Boraginaceae) Species in Asiatic Russia
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The Vascular Plants of Massachusetts
The Vascular Plants of Massachusetts: The Vascular Plants of Massachusetts: A County Checklist • First Revision Melissa Dow Cullina, Bryan Connolly, Bruce Sorrie and Paul Somers Somers Bruce Sorrie and Paul Connolly, Bryan Cullina, Melissa Dow Revision • First A County Checklist Plants of Massachusetts: Vascular The A County Checklist First Revision Melissa Dow Cullina, Bryan Connolly, Bruce Sorrie and Paul Somers Massachusetts Natural Heritage & Endangered Species Program Massachusetts Division of Fisheries and Wildlife Natural Heritage & Endangered Species Program The Natural Heritage & Endangered Species Program (NHESP), part of the Massachusetts Division of Fisheries and Wildlife, is one of the programs forming the Natural Heritage network. NHESP is responsible for the conservation and protection of hundreds of species that are not hunted, fished, trapped, or commercially harvested in the state. The Program's highest priority is protecting the 176 species of vertebrate and invertebrate animals and 259 species of native plants that are officially listed as Endangered, Threatened or of Special Concern in Massachusetts. Endangered species conservation in Massachusetts depends on you! A major source of funding for the protection of rare and endangered species comes from voluntary donations on state income tax forms. Contributions go to the Natural Heritage & Endangered Species Fund, which provides a portion of the operating budget for the Natural Heritage & Endangered Species Program. NHESP protects rare species through biological inventory, -
A Checklist of the Vascular Flora of the Mary K. Oxley Nature Center, Tulsa County, Oklahoma
Oklahoma Native Plant Record 29 Volume 13, December 2013 A CHECKLIST OF THE VASCULAR FLORA OF THE MARY K. OXLEY NATURE CENTER, TULSA COUNTY, OKLAHOMA Amy K. Buthod Oklahoma Biological Survey Oklahoma Natural Heritage Inventory Robert Bebb Herbarium University of Oklahoma Norman, OK 73019-0575 (405) 325-4034 Email: [email protected] Keywords: flora, exotics, inventory ABSTRACT This paper reports the results of an inventory of the vascular flora of the Mary K. Oxley Nature Center in Tulsa, Oklahoma. A total of 342 taxa from 75 families and 237 genera were collected from four main vegetation types. The families Asteraceae and Poaceae were the largest, with 49 and 42 taxa, respectively. Fifty-eight exotic taxa were found, representing 17% of the total flora. Twelve taxa tracked by the Oklahoma Natural Heritage Inventory were present. INTRODUCTION clayey sediment (USDA Soil Conservation Service 1977). Climate is Subtropical The objective of this study was to Humid, and summers are humid and warm inventory the vascular plants of the Mary K. with a mean July temperature of 27.5° C Oxley Nature Center (ONC) and to prepare (81.5° F). Winters are mild and short with a a list and voucher specimens for Oxley mean January temperature of 1.5° C personnel to use in education and outreach. (34.7° F) (Trewartha 1968). Mean annual Located within the 1,165.0 ha (2878 ac) precipitation is 106.5 cm (41.929 in), with Mohawk Park in northwestern Tulsa most occurring in the spring and fall County (ONC headquarters located at (Oklahoma Climatological Survey 2013). -
State of New York City's Plants 2018
STATE OF NEW YORK CITY’S PLANTS 2018 Daniel Atha & Brian Boom © 2018 The New York Botanical Garden All rights reserved ISBN 978-0-89327-955-4 Center for Conservation Strategy The New York Botanical Garden 2900 Southern Boulevard Bronx, NY 10458 All photos NYBG staff Citation: Atha, D. and B. Boom. 2018. State of New York City’s Plants 2018. Center for Conservation Strategy. The New York Botanical Garden, Bronx, NY. 132 pp. STATE OF NEW YORK CITY’S PLANTS 2018 4 EXECUTIVE SUMMARY 6 INTRODUCTION 10 DOCUMENTING THE CITY’S PLANTS 10 The Flora of New York City 11 Rare Species 14 Focus on Specific Area 16 Botanical Spectacle: Summer Snow 18 CITIZEN SCIENCE 20 THREATS TO THE CITY’S PLANTS 24 NEW YORK STATE PROHIBITED AND REGULATED INVASIVE SPECIES FOUND IN NEW YORK CITY 26 LOOKING AHEAD 27 CONTRIBUTORS AND ACKNOWLEGMENTS 30 LITERATURE CITED 31 APPENDIX Checklist of the Spontaneous Vascular Plants of New York City 32 Ferns and Fern Allies 35 Gymnosperms 36 Nymphaeales and Magnoliids 37 Monocots 