Plant Inventory No. 139
Total Page:16
File Type:pdf, Size:1020Kb
Load more
Recommended publications
-
Pinturas Antiincrustantes Derivadas De Plantas Terrestres: Una Solución Segura Para El Ambiente En El Control De La Bioincrustación
ISSN 1688-6593 INNOTEC 2021, No. 22 (e559) https://doi.org/10.26461/22.01 REVISTA DEL LABORATORIO TECNOLÓGICO DEL URUGUAY Revisiones Pinturas antiincrustantes derivadas de plantas terrestres: una solución segura para el ambiente en el control de la bioincrustación Antifouling paints derived from terrestrial plants: a safe solution for the environment in the control of biofouling Tintas anti-incrustantes derivadas de plantas terrestres: uma solução segura para o meio ambiente no controle da bioincrustação Vanessa Ochi Agostini 1,* https://orcid.org/0000-0002-8325-254X Grasiela Lopes Leães Pinho1 https://orcid.org/0000-0001-7951-0334 Erik Muxagata2 http://orcid.org/0000-0002-4210-5252 Alexandre José Macedo3 https://orcid.org/0000-0002-8951-4029 Fabiana Rey Bentos4 https://orcid.org/0000-0001-5931-5902 Lucía Boccardi4 https://orcid.org/0000-0002-5391-2308 María Jesús Dabezies5 https://orcid.org/0000-0001-9909-3427 Ernesto Brugnoli6 https://orcid.org/0000-0001-7304-1856 *Autor de contacto: [email protected] 1 Laboratório de Microcontaminantes Orgânicos e Ecotoxicologia Aquática – Programa de Pós-Graduação em Oceanologia – Instituto de Oceanografia – Universidade Federal do Rio Grande, Rio Grande do Sul, Brasil 2 Laboratório de Zooplâncton – Programa de Pós-Graduação em Oceanografia Biológica – Instituto de Oceanografia – Universidade Federal do Rio Grande, Rio Grande do Sul, Brasil 3 Laboratório de Biofilmes e Diversidade Bacteriana – Centro de Biotecnologia – Universidade Federal do Rio Grande do Sul, Rio Grande do Sul, Brasil 4 Latitud–Fundación LATU, Montevideo, Uruguay 5 Laboratorio Tecnológico del Uruguay (LATU), Montevideo, Uruguay 6 Oceanografía y Ecología Marina, Facultad de Ciencias, Universidad de la República, Montevideo, Uruguay Recepción: 14 Agosto 2020 Aprobación: 15 Enero 2021 Esta obra está bajo una Licencia Creative Commons Atribución-NoComercial 4.0 Internacional. -
Boophone Disticha
Micropropagation and pharmacological evaluation of Boophone disticha Lee Cheesman Submitted in fulfilment of the academic requirements for the degree of Doctor of Philosophy Research Centre for Plant Growth and Development School of Life Sciences University of KwaZulu-Natal, Pietermaritzburg April 2013 COLLEGE OF AGRICULTURE, ENGINEERING AND SCIENCES DECLARATION 1 – PLAGIARISM I, LEE CHEESMAN Student Number: 203502173 declare that: 1. The research contained in this thesis, except where otherwise indicated, is my original research. 2. This thesis has not been submitted for any degree or examination at any other University. 3. This thesis does not contain other persons’ data, pictures, graphs or other information, unless specifically acknowledged as being sourced from other persons. 4. This thesis does not contain other persons’ writing, unless specifically acknowledged as being sourced from other researchers. Where other written sources have been quoted, then: a. Their words have been re-written but the general information attributed to them has been referenced. b. Where their exact words have been used, then their writing has been placed in italics and inside quotation marks, and referenced. 5. This thesis does not contain text, graphics or tables copied and pasted from the internet, unless specifically acknowledged, and the source being detailed in the thesis and in the reference section. Signed at………………………………....on the.....….. day of ……......……….2013 ______________________________ SIGNATURE i STUDENT DECLARATION Micropropagation and pharmacological evaluation of Boophone disticha I, LEE CHEESMAN Student Number: 203502173 declare that: 1. The research reported in this dissertation, except where otherwise indicated is the result of my own endeavours in the Research Centre for Plant Growth and Development, School of Life Sciences, University of KwaZulu-Natal, Pietermaritzburg. -
