Use of Wood Anatomy to Identify Poisonous Plants: Charcoal Of
Total Page:16
File Type:pdf, Size:1020Kb
Load more
Recommended publications
-
(EUPHORBIACEAE)I [Wood Anatomy of Sapium Haematospermum Müli. Ar
BALDUINIA. n. 35, p. 27-31, 30-V-2012 ESTUDO ANATÔMICO DO LENHO DE SAPIUM HAEMATOSPERMUM MÜLL. ARG (EUPHORBIACEAE)I ANELISE MARTA SIEGLOCH2 JOSÉ NEWTON CARDOSO MARCHIORP SIDINEI RODRIGUES DOS SANTOS4 RESUMO No presente estudo é descrito o lenho de Sapium haematospermum Müll. Arg., com base em material pro- cedente de São Francisco de Assis, Rio Grande do Sul. Foram observadas as seguintes características anatômicas, comuns em Euphorbioideae e gênero Sapium: anéis de crescimento pouco conspícuos; poros de diâmetro médio, pouco numerosos e em curtos múltiplos radiais; placas de perfuração simples; pontoações intervasculares grandes; parênquima apotraqueal difuso-em-agregados; e raios uni e bisseriados, heterocelulares, com cristais e lactíferos. Palavras-chave: Anatomia da madeira, Euphorbioideae, Sapium haemastospermum. ABSTRACT [Wood anatomy of Sapium haematospermum MülI. Arg. (Euphorbiaceae)]. The wood anatomy of Sapium haematospermum Müll. Arg. is described, based on material colleted in the municipality of São Francisco de Assis, Rio Grande do Sul state, Brazil. The following anatomical features that are common among woods of Euphorbioideae and genus Sapium were observed: growth rings almost indistinct; few numerous medium vessels, in short radial multiples; simple perforation plates; large intervascular pits; diffuse-in-aggregates apotracheal parenchyma; and uniseriate and bisseriate heterocellular rays, with crystals and laticifers. Key words: Euphorbioideae, Sapium haematospermum, Wood anatomy. INTRODUÇÃO Gymnanthes, Stillingia e -
Stillingia: a Newly Recorded Genus of Euphorbiaceae from China
Phytotaxa 296 (2): 187–194 ISSN 1179-3155 (print edition) http://www.mapress.com/j/pt/ PHYTOTAXA Copyright © 2017 Magnolia Press Article ISSN 1179-3163 (online edition) https://doi.org/10.11646/phytotaxa.296.2.8 Stillingia: A newly recorded genus of Euphorbiaceae from China SHENGCHUN LI1, 2, BINGHUI CHEN1, XIANGXU HUANG1, XIAOYU CHANG1, TIEYAO TU*1 & DIANXIANG ZHANG1 1 Key Laboratory of Plant Resources Conservation and Sustainable Utilization, South China Botanical Garden, Chinese Academy of Sciences, Guangzhou 510650, China 2University of Chinese Academy of Sciences, Beijing 100049, China * Corresponding author, email: [email protected] Abstract Stillingia (Euphorbiaceae) contains ca. 30 species from Latin America, the southern United States, and various islands in the tropical Pacific and in the Indian Ocean. We report here for the first time the occurrence of a member of the genus in China, Stillingia lineata subsp. pacifica. The distribution of the genus in China is apparently narrow, known only from Pingzhou and Wanzhou Islands of the Wanshan Archipelago in the South China Sea, which is close to the Pearl River estuary. This study updates our knowledge on the geographic distribution of the genus, and provides new palynological data as well. Key words: Island, Hippomaneae, South China Sea, Stillingia lineata Introduction During the last decade, hundreds of new plant species or new species records have been added to the flora of China. Nevertheless, newly described or newly recorded plant genera are not discovered and reported very often, suggesting that botanical expedition and plant survey at the generic level may be advanced in China. As far as we know, only six and eight angiosperm genera respectively have been newly described or newly recorded from China within the last ten years (Qiang et al. -
Mothers, Markets and Medicine Hanna Lindh
Mothers, markets and medicine The role of traditional herbal medicine in primary women and child health care in the Dar es Salaam region, Tanzania Hanna Lindh Degree project in biology, Bachelor of science, 2015 Examensarbete i biologi 15 hp till kandidatexamen, 2015 Biology Education Centre, Uppsala University Supervisors: Sarina Veldman and Hugo de Boer 1 Abstract Traditional medicine is still the most common primary healthcare used in Tanzania, especially among women. The ethnobotanical studies performed in Tanzania have not explored women’s traditional medicine, with the result that we do not know that much about it, including if women’s usage of medicinal plants create a threat against the medicinal