67 Dicots 3 EXECUTIVE SUMMARY This report, State of New York City’s Plants 2018, is the first rankings of rare, threatened, endangered, and extinct species of what is envisioned by the Center for Conservation Strategy known from New York City, and based on this compilation of The New York Botanical Garden as annual updates thirteen percent of the City’s flora is imperiled or extinct in New summarizing the status of the spontaneous plant species of the York City. five boroughs of New York City. This year’s report deals with the City’s vascular plants (ferns and fern allies, gymnosperms, We have begun the process of assessing conservation status and flowering plants), but in the future it is planned to phase in at the local level for all species. -
Conserving Europe's Threatened Plants
Conserving Europe’s threatened plants Progress towards Target 8 of the Global Strategy for Plant Conservation Conserving Europe’s threatened plants Progress towards Target 8 of the Global Strategy for Plant Conservation By Suzanne Sharrock and Meirion Jones May 2009 Recommended citation: Sharrock, S. and Jones, M., 2009. Conserving Europe’s threatened plants: Progress towards Target 8 of the Global Strategy for Plant Conservation Botanic Gardens Conservation International, Richmond, UK ISBN 978-1-905164-30-1 Published by Botanic Gardens Conservation International Descanso House, 199 Kew Road, Richmond, Surrey, TW9 3BW, UK Design: John Morgan, [email protected] Acknowledgements The work of establishing a consolidated list of threatened Photo credits European plants was first initiated by Hugh Synge who developed the original database on which this report is based. All images are credited to BGCI with the exceptions of: We are most grateful to Hugh for providing this database to page 5, Nikos Krigas; page 8. Christophe Libert; page 10, BGCI and advising on further development of the list. The Pawel Kos; page 12 (upper), Nikos Krigas; page 14: James exacting task of inputting data from national Red Lists was Hitchmough; page 16 (lower), Jože Bavcon; page 17 (upper), carried out by Chris Cockel and without his dedicated work, the Nkos Krigas; page 20 (upper), Anca Sarbu; page 21, Nikos list would not have been completed. Thank you for your efforts Krigas; page 22 (upper) Simon Williams; page 22 (lower), RBG Chris. We are grateful to all the members of the European Kew; page 23 (upper), Jo Packet; page 23 (lower), Sandrine Botanic Gardens Consortium and other colleagues from Europe Godefroid; page 24 (upper) Jože Bavcon; page 24 (lower), Frank who provided essential advice, guidance and supplementary Scumacher; page 25 (upper) Michael Burkart; page 25, (lower) information on the species included in the database. -
Missouriensis Volume 28 / 29
Missouriensis Volume 28/29 (2008) In this issue: Improved Status of Auriculate False Foxglove (Agalinis auriculata) in Missouri in 2007 Tim E. Smith, Tom Nagel, and Bruce Schuette ......................... 1 Current Status of Yellow False Mallow (Malvastrum hispidum) in Missouri Tim E. Smith.................................................................................... 5 Heliotropium europaeum (Heliotropiaceae) New to Missouri Jay A. Raveill and George Yatskievych ..................................... 10 Melica mutica (Poaceae) New for the Flora of Missouri Alan E. Brant ................................................................................. 18 Schoenoplectus californicus (Cyperaceae) New to Missouri Timothy E. Vogt and Paul M. McKenzie ................................. 22 Flora of Galloway Creek Nature Park, Howell County, Missouri Bill Summers .................................................................................. 27 Journal of the Missouri Native Plant Society Missouriensis, Volume 28/29 2008 1 IMPROVED STATUS OF AURICULATE FALSE FOXGLOVE (AGALINIS AURICULATA) IN MISSOURI IN 2007 Tim E. Smith Missouri Department of Conservation P.O. Box 180, Jefferson City, MO 65102-0180 Tom Nagel Missouri Department of Conservation 701 James McCarthy Drive St. Joseph, MO 64507-2194 Bruce Schuette Missouri Department of Natural Resources Cuivre River State Park 678 State Rt. 147 Troy, MO 63379 Populations of annual plant species are known to have periodic “boom” and “bust” years as well as years when plant numbers more closely approach long-term averages. In tracking populations of plant species of conservation concern (Missouri Natural Heritage Program, 2007), there are sometimes also boom years in the number of reports of new populations. Because of reports of five new populations and a surge in numbers of plants at some previously-known sites, 2007 provided encouraging news for the conservation of the auriculate false foxglove [Agalinis auriculata (Michx.) Blake] in Missouri. -