Osher Lifelong Learning Institute
USDA-ARS National Plant Germplasm System Conservation of Fruit & Nut Genetic Resources Joseph Postman Plant Pathologist & Curator National Clonal Germplasm Repository Corvallis, Oregon May 2010 Mission: Collect – Preserve Evaluate – Enhance - Distribute World Diversity of Plant Genetic Resources for Improving the Quality and Production of Economic Crops Important to U.S. and World Agriculture Apple Accessions at Geneva Malus angustifolia ( 59 Accessions) Malus sikkimensis ( 14 Accessions) Malus baccata ( 67 Accessions) Malus sp. ( 41 Accessions) Malus bhutanica ( 117 Accessions) Malus spectabilis ( 9 Accessions) Malus brevipes ( 2 Accessions) Malus sylvestris ( 70 Accessions) Malus coronaria ( 98 Accessions) Malus toringo ( 122 Accessions) Malus domestica ( 1,389 Accessions) Malus transitoria ( 63 Accessions) Malus doumeri ( 2 Accessions) Malus trilobata ( 2 Accessions) Malus florentina ( 4 Accessions) Malus tschonoskii ( 3 Accessions) Malus floribunda ( 12 Accessions) Malus x adstringens ( 2 Accessions) Malus fusca ( 147 Accessions) Malus x arnoldiana ( 2 Accessions) Malus halliana ( 15 Accessions) Malus x asiatica ( 20 Accessions) Malus honanensis ( 4 Accessions) Malus x astracanica ( 1 Accessions) Malus hupehensis ( 185 Accessions) Malus x atrosanguinea ( 2 Accessions) Malus hybrid ( 337 Accessions) Malus x dawsoniana ( 2 Accessions) Malus ioensis ( 72 Accessions) Malus x hartwigii ( 5 Accessions) Malus kansuensis ( 45 Accessions) Malus x magdeburgensis ( 2 Accessions) Malus komarovii ( 1 Accessions) Malus x micromalus ( 25 Accessions) -
Eucalyptus Rubida Subsp. Rubida
Plants of South Eastern New South Wales Flower buds on leafy stem. Australian Plant Image Index, photographer Peter Ormay, Canberra, ACT Juvenile leaves. Australian Plant Image Index, photographer Peter Ormay, Canberra, ACT Line drawings. e. juvenile (right) and adult (left) Tree. Photographer Jackie Miles leaves; buds and gumnuts. KR Thiele, Australian National Herbarium, © 2021 Royal Botanic Gardens Board, Melbourne, Vic Common name Candlebark, Ribbon gum, White gum Family Myrtaceae Where found Dry forest, woodland, and grassy areas, usually on cold flats. Western Slopes, Kosciuszko National Park, the mountains to the north, ACT, and tablelands. Occasionally in the ranges. Notes Tree to 40 m tall. Bark smooth throughout or with some patches of rough, greyish bark at the base. Rough bark shortly fibrous, platy, at times shedding irregularly, grey to grey-black. Smooth bark shedding in long ribbons, with horizontal black scars, often powdery. Branchlets glaucous or non-glaucous. Juvenile stems rounded in cross section, glaucous. Juvenile leaves opposite each other for many pairs, stalkless, 2-6 cm long, 25-65 mm wide, glaucous. Adult leaves alternating up the stems, 6.8-17.5 cm long, 8-34 mm wide, glossy or dull, green, grey-green, or glaucous. Flowers white, with 0 petals. Flower clusters 3- or 7- flowered. Mature flower buds 4–9 mm long, caps as long as or shorter than the base. Flowers Spring-Autumn. Gumnuts 4-8 mm in diameter. Gumnuts that have dropped their seed have protruding valves or valves that are not very noticeable. Hybridises with Eucalyptus aggregata and Eucalyptus nortonii. May hybridise with Eucalyptus parvula. -
