Hohenheimer Gärten Samenverzeichnis

Total Page:16

File Type:pdf, Size:1020Kb

Hohenheimer Gärten Samenverzeichnis HOHENHEIMER GÄRTEN Stuttgart-HoHenHeim SAMENVERZEICHNIS ANNO 2016 COLLECTORUM HOHENHEIMER GÄRTEN Stuttgart-HoHenHeim SAMENVERZEICHNIS ANNO 2016 COLLECTORUM Index Seminum 2016, Desiderata 2017 – Hohenheimer Gärten 01 Hohenheimer Gärten (772) Universität Hohenheim Filderhauptstrasse 169-171 D-70599 Stuttgart Tel: +49-(0)711-459 23537 Fax: +49-(0)711-459 23355 E-Mail: [email protected] URL: https://gaerten.uni-hohenheim.de/ Leitung: Dr. Helmut Dalitz Technischer Leiter: Rainer Bäßler Wissenschaftlicher Mitarbeiter: Dr. Robert Gliniars Gärtnermeister: Karin Bühler, Günter Koch, Johanna Prillwitz, Michael Schurer Inhaltsverzeichnis / List of Contents Geographische Lage, Klimadaten/ Geographical location, climate data 1 Nomenklatur/ Nomenclature 2 Samenverzeichnis/ Seed catalogue 3 Übereinkommen über die biologische Vielfalt/ Convention on Biological Diversity 18 Bestellformular/ Order Form 20 Index Seminum 2016, Desiderata 2017 – Hohenheimer Gärten 02 Geographische Lage und Klima / Location and climate Hohenheim gehört zu Stuttgart in Baden-Württemberg und liegt im milden mittleren Neckarraum. Hohenheim is a part of Stuttgart, Baden-Württemberg and is located in the fairly mild region of the Neckar Temperature (°C) Humidity Precipitation Windspeed river in Southwestern Germany. 2016 Ø 2m Min 2m Max 2m Ø rel. 5m mm Ø m/s Januar 2.6 -10.41 15.7 89.45 37.1 1.73 Geographische Lage/ Location: 48°43‘ N 09°13‘ E Februar 4.27 -4.42 14.26 84.4 53.9 2.45 Meereshöhe/ Altitude: 407 m März 4.64 -4.03 19.57 80.78 38.2 2.02 Mittlere Jahrestemperatur/ mean annual temperature: 8,8 °C April 8.76 -1.31 20.48 77.5 55.1 1.84 Kältester Monat/ Coldest Month: Jan. -0,3 °C Mai 13.53 3.32 26.38 75.19 75.2 1.78 Wärmster Monat/ Warmest Month:: Juli 17,8 °C Juni 17.25 8.47 33.3 81.24 114.7 1.4 Juli 19.75 8.09 33.69 73.68 26.9 1.27 Differenz zwischen absolutem Jahresmaximum und -minimum/ Difference between absolute annual August 19.01 6.35 33.88 72.69 40.1 1.3 maximum and -minimum temperature: 48 °C Abs. Max. Temperatur/ Abs. Max. Temperature: 37,1°C Juli 2015 September 17.05 4.55 31.61 76.33 49.8 1.23 Abs. Min. Temperatur/ Abs. Min. Temperature: -26,6°C Dez. 1879 Oktober 8.78 -0.18 19.73 88.54 47.5 1.26 November 4.43 -6.87 15.7 89.34 50.9 1.42 Zahl der Sommertage/ Number of Summer days (Max. > 25°C): 34 Dezember 1.41 -6.15 10.25 91.04 5.9 1.08 Zahl der Heissen Tage/ Number of Hot days (Max. > 30 °C): 5 Mean 10.12 -0.22 22.88 81.68 49.61 1.57 Zahl der Frosttage/ Number of Frosty days (Min. <0°C) 91 Zahl der Eistage/ Number of Icy days (Max. <0°C) 24 Zahl der Tage mit Schneedecke/ Number of Days with snow cover: 36 Frostfreie Tage/ Frostfree Days: 184 Jährliche Niederschlagssumme/ Annual sum of precipitation: 688 mm Maximum im Juni/ Maximum in June: 92 mm Minimum im Februar/ Minimum in February: 35,3 mm Mittlere Jahressonnenscheindauer/ Mean annual duration of sunshine 1713,8 h Daten stammen von der Klima- und Wetterstation Stuttgart-Hohenheim, Institut für Physik und Meteorologie 120, Universität Hohenheim. Data stem from the climate and weather station Stuttgart-Hohenheim, Department of Physics and Meteorology 120, University of Hohenheim. Index Seminum 2016, Desiderata 2017 – Hohenheimer Gärten 03 Tab.1: Monatliche Wetterdaten der Station Hohenheim für 2016. Messungen wurden in 2 m Höhe durchgeführt. Temperature (°C) Humidity Precipitation Windspeed 2016 Ø 2m Min 2m Max 2m Ø rel. 5m mm Ø m/s Januar 2.6 -10.41 15.7 89.45 37.1 1.73 Februar 4.27 -4.42 14.26 84.4 53.9 2.45 