Abies Firma (Pinaceae) Naturalized in North America
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Tree Species Distribution Maps for Central Oregon
APPENDIX 7: TREE SPECIES DISTRIBUTION MAPS FOR CENTRAL OREGON A7-150 Appendix 7: Tree Species Distribution Maps Table A7-5. List of distribution maps for tree species of central Oregon. The species distribution maps are prefaced by four maps (pages A7-151 through A7-154) showing all locations surveyed in each of the four major data sources Map Page Forest Inventory and Analysis plot locations A7-151 Ecology core Dataset plot locations A7-152 Current Vegetation Survey plot locations A7-153 Burke Museum Herbarium and Oregon Flora Project sample locations A7-154 Scientific name Common name Symbol Abies amabilis Pacific silver fir ABAM A7-155 Abies grandis - Abies concolor Grand fir - white fir complex ABGR-ABCO A7-156 Abies lasiocarpa Subalpine fir ABLA A7-157 Abies procera - A. x shastensis Noble fir - Shasta red fir complex ABPR-ABSH A7-158 [magnifica x procera] Acer glabrum var. douglasii Douglas maple ACGLD4 A7-159 Alnus rubra Red alder ALRU2 A7-160 Calocedrus decurrens Incense-cedar CADE27 A7-161 Chrysolepis chrysophylla Golden chinquapin CHCH7 A7-162 Frangula purshiana Cascara FRPU7 A7-163 Juniperus occidentalis Western juniper JUOC A7-164 Larix occidentalis Western larch LAOC A7-165 Picea engelmannii Engelmann spruce PIEN A7-166 Pinus albicaulis Whitebark pine PIAL A7-167 Pinus contorta var. murrayana Sierra lodgepole pine PICOM A7-168 Pinus lambertiana Sugar pine PILA A7-169 Pinus monticola Western white pine PIMO3 A7-170 Pinus ponderosa Ponderosa pine PIPO A7-171 Populus balsamifera ssp. trichocarpa Black cottonwood POBAT A7-172 -
Rhizopogon Togasawariana Sp. Nov., the First Report of Rhizopogon Associated with an Asian Species of Pseudotsuga
Rhizopogon togasawariana sp. nov., the first report of Rhizopogon associated with an Asian species of Pseudotsuga Mujic, A. B., Hosaka, K., & Spatafora, J. W. (2014). Rhizopogon togasawariana sp. nov., the first report of Rhizopogon associated with an Asian species of Pseudotsuga. Mycologia, 106(1), 105-112. doi:10.3852/13-055 10.3852/13-055 Allen Press Inc. Version of Record http://hdl.handle.net/1957/47245 http://cdss.library.oregonstate.edu/sa-termsofuse Mycologia, 106(1), 2014, pp. 105–112. DOI: 10.3852/13-055 # 2014 by The Mycological Society of America, Lawrence, KS 66044-8897 Rhizopogon togasawariana sp. nov., the first report of Rhizopogon associated with an Asian species of Pseudotsuga Alija B. Mujic1 the natural and anthropogenic range of the family Department of Botany and Plant Pathology, Oregon and plays an important ecological role in the State University, Corvallis, Oregon 97331-2902 establishment and maintenance of forests (Tweig et Kentaro Hosaka al. 2007, Simard 2009). The foundational species Department of Botany, National Museum of Nature concepts for genus Rhizopogon were established in the and Science, Tsukuba-shi, Ibaraki, 305-0005, Japan North American monograph of Smith and Zeller (1966), and a detailed monograph also has been Joseph W. Spatafora produced for European Rhizopogon species (Martı´n Department of Botany and Plant Pathology, Oregon 1996). However, few data on Asian species of State University, Corvallis, Oregon 97331-2902 Rhizopogon have been incorporated into phylogenetic and taxonomic studies and only a limited account of Asian Rhizopogon species has been published for EM Abstract: Rhizopogon subgenus Villosuli are the only associates of Pinus (Hosford and Trappe 1988). -
CHRISTMAS TREES FACTSHEET November 2008 an INTRODUCTION Ref: 050403