Volume 8. Issue 1. March 2008 ISSN: 1474-4635 Alsterworthia International
Haworthia ‘Baccata’ Cultivar Nova. ISI 1567 C o n t e n t s Haworthia ‘Baccata’ Gordon Rowley. Cultivar Nova. ................................................................................. Front cover, 6 The incredible Mucute Mountain. Pedro Capela .......................................................................................................... 2-5 The Sedum Society ............................................................................................................................................................. 6 Haworthias in cultivation - Conserving names of cultivars. G.D. Rowley ....................................................... 7-12, 17-19 Seed list & DVD ......................................................................................................................................................... 13-16 Perplexities at Tradouw Pass. Russell Scott. ................................................................................................................ 20-23 More trenchant botany. M B Bayer ................................................................................................................................... 21 Aloe mossurilensis Ellert sp.nov. A long-overlooked species from northern Moçambique. ........................................ 24-28 Volume 8. Issue 1. March 2008 ISSN: 1474-4635 Alsterworthia International. Vol. 8. Issue 1. 1 THE INCREDIBLE MUCUTE MOUNTAIN Pedro Capela [email protected] Fig. 1. Two high peaks in the Mucute range. To find Aloe canelli, please try the -
Scaevola Taccada (Gaertn.) Roxb
BioInvasions Records (2021) Volume 10, Issue 2: 425–435 CORRECTED PROOF Rapid Communication First record of naturalization of Scaevola taccada (Gaertn.) Roxb. (Goodeniaceae) in southeastern Mexico Gonzalo Castillo-Campos1,*, José G. García-Franco2 and M. Luisa Martínez2 1Red de Biodiversidad y Sistemática, Instituto de Ecología, A.C., Xalapa, Veracruz, 91073, México 2Red de Ecología Funcional, Instituto de Ecología, A.C. Xalapa, Veracruz, 91073, México Author e-mails: [email protected] (GCC), [email protected] (JGGF), [email protected] (MLM) *Corresponding author Citation: Castillo-Campos G, García- Franco JG, Martínez ML (2021) First Abstract record of naturalization of Scaevola taccada (Gaertn.) Roxb. (Goodeniaceae) Scaevola taccada (Gaertn.) Roxb. is native of Asia and eastern Africa but has been in southeastern Mexico. BioInvasions introduced into the Americas as an ornamental urban plant. This paper reports, for Records 10(2): 425–435, https://doi.org/10. the first time, the presence of Scaevola taccada in natural environments from 3391/bir.2021.10.2.21 southeastern Mexico. Several populations of S. taccada were identified during a Received: 23 July 2020 botanical survey of the coastal dunes of the Cozumel Island Biosphere Reserve Accepted: 22 October 2020 (State of Quintana Roo, Mexico) aimed at recording the most common plant Published: 22 January 2021 species. Scaevola taccada is considered as an invasive species of coastal areas in this region. Evidence of its invasiveness is suggested by the fact that populations Handling editor: Oliver Pescott consisting of individuals of different size classes are found distributed throughout Thematic editor: Stelios Katsanevakis the island. Furthermore, they appear to belong to different generations since we Copyright: © Castillo-Campos et al. -