März 4.64 -4.03 19.57 80.78 38.2 2.02 April 8.76 -1.31 20.48 77.5 55.1 1.84 Mai 13.53 3.32 26.38 75.19 75.2 1.78 Juni 17.25 8.47 33.3 81.24 114.7 1.4 Juli 19.75 8.09 33.69 73.68 26.9 1.27 August 19.01 6.35 33.88 72.69 40.1 1.3 September 17.05 4.55 31.61 76.33 49.8 1.23 Oktober 8.78 -0.18 19.73 88.54 47.5 1.26 November 4.43 -6.87 15.7 89.34 50.9 1.42 Dezember 1.41 -6.15 10.25 91.04 5.9 1.08 Mean 10.12 -0.22 22.88 81.68 49.61 1.57 Nomenklatur/ Nomenclature: Die Familien- und Gattungseinteilung erfolgt gemäß der Angiosperm Phylogeny Group: The families and genera were classified according to Angiosperm Phylogeny Group: THE ANGIOSPERM PHYLOGENY GROUP (2009), An update of the Angiosperm Phylogeny Group classification for the orders and families of flowering plants: APG III. Botanical Journal of the Linnean Society, 161: 105– 121. doi: 10.1111/j.1095-8339.2009.00996.x. Für die Artnomenklatur wurden folgende Publikationen verwendet: Species were classified according to the following publications: Euro+Med (2006-): Euro+Med PlantBase - the information resource for Euro-Mediterranean plant diversity. Published on the Internet http://ww2.bgbm.org/EuroPlusMed/ [10/01/2017]. Erhardt, W., Götz, E., Bödeker, N. & Seybold, S. (2008): Der große Zander. Enzyklopädie der Pflanzennamen. Band 2. Arten und Sorten. Eugen Ulmer KG, Stuttgart (Hohenheim), 18. Aufl., 2103 S. The Plant List (2010). Version 1. Published on the Internet; http://www.theplantlist.org/ (accessed 20th January 2017). The Plant List (2013). Version 1.1. Published on the Internet; http://www.theplantlist.org/ (accessed 20th January 2017). Index Seminum 2016, Desiderata 2017 – Hohenheimer Gärten 04 Samenverzeichnis/ Seed catalogue + Kalthauspflanzen + greenhouse plants 1-1190 Bestellnummern 1-1190 Order numbers xx-0-HOH-SYS-12345 IPEN-Nummer xx-0-HOH-SYS-12345 IPEN-number Acanthaceae 1 Acanthus hungaricus (Borbás) Baen. XX-0-HOH-SYS-3 2 Acanthus mollis L. XX-0-HOH-SYS-4 Adoxaceae 3 Sambucus ebulus L. XX-0-HOH-MArz-1901 4 Viburnum × juddii Rehder XX-0-HOH-EG-L-090-13850 5 Viburnum macrocephalum Fortune XX-0-HOH-WS-07-1917 Alismataceae 6 Alisma lanceolatum With. XX-0-HOH-SYS-100 Amaranthaceae 7 Amaranthus albus L. XX-0-HOH-SYS-10853 8 Amaranthus blitum subsp. oleraceus (L.) Costea XX-0-HOH-SYS-15993 9 Amaranthus caudatus L. XX-0-HOH-SYS-10854 10 Amaranthus cruentus L. XX-0-HOH-SYS-10855 11 Amaranthus hybridus L. XX-0-HOH-SYS-10856 12 Atriplex hortensis L. XX-0-HOH-SYS-2091 13 Chenopodium opulifolium Schrad. ex W. D. J. Koch & Ziz FR-0-HOH-SYS-16518 + 14 Deeringia amaranthoides (Lam.) Merr. XX-0-HOH-SYS-265 Amaryllidaceae 15 Allium fistulosum L. XX-0-HOH-StudGart-10882 16 Allium karataviense Regel XX-0-HOH-ST-EG-13832 17 Allium moly L. XX-0-HOH-SYS-165 18 Allium nutans L. XX-0-HOH-SYS-172 19 Allium schoenoprasum L. XX-0-HOH-StudGart-10883-2011 20 Allium senescens L. XX-0-HOH-SYS-10872 21 Allium tuberosum Rottler ex Spreng. XX-0-HOH-SYS-198 + 22 Zephyranthes minuta (Kunth) D. Dietr. XX-0-HOH-SYS-10873 Anacardiaceae + 23 Schinus molle L. XX-0-HOH-SYS-363 24 Toxicodendron eximium Greene XX-0-HOH-EG-L-135-16522 25 Toxicodendron trichocarpum (Miq.) Kuntze XX-0-HOH-EG-L-122-13848 Apiaceae (Umbelliferae) 26 Ammi majus L. XX-0-HOH-SYS-17251 27 Angelica archangelica L. XX-0-HOH-SYS-375 28 Apium graveolens L. XX-0-HOH-SYS-379 29 Astrantia major L. XX-0-HOH-SYS-383 30 Bupleurum rotundifolium L. XX-0-HOH-SYS-17058 31 Carum carvi L. XX-0-HOH-StudGart-396 32 Chaerophyllum aureum L. XX-0-HOH-SYS-400 33 Cnidium dubium Thell. XX-0-HOH-SYS-6089 34 Cnidium silaifolium (Jacq.) Simonk. XX-0-HOH-SYS-407 35 Conium maculatum