends extensive field investigations to find out more larval plants and nectar plants for each Page lepidopteran species now reported. -
Biodiversity and Ecology of Critically Endangered, Rûens Silcrete Renosterveld in the Buffeljagsrivier Area, Swellendam
Biodiversity and Ecology of Critically Endangered, Rûens Silcrete Renosterveld in the Buffeljagsrivier area, Swellendam by Johannes Philippus Groenewald Thesis presented in fulfilment of the requirements for the degree of Masters in Science in Conservation Ecology in the Faculty of AgriSciences at Stellenbosch University Supervisor: Prof. Michael J. Samways Co-supervisor: Dr. Ruan Veldtman December 2014 Stellenbosch University http://scholar.sun.ac.za Declaration I hereby declare that the work contained in this thesis, for the degree of Master of Science in Conservation Ecology, is my own work that have not been previously published in full or in part at any other University. All work that are not my own, are acknowledge in the thesis. ___________________ Date: ____________ Groenewald J.P. Copyright © 2014 Stellenbosch University All rights reserved ii Stellenbosch University http://scholar.sun.ac.za Acknowledgements Firstly I want to thank my supervisor Prof. M. J. Samways for his guidance and patience through the years and my co-supervisor Dr. R. Veldtman for his help the past few years. This project would not have been possible without the help of Prof. H. Geertsema, who helped me with the identification of the Lepidoptera and other insect caught in the study area. Also want to thank Dr. K. Oberlander for the help with the identification of the Oxalis species found in the study area and Flora Cameron from CREW with the identification of some of the special plants growing in the area. I further express my gratitude to Dr. Odette Curtis from the Overberg Renosterveld Project, who helped with the identification of the rare species found in the study area as well as information about grazing and burning of Renosterveld. -
Check-List of the Butterflies of the Kakamega Forest Nature Reserve in Western Kenya (Lepidoptera: Hesperioidea, Papilionoidea)
Nachr. entomol. Ver. Apollo, N. F. 25 (4): 161–174 (2004) 161 Check-list of the butterflies of the Kakamega Forest Nature Reserve in western Kenya (Lepidoptera: Hesperioidea, Papilionoidea) Lars Kühne, Steve C. Collins and Wanja Kinuthia1 Lars Kühne, Museum für Naturkunde der Humboldt-Universität zu Berlin, Invalidenstraße 43, D-10115 Berlin, Germany; email: [email protected] Steve C. Collins, African Butterfly Research Institute, P.O. Box 14308, Nairobi, Kenya Dr. Wanja Kinuthia, Department of Invertebrate Zoology, National Museums of Kenya, P.O. Box 40658, Nairobi, Kenya Abstract: All species of butterflies recorded from the Kaka- list it was clear that thorough investigation of scientific mega Forest N.R. in western Kenya are listed for the first collections can produce a very sound list of the occur- time. The check-list is based mainly on the collection of ring species in a relatively short time. The information A.B.R.I. (African Butterfly Research Institute, Nairobi). Furthermore records from the collection of the National density is frequently underestimated and collection data Museum of Kenya (Nairobi), the BIOTA-project and from offers a description of species diversity within a local literature were included in this list. In total 491 species or area, in particular with reference to rapid measurement 55 % of approximately 900 Kenyan species could be veri- of biodiversity (Trueman & Cranston 1997, Danks 1998, fied for the area. 31 species were not recorded before from Trojan 2000). Kenyan territory, 9 of them were described as new since the appearance of the book by Larsen (1996). The kind of list being produced here represents an information source for the total species diversity of the Checkliste der Tagfalter des Kakamega-Waldschutzge- Kakamega forest. -
Downloadable from and Animals and Their Significance
Volume 31(3): 1–380 METAMORPHOSIS ISSN 1018–6490 (PRINT) ISSN 2307–5031 (ONLINE) LEPIDOPTERISTS’ SOCIETY OF AFRICA An overview of Lepidoptera-host-parasitoid associations for southern Africa, including an illustrated report on 2 370 African Lepidoptera-host and 119 parasitoid-Lepidoptera associations Published online: 3 November 2020 Hermann S. Staude1*, Marion Maclean1, Silvia Mecenero1,2, Rudolph J. Pretorius3, Rolf G. Oberprieler4, Simon van Noort5, Allison Sharp1, Ian Sharp1, Julio Balona1, Suncana Bradley1, Magriet Brink1, Andrew S. Morton1, Magda J. Botha1, Steve C. Collins1,6, Quartus Grobler1, David A. Edge1, Mark C. Williams1 and Pasi Sihvonen7 1Caterpillar Rearing Group (CRG), LepSoc Africa. [email protected], [email protected], [email