Repertorium Plantarum Succulentarum LIV (2003) Repertorium Plantarum Succulentarum LIV (2003)
ISSN 0486-4271 IOS Repertorium Plantarum Succulentarum LIV (2003) Repertorium Plantarum Succulentarum LIV (2003) Index nominum novarum plantarum succulentarum anno MMIII editorum nec non bibliographia taxonomica ab U. Eggli et D. C. Zappi compositus. International Organization for Succulent Plant Study Internationale Organisation für Sukkulentenforschung December 2004 ISSN 0486-4271 Conventions used in Repertorium Plantarum Succulentarum — Repertorium Plantarum Succulentarum attempts to list, under separate headings, newly published names of succulent plants and relevant literature on the systematics of these plants, on an annual basis. New names noted after the issue for the relevant year has gone to press are included in later issues. Specialist periodical literature is scanned in full (as available at the libraries at ZSS and Z or received by the compilers). Also included is information supplied to the compilers direct. It is urgently requested that any reprints of papers not published in readily available botanical literature be sent to the compilers. — Validly published names are given in bold face type, accompanied by an indication of the nomenclatu- ral type (name or specimen dependent on rank), followed by the herbarium acronyms of the herbaria where the holotype and possible isotypes are said to be deposited (first acronym for holotype), accord- ing to Index Herbariorum, ed. 8 and supplements as published in Taxon. Invalid, illegitimate, or incor- rect names are given in italic type face. In either case a full bibliographic reference is given. For new combinations, the basionym is also listed. For invalid, illegitimate or incorrect names, the articles of the ICBN which have been contravened are indicated in brackets (note that the numbering of some regularly cited articles has changed in the Tokyo (1994) edition of ICBN). -
333»/..\$Z?.33.33.333/3.33\..3.3
.. ._.\_3.mv \. .. 3.33.333.... z . 3 ...3../.3.H.”\ . x3 2.3”. ..3.....33......3.\../..3.\3\3....3 . .. .. 3 .. .3\.".3.3ash/32.3.... .. .. .. 33.3 . .... .. 33 . n. 3.5.33.3 .3.. 3343333333“. 3.4333433 . 53.13.3333 .33bx.\k.3.0... 933/34.3n..393./.33.3K\z3.../H333..3:... 3 . .3\.33 . : . ...3 . 3. 333333.33... $3333.33 .H . 3 .. .. n. .. .mwm.umzz...3\ . .. .. .. .. .. .. .. .. .3. 3333.33.33. .. 333333 .. 33/3.\...3.3.3.3..."33......3333."33.3... .. 33 . 3. .3....3 3. .?.V...... u ...... .. .23\.\/..3...3 . 33.3.3.3)...333... n. ..3....33..33.333.33g . .. 39333. n . 3.3.33.3...333w3333 : . .. .. 3 . 33.33.33... "53.33.33.331. .. .. n. .. 33.3”..3 . 333? . ”:33?H3......\\. .. kr333 . .. .....3 . 3x..\...z.3/s3.u... .... .3.. 3.33%.}. ./3 .. {... .3.35.733.3333‘33...3.333.. 3V.. u . .. ....333333.3.33.3. .. ..n 3.33%.33 . .. 3 . Nam. EXRVV. .. 3... .33.... M. .. 3.3.3.33 . .3/3. .3 3 . 3.\..3 . \.. 33.......3.. /.. .... 3.3 3x . 3.....3./.\\\...32.....\..... 3.3.3333. 3V\3umz33.<...3..33....\s..3..333...33¢.h\.." . .33....3WW33 .. 33 . 333»/..\$Z?.33.33.333/3.33\..3.3......3 . 3wvflmww/Wmm3mnykb . 33 . .u .. 33..3333.3.333.R3...33. 3.33333 . 3 $33 ...3/33.33.3333. 9.... .3“..v.3\333 . 33..\..33,3 .. \33.. n 3.2.33... ..3/.33....3..33.3..... 333 . 93.43.37. /zv\3 . \xh.333.33.3/m3 . .../333333...“..4. 3....3 . .n . .. .. ..3 . .. 2.3x.“ . -
Astavarga Plants- Threatened Medicinal Herbs of the North-West Himalaya
