Medicinal Plant Trade in Maputo WP
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Medicinal Plant Trade in Maputo WP
Medicinal plant markets and trade in Maputo, Mozambique Krog, Mogens Pedersen; Falcâo, Mario P.; Olsen, Carsten Smith Publication date: 2006 Document version Publisher's PDF, also known as Version of record Citation for published version (APA): Krog, M. P., Falcâo, M. P., & Olsen, C. S. (2006). Medicinal plant markets and trade in Maputo, Mozambique. Christian Ejlers. http://www.SL.kvl.dk Download date: 01. okt.. 2021 Working Papers No. 16-2006 Medicinal plant markets and trade in Development & Environment Maputo, Mozambique Mogens Krog, Mario P. Falcão and Carsten Smith Olsen Title Medicinal plant markets and trade in Maputo, Mozambique Authors Mogens Krog, Mario P. Falcão and Carsten Smith Olsen Publisher Danish Centre for Forest, Landscape and Planning • KVL Hørsholm Kongevej 11 DK-2970 Hørsholm Tel. +45 3528 1500 Email [email protected] Series-title and no. Forest & Landscape Working Papers no. 16-2006 published on www.SL.kvl.dk ISBN ISBN 10: 87-7903-279-6 ISBN 13: 978 87-7903-279-6 DTP Melita Jørgensen Citation Krog, M., M.P. Falcão and C.S. Olsen (2006): Medicinal plant markets and trade in Maputo, Mozam- bique. Forest & Landscape Working Papers no. 16-2006. Danish Centre for Forest, Landscape and Planning, KVL., Denmark Citation allowed with clear source indication Written permission is required if you wish to use Forest & Landscape’s name and/or any part of this report for sales and advertising purposes. Forest & Landscape is an independent centre for research, education, and extension concerning forest, landscape and planning under the Royal Veterinary and Agricultural University (KVL) Preface The Faculty of Agronomy and Forestry Engineering (FAFE) at the Eduardo Mondlane University (EMU) in Maputo and the Danish Centre for Forest, Landscape and Planning at the Royal Veterinary and Agricultural University (KVL) in Copenhagen have jointly developed and implemented the project “Forests, livelihoods and farmers: increasing smallholder farmers’ possibilities to use forest and trees in improving rural livelihood and poverty alleviation” (FORLIFE). -
Illustration Sources
APPENDIX ONE ILLUSTRATION SOURCES REF. CODE ABR Abrams, L. 1923–1960. Illustrated flora of the Pacific states. Stanford University Press, Stanford, CA. ADD Addisonia. 1916–1964. New York Botanical Garden, New York. Reprinted with permission from Addisonia, vol. 18, plate 579, Copyright © 1933, The New York Botanical Garden. ANDAnderson, E. and Woodson, R.E. 1935. The species of Tradescantia indigenous to the United States. Arnold Arboretum of Harvard University, Cambridge, MA. Reprinted with permission of the Arnold Arboretum of Harvard University. ANN Hollingworth A. 2005. Original illustrations. Published herein by the Botanical Research Institute of Texas, Fort Worth. Artist: Anne Hollingworth. ANO Anonymous. 1821. Medical botany. E. Cox and Sons, London. ARM Annual Rep. Missouri Bot. Gard. 1889–1912. Missouri Botanical Garden, St. Louis. BA1 Bailey, L.H. 1914–1917. The standard cyclopedia of horticulture. The Macmillan Company, New York. BA2 Bailey, L.H. and Bailey, E.Z. 1976. Hortus third: A concise dictionary of plants cultivated in the United States and Canada. Revised and expanded by the staff of the Liberty Hyde Bailey Hortorium. Cornell University. Macmillan Publishing Company, New York. Reprinted with permission from William Crepet and the L.H. Bailey Hortorium. Cornell University. BA3 Bailey, L.H. 1900–1902. Cyclopedia of American horticulture. Macmillan Publishing Company, New York. BB2 Britton, N.L. and Brown, A. 1913. An illustrated flora of the northern United States, Canada and the British posses- sions. Charles Scribner’s Sons, New York. BEA Beal, E.O. and Thieret, J.W. 1986. Aquatic and wetland plants of Kentucky. Kentucky Nature Preserves Commission, Frankfort. Reprinted with permission of Kentucky State Nature Preserves Commission. -
Using the Checklist N W C