CALU CHRISTMAS TREES FACTSHEET November 2008 AN INTRODUCTION Ref: 050403: INTRODUCTION Growing Christmas trees is an option which more and more garden centres, nurseries and other businesses are considering. Over recent years production numbers have increased significantly: from 4.4m trees produced in the UK in 2001, to 6.5m in 2005. Nevertheless, approximately one million Christmas trees are imported from the continent, mainly Denmark, each year. There are good arguments for setting up a Christmas tree plantation, including the strength of the Euro. This is making imported trees look less attractive as they become relatively more expensive. Home grown Christmas trees also have an attractive marketing factor which can encourage customers to buy them. However, setting up and running a Christmas tree plantation is a time and labour intensive operation which requires skills as well as foresight: it will take around seven to 10 years before the first crop of Christmas trees will be ready for the market. SPECIES Many species are used as Christmas trees: some are more fashionable in some years than others. Historically, it was the Norway spruce that was the traditional Christmas tree. In recent years various types of fir tree have overtaken the spruce in terms of popularity. This is because they tend to hold their needles better and are less prickly. However, they are slower growing and therefore more expensive to produce. Table 1 provides an overview of the characteristics of the most commonly bought Christmas tree species in the UK: Table 1: Common Christmas tree species Common Botanical name Characteristics name Noble fir Abies procera Typical “Christmassy” scent, soft needles, approx. -
Biodiversity Conservation in Botanical Gardens
AgroSMART 2019 International scientific and practical conference ``AgroSMART - Smart solutions for agriculture'' Volume 2019 Conference Paper Biodiversity Conservation in Botanical Gardens: The Collection of Pinaceae Representatives in the Greenhouses of Peter the Great Botanical Garden (BIN RAN) E M Arnautova and M A Yaroslavceva Department of Botanical garden, BIN RAN, Saint-Petersburg, Russia Abstract The work researches the role of botanical gardens in biodiversity conservation. It cites the total number of rare and endangered plants in the greenhouse collection of Peter the Great Botanical garden (BIN RAN). The greenhouse collection of Pinaceae representatives has been analysed, provided with a short description of family, genus and certain species, presented in the collection. The article highlights the importance of Pinaceae for various industries, decorative value of plants of this group, the worth of the pinaceous as having environment-improving properties. In Corresponding Author: the greenhouses there are 37 species of Pinaceae, of 7 geni, all species have a E M Arnautova conservation status: CR -- 2 species, EN -- 3 species, VU- 3 species, NT -- 4 species, LC [email protected] -- 25 species. For most species it is indicated what causes depletion. Most often it is Received: 25 October 2019 the destruction of natural habitats, uncontrolled clearance, insect invasion and diseases. Accepted: 15 November 2019 Published: 25 November 2019 Keywords: biodiversity, botanical gardens, collections of tropical and subtropical plants, Pinaceae plants, conservation status Publishing services provided by Knowledge E E M Arnautova and M A Yaroslavceva. This article is distributed under the terms of the Creative Commons 1. Introduction Attribution License, which permits unrestricted use and Nowadays research of biodiversity is believed to be one of the overarching goals for redistribution provided that the original author and source are the modern world. -
Plant Data Sheet Abies Procera Noble
Firefox http://depts.washington.edu/propplnt/Plants/abies procera.htm Plant Data Sheet Abies procera noble fir Range Mountains of Northwest Oregon and Southwest Washington between latitude 44N and 48N. Climate, elevation Moist maritime climate. Cool temperatures, high precipitation. Annual precipitation 1960-2410 mm. Three quarters of precipitation falls between October and March as snow. Mid to upper elevations. Local occurrence (where, how common) West slopes of the Cascade Mountains. Habitat preferences Prefers moist deep cool well-drained soil. However, can grow on a wide variety of soils including rocky if there is enough moisture. Takes sun to part shade. Does not tolerate high wind or soil with high pH. Plant strategy