Dense Sampling of Bird Diversity Increases Power of Comparative Genomics
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Title a New Centrosomal Protein Regulates Neurogenesis By
Title A new centrosomal protein regulates neurogenesis by microtubule organization Authors: Germán Camargo Ortega1-3†, Sven Falk1,2†, Pia A. Johansson1,2†, Elise Peyre4, Sanjeeb Kumar Sahu5, Loïc Broic4, Camino De Juan Romero6, Kalina Draganova1,2, Stanislav Vinopal7, Kaviya Chinnappa1‡, Anna Gavranovic1, Tugay Karakaya1, Juliane Merl-Pham8, Arie Geerlof9, Regina Feederle10,11, Wei Shao12,13, Song-Hai Shi12,13, Stefanie M. Hauck8, Frank Bradke7, Victor Borrell6, Vijay K. Tiwari§, Wieland B. Huttner14, Michaela Wilsch- Bräuninger14, Laurent Nguyen4 and Magdalena Götz1,2,11* Affiliations: 1. Institute of Stem Cell Research, Helmholtz Center Munich, German Research Center for Environmental Health, Munich, Germany. 2. Physiological Genomics, Biomedical Center, Ludwig-Maximilian University Munich, Germany. 3. Graduate School of Systemic Neurosciences, Biocenter, Ludwig-Maximilian University Munich, Germany. 4. GIGA-Neurosciences, Molecular regulation of neurogenesis, University of Liège, Belgium 5. Institute of Molecular Biology (IMB), Mainz, Germany. 6. Instituto de Neurociencias, Consejo Superior de Investigaciones Científicas and Universidad Miguel Hernández, Sant Joan d’Alacant, Spain. 7. Laboratory for Axon Growth and Regeneration, German Center for Neurodegenerative Diseases (DZNE), Bonn, Germany. 8. Research Unit Protein Science, Helmholtz Centre Munich, German Research Center for Environmental Health, Munich, Germany. 9. Protein Expression and Purification Facility, Institute of Structural Biology, Helmholtz Center Munich, German Research Center for Environmental Health, Munich, Germany. 10. Institute for Diabetes and Obesity, Monoclonal Antibody Core Facility, Helmholtz Center Munich, German Research Center for Environmental Health, Munich, Germany. 11. SYNERGY, Excellence Cluster of Systems Neurology, Biomedical Center, Ludwig- Maximilian University Munich, Germany. 12. Developmental Biology Program, Sloan Kettering Institute, Memorial Sloan Kettering Cancer Center, New York, USA 13. -
Maya Knowledge and "Science Wars"
Journal of Ethnobiology 20(2); 129-158 Winter 2000 MAYA KNOWLEDGE AND "SCIENCE WARS" E. N. ANDERSON Department ofAnthropology University ofCalifornia, Riverside Riverside, CA 92521~0418 ABSTRACT.-Knowledge is socially constructed, yet humans succeed in knowing a great deal about their environments. Recent debates over the nature of "science" involve extreme positions, from claims that allscience is arbitrary to claims that science is somehow a privileged body of truth. Something may be learned by considering the biological knowledge of a very different culture with a long record of high civilization. Yucatec Maya cthnobiology agrees with contemporary international biological science in many respects, almost all of them highly specific, pragmatic and observational. It differs in many other respects, most of them highly inferential and cosmological. One may tentatively conclude that common observation of everyday matters is more directly affected by interaction with the nonhuman environment than is abstract deductive reasoning. but that social factors operate at all levels. Key words: Yucatec Maya, ethnoornithology, science wars, philosophy ofscience, Yucatan Peninsula RESUMEN.