Using the checklist • The arrangement of the checklist is alphabetical by family followed by genus, grouped under Pteridophyta, Gymnosperms, Monocotyledons and Dicotyledons. • All species and synonyms are arranged alphabetically under genus. • Accepted names are in bold print while synonyms or previously-used names are in italics. • In the case of synonyms, the currently used name follows the equals sign (=), and only refers to usage in Zimbabwe. • Distribution information is included under the current name. • The letters N, W, C, E, and S, following each listed taxon, indicate the known distribution of species within Zimbabwe as reflected by specimens in SRGH or cited in the literature. Where the distribution is unknown, we have inserted Distr.? after the taxon name. • All species known or suspected to be fully naturalised in Zimbabwe are included in the list. They are preceded by an asterisk (*). Species only known from planted or garden specimens were not included. Mozambique Zambia Kariba Mt. Darwin Lake Kariba N Victoria Falls Harare C Nyanga Mts. W Mutare Gweru E Bulawayo GREAT DYKEMasvingo Plumtree S Chimanimani Mts. Botswana N Beit Bridge South Africa The floristic regions of Zimbabwe: Central, East, North, South, West. A checklist of Zimbabwean vascular plants A checklist of Zimbabwean vascular plants edited by Anthony Mapaura & Jonathan Timberlake Southern African Botanical Diversity Network Report No. 33 • 2004 • Recommended citation format MAPAURA, A. & TIMBERLAKE, J. (eds). 2004. A checklist of Zimbabwean vascular plants. -
Ethnobotanical Survey in Canhane Village, District of Massingir
Ribeiro et al. Journal of Ethnobiology and Ethnomedicine 2010, 6:33 http://www.ethnobiomed.com/content/6/1/33 JOURNAL OF ETHNOBIOLOGY AND ETHNOMEDICINE RESEARCH Open Access Ethnobotanical survey in Canhane village, district of Massingir, Mozambique: medicinal plants and traditional knowledge Ana Ribeiro1*, Maria M Romeiras1, João Tavares1, Maria T Faria2 Abstract Background: Medicinal plants are used by 80% of people from developing countries to fulfill their primary health needs, occupying a key position on plant research and medicine. Taking into account that, besides their pharmaceutical importance, these plants contribute greatly to ecosystems’ stability, a continuous documentation and preservation of traditional knowledge is a priority. The objective of this study was to organize a database of medicinal plants including their applications and associated procedures in Canhane village, district of Massingir, province of Gaza, Mozambique. Methods: In order to gather information about indigenous medicinal plants and to maximize the collection of local knowledge, eleven informants were selected taking into account the dimension of the site and the fact that the vegetation presents a great homogeneity. The data were collected through intensive structured and semi- structured interviews performed during field research. Taxonomical identification of plant species was based on field observations and herbarium collections. Results: A total of 53 plant species have been reported, which were used to treat 50 different human health problems. More than half of the species were used for stomach and intestine related disturbances (including major diseases such as diarrhea and dysentery). Additionally, four species with therapeutic applications were reported for the first time, whose potential can further be exploited. -
Indigenous Plant Species Used by Bapedi Healers to Treat Sexually Transmitted Infections: Their Distribution, Harvesting, Conservation and Threats
South African Journal of Botany 87 (2013) 66–75 Contents lists available at SciVerse ScienceDirect South African Journal of Botany journal homepage: www.elsevier.com/locate/sajb Indigenous plant species used by Bapedi healers to treat sexually transmitted infections: Their distribution, harvesting, conservation and threats S.S. Semenya a,⁎, M.J. Potgieter a, L.J.C. Erasmus b a Department of Biodiversity, School of Molecular and Life Sciences, University of Limpopo, Private Bag X1106, Sovenga 0727, South Africa b Department of Physiology and Environmental Health, School of Molecular and Life Sciences, University of Limpopo, Private Bag X1106, Sovenga 0727, South Africa article info abstract Article history: An ethnobotanical survey on indigenous plant species used by Bapedi traditional healers to treat sexually Received 15 November 2012 transmitted infections was conducted in three districts of the Limpopo Province. Data was collected from 34 Received in revised form 11 February 2013 traditional healers via a semi-structured questionnaire, supplemented by field observations. Results showed Accepted 4 March 2013 that 37 species from 33 genera belonging to 24 families, mostly Asteraceae (10.8%), Asphodelaceae, Fabaceae Available online 16 April 2013 and Hyacinthaceae (8.1%, each) are used to treat STIs such as chlamydia, gonorrhoea, HIV/AIDS, syphilis and — Edited by J Van Staden other STIs (nta Bapedi terminology). The vast majority (90%) of these species were harvested from commu- nal lands. Entire plants (10.2%) and underground parts such as roots (61.5%), bulbs (10.2%) and tubers (7.6%) Keywords: were mostly harvested. All species recorded in this study appear on the South African National Red Data List. -