type/successional stage (stress-tolerator, competitor, weedy/colonizer, seral, late successional) Associated species Associates with most Northwest confers throughout the range, Alaska huckleberry, red huckleberry, Cascades azalea, Pacific rhododendron, bear grass, fawn lily, inside-out-flower. May be collected as: (seed, layered, divisions, etc.) Seed Collection restrictions or guidelines Seeds are dispersed in September - October. Noble fir starts to produce seed around 50 years of age. Time between good cone crops could be up to 6 years. Seed quality is poor. Good seed quality usually correlates with good cone crops. 1 of 2 2/11/2021, 6:33 PM Firefox http://depts.washington.edu/propplnt/Plants/abies procera.htm Seed germination (needs dormancy breaking?) Seed life (can be stored, short shelf-life, long shelf-life) Recommended seed storage conditions Propagation recommendations (plant seeds, vegetative parts, cuttings, etc.) Soil or medium requirements (inoculum necessary?) Installation form (form, potential for successful outcomes, cost) Recommended planting density Care requirements after installed (water weekly, water once etc.) Normal rate of growth or spread; lifespan In landscape settings grows to 50-100 feet tall. -
Hybridization of the California Firs
Forest Science, Vol. 34, No. I, pp. 139-151. Copyright 1988 by the Society of American Foresters Hybridization of the California Firs William B. Critchfield Abstract. Four groups of firs (sections, in the most recent classification of Abies) are represented in California. Crossing within these sections is possible and even easy, and in two of the sections intergrading populations between highly crossable taxa are wide spread in California. An exception is A. amabilis, a Northwestern fir that has not been crossed with other species in the same section {Grandes: A. concolor, A. grandis) or in other sections (e.g., Nobiles: A magnified). Crossing species in different sections is usually difficult or impossible. The genetic isolation of A. bracteata, an endemic species classified as a monotypic subgenus or section, may be nearly complete: two probable hybrids with A. concolor died at a few years of age. A few putative hybrids from inter- sectional crosses between species in Grandes and Nobiles died within months of germi nation. Intersectional crosses with firs outside California (two Mexican and four Eur asian species) all failed except A. concolor x A. religiosa, which produced numerous healthy hybrids. The common occurrence of genetic barriers in Abies is at odds with the long-held view that it is easy to hybridize fir species. For. Sci. 34(1): 139-151. Additional key words. Abies, interspecific hybrids, crossability, classification. The ability of species to hybridize has not been explored as systemati cally in the genus Abies (true firs) as it has in other genera of Pinaceae such as Pinus and Pice a. -
ISTA List of Stabilized Plant Names 7Th Edition
ISTA List of Stabilized Plant Names th 7 Edition ISTA Nomenclature Committee Chair: Dr. M. Schori Published by All rights reserved. No part of this publication may be The Internation Seed Testing Association (ISTA) reproduced, stored in any retrieval system or transmitted Zürichstr. 50, CH-8303 Bassersdorf, Switzerland in any form or by any means, electronic, mechanical, photocopying, recording or otherwise, without prior ©2020 International Seed Testing Association (ISTA) permission in writing from ISTA. ISBN 978-3-906549-77-4 ISTA List of Stabilized Plant Names 1st Edition 1966 ISTA Nomenclature Committee Chair: Prof P. A. Linehan 2nd Edition 1983 ISTA Nomenclature Committee Chair: Dr. H. Pirson 3rd Edition 1988 ISTA Nomenclature Committee Chair: Dr. W. A. Brandenburg 4th Edition 2001 ISTA Nomenclature Committee Chair: Dr. J. H. Wiersema 5th Edition 2007 ISTA Nomenclature Committee Chair: Dr. J. H. Wiersema 6th Edition 2013 ISTA Nomenclature Committee Chair: Dr. J. H. Wiersema 7th Edition 2019 ISTA Nomenclature Committee Chair: Dr. M. Schori 2 7th Edition ISTA List of Stabilized Plant Names Content Preface .......................................................................................................................................................... 4 Acknowledgements ....................................................................................................................................... 6 Symbols and Abbreviations .......................................................................................................................... -