Ecological Checklist of the Missouri Flora for Floristic Quality Assessment
Ladd, D. and J.R. Thomas. 2015. Ecological checklist of the Missouri flora for Floristic Quality Assessment. Phytoneuron 2015-12: 1–274. Published 12 February 2015. ISSN 2153 733X ECOLOGICAL CHECKLIST OF THE MISSOURI FLORA FOR FLORISTIC QUALITY ASSESSMENT DOUGLAS LADD The Nature Conservancy 2800 S. Brentwood Blvd. St. Louis, Missouri 63144 [email protected] JUSTIN R. THOMAS Institute of Botanical Training, LLC 111 County Road 3260 Salem, Missouri 65560 [email protected] ABSTRACT An annotated checklist of the 2,961 vascular taxa comprising the flora of Missouri is presented, with conservatism rankings for Floristic Quality Assessment. The list also provides standardized acronyms for each taxon and information on nativity, physiognomy, and wetness ratings. Annotated comments for selected taxa provide taxonomic, floristic, and ecological information, particularly for taxa not recognized in recent treatments of the Missouri flora. Synonymy crosswalks are provided for three references commonly used in Missouri. A discussion of the concept and application of Floristic Quality Assessment is presented. To accurately reflect ecological and taxonomic relationships, new combinations are validated for two distinct taxa, Dichanthelium ashei and D. werneri , and problems in application of infraspecific taxon names within Quercus shumardii are clarified. CONTENTS Introduction Species conservatism and floristic quality Application of Floristic Quality Assessment Checklist: Rationale and methods Nomenclature and taxonomic concepts Synonymy Acronyms Physiognomy, nativity, and wetness Summary of the Missouri flora Conclusion Annotated comments for checklist taxa Acknowledgements Literature Cited Ecological checklist of the Missouri flora Table 1. C values, physiognomy, and common names Table 2. Synonymy crosswalk Table 3. Wetness ratings and plant families INTRODUCTION This list was developed as part of a revised and expanded system for Floristic Quality Assessment (FQA) in Missouri. -
Field Checklist
14 September 2020 Cystopteridaceae (Bladder Ferns) __ Cystopteris bulbifera Bulblet Bladder Fern FIELD CHECKLIST OF VASCULAR PLANTS OF THE KOFFLER SCIENTIFIC __ Cystopteris fragilis Fragile Fern RESERVE AT JOKERS HILL __ Gymnocarpium dryopteris CoMMon Oak Fern King Township, Regional Municipality of York, Ontario (second edition) Aspleniaceae (Spleenworts) __ Asplenium platyneuron Ebony Spleenwort Tubba Babar, C. Sean Blaney, and Peter M. Kotanen* Onocleaceae (SensitiVe Ferns) 1Department of Ecology & Evolutionary Biology 2Atlantic Canada Conservation Data __ Matteuccia struthiopteris Ostrich Fern University of Toronto Mississauga Centre, P.O. Box 6416, Sackville NB, __ Onoclea sensibilis SensitiVe Fern 3359 Mississauga Road, Mississauga, ON Canada E4L 1G6 Canada L5L 1C6 Athyriaceae (Lady Ferns) __ Deparia acrostichoides SilVery Spleenwort *Correspondence author. e-mail: [email protected] Thelypteridaceae (Marsh Ferns) The first edition of this list Was compiled by C. Sean Blaney and Was published as an __ Parathelypteris noveboracensis New York Fern appendix to his M.Sc. thesis (Blaney C.S. 1999. Seed bank dynamics of native and exotic __ Phegopteris connectilis Northern Beech Fern plants in open uplands of southern Ontario. University of Toronto. __ Thelypteris palustris Marsh Fern https://tspace.library.utoronto.ca/handle/1807/14382/). It subsequently Was formatted for the web by P.M. Kotanen and made available on the Koffler Scientific Reserve Website Dryopteridaceae (Wood Ferns) (http://ksr.utoronto.ca/), Where it Was revised periodically to reflect additions and taxonomic __ Athyrium filix-femina CoMMon Lady Fern changes. This second edition represents a major revision reflecting recent phylogenetic __ Dryopteris ×boottii Boott's Wood Fern and nomenclatural changes and adding additional species; it will be updated periodically. -
Tasmanian Vascular Plant Census 2011