L. XX-0-HOH-SYS-13335 Index Seminum 2016, Desiderata 2017 – Hohenheimer Gärten 05 36 Coriandrum sativum L. XX-0-HOH-StudGart-408 37 Daucus carota L. XX-0-HOH-SYS-15337 38 Foeniculum vulgare Mill. XX-0-HOH-HvB-13336 39 Levisticum officinale W. D. J. Koch XX-0-HOH-HvB-15090 40 Myrrhis odorata (L.) Scop. XX-0-HOH-Arz-UStgt-15339 41 Oenanthe silaifolia M. Bieb. XX-0-HOH-SYS-13718 42 Orlaya grandiflora (L.) Hoffm. XX-0-HOH-StudGart-474 43 Pastinaca sativa L. XX-0-HOH-StudGart-476 44 Pimpinella peregrina L. XX-0-HOH-SYS-492 45 Scandix pecten-veneris L. XX-0-HOH-StudGart-16143 46 Sium sisarum L. XX-0-HOH-SYS-508 Apocynaceae + 47 Oxypetalum coeruleum (D. Don ex Sweet) Decne. XX-0-HOH-SYS-642 48 Vincetoxicum nigrum (L.) Moench XX-0-HOH-SYS-647 49 Vincetoxicum rossicum (Kleopow) Barbar. XX-0-HOH-SYS-648 50 Vincetoxicum scandens Sommier & Levier XX-0-HOH-SYS-649 51 Vincetoxicum schmalhausenii (Kusn.) Litv. XX-0-HOH-SYS-650 Aquifoliaceae 52 Ilex aquifolium L. XX-0-HOH-SP-NS-017-10740 Araliaceae 53 Aralia elata (Miq.) Seem. XX-0-HOH-EG-B-069-13991 54 Eleutherococcus henryi Oliv. XX-0-HOH-SYS-586 Aristolochiaceae 55 Aristolochia clematitis L. XX-0-HOH-HvB-621 Asparagaceae + 56 Albuca bracteata (Thunb.) J. C. Manning & Goldblatt XX-0-HOH-SYS-10992 + 57 Danae racemosa (L.) Moench XX-0-HOH-SYS-5437 58 Muscari armeniacum Leichtlin ex Baker XX-0-HOH-SYS-3233 59 Ornithogalum pyramidale L. XX-0-HOH-SYS-6127 Asteraceae (Compositae) 60 Achillea millefolium L. XX-0-HOH-HvB-694 + 61 Acmella oleracea (L.) R.
Recommended publications
  • Conservation Status and Protection Measures for the Spanish Endemic Plant Sideritis Borgiae Andrés
    International Journal of Geobotanical Research, Vol. nº 2. 2012. pp. 1-12 Conservation status and protection measures for the Spanish endemic plant Sideritis borgiae Andrés Raquel ALONSO-REDONDO, Estrella ALFARO, Elena DE PAZ & Marta E. GARCÍA-GONZÁLEZ Botany Section, Department of Biodiversity and Environmental Management, Faculty of Biological and Environmental Sciences, University of Leon, Vegazana Campus, E-24071 Leon. Abstract Sideritis borgiae is an endemic plant restricted to a small area in the Castilla y León Region of Spain, included in the regional pro- tection catalogue. This paper provides a complete study of the currently known populations, with the aim of assigning the conserva- tion status of the taxon in accordance with IUCN criteria using RAMAS Red List 3.0 software, as well as detecting risk factors and providing appropriate management measures to guarantee survival of the taxon. In addition, the taxonomic status is discussed and we provide chorological, biological and ecological data of interest. Keywords: conservation, IUCN, RAMAS Red List, Sideritis borgiae, Spain.. Introduction Until now, no studies had previously been conducted to determine its area of occupancy or extent of occurren- Sideritis borgiae Andrés is a taxon endemic to Spain ce for cataloguing according to IUCN criteria, and this which is distributed throughout the northwest Iberian article therefore presents the first results obtained for quadrant and has been the subject of various conserva- IUCN cataloguing, using the RAMAS Red List 3.0 pro- tion and taxonomy studies. It was included in the Spa- gramme. To this end, an extensive literature search was nish Red List of Vascular Flora published in 2000, under conducted, considering taxonomy, chorology, biology, the category DD (data deficient) (Domínguez, 2000), due ecology and conservation, and new data was also provi- both to lack of knowledge about its distribution and the ded by the authors of this study.
