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Fair Use of This PDF File of Herbaceous
Fair Use of this PDF file of Herbaceous Perennials Production: A Guide from Propagation to Marketing, NRAES-93 By Leonard P. Perry Published by NRAES, July 1998 This PDF file is for viewing only. If a paper copy is needed, we encourage you to purchase a copy as described below. Be aware that practices, recommendations, and economic data may have changed since this book was published. Text can be copied. The book, authors, and NRAES should be acknowledged. Here is a sample acknowledgement: ----From Herbaceous Perennials Production: A Guide from Propagation to Marketing, NRAES- 93, by Leonard P. Perry, and published by NRAES (1998).---- No use of the PDF should diminish the marketability of the printed version. This PDF should not be used to make copies of the book for sale or distribution. If you have questions about fair use of this PDF, contact NRAES. Purchasing the Book You can purchase printed copies on NRAES’ secure web site, www.nraes.org, or by calling (607) 255-7654. Quantity discounts are available. NRAES PO Box 4557 Ithaca, NY 14852-4557 Phone: (607) 255-7654 Fax: (607) 254-8770 Email: [email protected] Web: www.nraes.org More information on NRAES is included at the end of this PDF. Acknowledgments This publication is an update and expansion of the 1987 Cornell Guidelines on Perennial Production. Informa- tion in chapter 3 was adapted from a presentation given in March 1996 by John Bartok, professor emeritus of agricultural engineering at the University of Connecticut, at the Connecticut Perennials Shortcourse, and from articles in the Connecticut Greenhouse Newsletter, a publication put out by the Department of Plant Science at the University of Connecticut. -
Illinois Exotic Species List
Exotic Species in Illinois Descriptions for these exotic species in Illinois will be added to the Web page as time allows for their development. A name followed by an asterisk (*) indicates that a description for that species can currently be found on the Web site. This list does not currently name all of the exotic species in the state, but it does show many of them. It will be updated regularly with additional information. Microbes viral hemorrhagic septicemia Novirhabdovirus sp. West Nile virus Flavivirus sp. Zika virus Flavivirus sp. Fungi oak wilt Ceratocystis fagacearum chestnut blight Cryphonectria parasitica Dutch elm disease Ophiostoma novo-ulmi and Ophiostoma ulmi late blight Phytophthora infestans white-nose syndrome Pseudogymnoascus destructans butternut canker Sirococcus clavigignenti-juglandacearum Plants okra Abelmoschus esculentus velvet-leaf Abutilon theophrastii Amur maple* Acer ginnala Norway maple Acer platanoides sycamore maple Acer pseudoplatanus common yarrow* Achillea millefolium Japanese chaff flower Achyranthes japonica Russian knapweed Acroptilon repens climbing fumitory Adlumia fungosa jointed goat grass Aegilops cylindrica goutweed Aegopodium podagraria horse chestnut Aesculus hippocastanum fool’s parsley Aethusa cynapium crested wheat grass Agropyron cristatum wheat grass Agropyron desertorum corn cockle Agrostemma githago Rhode Island bent grass Agrostis capillaris tree-of-heaven* Ailanthus altissima slender hairgrass Aira caryophyllaea Geneva bugleweed Ajuga genevensis carpet bugleweed* Ajuga reptans mimosa -
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 .......................................................................................................................... -
Organic Farming in Hawaii Organic Farming in Hawaii
Organic Farming in Hawaii Organic Farming in Hawaii Jon Biloon Pyramid Family Farm Visit us at www.supernaturalagriculture.net 1 Organic Farming in Hawaii A Pyramid Family Farm Production Publication date:2/14 Revision:1 Visit us at www.supernaturalagriculture.net 2 Organic Farming in Hawaii Table of Contents Introduction................................................................................................................................................6 Part 1..........................................................................................................................................................7 Fragile soils...........................................................................................................................................7 Sustainable farming – Why Organic?..................................................................................................10 Part 2........................................................................................................................................................12 Methods for increasing soil fertility....................................................................................................12 Testing the soil – ............................................................................................................................13 Sample Preparation for Soil Testing-..............................................................................................13 Amending the soil-.........................................................................................................................13 -