A CENSUS OF THE VASCULAR PLANTS OF TASMANIA and Index to The Student’s Flora of Tasmania and Flora of Tasmania Online ML Baker & MF Duretto 2011 edition Tasmanian Herbarium, Tasmanian Museum and Art Gallery Department of Economic Development, Tourism and the Arts Tasmanian Vascular Plant Census 2011 A Census of the Vascular Plants of Tasmania and Index to the Student’s Flora of Tasmania and Flora of Tasmania Online 2011 edition ML Baker and MF Duretto Tasmanian Herbarium Private Bag 4 Hobart, Tasmania 7001 Australia © Tasmanian Herbarium, Tasmanian Museum and Art Gallery Published by the Tasmanian Herbarium, Tasmanian Museum and Art Gallery GPO Box 1164 Hobart, Tasmania 7001 Australia www.tmag.tas.gov.au ISBN 978-1-921599-60-6 (PDF) 2 Tasmanian Vascular Plant Census 2011 Introduction The classification systems used in this Census largely follow Cronquist (1981) for flowering plants (Angiosperms) and McCarthy (1998) for conifers, ferns and their allies. The same classification systems are used to arrange the botanical collections of the Tasmanian Herbarium and by the Flora of Australia series (see ABRS). For a more up-to-date classification of the flora refer to The Flora of Tasmania Online (Duretto 2009+) which currently follows APG II (2003). To determine what families genera are placed in refer to Table 2 at the end of this document and the Flora of Tasmania Online (Resources/Families & Genera). The index to The Student’s Flora of Tasmania (Curtis 1963, 1967, 1979; Curtis & Morris 1975, 1994) is given with the entries for the species and subspecific taxa (eg. 3:539). -
Phylogeny and Historical Biogeography of Lithospermeae
Molecular Phylogenetics and Evolution 141 (2019) 106626 Contents lists available at ScienceDirect Molecular Phylogenetics and Evolution journal homepage: www.elsevier.com/locate/ympev Phylogeny and historical biogeography of Lithospermeae (Boraginaceae): T Disentangling the possible causes of Miocene diversifications ⁎ Juliana Chacóna,b, , Federico Lueberta,c, Federico Selvid, Lorenzo Cecchie, Maximilian Weigenda a Nees-Institut für Biodiversität der Pflanzen, Meckenheimer Allee 170, D-53115 Bonn, Germany b Systematic Botany and Mycology, Department of Biology, University of Munich (LMU), D-80638 Munich, Germany c Departamento de Silvicultura y Conservación de la Naturaleza, Universidad de Chile, Av. Santa Rosa 11315, Santiago, Chile d Department of Agriculture, Food, Environment and Forestry, Laboratories of Botany, University of Florence, P. le Cascine 28, I-50144 Firenze, Italy e Natural History Museum University of Florence, Section of Botany “Filippo Parlatore”, via G. La Pira 4, I-50121 Firenze, Italy ARTICLE INFO ABSTRACT Keywords: Studies about the drivers of angiosperm clade diversifications have revealed how the environment continuously Diversification rates alters the species chances to adapt or to go extinct. This process depends on complex interactions between Herkogamy abiotic and biotic factors, conditioned to the geological and tectonic settings, the genetic variability of species Irano-Turanian region and the rate at which speciation occurs. In this study, we aim to elucidate the timing of diversification of the Mediterranean Lithospermeae, the second largest tribe within Boraginaceae, and to identify the possible morphological and Serpentine soils ecological characters associated with shifts in diversification rates of the most species-rich clades. Lithospermeae includes ca. 470 species and 26 genera, among which are some of the largest genera of the family such as Onosma (150 spp.), Echium (60 spp.), and Lithospermum (80 spp.). -
Key to Genera and Families
KEY TO GENERA AND FAMILIES Identification notes: The key is highly artificial and unabashedly pragmatic. One can get to the sub-keys (Key A, Key B, Key A7, etc.) by proceeding through the general key, or by jumping directly to the sub-key based on its “description”. In order to accommodate both access methods, some taxa are keyed in 2 or more sub-keys, but would logically be found only in one sub-key if one proceeded accurately through the general key. For instance, floating aquatic pteridophytes are keyed in both Key A2 and Key C1, though a logical procession through the general Key would key them into Key C1, and not allow them to appear as well in Key A2; they are keyed as well in Key A2, so that if it is apparent or