Plant Biodiversity Science, Discovery, and Conservation: Case Studies from Australasia and the Pacific
Plant Biodiversity Science, Discovery, and Conservation: Case Studies from Australasia and the Pacific Craig Costion School of Earth and Environmental Sciences Department of Ecology and Evolutionary Biology University of Adelaide Adelaide, SA 5005 Thesis by publication submitted for the degree of Doctor of Philosophy in Ecology and Evolutionary Biology July 2011 ABSTRACT This thesis advances plant biodiversity knowledge in three separate bioregions, Micronesia, the Queensland Wet Tropics, and South Australia. A systematic treatment of the endemic flora of Micronesia is presented for the first time thus advancing alpha taxonomy for the Micronesia-Polynesia biodiversity hotspot region. The recognized species boundaries are used in combination with all known botanical collections as a basis for assessing the degree of threat for the endemic plants of the Palau archipelago located at the western most edge of Micronesia’s Caroline Islands. A preliminary assessment is conducted utilizing the IUCN red list Criteria followed by a new proposed alternative methodology that enables a degree of threat to be established utilizing existing data. Historical records and archaeological evidence are reviewed to establish the minimum extent of deforestation on the islands of Palau since the arrival of humans. This enabled a quantification of population declines of the majority of plants endemic to the archipelago. In the state of South Australia, the importance of establishing concepts of endemism is emphasized even further. A thorough scientific assessment is presented on the state’s proposed biological corridor reserve network. The report highlights the exclusion from the reserve system of one of the state’s most important hotspots of plant endemism that is highly threatened from habitat fragmentation and promotes the use of biodiversity indices to guide conservation priorities in setting up reserve networks. -
Tshisikhawe Phd Submission
CHAPTER 9 REFERENCES ABENSPERG-TRAUN, M. 2009.CITES, sustainable use of wild species and incentive-driven conservation in developing countries, with an emphasis on southern Africa. Biological Conservation 142: 948-963. ACOCKS, J.P.H. 1953. Veld Types of South Africa. Memoirs of the Botanical Survey of South Africa 28: 1-192. ACOCKS, J.P.H. 1988. Veld Types of South Africa. 3rd edition. Memoirs of the Botanical survey of South Africa. No. 57. ANGASSA, A. AND OBA, G. 2010. Effects of grazing pressure, age of enclosures and seasonality on bush cover dynamics and vegetation composition in southern Ethiopia. Journal of Arid Environments 74: 111-120. ANTOCI, A., BORGHESI, S. AND RUSSU, P. 2005.Biodiversity and economic growth: Trade-offs between stabilization of the ecological system and preservation of natural dynamics. Ecological Modelling 189: 333-346. ARONSON, J., MILTON, S.J., BLIGNAUT, J.N. AND CLEWELL, A.F. 2006. Nature Conservation as if people mattered. Journal for Nature Conservation 14: 260-263. BEISINGER, S.R. AND MCCULLOUGH, D.R. 2002. Population viability analysis. The University of Chicago Press, Chicago, USA. BERGER, K., CRAFFORD, J.E., GAIGHER, I., GAIGHER, M.J., HAHN, N. AND MACDONALD, I. 2003. A first synthesis of the environmental, biological and 236 cultural assets of the Soutpansberg. Leach printers, Louis Trichardt, South Africa. BERLINER, D. 2005. Systematic conservation planning for the forest biome of South Africa. Approach, methods and results of the selection of priority forests for conservation action, Water and Forestry Support Programme, Department of Water Affairs and Forestry, Pretoria. BESSONG, P.O., OBI, C.L., ANDREOLA, M.L., ROJAS, L.B., POUSEGU, L., IGUMBOR, E., MEYER, J.J.M., QUIDEAU, S. -
Phylogenetic Distribution and Evolution of Mycorrhizas in Land Plants