-EI EI conocimiento es una construcci6n social, pero los humanos pueden aprender mucho ce sus alrededores. Discursos recientes sobre "ciencia" incluyen posiciones extremos; algunos proponen que "ciencia" es arbitrario, otros proponen que "ciencia" es verdad absoluto. Seria posible conocer mucho si investiguemos el conocimiento biol6gico de una cultura, muy difcrente, con una historia larga de alta civilizaci6n. EI conodrniento etnobiol6gico de los Yucatecos conformc, mas 0 menos, con la sciencia contemporanea internacional, especial mente en detallas dcrivadas de la experiencia pragmatica. Pero, el es deferente en otros respectos-Ios que derivan de cosmovisi6n 0 de inferencia logical. -
Freshwater Fishes
WESTERN CAPE PROVINCE state oF BIODIVERSITY 2007 TABLE OF CONTENTS Chapter 1 Introduction 2 Chapter 2 Methods 17 Chapter 3 Freshwater fishes 18 Chapter 4 Amphibians 36 Chapter 5 Reptiles 55 Chapter 6 Mammals 75 Chapter 7 Avifauna 89 Chapter 8 Flora & Vegetation 112 Chapter 9 Land and Protected Areas 139 Chapter 10 Status of River Health 159 Cover page photographs by Andrew Turner (CapeNature), Roger Bills (SAIAB) & Wicus Leeuwner. ISBN 978-0-620-39289-1 SCIENTIFIC SERVICES 2 Western Cape Province State of Biodiversity 2007 CHAPTER 1 INTRODUCTION Andrew Turner [email protected] 1 “We live at a historic moment, a time in which the world’s biological diversity is being rapidly destroyed. The present geological period has more species than any other, yet the current rate of extinction of species is greater now than at any time in the past. Ecosystems and communities are being degraded and destroyed, and species are being driven to extinction. The species that persist are losing genetic variation as the number of individuals in populations shrinks, unique populations and subspecies are destroyed, and remaining populations become increasingly isolated from one another. The cause of this loss of biological diversity at all levels is the range of human activity that alters and destroys natural habitats to suit human needs.” (Primack, 2002). CapeNature launched its State of Biodiversity Programme (SoBP) to assess and monitor the state of biodiversity in the Western Cape in 1999. This programme delivered its first report in 2002 and these reports are updated every five years. The current report (2007) reports on the changes to the state of vertebrate biodiversity and land under conservation usage. -
Synergistic Genetic Interactions Between Pkhd1 and Pkd1 Result in an ARPKD-Like Phenotype in Murine Models
BASIC RESEARCH www.jasn.org Synergistic Genetic Interactions between Pkhd1 and Pkd1 Result in an ARPKD-Like Phenotype in Murine Models Rory J. Olson,1 Katharina Hopp ,2 Harrison Wells,3 Jessica M. Smith,3 Jessica Furtado,1,4 Megan M. Constans,3 Diana L. Escobar,3 Aron M. Geurts,5 Vicente E. Torres,3 and Peter C. Harris 1,3 Due to the number of contributing authors, the affiliations are listed at the end of this article. ABSTRACT Background Autosomal recessive polycystic kidney disease (ARPKD) and autosomal dominant polycystic kidney disease (ADPKD) are genetically distinct, with ADPKD usually caused by the genes PKD1 or PKD2 (encoding polycystin-1 and polycystin-2, respectively) and ARPKD caused by PKHD1 (encoding fibrocys- tin/polyductin [FPC]). Primary cilia have been considered central to PKD pathogenesis due to protein localization and common cystic phenotypes in syndromic ciliopathies, but their relevance is questioned in the simple PKDs. ARPKD’s mild phenotype in murine models versus in humans has hampered investi- gating its pathogenesis. Methods To study the interaction between Pkhd1 and Pkd1, including dosage effects on the phenotype, we generated digenic mouse and rat models and characterized and compared digenic, monogenic, and wild-type phenotypes. Results The genetic interaction was synergistic in both species, with digenic animals exhibiting pheno- types of rapidly progressive PKD and early lethality resembling classic ARPKD. Genetic interaction be- tween Pkhd1 and Pkd1 depended on dosage in the digenic murine models, with no significant enhancement of the monogenic phenotype until a threshold of reduced expression at the second locus was breached. -