    [Show full text]
  • Development of Distribution Maps of Grassland Habitats of EUNIS Habitat Classification
    Development of distribution maps of grassland habitats of EUNIS habitat classification Joop H.J. Schaminée Milan Chytrý Jürgen Dengler Stephan M. Hennekens John A.M. Janssen Borja Jiménez-Alfaro Ilona Knollová Flavia Landucci Corrado Marcenò John S. Rodwell Lubomír Tichý and data-providers Report EEA/NSS/16/005 1 Alterra, Institute within the legal entity Stichting Dienst Landbouwkundig Onderzoek Professor Joop Schaminée Stephan Hennekens Partners Professor John Rodwell, Ecologist, Lancaster, UK Professor Milan Chytrý, Masaryk University, Brno, Czech Republic Doctor Ilona Knollová, Masaryk University, Brno, Czech Republic Doctor Lubomír Tichý, Masaryk University, Brno, Czech Republic Date: 07 December 2016 Alterra Postbus 47 6700 AA Wageningen (NL) Telephone: 0317 – 48 07 00 Fax: 0317 – 41 90 00 In 2003 Alterra has implemented a certified quality management system, according to the standard ISO 9001:2008. Since 2006 Alterra works with a certified environmental care system according to the standard ISO 14001:2004. © 2014 Stichting Dienst Landbouwkundig Onderzoek 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 in writing of Stichting Dienst Landbouwkundig Onderzoek. 2 TABLE OF CONTENTS 1 Introduction 2 Scope of the project 2.1 Background 2.2 Review of the EUNIS grassland habitat types 3 Indicator species of the revised EUNIS grassland habitat types 3.1 Background
    [Show full text]
  • Plants Used for Making Recreational Tea in Europe: a Review Based on Specific Research Sites Sõukand Et Al
    JOURNAL OF ETHNOBIOLOGY AND ETHNOMEDICINE Plants used for making recreational tea in Europe: a review based on specific research sites Sõukand et al. Sõukand et al. Journal of Ethnobiology and Ethnomedicine 2013, 9:58 http://www.ethnobiomed.com/content/9/1/58 Sõukand et al. Journal of Ethnobiology and Ethnomedicine 2013, 9:58 http://www.ethnobiomed.com/content/9/1/58 JOURNAL OF ETHNOBIOLOGY AND ETHNOMEDICINE REVIEW Open Access Plants used for making recreational tea in Europe: a review based on specific research sites Renata Sõukand1*, Cassandra L Quave2, Andrea Pieroni3, Manuel Pardo-de-Santayana4, Javier Tardío5, Raivo Kalle1,6, Łukasz Łuczaj7, Ingvar Svanberg8, Valeria Kolosova9, Laura Aceituno-Mata4,5, Gorka Menendez-Baceta4, Iwona Kołodziejska-Degórska10,11, Ewa Pirożnikow12, Rolandas Petkevičius13, Avni Hajdari14 and Behxhet Mustafa14 Abstract This paper is a review of local plants used in water infusions as aromatic and refreshing hot beverages (recreational tea) consumed in food-related settings in Europe, and not for specific medicinal purposes. The reviewed 29 areas are located across Europe, covering the post-Soviet countries, eastern and Mediterranean Europe. Altogether, 142 taxa belonging to 99 genera and 40 families were reported. The most important families for making herbal tea in all research areas were Lamiaceae and Asteraceae, while Rosaceae was popular only in eastern and central Europe. With regards to botanical genera, the dominant taxa included Mentha, Tilia, Thymus, Origanum, Rubus and Matricaria. The clear favorite was Origanum vulgare L., mentioned in 61% of the regions. Regionally, other important taxa included Rubus idaeus L. in eastern Europe, Chamaemelum nobile (L.) All. in southern Europe and Rosa canina L.