Mycorrhiza (2006) 16: 299–363 DOI 10.1007/s00572-005-0033-6 REVIEW B. Wang . Y.-L. Qiu Phylogenetic distribution and evolution of mycorrhizas in land plants Received: 22 June 2005 / Accepted: 15 December 2005 / Published online: 6 May 2006 # Springer-Verlag 2006 Abstract A survey of 659 papers mostly published since plants (Pirozynski and Malloch 1975; Malloch et al. 1980; 1987 was conducted to compile a checklist of mycorrhizal Harley and Harley 1987; Trappe 1987; Selosse and Le Tacon occurrence among 3,617 species (263 families) of land 1998;Readetal.2000; Brundrett 2002). Since Nägeli first plants. A plant phylogeny was then used to map the my- described them in 1842 (see Koide and Mosse 2004), only a corrhizal information to examine evolutionary patterns. Sev- few major surveys have been conducted on their phyloge- eral findings from this survey enhance our understanding of netic distribution in various groups of land plants either by the roles of mycorrhizas in the origin and subsequent diver- retrieving information from literature or through direct ob- sification of land plants. First, 80 and 92% of surveyed land servation (Trappe 1987; Harley and Harley 1987;Newman plant species and families are mycorrhizal. Second, arbus- and Reddell 1987). Trappe (1987) gathered information on cular mycorrhiza (AM) is the predominant and ancestral type the presence and absence of mycorrhizas in 6,507 species of of mycorrhiza in land plants. Its occurrence in a vast majority angiosperms investigated in previous studies and mapped the of land plants and early-diverging lineages of liverworts phylogenetic distribution of mycorrhizas using the classifi- suggests that the origin of AM probably coincided with the cation system by Cronquist (1981). -
Contribuições Para O Conhecimento Da Flora Medicinal De Moçambique História, Ciências, Saúde - Manguinhos, Vol
Red de Revistas Científicas de América Latina, el Caribe, España y Portugal Sistema de Información Científica English version Conde, Patrícia; Figueira, Rui; Saraiva, Susana; Catarino, Luís; Romeiras, Maria; Duarte, Maria Cristina A Missão Botânica de Moçambique (1942-1948): contribuições para o conhecimento da flora medicinal de Moçambique História, Ciências, Saúde - Manguinhos, vol. 21, núm. 2, abril-junio, 2014, pp. 539-585 Fundação Oswaldo Cruz Rio de Janeiro, Brasil Available in: http://www.redalyc.org/articulo.oa?id=386134011009 História, Ciências, Saúde - Manguinhos, ISSN (Printed Version): 0104-5970 [email protected] Fundação Oswaldo Cruz Brasil How to cite Complete issue More information about this article Journal's homepage www.redalyc.org Non-Profit Academic Project, developed under the Open Acces Initiative The Botanic Mission to Mozambique (1942-1948) The Botanic Mission to Mozambique (1942-1948): contributions CONDE, Patrícia et al. The Botanic to knowledge of the Mission to Mozambique (1942-1948): contributions to the knowledge of medicinal flora of the medicinal flora of Mozambique. História, Ciências, Saúde – Manguinhos, Mozambique Rio de Janeiro, v.21, n.2, abr.-jun. 2014. Available at: http://www.scielo.br/hcsm. Abstract This article reviews the historical and scientific findings of the Botanic Patrícia Conde Mission to Mozambique (1942-1948) Researcher, Instituto de Investigação Científica Tropical (IICT). under the Tropical Botanic Garden of [email protected] the Instituto de Investigação Científica Tropical, in Lisbon, highlighting the Rui Figueira collectors’ field notes with the aim of Researcher, IICT; Centro de Investigação em identifying the traditional medicinal uses Biodiversidade e Recursos Genéticos (Cibio). of Mozambican flora. Having collated [email protected] information on 71 taxa (70 species and one genus), the medicinal usage of 34 Susana Saraiva species presumably not yet reported in Researcher, IICT. -
Savanna Fire and the Origins of the “Underground Forests” of Africa
SAVANNA FIRE AND THE ORIGINS OF THE “UNDERGROUND FORESTS” OF AFRICA Olivier Maurin1, *, T. Jonathan Davies1, 2, *, John E. Burrows3, 4, Barnabas H. Daru1, Kowiyou Yessoufou1, 5, A. Muthama Muasya6, Michelle van der Bank1 and William J. Bond6, 7 1African Centre for DNA Barcoding, Department of Botany & Plant Biotechnology, University of Johannesburg, PO Box 524 Auckland Park 2006, Johannesburg, Gauteng, South Africa; 2Department of Biology, McGill University, 1205 ave Docteur Penfield, Montreal, QC H3A 0G4, Quebec, Canada; 3Buffelskloof Herbarium, P.O. Box 710, Lydenburg, 1120, South Africa; 4Department of Plant Sciences, University of Pretoria, Private Bag X20 Hatfield 0028, Pretoria, South Africa; 5Department of Environmental Sciences, University of South Africa, Florida campus, Florida 1710, Gauteng, South Africa; 6Department of Biological Sciences and 7South African Environmental Observation Network, University of Cape Town, Rondebosch, 7701, Western Cape, South Africa *These authors contributed equally to