flora’s biodiversity or not. Field studies consisting of interviews and collections of medicinal plants were carried out in the Dar es Salaam region in Tanzania before identifying the collected specimens by DNA barcoding, literature and morphology in Uppsala, Sweden. The 33 informants belonged to 15 different ethnic groups and 79% of them had migrated to Dar es Salaam. A total of 249 plant species were mentioned for women’s healthcare and 140 for children’s healthcare. The medicinal plants frequently reported as used for women’s health and childcare during structured interviews and free-listing exercises were Senna occidentalis/ Cassia abbreviata, Zanthoxylum sp., Clausena anisata, Acalypha ornata and Ximenia sp. The most salient uses of medicinal plants by women were during pregnancy, childbirth, menstruation, to induce abortion, and for cleansing infants and treating convulsions in children. Most of the fresh specimens were collected from disturbance vegetation. The informants having most interview answers in common were the market vendors, healers and herbalists and they were the only informants that mentioned species listed as vulnerable on the IUCN Red List of Threatened Species. -
Origin of the Cyathium-Bearing Euphorbieae (Euphorbiaceae): Phylogenetic Study Based on Morphological Characters
ParkBot. Bull.and Backlund Acad. Sin. — (2002) Origin 43: of 57-62 the cyathium-bearing Euphorbieae 57 Origin of the cyathium-bearing Euphorbieae (Euphorbiaceae): phylogenetic study based on morphological characters Ki-Ryong Park1,* and Anders Backlund2 1Department of Biology, Kyung-Nam University, Masan 631-701, Korea 2Division of Pharmacognosy, Department of Pharmacy, Uppsala University, BMC-Biomedical center, S-751 23 Uppsala, Sweden (Received October 6, 2000; Accepted August 24, 2001) Abstract. A cladistic analysis of the subfamily Euphorbioideae was undertaken to elucidate the origin of the cyathium- bearing Euphorbieae and to provide hypotheses about evolutionary relationships within the subfamily. Twenty-one species representing most of the genera within the study group and three outgroup taxa from the subfamilies Acalyphoideae and Crotonoideae were selected for parsimony analysis. An unweighted parsimony analysis of 24 morphological characters resulted in five equally parsimonious trees with consistency indices of 0.67 and tree lengths of 39 steps. The strict consensus tree supported monophyly of the cyathium-bearing Euphorbieae. The sister group relationships of cyathium bearing Euphorbieae with Maprounea (subtribe Hippomaninae) were supported weakly, and the origin of cyathium is possibly in Hippomaneae, or in the common ancestor of Euphorbieae and remaining taxa of Euphorbioideae plus Acalyphoideae. Within the tribe Euphorbieae, both subtribes Euphorbiinae and Neoguilauminiinae are monophyletic, but the African endemic subtribe Anthosteminae is unresolved. The resulting trees support the monophyly of the tribe Stomatocalyceae while the tribe Hippomaneae does not consistently form a clade. Keywords: Cyathium; Euphorbieae; Phylogeny. Introduction to the position of a female flower. Accordingly, the Eu- phorbia-like cyathium results from the alteration of floral In a recent classification of subfamily Euphorbioideae axis and the condensation of the axis of male flower in Boiss., Webster (1975, 1994b) recognized six tribes: Hippomaneae. -
Vegetation State Changes in the Course of Shrub Encroachment in an African Savanna Since About 1850 CE and Their Potential Drivers
Received: 14 September 2019 | Revised: 10 November 2019 | Accepted: 5 December 2019 DOI: 10.1002/ece3.5955 ORIGINAL RESEARCH Vegetation state changes in the course of shrub encroachment in an African savanna since about 1850 CE and their potential drivers Ximena Tabares1,2 | Heike Zimmermann1 | Elisabeth Dietze1 | Gregor Ratzmann3 | Lukas Belz4 | Andrea Vieth-Hillebrand5 | Lydie Dupont6 | Heinz Wilkes4 | Benjamin Mapani7 | Ulrike Herzschuh1,2,8 1Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Potsdam, Abstract Germany 1. Shrub encroachment has far-reaching ecological and economic consequences in 2 Institute of Biochemistry and Biology, many ecosystems worldwide. Yet, compositional changes associated with shrub Potsdam University, Potsdam, Germany 3Institute of Biology, Freie Universität Berlin, encroachment are often overlooked despite having important effects on ecosys- Berlin, Germany tem functioning. 