Systematic Notes on Asian Birds. 28
ZV-340 179-190 | 28 04-01-2007 08:56 Pagina 179 Systematic notes on Asian birds. 28. Taxonomic comments on some south and south-east Asian members of the family Nectariniidae C.F. Mann Mann, C.F. Systematic notes on Asian birds. 28. Taxonomic comments on some south and south-east Asian members of the family Nectariniidae. Zool. Verh. Leiden 340, 27.xii.2002: 179-189.— ISSN 0024-1652/ISBN 90-73239-84-2. Clive F. Mann, 53 Sutton Lane South, London W4 3JR, U.K. (e-mail: [email protected]). Keywords: Asia; Nectariniidae; taxonomy. Certain taxonomic changes made by Cheke & Mann (2001) are here explained and justified. Dicaeum haematostictum Sharpe, 1876, is split from D. australe (Hermann, 1783). D. aeruginosum Bourns & Worcester, 1894 is merged into D. agile (Tickell, 1833). The genus Chalcoparia Cabanis, 1851, is re-estab- lished for (Motacilla) singalensis Gmelin, 1788. The taxon Leptocoma sperata marinduquensis (duPont, 1971), is shown to be based on a specimen of Aethopyga siparaja magnifica Sharpe, 1876. Aethopyga vigor- sii (Sykes, 1832) is split from A. siparaja (Raffles, 1822). Cheke & Mann (op. cit.) mistakenly omitted two forms, Anthreptes malacensis erixanthus Oberholser, 1932 and Arachnothera longirostra zarhina Ober- holser, 1912. Five subspecies are removed from Aethopyga shelleyi Sharpe, 1876 to create the polytypic A. bella, Tweeddale, 1877. The Arachnothera affinis (Horsfield, 1822)/modesta (Eyton, 1839)/everetti (Sharpe, 1893) complex is re-evaluated in the light of the revision by Davison in Smythies (1999). Introduction In a recent publication (Cheke & Mann, 2001) some taxonomic changes were made to members of this family occurring in Asia. -
Malawi Trip Report 12Th to 28Th September 2014
Malawi Trip Report 12th to 28th September 2014 Bohm’s Bee-eater by Keith Valentine Trip Report compiled by Tour Leader: Keith Valentine RBT Malawi Trip Report September 2014 2 Top 10 Birds: 1. Scarlet-tufted Sunbird 2. Pel’s Fishing Owl 3. Lesser Seedcracker 4. Thyolo Alethe 5. White-winged Apalis 6. Racket-tailed Roller 7. Blue Swallow 8. Bohm’s Flycatcher 9. Babbling Starling 10. Bohm’s Bee-eater/Yellow-throated Apalis Top 5 Mammals: 1. African Civet 2. Four-toed Elephant Shrew 3. Sable Antelope 4. Bush Pig 5. Side-striped Jackal/Greater Galago/Roan Antelope/Blotched Genet Trip Summary This was our first ever fully comprehensive tour to Malawi and was quite simply a fantastic experience in all respects. For starters, many of the accommodations are of excellent quality and are also situated in prime birding locations with a large number of the area’s major birding targets found in close proximity. The food is generally very good and the stores and lodges are for the most part stocked with decent beer and a fair selection of South African wine. However, it is the habitat diversity that is largely what makes Malawi so good from a birding point of view. Even though it is a small country, this good variety of habitat, and infrastructure that allows access to these key zones, insures that the list of specials is long and attractive. Our tour was extremely successful in locating the vast majority of the region’s most wanted birds and highlights included Red-winged Francolin, White-backed Night Heron, African Cuckoo-Hawk, Western Banded Snake -