    [Show full text]
  • INDEX SEMINUM 2020 No 20
    BOTANICAL GARDEN OF ŠIAULIAI UNIVERSITY INDEX SEMINUM 2020 No 20 2020 1 BOTANICAL GARDEN OF ŠIAULIAI UNIVERSITY ______________________________________________________________________________ Phone: +370 659 93748 E-mail: [email protected] Web: http://bs.su.lt/ Facebook: https://www.facebook.com/SUbotanikossodas/ Authors: Virginija Aleknienė, Martynas Kazlauskas, Rimanta Vainorienė, Žydrūnė Valainytė, Rita Šulskienė. Cover design Karolis Grušas Photos are from the archyve of botanical garden 2 ŠIAULIAI UNIVERSITY BOTANICAL GARDEN ŠIAULIAI AREA. Šiauliai is a city of Northern Lithuania. It counts its years from the Battle of Saulė which took place in 1236. Šiauliai is the fourth largest city by its population. Population: 106 400. HISTORY. Šiauliai University Botanical Garden was established in 1997 at the former site of Agrobiological Station of Šiauliai University. Total area of the garden is 6.54 ha. Since 2003 Botanical Garden of Šiauliai University is a member of Botanic Gardens Conservation International, Planta Europa Network, Association of Botanic Gardens in the Baltic Sea Region, Botanical Gardens of the Baltic Countries and the Association of Lithuanian University Botanic Gardens (LUBSA). Since 2005 the Botanic Garden is a member of International Network of Phenological Gardens of Europe (IPG). There is a Club of Botanic Garden Friends at the Botanical Garden. The Garden exchanges seeds with more than 300 botanical gardens of the world. Director: dr. Martynas Kazlauskas. Fields of research: • research on plant biodiversity ex situ and in situ, • research on introduction and acclimatization of ornamental plants, • phenological observations. Other activities: • ex situ conservation, • educational activities at the Botanical Garden, • organization of events at the Botanical Garden. COLLECTIONS OF THE BOTANICAL GARDEN.
    [Show full text]
  • Threatened Medicinal Plants in Castilla Y León (Spain)
    Global Advanced Research Journal of Medicinal Plants (GARJMP) Vol. 1(1) pp. 001-006, December, 2012 Available online http://garj.org/garjmp/index.htm Copyright © 2012 Global Advanced Research Journals Full Length Research Paper Threatened medicinal plants in Castilla y León (Spain) Herrero, B. and Martín-Lobera, C Universidad de Valladolid, Departamento de Ciencias Agroforestales, 34004 Palencia, Spain. Accepted 03 December, 2012 544 vascular plant species are used traditionally as medicinal in Castilla y León. 8 of these species are protected on different scales. Sometimes this protection establishes limits to their harvest, such as: Arnica montana , Gentiana lutea , Nacissus pseudonarcissus , Sideritis hyssopifolia . These species are collected from wild populations with the risk of genetic erosion and loss of populations. Arnica montana and Gentiana lutea are highly demanded, and collected from wild populations in this region. Their distribution habitats in peat bogs and mountain pasture are also affected, diminishing their presence due to different reason. In Castilla y León crops of medicinal and aromatic plants spread over 970 ha, representing 0.03% of the cultivated land. This area has been reduced by 36% in the last few years whereas the demand for such plants has increased by 10%, in the last 15 years. Some protected species are not used traditionally by people to treat their common illnesses. However, high harmful demand comes from drug companies which are carrying out excessive picking. In the region, it is necessary to create crop policies for other species which are not listed as protected but their demand is increasing, such us: Hyssopus officinalis , Jasonia glutinosa , Lavandula latifolia , Origanum vulgare , Salvia lavandulifolia , Satureja montana , Thymus spp.