4 Institute for Chemistry and Biology of the 2. We document the compositional change and potential drivers for a northern Marine Environment, Carl von Ossietzky University of Oldenburg, Oldenburg, Namibian Combretum woodland transitioning into a Terminalia shrubland. We use Germany a multiproxy record (pollen, sedimentary ancient DNA, biomarkers, compound- 5GFZ German Research Centre for specific carbon ( 13C) and deuterium ( D) isotopes, bulk carbon isotopes ( 13Corg), Geosciences, Helmholtz Centre Potsdam, δ δ δ Potsdam, Germany grain size, geochemical properties) from Lake Otjikoto at high taxonomical and 6 MARUM – Centre for Marine temporal resolution. Environmental Sciences, University of Bremen, Bremen, Germany 3. We provide evidence that state changes in semiarid environments may occur on a 7Department of Geology, University of scale of one century and that transitions between stable states can span around Namibia, Windhoek, Namibia 80 years and are characterized by a unique vegetation composition. -
Flora of the Carolinas, Virginia, and Georgia, Working Draft of 17 March 2004 -- BIBLIOGRAPHY
Flora of the Carolinas, Virginia, and Georgia, Working Draft of 17 March 2004 -- BIBLIOGRAPHY BIBLIOGRAPHY Ackerfield, J., and J. Wen. 2002. A morphometric analysis of Hedera L. (the ivy genus, Araliaceae) and its taxonomic implications. Adansonia 24: 197-212. Adams, P. 1961. Observations on the Sagittaria subulata complex. Rhodora 63: 247-265. Adams, R.M. II, and W.J. Dress. 1982. Nodding Lilium species of eastern North America (Liliaceae). Baileya 21: 165-188. Adams, R.P. 1986. Geographic variation in Juniperus silicicola and J. virginiana of the Southeastern United States: multivariant analyses of morphology and terpenoids. Taxon 35: 31-75. ------. 1995. Revisionary study of Caribbean species of Juniperus (Cupressaceae). Phytologia 78: 134-150. ------, and T. Demeke. 1993. Systematic relationships in Juniperus based on random amplified polymorphic DNAs (RAPDs). Taxon 42: 553-571. Adams, W.P. 1957. A revision of the genus Ascyrum (Hypericaceae). Rhodora 59: 73-95. ------. 1962. Studies in the Guttiferae. I. A synopsis of Hypericum section Myriandra. Contr. Gray Herbarium Harv. 182: 1-51. ------, and N.K.B. Robson. 1961. A re-evaluation of the generic status of Ascyrum and Crookea (Guttiferae). Rhodora 63: 10-16. Adams, W.P. 1973. Clusiaceae of the southeastern United States. J. Elisha Mitchell Sci. Soc. 89: 62-71. Adler, L. 1999. Polygonum perfoliatum (mile-a-minute weed). Chinquapin 7: 4. Aedo, C., J.J. Aldasoro, and C. Navarro. 1998. Taxonomic revision of Geranium sections Batrachioidea and Divaricata (Geraniaceae). Ann. Missouri Bot. Gard. 85: 594-630. Affolter, J.M. 1985. A monograph of the genus Lilaeopsis (Umbelliferae). Systematic Bot. Monographs 6. Ahles, H.E., and A.E. -
Downloaded from Brill.Com10/09/2021 12:24:23AM Via Free Access 2 IAWA Journal, Vol
IAWA Journal, Vol. 26 (1), 2005: 1-68 WOOD ANATOMY OF THE SUBFAMILY EUPHORBIOIDEAE A comparison with subfamilies Crotonoideae and Acalyphoideae and the implications for the circumscription of the Euphorbiaceae Alberta M. W. Mennega Nationaal Herbarium Nederland, Utrecht University branch, Heidelberglaan 2, 3584 es Utrecht, The Netherlands SUMMARY The wood anatomy was studied of 82 species from 34 out of 54 genera in the subfamily Euphorbioideae, covering all five tribes recognized in this subfamily. In general the woods show a great deal of similarity. They are charac terized by a relative paucity of vessels, often arranged in short to long, dumbbell-shaped or twin, radial multiples, and by medium-sized to large intervessel pits; fibres often have gelatinous walls; parenchyma apotracheal in short, wavy, narrow bands and diffuse-in-aggregates; mostly uni- or only locally biseriate rays, strongly heterocellular (except Hippomane, Hura and Pachystroma). Cell contents, either silica or crystals, or both together, are nearly always present and often useful in distinguishing between genera. Radiallaticifers were noticed in most genera, though they are scarce and difficult to trace. The laticifers are generally not surrounded by special cells, except in some genera of the subtribe Euphorbiinae where radiallaticifers are comparatively frequent and conspicuous. Three ofthe five tribes show a great deal of conformity in their anatomy. Stomatocalyceae, however, stand apart from the rest by the combination of the scarcity of vessels, and mostly biseriate, vertically fused and very tall rays. Within Euphorbieae the subtribe Euphorbiinae shows a greater vari ation than average, notably in vessel pitting, the frequent presence of two celled parenchyma strands, and in size and frequency of the laticifers. -