DICARM VALENTINA LAMUS MOLINA.Pdf
UNIVERSIDAD AUTÓNOMA DEL ESTADO DE MÉXICO MAESTRÍA Y DOCTORADO EN CIENCIAS AGROPECUARIAS Y RECURSOS NATURALES ECTOMICORRIZAS FORMADAS POR HONGOS SILVESTRES COMESTIBLES DEL PARQUE NACIONAL NEVADO DE TOLUCA T E S I S QUE PARA OBTENER EL GRADO DE DOCTORA EN CIENCIAS AGOPECUARIAS Y RECURSOS NATURALES PRESENTA: VALENTINA LAMUS MOLINA El Cerrillo Piedras Blancas, Toluca, Estado de México. Abril de 2015 UNIVERSIDAD AUTÓNOMA DEL ESTADO DE MÉXICO MAESTRÍA Y DOCTORADO EN CIENCIAS AGROPECUARIAS Y RECURSOS NATURALES ECTOMICORRIZAS FORMADAS POR HONGOS SILVESTRES COMESTIBLES DEL PARQUE NACIONAL NEVADO DE TOLUCA T E S I S QUE PARA OBTENER EL GRADO DE DOCTORA EN CIENCIAS AGOPECUARIAS Y RECURSOS NATURALES PRESENTA: VALENTINA LAMUS MOLINA COMITÉ DE TUTORES: Dr. Sergio Franco Maass. Tutor Académico Dra. Leticia Montoya Bello. Tutora Adjunta Dr. Angel Rolando Endara Agramont. Tutor Adjunto El Cerrillo Piedras Blancas, Toluca, Estado de México. Abril de 2015 ©2015, Lamus Molina RESUMEN En el presente estudio se confirmó la asociación ectomicorrizógena entre tres especies de hongos comestibles del Área de Protección de Flora y Fauna Nevado del Toluca con plántulas de Abies religiosa. Esto se realizó mediante la síntesis de ectomicorrizas in vitro de hongos y plántulas de Abies religiosa producidas en vivero. Para confirmar que las ectomicorrizas sintetizadas correspondían a los hongos mencionados, el estudio incluyó la obtención de secuencias de ADN del micobionte presente en dichas ectomicorrizas, de las cepas obtenidas y de su comparación con secuencias de ADN obtenidas a partir fructificaciones de los hongos. Las secuencias de ADN obtenidas se analizaron a través de un análisis filogenético para reconocer la relación entre las muestras. -
Saddle Bag Mountain Research Natural Area: Guidebook Supplement 34
United States Department of Agriculture Saddle Bag Mountain Forest Service Research Natural Area Pacific Northwest Research Station General Technical Report Guidebook Supplement 34 PNW-GTR-731 September 2007 Reid Schuller and Ronald L. Exeter D E E R P A U RT LT MENT OF AGRICU D E E P R A U R LT TMENTOFAGRICU The Forest Service of the U.S. Department of Agriculture is dedicated to the principle of multiple use management of the Nation’s forest resources for sustained yields of wood, water, forage, wildlife, and recreation. Through forestry research, cooperation with the States and private forest owners, and management of the National Forests and National Grasslands, it strives—as directed by Congress—to provide increasingly greater service to a growing Nation. The U.S. Department of Agriculture (USDA) prohibits discrimination in all its programs and activities on the basis of race, color, national origin, age, disability, and where applicable, sex, marital status, familial status, parental status, religion, sexual orientation, genetic information, political beliefs, reprisal, or because all or part of an individual’s income is derived from any public assistance program. (Not all prohibited bases apply to all programs.) Persons with disabilities who require alternative means for communication of program information (Braille, large print, audiotape, etc.) should contact USDA’s TARGET Center at (202) 720-2600 (voice and TDD). To file a complaint of discrimination, write USDA, Director, Office of Civil Rights, 1400 Independence Avenue, SW, Washington, DC 20250-9410 or call (800) 795-3272 (voice) or (202) 720-6382 (TDD). USDA is an equal opportunity provider and employer. -
Rooting Nordmann Fir Cuttings for Christmas Trees?