determinable to the user that they are vascular cryptogams, they can be found via that key as well. The arrangement of leaves (alternate, whorled, or opposite) and their disposition (basal or cauline) is used frequently in the keys. Alternate leaves are attached at the stem 1 per node, opposite leaves 2 per node, and whorled leaves 3 or more per node. Note however, that alternate leaves are sometimes (especially at the base of plants or at the tips of woody branches, such as short shoots) arrayed with very short internodes, leading to them being closely clustered and mistakable as whorled or opposite. Note that some plants (Hypericum, Eupatorium, many Lamiaceae, many others) have a strong tendency to have axillary shoots in the axils of primary leaves; these are often referred to as axillary fascicles. -
Checklist of Vascular Plants of the Southern Rocky Mountain Region
Checklist of Vascular Plants of the Southern Rocky Mountain Region (VERSION 3) NEIL SNOW Herbarium Pacificum Bernice P. Bishop Museum 1525 Bernice Street Honolulu, HI 96817 [email protected] Suggested citation: Snow, N. 2009. Checklist of Vascular Plants of the Southern Rocky Mountain Region (Version 3). 316 pp. Retrievable from the Colorado Native Plant Society (http://www.conps.org/plant_lists.html). The author retains the rights irrespective of its electronic posting. Please circulate freely. 1 Snow, N. January 2009. Checklist of Vascular Plants of the Southern Rocky Mountain Region. (Version 3). Dedication To all who work on behalf of the conservation of species and ecosystems. Abbreviated Table of Contents Fern Allies and Ferns.........................................................................................................12 Gymnopserms ....................................................................................................................19 Angiosperms ......................................................................................................................21 Amaranthaceae ............................................................................................................23 Apiaceae ......................................................................................................................31 Asteraceae....................................................................................................................38 Boraginaceae ...............................................................................................................98 -
Arbuscular Mycorrhizal Fungal Communities in the Soils of Desert Habitats
microorganisms Article Arbuscular Mycorrhizal Fungal Communities in the Soils of Desert Habitats Martti Vasar 1, John Davison 1 , Siim-Kaarel Sepp 1, Maarja Öpik 1, Mari Moora 1 , Kadri Koorem 1 , Yiming Meng 1,* , Jane Oja 1, Asem A. Akhmetzhanova 2, Saleh Al-Quraishy 3, Vladimir G. Onipchenko 2, Juan J. Cantero 4,5 , Sydney I. Glassman 6 , Wael N. Hozzein 3,7 and Martin Zobel 3,8 1 Institute of Ecology and Earth Sciences, University of Tartu, 51005 Tartu, Estonia; [email protected] (M.V.); [email protected] (J.D.); [email protected] (S.-K.S.); [email protected] (M.Ö.); [email protected] (M.M.); [email protected] (K.K.); [email protected] (J.O.) 2 Department of Ecology and Plant Geography, Lomonosov Moscow State University, 119234 Moscow, Russia; [email protected] (A.A.A.); [email protected] (V.G.O.) 3 Zoology Department, College of Science, King Saud University, Riyadh 11451, Saudi Arabia; [email protected] (S.A.-Q.); [email protected] (W.N.H.); [email protected] (M.Z.) 4 Instituto Multidisciplinario de Biología Vegetal, Universidad Nacional de Córdoba, CONICET, Córdoba 5000, Argentina; [email protected] 5 Departamento de Biología Agrícola, Facultad de Agronomía y Veterinaria, Universidad Nacional de Río Cuarto, Río Cuarto 5804, Argentina 6 Department of Microbiology and Plant Pathology, University of California, Riverside, CA 92521, USA; [email protected] 7 Botany and Microbiology Department, Faculty of Science, Beni-Suef University, Beni-Suef 62511, Egypt 8 Department of Botany, University of Tartu, Tartu 51006, Estonia * Correspondence: [email protected] Citation: Vasar, M.; Davison, J.; Sepp, S.-K.; Öpik, M.; Moora, M.; Abstract: Deserts cover a significant proportion of the Earth’s surface and continue to expand as Koorem, K.; Meng, Y.; Oja, J.; a consequence of climate change.