See discussions, stats, and author profiles for this publication at: https://www.researchgate.net/publication/312533047 Astavarga plants- threatened medicinal herbs of the North-West Himalaya Article · January 2012 CITATIONS READS 39 714 8 authors, including: Anupam Srivastava Rajesh Kumar Mishra Patanjali Research Institute Patanjali Bhartiya Ayurvigyan evum Anusandhan Sansthan 16 PUBLICATIONS 40 CITATIONS 43 PUBLICATIONS 84 CITATIONS SEE PROFILE SEE PROFILE Rajiv K. Vashistha Dr Ajay Singh Hemwati Nandan Bahuguna Garhwal University Patanjali Bhartiya Ayurvigyan Evam Anusandhan Sansthan Haridwar 34 PUBLICATIONS 216 CITATIONS 5 PUBLICATIONS 79 CITATIONS SEE PROFILE SEE PROFILE Some of the authors of this publication are also working on these related projects: ANTI FUNGAL ACTIVITY OF GANDHAK DRUTI AND GANDHAKADYA MALAHAR View project Invivo study of Roscoea purpurea View project All content following this page was uploaded by Rajesh Kumar Mishra on 10 September 2019. The user has requested enhancement of the downloaded file. Int. J. Med. Arom. Plants, ISSN 2249 – 4340 REVIEW ARTICLE Vol. 2, No. 4, pp. 661-676, December 2012 Astavarga plants – threatened medicinal herbs of the North-West Himalaya Acharya BALKRISHNA, Anupam SRIVASTAVA, Rajesh K. MISHRA, Shambhu P. PATEL, Rajiv K. VASHISTHA*, Ajay SINGH, Vikas JADON, Parul SAXENA Patanjali Ayurveda Research and Development Department, Patanjali Yogpeeth, Maharishi Dayanand Gram, Near Bahadrabad, Haridwar- 249405, Uttarakhand, India Article History: Received 24th September 2012, Revised 20th November 2012, Accepted 21st November 2012. Abstract: Astavarga eight medicinal plants viz., Kakoli (Roscoea purpurea Smith), Kshirkakoli (Lilium polyphyllum D. Don), Jeevak (Crepidium acuminatum (D. Don) Szlach), Rishbhak (Malaxis muscifera (Lindl.) Kuntze), Meda (Polygonatum verticillatum (Linn.) Allioni), Mahameda (P. -
Index Seminum Et Sporarum Quae Hortus Botanicus Universitatis Biarmiensis Pro Mutua Commutatione Offert
INDEX SEMINUM ET SPORARUM QUAE HORTUS BOTANICUS UNIVERSITATIS BIARMIENSIS PRO MUTUA COMMUTATIONE OFFERT Salix recurvigemmata A.K. Skvortsov f. variegata Schumikh., O.E. Epanch. & I.V. Belyaeva Biarmiae 2020 Federal State Autonomous Educational Institution of Higher Education «Perm State National Research University», A.G. Genkel Botanical Garden ______________________________________________________________________________________ СПИСОК СЕМЯН И СПОР, ПРЕДЛАГАЕМЫХ ДЛЯ ОБМЕНА БОТАНИЧЕСКИМ САДОМ ИМЕНИ А.Г. ГЕНКЕЛЯ ПЕРМСКОГО ГОСУДАРСТВЕННОГО НАЦИОНАЛЬНОГО ИССЛЕДОВАТЕЛЬСКОГО УНИВЕРСИТЕТА Syringa vulgaris L. ‘Красавица Москвы’ Пермь 2020 Index Seminum 2020 2 Federal State Autonomous Educational Institution of Higher Education «Perm State National Research University», A.G. Genkel Botanical Garden ______________________________________________________________________________________ Дорогие коллеги! Ботанический сад Пермского государственного национального исследовательского университета был создан в 1922 г. по инициативе и под руководством проф. А.Г. Генкеля. Здесь работали известные ученые – ботаники Д.А. Сабинин, В.И. Баранов, Е.А. Павский, внесшие своими исследованиями большой вклад в развитие биологических наук на Урале. В настоящее время Ботанический сад имени А.Г. Генкеля входит в состав регионального Совета ботанических садов Урала и Поволжья, Совет ботанических садов России, имеет статус научного учреждения и особо охраняемой природной территории. Основными научными направлениями работы являются: интродукция и акклиматизация растений, -