    [Show full text]
  • Melle BARKA FATIHA Président M
    EPUBLIQUE ALGERIENNE DEMOCRATIQUE ET POPULAIRE MINISTERE DE L’ENSEIGNEMENT SUPERIEUR ET DE LA RECHERCHE SCIENTIFIQUE UNIVERSITE ABOU-BEKR BELKAID - TLEMCEN FACULTE DES SCIENCES DE LA NATURE ET DE LA VIE ET DES SCIENCES DE LA TERRE ET DE L’UNIVERS Département des Ressources Forestières THESE DE DOCTORAT EN FORESTERIE Thème Etude des groupements à matorral dans le littoral de la région de Tlemcen. Aspects phytoécologiques et cartographie Présentée par Melle BARKA FATIHA Président M. HADDOUCHE Idriss M.C.AUniversité de Tlemcen Directeur de Thèse M. BOUAZZA Mohamed Profes. Université de Tlemcen Examinateurs M. MAHDADI Zoheir Professeur Université de Sidi Bel Abbes seur M. HASNAOUI Okkacha Profes Université de Saida M. MEDJAHDI Boumediene M.C.Aseur Université de Tlemcen ME M SOUIDI Zahéra M.C.AUniversité de Mascara . Invité M. KAZI Sidi Said Directeur du Parc National de Tlemcen Année universitaire : 2015/2016 DÉDICACES J’ai le plaisir de dédier avec fierté ce modeste travail à : La mémoire de mon défunt père « MOHAMED » qui a su nous transmettre l’essentiel de son énergie morale et matérielle pour réussir ; que Dieu accorde paix et miséricorde éternelles à son âme. Ma mère, qui a été très patiente et qui m'a toujours encouragée et poussée aux études. Mes frères et sœurs : Réda, Benamer, Farouk, Mohamed, Fatima Zohra, Nacéra, Naïma, Kheira et leurs maris Nasr Eddine et Sid Ahmed pour leur compréhension et soutien moral qu’ils ont pu m’apporter tout au long de cet itinéraire. Mes neveux et nièces : Mohamed Salim, Yacine, Riad, Younes, Aya Ceryne, Rania Alaa Hadil, Nassima, et Amina ainsi qu’à toute la famille BARKA.
    [Show full text]
  • European Red List of Medicinal Plants
    European Red List of Medicinal Plants Compiled by David Allen, Melanie Bilz, Danna J. Leaman, Rebecca M. Miller, Anastasiya Timoshyna and Jemma Window European Red List of Medicinal Plants Compiled by David Allen, Melanie Bilz, Danna J. Leaman, Rebecca M. Miller, Anastasiya Timoshyna and Jemma Window IUCN Global Species Programme IUCN European Union Representative Office IUCN Species Survival Commission Published by the European Commission. The designation of geographical entities in this book, and the presentation of the material, do not imply the expression of any opinion whatsoever on the part of IUCN or the European Union concerning the legal status of any country, territory, or area, or of its authorities, or concerning the delimitation of its frontiers or boundaries. The views expressed in this publication do not necessarily reflect those of IUCN or the European Union. Citation: Allen, D., Bilz, M., Leaman, D.J., Miller, R.M., Timoshyna, A. and Window, J. 2014. European Red List of Medicinal Plants. Luxembourg: Publications Office of the European Union. Design and layout: Imre Sebestyén jr. / UNITgraphics.com Printed by: Rosseels Printing Picture credits on cover page: Artemisia granatensis is endemic to the mountains of Sierra Nevada, southern Spain. The plant is considered Endangered as a result of population decline and range contraction. ©José Quiles Hoyo / www.florasilvestre.es All photographs used in this publication remain the property of the original copyright holder (see individual captions for details). Photographs should
    [Show full text]
  • Jan Scholten Wonderful Plants Reading Excerpt Wonderful Plants of Jan Scholten Publisher: Alonnissos Verlag
    Jan Scholten Wonderful Plants Reading excerpt Wonderful Plants of Jan Scholten Publisher: Alonnissos Verlag http://www.narayana-verlag.com/b14446 In the Narayana webshop you can find all english books on homeopathy, alternative medicine and a healthy life. Copying excerpts is not permitted. Narayana Verlag GmbH, Blumenplatz 2, D-79400 Kandern, Germany Tel. +49 7626 9749 700 Email [email protected] http://www.narayana-verlag.com Table of Contents 0.9.06 Stage-6 40 0.1.1 Publication data 3 0.9.07 Stage-7 40 0.1.2 Table of Contents 13 0.9.08 Stage-8 40 0.1.3 Word of thanks 14 0.9.09 Stage-9 41 0.1.4 Foreword Klein 14 0.9.10 Stage-10 41 0.1.5 Foreword Kuiper 15 0.9.11 Stage-11 