protected], [email protected], [email protected], [email protected], [email protected], [email protected], [email protected], [email protected], [email protected], [email protected] 2Centre for Statistics in Ecology, Environment and Conservation, Department of Statistical Sciences, University of Cape Town, South Africa. [email protected] 3Department of Agriculture, Faculty of Health and Environmental Science. Central University of Technology, Free State, Bloemfontein, South Africa. [email protected] 4CSIRO National Insect Collection, G. P. O. Box 1700, Canberra, ACT 2701, Australia. [email protected] 5Research & Exhibitions Department, South African Museum, Iziko Museums of South Africa, Cape Town, South Africa and Department -
Diversity of Fern Flora for Ecological Perspective – a Review
Available online at www.ijpab.com Vidyashree et al Int. J. Pure App. Biosci. 6 (5): 339-345 (2018) ISSN: 2320 – 7051 DOI: http://dx.doi.org/10.18782/2320-7051.6750 ISSN: 2320 – 7051 Int. J. Pure App. Biosci. 6 (5): 339-345 (2018) Review Article Diversity of Fern Flora for Ecological Perspective – A Review Vidyashree1, Chandrashekar, S. Y.2*, Hemla Naik, B.3, Jadeyegowda, M.4 and Revanna Revannavar5 1Department of Floriculture and Landscape Architecture, College of Horticulture, Mudigere, Karnataka, India 2University of Agricultural and Horticultural Sciences, Shivamogga, India 3Department of Natural Resource Management, College of Forestry, Ponnampet, Karnataka, India 4Department of Floriculture and Landscape Architecture, College of Horticulture, Mudigere, Karnataka, India *Corresponding Author E-mail: [email protected] Received: 29.07.2018 | Revised: 26.08.2018 | Accepted: 3.09.2018 ABSTRACT One of the important cut foliage and indoor potted plant grown for its attractive foliages is fern. The foliage of fern is highly valued in the international florist greenery market because of its long post-harvest life, low cost, year round availability and versatile design qualities in form, texture and colour. Ferns (Pteridophytes) are the seedless vascular plants, dominated the vegetation on earth about 280-230 million years ago. Although they are now largely replaced by the seed bearing vascular plants in the existing flora today, yet they constitute a fairly prominent part of the present day vegetation of the world. India with a highly variable climate has a rich diversity of its flora and Pteridophytic flora greatly contributes to its diversity. Pteridophytes also form an interesting and conscious part of our national flora with their distinctive ecological distributional pattern. -
New Record of Pteridophytes for Delhi Flora, India
6376Trends in Biosciences 8(22), Print : ISSN 0974-8431,Trends 6376-6380, in Biosciences 2015 8 (22), 2015 New Record of Pteridophytes for Delhi Flora, India ANAND KUMAR MISHRA Department of Botany, Jamia Hamdard, Hamdard Nagar, New Delhi-110062 *email: [email protected] ABSTRACT species of pteridophytes that occur in the World flora, more than 1,000 species belongs to 70 The Pteridophytes are considered to be one of the families and 191 genera likely to occur in India primitive groups in vascular plants which are scattered all over the world. More than 1000 species (Dixit and Vohra, 1984 ). Out of 1000 species of of fern & fern allies have been reported from India. pteridophytes occurring in India, 170 species have Being a group of lower plants, they were always been found to be used as food, flavour, dye, uncared for and their valuable aspect has been ignored. medicine, bio-fertilizers, oil, fibre and biogas The present study to investigate the survey of wild production (Manickam and Irudayaraj, 1992). plants species of Delhi Flora. The study was Western Ghats and Himalayas are major centre of undertaken during the years 2011-2015. A brief distribution of Pteridophytes in India; these are two description of taxa, vernacular names, classification, important phytogeographical regions of India as family, phenological data, locality, distribution, reported by Chatterjee (1939). medicinal uses and voucher specimen no. are given According to a census, the Pteridophytic flora for this species. Photographs of this species are also of India comprises of 67 families, 191 genera and given in this manuscript. more than 1,000 species (Dixit, 1984) including 47 endemic Indian ferns, less than 10% of those Key words New Record, Pteridophytes, Delhi reported previously and 414 species of Flora, India Pteridophytes (219 At risk, of which 160 critically endangered, 82 Near-threatened and 113 Rare), Pteridophytes are group of seedless and spore constituting 41-43 % of the total number of 950- producing plants, formed by two lineages, 1000 Pteridophytes of India.