2. ACER Linnaeus, Sp. Pl. 2: 1054. 1753. 枫属 Feng Shu Trees Or Shrubs
Fl. China 11: 516–553. 2008. 2. ACER Linnaeus, Sp. Pl. 2: 1054. 1753. 枫属 feng shu Trees or shrubs. Leaves mostly simple and palmately lobed or at least palmately veined, in a few species pinnately veined and entire or toothed, or pinnately or palmately 3–5-foliolate. Inflorescence corymbiform or umbelliform, sometimes racemose or large paniculate. Sepals (4 or)5, rarely 6. Petals (4 or)5, rarely 6, seldom absent. Stamens (4 or 5 or)8(or 10 or 12); filaments distinct. Carpels 2; ovules (1 or)2 per locule. Fruit a winged schizocarp, commonly a double samara, usually 1-seeded; embryo oily or starchy, radicle elongate, cotyledons 2, green, flat or plicate; endosperm absent. 2n = 26. About 129 species: widespread in both temperate and tropical regions of N Africa, Asia, Europe, and Central and North America; 99 species (61 endemic, three introduced) in China. Acer lanceolatum Molliard (Bull. Soc. Bot. France 50: 134. 1903), described from Guangxi, is an uncertain species and is therefore not accepted here. The type specimen, in Berlin (B), has been destroyed. Up to now, no additional specimens have been found that could help clarify the application of this name. Worldwide, Japanese maples are famous for their autumn color, and there are over 400 cultivars. Also, many Chinese maple trees have beautiful autumn colors and have been cultivated widely in Chinese gardens, such as Acer buergerianum, A. davidii, A. duplicatoserratum, A. griseum, A. pictum, A. tataricum subsp. ginnala, A. triflorum, A. truncatum, and A. wilsonii. In winter, the snake-bark maples (A. davidii and its relatives) and paper-bark maple (A. -
Feed Value of Native Forages of the Tibetan Plateau of China R.J
http://www.paper.edu.cn Animal Feed Science and Technology 80 (1999) 101±113 Feed value of native forages of the Tibetan Plateau of China R.J. Longa, S.O. Aporib, F.B. Castroc,*, E.R. érskovc aThe Royal Society Fellowship Grant, Gansu Agricultural University, Lanzhou, China bCommonwealth Fellowship Grant, University of Cape Coast, Cape Coast, Ghana cRowett Research Institute, Bucksburn, Aberdeen, AB21 9SB, UK Received 25 August 1998; received in revised form 2 March 1999; accepted 29 March 1999 Abstract The nutritive value of 22 native forages consisting of sedge, grass, forb and shrub species harvested in August, September and October from the Tibetan Plateau of China was assessed by using chemical, in sacco degradability and in vitro gas production analyses. Generally, data from the study showed that metabolizable energy value (ME) as estimated by in vitro gas production and chemical composition data decreased with maturity. Forb forages had the highest ME value (9.18 MJ/kg) and grasses the lowest (8.74 MJ/kg). ME value of grasses showed a sharp decrease from August to September, then it remained constant. Other forages showed a linear decrease of ME value with maturity. The relative decrease in the content of nitrogen available for microbial degradation (degradable N g/kg DOM) with maturity was similar for sedge, grass and forb species. Grazing of sedges and forbs in mixed communities of grasses may be important for supplying extra nitrogen for microbial fermentation and increasing efficiency of utilisation of grasses. Data from in vitro gas production completed in presence of polyethylene-glycol 4000 (PEG), a phenolic-related binding agent, showed that some species of sedges, forbs and shrub might contain large amounts of inhibitory compounds to rumen microbes.