41 0.1.6 Introduction 16 0.9.12 Stage-12 42 0.1.7 Introduction use 16 0.9.13 Stage-13 42 0.1.8 Use 17 0.9.14 Stage-14 42 0.2 Goal 18 0.9.15 Stage-15 43 0.3.1 Method 19 0.9.16 Stage-16 43 0.3.2 Element Theory 19 0.9.17 Stage-17 43 0.3.3 Classification of Plants 20 0.9.18 Stage-18 44 0.3.4 Classes 20 000.00 Evolution 44 0.4 Result 21 000.00.00 Kingdom 45 0.4.0 Result 21 000.00.00 Plant Kingdom 47 0.4.1 Phyla and Series 21 000.00.20 Kingdom 49 0.4.2 Classes and Series 22 111.00.00 Archaeoplastidae 51 0.4.3 Subclasses and Series 22 111.02.20 Fucus vesiculosus 51 0.4.4 Orders and Phases 23 111.10.00 Rhodophyta 51 0.4.5 Families and Subphases 23 111.10.13 Helminthochortos 51 0.4.7 Number 23 111.10.20 Chondrus crispus 51 0.5 Discussion 24 111.10.20 Porphyra yezoensis 51 0.5.0 Discussion 24 112.20.00 Glaucophyta 51 0.5.1 Discussion Apg 3 24 210.00.00 Chlorophyta 51 0.5.1
    [Show full text]
  • (Rbcl) PROTEINS in SOME Sideritis L. (LAMIACEAE) SPECIES: a BIOINFORMATIC APPROACH
    UDC 575 https://doi.org/10.2298/GENSR1901069S Original scientific paper COMPARATIVE AND PHYLOGENETIC ANALYSIS OF RUBISCO LARGE SUBUNIT (rbcL) PROTEINS IN SOME Sideritis L. (LAMIACEAE) SPECIES: A BIOINFORMATIC APPROACH Emre SEVİNDİK Faculty of Agriculture, Department of Agricultural Biotechnology, Adnan Menderes University, South Campus, Cakmar, Aydin, Turkey Sevindik E. (2019): Comparative and phylogenetic analysis of rubisco large subunit (rbcl) proteins in some Sideritis L. (Lamiaceae) species: a bioinformatic approach.- Genetika, Vol 51, No.1, 69-80. The large subunits of ribulose-1,5-bisphosphate carboxylase/oxygenase (RuBisCO) protein, which plays an important role in the photosynthesis reaction, are encoded by the chloroplast genome. Sideritis L., a medical and aromatic plant group, belongs to Lamiaceae family. In this study, we performed sequence, physicochemical, phylogenetic and three-dimensional (3D) bioinformatic analyses of RuBisCO large subunit (rbcL) proteins in the Sideritis ssp. using various bioinformatics tools. Physicochemical analyzes were performed by ExPASy - ProtParam. The putative phosphorylation sites of the rbcL proteins were determined by NetPhos 2.0 and NetPhos 3.1. Phylogenetic analyses were performed with the MEGA 6.0 software. To estimate 3D protein structures, PyMol program was used. At the end of the study, it was found that the amino acid number of stilbene synthase proteins ranged between 171 and 456, molecular weight ranged between 19002.67 and 50420.44 Da, instability index ranged between 27.30 to 40.70 and GRAVY values ranged between -0.394 to -0.226. While the highest average amino acid rate in the rbcL proteins was Gly (10.00%), the lowest amino acid ratio (1.4%) was determined as Trp.
    [Show full text]
  • Contribution of Seed Banks Across Europe Towards the 2020 Global Strategy for Plant Conservation Targets, Assessed Through the ENSCONET Database S
    Contribution of seed banks across Europe towards the 2020 Global Strategy for Plant Conservation targets, assessed through the ENSCONET database S. RIVIÈRE and J. V. MÜLLER TABLE S1 The 32 families not included in Euro+Med but covered by The Plant List, among others (synonyms according to The Plant List are shown in parentheses). Aizoaceae Anacardiaceae Buxaceae Caprifoliaceae (Dipsacaceae, Velarianaceae) Celastraceae Cistaceae Convolvulaceae Cucurbitaceae Elaeagnaceae Ericaceae (Empetraceae, Pyrolaceae) Frankeniaceae Boraginaceae (Hydrophyllaceae) Lauraceae Linaceae Malvaceae (Tiliaceae) Onagraceae Oxalidaceae Plantaginaceae (Callitrichaceae) Polemoniaceae Polygalaceae Polygonaceae Lythraceae (Punicaceae) Ranunculaceae Rhamnaceae Rubiaceae (Theligonaceae) Rutaceae Sapindaceae (Aceraceae, Hippocastanaceae) Scrophulariaceae (Myoporaceae) Staphyleaceae Tamaricaceae Violaceae Vitaceae TABLE S2 Number of accessions held for each threatened species for targets 8a and 8b of the 2011–2020 Global Strategy for Plant Conservation. Name of threatened species according to Taxonomic status* No. of No. of accessions the IUCN Red List 2015.4 & the 2011 accessions conserved ex situ by European Red List of Vascular Plants conserved ex ENSCONET, & situ by available for recovery ENSCONET and restoration (target 8a) programmes (target 8b) Abies nebrodensis Accepted EPM 0 0 Abies pinsapo Accepted EPM 5 3 Acis nicaeensis Accepted EPM 0 0 Aconitum corsicum Synonym TPL 2 0 Actinocarpus damasonium Synonym TPL 25 2 Adenocarpus ombriosus Accepted EPM 9 9 Aeonium