Habitats 0-Year
Table S1: The total number of recorded species per habitat (in brackets) and the number of shared species across habitats. 0-year- 3-year- 5-year- Restored Habitats Reference old old old combined 0-year-old (36 spp.) - 25 spp. 24 spp. - 25 spp. 3-year-old (40 spp.) 25 spp. - 28 spp. - 30 spp. 5-year-old (44 spp.) 24 spp. 28 spp. - - 40 spp. Restored combined (59 - - - - 49 spp. spp.) Reference (70 spp.) 25 spp. 30 spp. 40 spp. 49 spp. - Table S2: Checklist of plant species found in the restored and reference habitats. Species Family Upland area Lowland area 0-year- 3-year- 5-year- 0-year- 3-year- 5-year- old old old Reference old old old Reference habitat habitat habitat habiat habitat habitat habitat habitat Harpephyllum caffrum Bernh. Anacardiaceae X X X X X X X - Protorhus longifolia (Bernh.) Engl. Anacardiaceae - X X X - - - X Sclerocrya birrea (A.Rich.) Hochst. subsp. caffra (Sond.) Kokwaro Anacardiaceae - - - - - - - - Searsia chirindensis (Baker f.) Moffett Anacardiaceae - - X X - X X X Searsia dentata (Thunb.) F.A.Barkley Anacardiaceae - - - - - - - - Searsia lucida (L.) F.A.Barkley Anacardiaceae X - - - - X - - Searsia pentheri (Zahlbr.) Moffett Anacardiaceae - - X - - - - X Searsia rehmanniana (Engl.) Moffet Anacardiaceae X - - X - X X - Annona senegalensi Pers. Annonaceae - - - - - - - - Rauvolfia caffra Sond. Apocynaceae X X - X - - - X Tabernaemontana ventricosa Hochst. ex A.DC. Apocynaceae X X - X - - - X Cussonia spicata Thunb. Araliaceae - - - - - - - - Cussonia zuluensis Strey Araliaceae - - - X - - X - Phoenix reclinata Jacq. Arecaceae X X - - - - X X Aloe ferox Mill. Asphodelaceae - - X - - - X - Brachylaena discolor DC. Asteraceae X X X - - X - - Kigelia africana (Lam.) Benth. -
(Euphorbiaceae)?
Is pollen morphology useful for supporting the infrageneric classification of Stillingia (Euphorbiaceae)? A morfologia do pólen é útil para apoiar a classificação infragenérica de Stillingia (Euphorbiaceae)? Sarah Maria Athiê-Souza1* Maria Teresa Buril2 André Laurênio de Melo3 Marcos José da Silva4 David Bogler5 Margareth Ferreira de Sales2 Abstract The palynological morphology of 24 species and two subspecies of Stillingia were studied using scanning electron microscopy. The analysis was performed aiming to verify whether the pollen morphology can be helpful for identifying species and infrageneric categories in this group. Pollen grains of Stillingia are subprolate or suboblate, tricolporate, microreticulate, and psilate along the aperture margins. However, the results showed no variation between the species and demystify the importance of pollen morphology in the definition of infrageneric limits. Thus, pollen data cannot be used to distinguish species groups despite contrary indications in the literature. Key words: Euphorbioideae, Hippomaneae, taxonomy. Resumo A morfologia palinológica de 24 espécies e duas subespécies de Stillingia foi estudada por microscopia eletrônica de varredura. A análise foi realizada com o objetivo de verificar se a morfologia do pólen pode ser útil na identificação de espécies e categorias infragenéricas nesse grupo. Os grãos de pólen de Stillingia são subprolados ou suboblatos, tricolporados, microreticulados e psilados ao longo das margens 1 Universidade Federal da Paraíba, Centro de Ciências Exatas e -
ESTUDOS MORFOLÓGICOS E FILOGENÉTICOS DE Sebastiania Spreng
SARAH MARIA ATHIÊ DE SOUZA ESTUDOS MORFOLÓGICOS E FILOGENÉTICOS DE Sebastiania Spreng. (HIPPOMANEAE, EUPHORBIACEAE) RECIFE – PE 2011 SARAH MARIA ATHIÊ DE SOUZA ESTUDOS MORFOLÓGICOS E FILOGENÉTICOS DE Sebastiania Spreng. (HIPPOMANEAE, EUPHORBIACEAE) Dissertação apresentada ao Programa de Pós- Graduação em Botânica da Universidade Federal Rural de Pernambuco – PPGB/UFRPE, como requisito para obtenção do título de Mestre em Botânica. Orientadora: Profª. Dra. Margareth Ferreira de Sales Co-Orientador: Prof. Dr. André Laurênio de Melo Co-Orientador: Prof. Dr. Marcos José da Silva RECIFE – PE 2011 Ficha catalográfica S729e Souza, Sarah Maria Athiê de Estudos morfológicos e filogenéticos de Sebastiania Spreng. (Hippomaneae, Euphorbiaceae) / Sarah Maria Athiê de Souza. -- 2011. 