The Naturalised Flora of South Australia 3. Its Origin, Introduction, Distribution, Growth Forms and Significance P.M
J. Adelaide Bot Gard. 10(1): 99-111 (1987) THE NATURALISED FLORA OF SOUTH AUSTRALIA 3. ITS ORIGIN, INTRODUCTION, DISTRIBUTION, GROWTH FORMS AND SIGNIFICANCE P.M. Kloot South Australian Department of Agriculture, GPO Box 1671, Adelaide, South Australia 5001 Abstract Some features of the South Australian naturalised flora were examined. The predominant source of naturalised alien species has changed from Europe or Eurasia in 1855 to the Mediterranean and environmentally similar areas at present. It is suggested that this is due to the history of northern European settlement of South Australia and the attendant importation of plants from that region. The majority of presently naturalised plants were recorded in Great Britain at the time of South Australian settlement and it is suggested that regardless of their ultimate origin, most plants would have arrived via Great Britain or, more generally, northern Europe. The majority of naturalised plants have been documented or are suspected to have been introduced intentionally. Most of them were ornamental, fodder or culinary plants. Of the unintentionally introduced species, most were fleece, seed or ballast contaminants. A number of characteristic distribution patterns of naturalised plants in South Australia are recognized. These result from climatic and edaphic features and from patterns of land use. Annuals are the predominant growth form of the well-established species. The majority of the unintentionally introduced species are annuals. Introduction The development of the South Australian alien flora since colonization (Kloot, 1987) was ascertained from the documentation discovered during an intensive search (Kloot, 1987) to locate more material than was thought available hitherto (Michael, 1972). -
Ohio Plant Disease Index
Special Circular 128 December 1989 Ohio Plant Disease Index The Ohio State University Ohio Agricultural Research and Development Center Wooster, Ohio This page intentionally blank. Special Circular 128 December 1989 Ohio Plant Disease Index C. Wayne Ellett Department of Plant Pathology The Ohio State University Columbus, Ohio T · H · E OHIO ISJATE ! UNIVERSITY OARilL Kirklyn M. Kerr Director The Ohio State University Ohio Agricultural Research and Development Center Wooster, Ohio All publications of the Ohio Agricultural Research and Development Center are available to all potential dientele on a nondiscriminatory basis without regard to race, color, creed, religion, sexual orientation, national origin, sex, age, handicap, or Vietnam-era veteran status. 12-89-750 This page intentionally blank. Foreword The Ohio Plant Disease Index is the first step in develop Prof. Ellett has had considerable experience in the ing an authoritative and comprehensive compilation of plant diagnosis of Ohio plant diseases, and his scholarly approach diseases known to occur in the state of Ohia Prof. C. Wayne in preparing the index received the acclaim and support .of Ellett had worked diligently on the preparation of the first the plant pathology faculty at The Ohio State University. edition of the Ohio Plant Disease Index since his retirement This first edition stands as a remarkable ad substantial con as Professor Emeritus in 1981. The magnitude of the task tribution by Prof. Ellett. The index will serve us well as the is illustrated by the cataloguing of more than 3,600 entries complete reference for Ohio for many years to come. of recorded diseases on approximately 1,230 host or plant species in 124 families. -
Caryophyllaceae)
BIBL., INST. SYST. BOT., UPPSALA. Kapsel: Nordic Journal of Botany Nummer: Correction - By mistake, a draft version of this paper was published in Nord. J. Bot. 20: 513-518. The correct version is published here. A revised generic classification ofthe tribe Sileneae (Caryophyllaceae) B. Oxelman, M. Lidén, R. K. Rabeler and M. Popp Oxelman, B, Lidén, M., Rabeler, R. K. &. Popp, M. 2001. A revised generic classification of the tribe Sileneae (Caryophyllaceae) - Nord. J. Bot. 20: 743-748. Copenhagen. ISSN-0105-055X. A reclassification of the tribe Sileneae compatible with molecular data is presented. The genus Eudianthe (E. laeta and E. coeli-rosa) is restored. Viscaria, Ixoca (heliosperma), and Atocion together form a well supported monophyletic group distinct from Silene and Lychnis, and are recognized at generic level. With Agrostemma and Petrocoptis, the number of genera in the tribe sums up to eight. The new combinations Silene samojedora, Silene ajanensis, Lychnis abyssinica, Atocion asterias, Atocion compacta, Atocion lerchenfeldiana, and Atocion rupestris are made. B. Oxelman, Evolutionsbiologlskt Centrum (EBC), Uppsala