Checklistccamp2016.Pdf
2 3 Participant’s Name: Tour Company: Date#1: / / Tour locations Date #2: / / Tour locations Date #3: / / Tour locations Date #4: / / Tour locations Date #5: / / Tour locations Date #6: / / Tour locations Date #7: / / Tour locations Date #8: / / Tour locations Codes used in Column A Codes Sample Species a = Abundant Red-lored Parrot c = Common White-headed Wren u = Uncommon Gray-cheeked Nunlet r = Rare Sapayoa vr = Very rare Wing-banded Antbird m = Migrant Bay-breasted Warbler x = Accidental Dwarf Cuckoo (E) = Endemic Stripe-cheeked Woodpecker Species marked with an asterisk (*) can be found in the birding areas visited on the tour outside of the immediate Canopy Camp property such as Nusagandi, San Francisco Reserve, El Real and Darien National Park/Cerro Pirre. Of course, 4with incredible biodiversity and changing environments, there is always the possibility to see species not listed here. If you have a sighting not on this list, please let us know! No. Bird Species 1A 2 3 4 5 6 7 8 Tinamous Great Tinamou u 1 Tinamus major Little Tinamou c 2 Crypturellus soui Ducks Black-bellied Whistling-Duck 3 Dendrocygna autumnalis u Muscovy Duck 4 Cairina moschata r Blue-winged Teal 5 Anas discors m Curassows, Guans & Chachalacas Gray-headed Chachalaca 6 Ortalis cinereiceps c Crested Guan 7 Penelope purpurascens u Great Curassow 8 Crax rubra r New World Quails Tawny-faced Quail 9 Rhynchortyx cinctus r* Marbled Wood-Quail 10 Odontophorus gujanensis r* Black-eared Wood-Quail 11 Odontophorus melanotis u Grebes Least Grebe 12 Tachybaptus dominicus u www.canopytower.com 3 BirdChecklist No. -
South Africa Mega Birding Tour I 6Th to 30Th January 2018 (25 Days) Trip Report
South Africa Mega Birding Tour I 6th to 30th January 2018 (25 days) Trip Report Aardvark by Mike Bacon Trip report compiled by Tour Leader: Wayne Jones Rockjumper Birding Tours View more tours to South Africa Trip Report – RBT South Africa - Mega I 2018 2 Tour Summary The beauty of South Africa lies in its richness of habitats, from the coastal forests in the east, through subalpine mountain ranges and the arid Karoo to fynbos in the south. We explored all of these and more during our 25-day adventure across the country. Highlights were many and included Orange River Francolin, thousands of Cape Gannets, multiple Secretarybirds, stunning Knysna Turaco, Ground Woodpecker, Botha’s Lark, Bush Blackcap, Cape Parrot, Aardvark, Aardwolf, Caracal, Oribi and Giant Bullfrog, along with spectacular scenery, great food and excellent accommodation throughout. ___________________________________________________________________________________ Despite havoc-wreaking weather that delayed flights on the other side of the world, everyone managed to arrive (just!) in South Africa for the start of our keenly-awaited tour. We began our 25-day cross-country exploration with a drive along Zaagkuildrift Road. This unassuming stretch of dirt road is well-known in local birding circles and can offer up a wide range of species thanks to its variety of habitats – which include open grassland, acacia woodland, wetlands and a seasonal floodplain. After locating a handsome male Northern Black Korhaan and African Wattled Lapwings, a Northern Black Korhaan by Glen Valentine -