the study Author for correspondence: T. Jonathan Davies Tel: +1 514 398 8885 Email: [email protected] Manuscript information: 5272 words (Introduction = 1242 words, Materials and Methods = 1578 words, Results = 548 words, Discussion = 1627 words, Conclusion = 205 words | 6 figures (5 color figures) | 2 Tables | 2 supporting information 1 SUMMARY 1. The origin of fire-adapted lineages is a long-standing question in ecology. Although phylogeny can provide a significant contribution to the ongoing debate, its use has been precluded by the lack of comprehensive DNA data. Here we focus on the ‘underground trees’ (= geoxyles) of southern Africa, one of the most distinctive growth forms characteristic of fire-prone savannas. 2. We placed geoxyles within the most comprehensive dated phylogeny for the regional flora comprising over 1400 woody species. -
An Inventory of Vhavenda Useful Plants.Pdf
SAJB-01923; No of Pages 33 South African Journal of Botany xxx (2018) xxx–xxx Contents lists available at ScienceDirect South African Journal of Botany journal homepage: www.elsevier.com/locate/sajb An inventory of Vhavenḓa useful plants K. Magwede a,b, B.-E. van Wyk b,⁎, A.E. van Wyk c,d a School of Mathematics and Natural Science, University of Venḓa, P.O. Box 5050, 0950 Ṱhohoyanḓou, South Africa b Department of Botany and Plant Biotechnology, University of Johannesburg, P.O. Box 524, 2006, Auckland Park, Johannesburg, South Africa c Department of Plant and Soil Sciences, University of Pretoria, Private Bag X20, 0028 Hatfield, Pretoria, South Africa d National Herbarium, South African National Biodiversity Institute, Private Bag X101, 0001 Pretoria, South Africa article info abstract Available online xxxx An inventory and analysis of the general uses of plants by the Vhavenḓa, a cultural group who historically occu- pied the region known as Venḓa, currently referred to as the Vhembe District, Limpopo Province, South Africa, are Edited by A Moteetee presented. Information on plant uses was gathered through a literature review and interviews conducted amongst Tshivenḓa-speaking rural communities in the Vhembe District. The aim of the study was to document Keywords: all Vhavenḓa useful plants, i.e., all plants of cultural and practical importance in fulfilling the everyday Venda ḓ needs of the people. A total of 574 plant species from 355 genera and 121 families was recorded. In addition Vhaven aethnobotany fi Checklist 897 vernacular names have been recorded, of which 224 (25%) is published here for the rst time. -
The Utilization and Conservation of Indigenous Wild Plant Resources in the Limpopo Province, South Africa Sebua S
Chapter The Utilization and Conservation of Indigenous Wild Plant Resources in the Limpopo Province, South Africa Sebua S. Semenya and Matjutla J. Mokgoebo Abstract The knowledge pertaining to uses of indigenous wild plants and their conserva- tion methods by the rural communities of the Limpopo Province (South Africa) is not fully reconnoitered. The available data highlighting these aspects are scattered in general ethnobotanical literatures. The current study therefore sought to collate, analyze, and describe such information. Search engines and local libraries were used to document information. A total of 50 useful wild plant species belonging to 32 botanical families, mainly the Fabaceae (28%, n = 9) and Cucurbitaceae (13%, n = 4), were harvested by rural communities inhabiting the Limpopo Province. These species were mainly exploited wholly for medicinal (62%, n = 31) and food (20%, n = 10) purposes. Leaves, bark, fruits, and roots, respectively, were the most commonly used plant parts. Overall, the traditional conservation approaches employed by the indigenous people to ensure continual supply of these organs for different livelihoods encompass traditional beliefs and taboos, sustainable harvesting practices as well as domestication of plants. However, not all these approaches promote effective conservation and sustainable utilization of wild plant resources. Keywords: indigenous plants, Limpopo province, management, traditional conservation methods, useful wild plants 1. Introduction Throughout history, plant resources have supported human being, providing goods such as food in the form of fruits and vegetables, materials for a variety of utensils, fodder, construction timber, fuel wood, and medicinal plants [1–5]. In addition, plants have also provided man with a range of cultural services, including spiritual services, inspiration, and esthetic values [6].