    [Show full text]
  • Butlletí 83 (2019)
    Butlletí de la Institució Catalana d’Història Natural 83 Barcelona 2019 INSTITUCIÓ CATALANA D’HISTÒRIA NATURAL Editor en Cap Juli Pujade-Villar, Universitat de Barcelona, Facultat de Biologia, Departament de Biologia Evolutiva, Ecologia i Ciències Ambientals (Secció invertebrats), Barcelona. Coeditors Joan Pino, Centre de Recerca Ecològica i Aplicacions Forestals (CREAF), Universitat Autònoma de Barcelona, Bellaterra. Eulàlia Comas, Departament de Territori i Sostenibilitat, Generalitat de Catalunya, Barcelona. Llorenç Sáez, Unitat de Botànica, Facultat de Ciències, Universitat Autònoma de Barcelona, Bellaterra. Òscar Alomar, Institut de Recerca i Tecnologia Agroalimentàries (IRTA), Cabrils. Roser Campeny. Minuartia, Sant Celoni. Ignasi Soriano, Universitat de Barcelona, Facultat de Biologia, Departament de Biologia Evolutiva, Ecologia i Ciències Ambientals (Secció de Botànica i Micologia), Barcelona. Delfí Sanuy, Universitat de Lleida, Escola Tècnica Superior d’Engineria Agrària, Lleida. Amador Viñolas, Corsorci del Museu de Ciències Naturals de Barcelona, Laboratori de Natura, Coŀlecció d’artròpodes, Barcelona. L’edició d’aquest Butlletí ha estat possible gràcies al suport de l’Institut d’Estudis Catalans Figura de la portada: Detall de la flor d’Ophrys fusca subsp. bilunulata. Dibuix d’Amador Viñolas. Data de publicació: desembre de 2019 © Els autors dels articles Aquesta edició és propietat de la Institució Catalana d’Història Natural (filial de l’Institut d’Estudis Catalans) Carrer del Carme, 47. 08001 Barcelona Compost per Amador Viñolas Impressió: Limpergraf, SL Dipòsit Legal: B-36.100-74 ISSN: 1133-6889 (print edition) ISSN: 2013-3987 (online edition) Butlletí de la Institució Catalana d’Història Natural, 83: 3-21. 2019 ISSN 2013-3987 (online edition): ISSN: 1133-6889 (print edition)3 GEA, FLORA ET fauna GEA, FLORA ET FAUNA Notes sobre flora aŀlòctona a Catalunya.
    [Show full text]
  • Observation on the Cotyledonary Stomata and Trichomes and Their Ontogeny in Some Genera of Lamiaceae
    ZOBODAT - www.zobodat.at Zoologisch-Botanische Datenbank/Zoological-Botanical Database Digitale Literatur/Digital Literature Zeitschrift/Journal: Phyton, Annales Rei Botanicae, Horn Jahr/Year: 1981 Band/Volume: 21_1 Autor(en)/Author(s): Naidu A. C., Shah G. L. Artikel/Article: Observation on the Cotyledonary Stomata and Trichomes and their Ontogeny in some Genera of Lamiaceae. 137-152 ©Verlag Ferdinand Berger & Söhne Ges.m.b.H., Horn, Austria, download unter www.biologiezentrum.at Phyton (Austria) Vol. 21 Fasc. 1 137-152 15. 2. 1981 Observation on the Cotyledonary Stomata and Trichomes and their Ontogeny in some Genera of Lamiaceae A. C. NAIDU and G. L. SHAH *) With 85 Figures (4 plates) Received July 15, 1980 Key words: Stomata, trichomes, cotyledons, Lamiaceae. Summary NAIDU A. C. & SHAH G. L. 1981. Observations on the cotyledonary stomata and trichomes and their ontogeny in some genera of Lamiaceae. — Phyton (Austria) 21 (1): 137—152, 85 figures (4 plates). — English with German Summary. The structure and ontogeny of cotyledonary stomata and trichomes are described in 34 species of Lamiaceae. Stomata are diacytic, anomocytic, hap- locytic, transitional form, tetracytic, paracytic and tricytic, different types often occuring side by side even on the same surface. The most frequent type is diacytic on both surfaces in most of the taxa, but it is anomocytic on adaxial surface or both surfaces in some. Rarely anisocytic, transitional form or haplo- cytic stomata are also dominant types on the adaxial surface. More than one type of ontogenetic patterns are observed on the same surface in different taxa. Anomocytic stomata are perigenous. Other types are mesogenous or meso- perigenous.
    [Show full text]