PROGRAM and ABSTRACTS for 2020 ANNUAL MEETING of the SOCIETY for GLYCOBIOLOGY November 9–12, 2020 Phoenix, AZ, USA 1017 2020 Sfg Virtual Meeting Preliminary Schedule
Downloaded from https://academic.oup.com/glycob/article/30/12/1016/5948902 by guest on 25 January 2021 PROGRAM AND ABSTRACTS FOR 2020 ANNUAL MEETING OF THE SOCIETY FOR GLYCOBIOLOGY November 9–12, 2020 Phoenix, AZ, USA 1017 2020 SfG Virtual Meeting Preliminary Schedule Mon. Nov 9 (Day 1) TOKYO ROME PACIFIC EASTERN EASTERN SESSION TIME TIME TIME START END TIME TIME 23:30 15:30 6:30 9:30 9:50 Welcome and Introduction - Michael Tiemeyer, CCRC UGA Downloaded from https://academic.oup.com/glycob/article/30/12/1016/5948902 by guest on 25 January 2021 23:30 15:30 6:30 9:50 – 12:36 Session 1: Glycobiology of Normal and Disordered Development | Chair: Kelly Ten-Hagen, NIH/NIDCR 23:50 15:50 6:50 9:50 10:10 KEYNOTE: “POGLUT1 mutations cause myopathy with reduced Notch signaling and α-dystroglycan hypoglycosylation” - Carmen Paradas Lopez, Biomedical Institute Sevilla 0:12 16:12 7:12 10:12 10:24 Poster Talk: “Regulation of Notch signaling by O-glycans in the intestine” – Mohd Nauman, Albert Einstein 0:26 16:26 7:26 10:26 10:38 Poster Talk: “Generation of an unbiased interactome for the tetratricopeptide repeat domain of the O-GlcNAc transferase indicates a role for the enzyme in intellectual disability” – Hannah Stephen, University of Georgia 0:40 16:30 7:30 10:40 10:50 Q&A 10:52 11:12 7:52 10:52 11:12 KEYNOTE: “Aberrations in N-cadherin Processing Drive PMM2-CDG Pathogenesis” - Heather Flanagan-Steet, Greenwood Genetics Center 1:14 11:26 8:14 11:14 11:26 Poster Talk: “Functional analyses of TMTC-type protein O-mannosyltransferases in Drosophila model -
Bird) Species List
Aves (Bird) Species List Higher Classification1 Kingdom: Animalia, Phyllum: Chordata, Class: Reptilia, Diapsida, Archosauria, Aves Order (O:) and Family (F:) English Name2 Scientific Name3 O: Tinamiformes (Tinamous) F: Tinamidae (Tinamous) Great Tinamou Tinamus major Highland Tinamou Nothocercus bonapartei O: Galliformes (Turkeys, Pheasants & Quail) F: Cracidae Black Guan Chamaepetes unicolor (Chachalacas, Guans & Curassows) Gray-headed Chachalaca Ortalis cinereiceps F: Odontophoridae (New World Quail) Black-breasted Wood-quail Odontophorus leucolaemus Buffy-crowned Wood-Partridge Dendrortyx leucophrys Marbled Wood-Quail Odontophorus gujanensis Spotted Wood-Quail Odontophorus guttatus O: Suliformes (Cormorants) F: Fregatidae (Frigatebirds) Magnificent Frigatebird Fregata magnificens O: Pelecaniformes (Pelicans, Tropicbirds & Allies) F: Ardeidae (Herons, Egrets & Bitterns) Cattle Egret Bubulcus ibis O: Charadriiformes (Sandpipers & Allies) F: Scolopacidae (Sandpipers) Spotted Sandpiper Actitis macularius O: Gruiformes (Cranes & Allies) F: Rallidae (Rails) Gray-Cowled Wood-Rail Aramides cajaneus O: Accipitriformes (Diurnal Birds of Prey) F: Cathartidae (Vultures & Condors) Black Vulture Coragyps atratus Turkey Vulture Cathartes aura F: Pandionidae (Osprey) Osprey Pandion haliaetus F: Accipitridae (Hawks, Eagles & Kites) Barred Hawk Morphnarchus princeps Broad-winged Hawk Buteo platypterus Double-toothed Kite Harpagus bidentatus Gray-headed Kite Leptodon cayanensis Northern Harrier Circus cyaneus Ornate Hawk-Eagle Spizaetus ornatus Red-tailed -
The Transcriptional Landscape and Hub Genes Associated with Physiological Responses to Drought Stress in Pinus Tabuliformis