Working Papers of the Finnish Forest Research Institute 114 Vegetative propagation of conifers for enhancing landscaping and tree breeding. Proceedings of the Nordic meeting held in September 10th-11th 2008 at Punkaharju, Finland http://www.metla.fi/julkaisut/workingpapers/2009/mwp114.htm Working Papers of the Finnish Forest Research Institute 114: 48–52 Rooting Nordmann fir cuttings for Christmas trees? Ulrik Bräuner Nielsen1, Hanne N. Rasmussen1 and Martin Jensen2 1 University of Copenhagen, Forest and Landscape, Denmark; [email protected] 2 University of Aarhus, Department of Horticulture, Aarslev, Denmark Recent succes with rooted cuttings in fir (Abies spp.) propagation stimulated this experiment with Abies nordmanniana, an important Christmas tree species in Denmark. Cuttings were taken in late summer from young and older trees, untreated or stumped, and from specified positions within the crown. Auxin was administered to some cuttings at varying concentrations. Rooting was monitored over a period of 6 months and attained 60-70% in the best shoot types. Auxin had no influence on rooting but concentration correlated positively with tissue decay in basal end of cuttings. Rooting of cuttings from the leader in untreated trees decreased markedly with age while cuttings from the branches decreased less dramatically. No basipetal trend of rooting capability of branches could be ascertained. Orthotropic shoots that regenerated on stumped trees rooted with varying success, the ones originating from the main stem, and preferably at a low position, performing best. Orthotropic growth was maintained in 35-45% of these shoots 8 months after rooting, while plagiotropic growth was prevalent in cuttings of other shoot types. -
Vegetation Descriptions NORTH COAST and MONTANE ECOLOGICAL PROVINCE
Vegetation Descriptions NORTH COAST AND MONTANE ECOLOGICAL PROVINCE CALVEG ZONE 1 December 11, 2008 Note: There are three Sections in this zone: Northern California Coast (“Coast”), Northern California Coast Ranges (“Ranges”) and Klamath Mountains (“Mountains”), each with several to many subsections CONIFER FOREST / WOODLAND DF PACIFIC DOUGLAS-FIR ALLIANCE Douglas-fir (Pseudotsuga menziesii) is the dominant overstory conifer over a large area in the Mountains, Coast, and Ranges Sections. This alliance has been mapped at various densities in most subsections of this zone at elevations usually below 5600 feet (1708 m). Sugar Pine (Pinus lambertiana) is a common conifer associate in some areas. Tanoak (Lithocarpus densiflorus var. densiflorus) is the most common hardwood associate on mesic sites towards the west. Along western edges of the Mountains Section, a scattered overstory of Douglas-fir often exists over a continuous Tanoak understory with occasional Madrones (Arbutus menziesii). When Douglas-fir develops a closed-crown overstory, Tanoak may occur in its shrub form (Lithocarpus densiflorus var. echinoides). Canyon Live Oak (Quercus chrysolepis) becomes an important hardwood associate on steeper or drier slopes and those underlain by shallow soils. Black Oak (Q. kelloggii) may often associate with this conifer but usually is not abundant. In addition, any of the following tree species may be sparsely present in Douglas-fir stands: Redwood (Sequoia sempervirens), Ponderosa Pine (Ps ponderosa), Incense Cedar (Calocedrus decurrens), White Fir (Abies concolor), Oregon White Oak (Q garryana), Bigleaf Maple (Acer macrophyllum), California Bay (Umbellifera californica), and Tree Chinquapin (Chrysolepis chrysophylla). The shrub understory may also be quite diverse, including Huckleberry Oak (Q. -
BDB 2014 Picea Study Day, an Introduction
BDB 2014 Picea study day, an introduction, by Paul Goetghebeur, BG Ghent University Scan Jan De Langhe : Picea_asperata_(not_heterolepis)_NPVBM19842407_2950JDL_15022007_10.JPG From ferns to Gymnosperms : from sporangia to seeds Seed ferns : Medullosaceae (fossil) (Kalkman 1972) A. Medullosa noei, habit B. Id., stele in cross section C. Medullosa solmsii, id. D. Medullosa luckartii, id. E. Alethopteris lancifolia, pinna F. Neuropteris, pinna with seed G. Trigonocarpus, ovule longitudinal section H. Id., cross section Seed ferns (fossil) (Stewart 1983) 1. Archaeosperma arnoldii, ovules The integument is almost entirely united with the nucellus (except for the top). In the nucellus a large macroprothallium (= female gametophyte) is evident. 2. Reconstruction of a semophylesis explaining the origin of the ovule. A : basic pattern with dichotomous branching and terminal sporangia B : start of heterospory, with one macrosporangium surrounded by many microsporangia C : microsporangia are reduced, their telomes are “sterile” D : webbing of the “sterile” telomes around the macrosporangium resulting in the formation of a new layer, this new layer = the integument (later on forming the seed coat !) Development of the ovule in Gymnosperms (Kalkman 1972) A : full grown ovule B : primordium of ovule, with a small nucellus, surrounded by an incipient integument C : differentiation of the macrospore mother cell (still diploid !) in the nucellus (= macrosporangium wall) D : meiosis of the macrospore mother cell, yielding 4 haploid macrospores E : degeneration