Universitet, Norbyvägen 18D, SE-752 36 Uppsala, Sweden. E-mail: [email protected]. - M. Lidén,, Botaniska trädgården, Uppsala universitet, Villavägen 6, SE-752 36 Uppsala, Sweden. E-mail: [email protected]. - R. K. Rabeler, University of Michigan Herbarium, 1205 North University Ave., Ann Arbor MI 48109-1057 USA. E-mail: [email protected]. - M. Popp, Evolutionsbiologlskt Centrum (EBC), Uppsala Universitet, Norbyvägen 18D, SE-752 36 Uppsala, Sweden. E-mail: magnus. popp@ebc. uu.se. Introduction Apocynaceae (Sennblad & Bremer 1996). Careful analyses of molecular and/or morphological data have With the recent advances in biotechnology, in particular in all these eases revealed that at least one other taxon, the rapid development of the polymerase chain reaetion traditionally recognized at the same rank, is actually an (PCR) and DNA sequencing, our understanding of the ingroup in the respective taxon (i.e. -
Ruderals and Weeds in Godby, Åland Islands, SW Finland
Memoranda Soc. Soc. Fauna Fauna Flora Flora Fennica Fennica 91, 91: 2015 21–32. • Hæggström 2015 & Hæggström 21 Ruderals and weeds in Godby, Åland Islands, SW Finland Carl-Adam Hæggström & Eeva Hæggström Carl-Adam Hæggström, Finnish Museum of Natural History, Botanical Museum, P. O. Box 7, FI- 00014 University of Helsinki, Finland. E-mail: [email protected] Eeva Hæggström, Tornfalksvägen 2/26, FI-02620 Esbo, Finland. E-mail: eeva.haeggstrom@ kolumbus.fi The Åland Islands in SW Finland are known for their luxuriant vegetation with numerous calci- philic vascular plants. Ruderal plants are rather few compared to the adjoining regions of Finland and Sweden. However, new ruderal plants are occasionally found in Åland. We came across a ruderal site in the centre of the village of Godby, municipality of Finström, in 2002. Most of the organic topsoil had been removed and several rare ruderal species grew then on the open ruderal site. The site became more closed, resembling a meadow rather than a ruderal ground already in 2006 and later the vegetation developed into a tall and rough grown meadow with some shrubs and young trees. The following ruderal plants are treated more in detail: Agrostemma githago, Anthemis tinctoria, Centaurea cyanus, Cichorium intybus, Dianthus deltoides (cultivar), Echium vulgare, Holcus lanatus, Leontodon hispidus, Lotus corniculatus var. sativus, Papaver dubium subsp. dubium, P. rhoeas, Phleum phleoides, Rumex thyrsiflorus, Senecio jacobaea, Thymus pule- gioides, Trifolium dubium and Vicia tenuifolia. Besides some trees and shrubs, 133 vascular plant taxa, most of them common in the Åland Islands, were observed growing in the ruderal site during the period 2002–2015. -
The Naturalized Vascular Plants of Western Australia 1
12 Plant Protection Quarterly Vol.19(1) 2004 Distribution in IBRA Regions Western Australia is divided into 26 The naturalized vascular plants of Western Australia natural regions (Figure 1) that are used for 1: Checklist, environmental weeds and distribution in bioregional planning. Weeds are unevenly distributed in these regions, generally IBRA regions those with the greatest amount of land disturbance and population have the high- Greg Keighery and Vanda Longman, Department of Conservation and Land est number of weeds (Table 4). For exam- Management, WA Wildlife Research Centre, PO Box 51, Wanneroo, Western ple in the tropical Kimberley, VB, which Australia 6946, Australia. contains the Ord irrigation area, the major cropping area, has the greatest number of weeds. However, the ‘weediest regions’ are the Swan Coastal Plain (801) and the Abstract naturalized, but are no longer considered adjacent Jarrah Forest (705) which contain There are 1233 naturalized vascular plant naturalized and those taxa recorded as the capital Perth, several other large towns taxa recorded for Western Australia, com- garden escapes. and most of the intensive horticulture of posed of 12 Ferns, 15 Gymnosperms, 345 A second paper will rank the impor- the State. Monocotyledons and 861 Dicotyledons. tance of environmental weeds in each Most of the desert has low numbers of Of these, 677 taxa (55%) are environmen- IBRA region. weeds, ranging from five recorded for the tal weeds, recorded from natural bush- Gibson Desert to 135 for the Carnarvon land areas. Another 94 taxa are listed as Results (containing the horticultural centre of semi-naturalized garden escapes. Most Total naturalized flora Carnarvon). -
Fungi Occurring on Waterhyacinth