International Journal of Molecular Sciences Article The Transcriptional Landscape and Hub Genes Associated with Physiological Responses to Drought Stress in Pinus tabuliformis Tariq Pervaiz 1,† , Shuang-Wei Liu 1,†, Saleem Uddin 1 , Muhammad Waqas Amjid 2 , Shi-Hui Niu 1,* and Harry X. Wu 1,3,4,* 1 Beijing Advanced Innovation Center for Tree Breeding by Molecular Design, National Engineering Laboratory for Tree Breeding, College of Biological Sciences and Technology, Beijing Forestry University, Beijing 100083, China; [email protected] (T.P.); [email protected] (S.-W.L.); [email protected] (S.U.) 2 State Key Laboratory of Crop Genetics and Germplasm Enhancement, Cotton Germplasm Enhancement and Application Engineering Research Center (Ministry of Education), Nanjing Agricultural University, Nanjing 210095, China; [email protected] 3 Umea Plant Science Centre, Department of Forest Genetics and Plant Physiology, Swedish University of Agricultural Sciences, Linnaeus vag 6, SE-901 83 Umea, Sweden 4 CSIRO National Research Collection Australia, Black Mountain Laboratory, Canberra, ACT 2601, Australia * Correspondence: [email protected] (S.-H.N.); [email protected] (H.X.W.) † These authors contributed equally. Abstract: Drought stress has an extensive impact on regulating various physiological, metabolic, and molecular responses. In the present study, the Pinus tabuliformis transcriptome was studied to Citation: Pervaiz, T.; Liu, S.-W.; evaluate the drought-responsive genes using RNA- Sequencing approache. The results depicted Uddin, S.; Amjid, M.W.; Niu, S.-H.; that photosynthetic rate and H2O conductance started to decline under drought but recovered 24 h Wu, H.X. The Transcriptional after re-watering; however, the intercellular CO2 concentration (Ci) increased with the onset of Landscape and Hub Genes drought. -
Nesting of Purple-Rumped Sunbird Leptocoma Zeylonica in Southern Rajasthan, and Its Occurrence in the Thar Desert Gobind Sagar Bhardwaj & Harkirat Singh Sangha
10 Indian Birds VOL. 12 NO. 1 (PUBL. 26 AUGUST 2016) Nesting of Purple-rumped Sunbird Leptocoma zeylonica in southern Rajasthan, and its occurrence in the Thar Desert Gobind Sagar Bhardwaj & Harkirat Singh Sangha Bhardwaj, G. S. & Sangh, H. S., 2016. Nesting of Purple-rumped Sunbird Leptocoma zeylonica in southern Rajasthan, and its occurrence in the Thar Desert Indian BIRDS 12 (1): 10–11. Gobind Sagar Bhardwaj, Chief Conservator of Forests (Wildlife), Van Bhavan, New Pali Road, Jodhpur, Rajasthan, India. E-mail: [email protected] [GSB] Harkirat Singh Sangha, B-27, Gautam Marg, Hanuman Nagar, Jaipur 302021, Rajasthan, India. E-mail: [email protected] [HSS] [Corresponding author] Manuscript received on 17 March 2015. he Purple-rumped Sunbird Leptocoma zeylonica has been A pair of the sunbirds was continuously observed in this forest recorded in Banswara, Dungarpur, Pratapgarh, and Udaipur nursery from September 2006 onwards. The male regularly flew Tdistricts of Rajasthan, India (HSS pers. obsv.). However, to the Divisional Forest Officer’s bungalow and pecked at the its breeding was recorded for the first time in 2007 in a forest glass-framed photographs hung on the walls of the verandah. A nursery located in the middle of Pratapgarh (24.00ºN, 74.78ºE), nest was observed on 23 September 2007. It was an elongated southern Rajasthan. Its nest was discovered on a Manila tamarind pear-shaped nest, which was suspended at the extreme end of Pithcelobium dulce tree in a forest nursery. The well-wooded a branch of the Manila tamarind tree. The branch was in the 1.98 ha nursery provided suitable conditions for the sunbird to lower canopy, hardly 40 cm away from the wall of Forest Rest breed.