152 f.: il. Orientadora: Margareth Ferreira de Sales. Dissertação (Mestrado em Botânica) – Universidade Federal Rural de Pernambuco, Departamento de Biologia, Recife, 2011. Inclui anexo, apêndice e referências. 1. Cladística 2. Morfologia 3. Euphorbioideae 4. Taxonomia I. Sales, Margareth Ferreira de, orientadora II. Título CDD 582 ESTUDOS MORFOLÓGICOS E FILOGENÉTICOS DE Sebastiania Spreng. (HIPPOMANEAE, EUPHORBIACEAE) SARAH MARIA ATHIÊ DE SOUZA ORIENTADORA:_____________________________________________________ Profª Drª Margareth Ferreira de Sales Universidade Federal Rural de Pernambuco - UFRPE Dissertação defendida e aprovada pela banca examinadora em: ___/___/___ ___________________________________________________________________________ Prof. Dr. Marccus Vinícius da -
77 CHAPTER 5 REPRODUCTION on the CLIFF Obligate Cremnophytes
CHAPTER 5 REPRODUCTION ON THE CLIFF Obligate cremnophytes are exiled to life on a cliff and are effectively adapted to their vertical habitat where there is no (or limited) disturbance by larger mammals. Very few plants other than succulents can sustain life on a cliff, and the few non-succulent species that do survive, display a shift in reproductive strategy. Obligate cremnophytes cannot compete in conventional (non- cliff) accessible habitats and even if they do germinate in a non-cliff situation, the plants will soon be grazed. All plants are dependent on moisture, nutrients and sufficient solar radiation and cremnophytes have to cope with gravity in special ways. Furthermore, sustained life on a cliff demands an effective reproductive strategy. The overall reproductive behaviour of obligate cremnophytes deviates from that of their non-cremnophilous relatives in accessible habitats. The emphasis in this chapter is on cliff-adapted reproductive strategies. Apart from their sexual reproduction, most (204 or 93% of the taxa studied) obligate succulent cremnophytes have an in situ vegetative propagation backup. There is therefore a clear shift to vegetative propagation on the cliff and many cremnophytes are dependent on this asexual mode of reproduction. Both sexual and asexual reproduction are discussed below. Semisucculent plants such as Dewinteria petrophila [221], Stemodiopsis rivae [222] and Colpias mollis are less succulent but have additional strategies such as active cremnocarpy and cremno-amphicarpy. Colpias mollis and D. petrophila are almost ephemeral or weak perennials. The vertical habitat and the constant presence of gravity demand an effective seed dispersal strategy. Cliffs are known for updrafts and birds of prey are often observed as they glide on thermals above cliff faces. -
Vegetation Scan
Additional lane to northern section of the N4 between the K67 (Ga-Rankuwa Interchange) and the R512 (Brits West Interchange), as well as upgrade of two of the interchanges North West and Gauteng Province Vegetation Scan Date: February 2016 Report drafted for: Environamic Environmental Consultants PO Box 2644 Montana Park, 0159 T: +27 (0)82 781 9454 F: +27 (0)12 548 4712 E: [email protected] Report drafted by: Copyright Copyright in all text and other matter is the exclusive property of the author. It is a criminal offence to reproduce and/or use, without written consent, any matter, technical procedure and/or technique contained in this document. Criminal and civil proceedings will be taken as a matter of strict routine against any person and/or institution infringing the copyright of the author and/or proprietors. This document may not be modified other tan by the author and when incorporated into overarching studies, it should be included in its entirety as an appendix to the main report. Indemnity This report is based on survey and assessment techniques which are limited by time and budgetary constraints relevant to the type and level of investigation undertaken. The findings, results, observations, conclusions and recommendations given in this report are based on the author’s best scientific and professional knowledge as well as available information at the time of study. Therefore, the author reserves the right to modify aspects of the report including the recommendations if and when new information may become available from ongoing research or further work in this field, or pertaining to this investigation.