J. Aquat. Plant Manage. 50: 25-32 Fungi occurring on waterhyacinth (Eichhornia crassipes [Martius] Solms-Laubach) in Niger River in Mali and their evaluation as mycoherbicides KARIM DAGNO, RACHID LAHLALI, MAMOUROU DIOURTÉ, AND M. HAÏSSAM JIJAKLI1 ABSTRACT enabling the breeding of mosquitoes, bilharzias, and other human parasites (Adebayo and Uyi 2010). Water quality is We recovered 116 fungal isolates in 7 genera from water- affected as well, by the increasing accumulation of detritus hyacinth plants having pronounced blight symptoms col- in the water (Morsy 2004). Fishing can be affected because lected in Mali. Isolation frequency of the genera was Cur- of the competitive advantage given to trash fish species in vularia (60.32%), Fusarium (42.92%), Alternaria (11.6%), weed-infested waters. In many instances, fish are killed when Coniothyrium (11.6%), Phoma (3.48%), Stemphylium (3.48%), oxygen levels are depleted through plant respiration and de- and Cadophora (1.16%). On the basis of in vivo pathogenicity composition of senescent vegetation. The waterhyacinth in- tests in which the diseased leaf area percentage and disease festation is particularly severe in the Delta of Niger and in all severity were visually estimated using a disease severity index, irrigation systems of the Office of Niger (ON) according to three isolates, Fusarium sp. Mln799, Cadophora sp. Mln715, Dembélé (1994). Several billion dollars are spent each year and Alternaria sp. Mlb684 caused severe disease. These were by the Office du Niger and Energie du Mali to control this later identified asGibberella sacchari Summerell & J.F. Leslie, weed in the Niger River (Dagno et al. -
From Cacti to Carnivores: Improved Phylotranscriptomic Sampling And
Article Type: Special Issue Article RESEARCH ARTICLE INVITED SPECIAL ARTICLE For the Special Issue: Using and Navigating the Plant Tree of Life Short Title: Walker et al.—Phylotranscriptomic analysis of Caryophyllales From cacti to carnivores: Improved phylotranscriptomic sampling and hierarchical homology inference provide further insight into the evolution of Caryophyllales Joseph F. Walker1,13, Ya Yang2, Tao Feng3, Alfonso Timoneda3, Jessica Mikenas4,5, Vera Hutchison4, Caroline Edwards4, Ning Wang1, Sonia Ahluwalia1, Julia Olivieri4,6, Nathanael Walker-Hale7, Lucas C. Majure8, Raúl Puente8, Gudrun Kadereit9,10, Maximilian Lauterbach9,10, Urs Eggli11, Hilda Flores-Olvera12, Helga Ochoterena12, Samuel F. Brockington3, Michael J. Moore,4 and Stephen A. Smith1,13 Manuscript received 13 October 2017; revision accepted 4 January 2018. 1 Department of Ecology & Evolutionary Biology, University of Michigan, 830 North University Avenue, Ann Arbor, MI 48109-1048 USA 2 Department of Plant and Microbial Biology, University of Minnesota-Twin Cities, 1445 Gortner Avenue, St. Paul, MN 55108 USA 3 Department of Plant Sciences, University of Cambridge, Cambridge CB2 3EA, UK 4 Department of Biology, Oberlin College, Science Center K111, 119 Woodland Street, Oberlin, OH 44074-1097 USA 5 Current address: USGS Canyonlands Research Station, Southwest Biological Science Center, 2290 S West Resource Blvd, Moab, UT 84532 USA 6 Institute of Computational and Mathematical Engineering (ICME), Stanford University, 475 Author Manuscript Via Ortega, Suite B060, Stanford, CA, 94305-4042 USA This is the author manuscript accepted for publication and has undergone full peer review but has not been through the copyediting, typesetting, pagination and proofreading process, which may lead to differences between this version and the Version of Record. -
Plant Biodiversity Enhances Bees and Other Insect Pollinators in Agroecosystems
Plant biodiversity enhances bees and other insect pollinators in agroecosystems. A review Clara I. Nicholls & Miguel A. Altieri Agronomy for Sustainable Development Official journal of the Institut National de la Recherche Agronomique (INRA) ISSN 1774-0746 Agron. Sustain. Dev. DOI 10.1007/s13593-012-0092-y 1 23 Your article is protected by copyright and all rights are held exclusively by INRA and Springer-Verlag, France. This e-offprint is for personal use only and shall not be self- archived in electronic repositories. If you wish to self-archive your work, please use the accepted author’s version for posting to your own website or your institution’s repository. You may further deposit the accepted author’s version on a funder’s repository at a funder’s request, provided it is not made publicly available until 12 months after publication. 1 23 Author's personal copy Agron. Sustain. Dev. DOI 10.1007/s13593-012-0092-y REVIEW ARTICLE Plant biodiversity enhances bees and other insect pollinators in agroecosystems. A review Clara I. Nicholls & Miguel A. Altieri Accepted: 25 March 2012 # INRA and Springer-Verlag, France 2012 Abstract Thirty-five percent of global production from crops specific cropping systems. (3) More research is warranted to including at least 800 cultivated plants depend on animal advance knowledge on identifying beneficial weed species pollination. The transformation of agriculture in the past and ways to sponsor them to attract pollinators while not half-century has triggered a decline in bees and other insect reducing yields through interference. (4) In areas of intensive pollinators. In North America, losses of bee colonies have farming, field margins, field edges and paths, headlands, accelerated since 2004, leaving the continent with fewer man- fence-lines, rights of way, and nearby uncultivated patches aged pollinators than at any time in the past 50 years.