Espécies Úteis Da Família Euphorbiaceae No Brasil
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Genetic Structure and Diversity of Senefeldera Verticillata (Euphorbiaceae) in Semideciduous Seasonal Forest Fragments
Genetic structure and diversity of Senefeldera verticillata (Euphorbiaceae) in semideciduous seasonal forest fragments A.A.R. Vieira1, A.L. Silva Júnior1, L.C. Souza1, F.D. Miranda2, M.F.S. Ferreira3 and M.V.W. Caldeira4 1Laboratório de Bioquímica e Biologia Molecular, Programa de Pós- Graduação em Genética e Melhoramento, Centro de Ciências Agrárias e Engenharias, Universidade Federal do Espírito Santo, Alegre, ES, Brasil 2Departamento de Biologia, Centro de Ciências Exatas Naturais e da Saúde, Universidade Federal do Espírito Santo, Alegre, ES, Brasil 3Departamento de Agronomia, Centro de Ciências Agrárias e Engenharias, Universidade Federal do Espírito Santo, Alegre, ES, Brasil 4Departamento de Ciências Florestais e da Madeira, Centro de Ciências Agrárias e Engenharias, Universidade Federal do Espírito Santo, Jerônimo Monteiro, ES, Brasil Corresponding author: A.L. Silva Júnior E-mail: [email protected] Genet. Mol. Res. 17 (3): gmr18059 Received June 12, 2018 Accepted August 07, 2018 Published August 29, 2018 DOI http://dx.doi.org/10.4238/gmr18059 ABSTRACT. Senefeldera verticillata (Euphorbiaceae) is a species that exclusively occurs in the Atlantic Forest; it is used in the restoration and recovery of degraded areas and has therapeutic uses. Due to the scarcity of information on genetic patterns of this species, genetic diversity was characterized by the use of molecular markers, Inter Simple Sequence Repeats (ISSR). Leaf samples were collected from two populations located in the National Forest (FLONA) of Pacotuba and in the Private Reserve of Natural Patrimony (RPPN) Cafundó. Twelve ISSR primers were used, resulting in 179 amplification products, with 76% polymorphic bands. The genetic diversity values of Nei (H’) and Shannon index (I) were 0.329 and 0.503, respectively. -
Species List (PDF)
code gen spec genus species family growth formlife form origin photo 1 pascop smith pascopyrumsmithii poaceae p g n c3 2 androp gerar andropogongerardii poaceae p g n c4 3 schiza scopa schizachyriumscoparium poaceae p g n c4 4 boutel curti bouteloua curtipendulapoaceae p g n c4 5 boutel graci bouteloua gracilis poaceae p g n c4 6 boutel hirsu bouteloua hirsuta poaceae p g n c4 7 boutel dacty bouteloua dactyloidespoaceae p g n c4 8 chlori verti chloris verticillata poaceae p g n c4 9 elymus canad elymus canadensispoaceae p g n c3 10 elymus virgi elymus virginicus poaceae p g n c3 11 eragro spect eragrostis spectabilis poaceae p g n c4 12 koeler macra koeleria macrantha poaceae p g n c3 13 muhlen cuspi muhlenbergiacuspidata poaceae p g n c4 14 dichan oligo dichantheliumoligosanthespoaceae p g n c3 15 panicu virga panicum virgatum poaceae p g n c4 16 dichan ovale dichantheliumovale poaceae p g n c3 17 poa prate poa pratensis poaceae p g i c3 18 sorgha nutan sorghastrumnutans poaceae p g n c4 19 sparti pecti spartina pectinata poaceae p g n c4 20 spheno obtus sphenopholisobtusata poaceae p g n c3 21 sporob compo sporoboluscomposituspoaceae p g n c4 22 sporob crypt sporoboluscryptandruspoaceae p g n c4 23 sporob heter sporobolusheterolepispoaceae p g n c4 24 aristi oliga aristida oligantha poaceae a g n c4 25 bromus arven bromus arvensis poaceae a g i c3 26 bromus tecto bromus tectorum poaceae a g i c3 27 vulpia octof vulpia octoflora poaceae a g n c3 28 hordeu pusil hordeum pusillum poaceae a g n c3 29 panicu capil panicum capillare poaceae a g n c4 30 schedo panic schedonnarduspaniculatuspoaceae p g n c4 31 carex brevi carex brevior cyperaceaep s n . -
Pima County Plant List (2020) Common Name Exotic? Source
Pima County Plant List (2020) Common Name Exotic? Source McLaughlin, S. (1992); Van Abies concolor var. concolor White fir Devender, T. R. (2005) McLaughlin, S. (1992); Van Abies lasiocarpa var. arizonica Corkbark fir Devender, T. R. (2005) Abronia villosa Hariy sand verbena McLaughlin, S. (1992) McLaughlin, S. (1992); Van Abutilon abutiloides Shrubby Indian mallow Devender, T. R. (2005) Abutilon berlandieri Berlandier Indian mallow McLaughlin, S. (1992) Abutilon incanum Indian mallow McLaughlin, S. (1992) McLaughlin, S. (1992); Van Abutilon malacum Yellow Indian mallow Devender, T. R. (2005) Abutilon mollicomum Sonoran Indian mallow McLaughlin, S. (1992) Abutilon palmeri Palmer Indian mallow McLaughlin, S. (1992) Abutilon parishii Pima Indian mallow McLaughlin, S. (1992) McLaughlin, S. (1992); UA Abutilon parvulum Dwarf Indian mallow Herbarium; ASU Vascular Plant Herbarium Abutilon pringlei McLaughlin, S. (1992) McLaughlin, S. (1992); UA Abutilon reventum Yellow flower Indian mallow Herbarium; ASU Vascular Plant Herbarium McLaughlin, S. (1992); Van Acacia angustissima Whiteball acacia Devender, T. R. (2005); DBGH McLaughlin, S. (1992); Van Acacia constricta Whitethorn acacia Devender, T. R. (2005) McLaughlin, S. (1992); Van Acacia greggii Catclaw acacia Devender, T. R. (2005) Acacia millefolia Santa Rita acacia McLaughlin, S. (1992) McLaughlin, S. (1992); Van Acacia neovernicosa Chihuahuan whitethorn acacia Devender, T. R. (2005) McLaughlin, S. (1992); UA Acalypha lindheimeri Shrubby copperleaf Herbarium Acalypha neomexicana New Mexico copperleaf McLaughlin, S. (1992); DBGH Acalypha ostryaefolia McLaughlin, S. (1992) Acalypha pringlei McLaughlin, S. (1992) Acamptopappus McLaughlin, S. (1992); UA Rayless goldenhead sphaerocephalus Herbarium Acer glabrum Douglas maple McLaughlin, S. (1992); DBGH Acer grandidentatum Sugar maple McLaughlin, S. (1992); DBGH Acer negundo Ashleaf maple McLaughlin, S. -
Effects of Forest Fragmentation on Bottom-Up Control in Leaf-Cuttings Ants
Effects of forest fragmentation on bottom-up control in leaf-cuttings ants Dissertation zur Erlangung des naturwissenschaftlichen Doktorgrades Fachbereich Biologie Technische Universität Kaiserslautern vorgelegt von M.Sc. Pille Urbas Kaiserslautern, Dezember 2004 1. Gutachter: Prof. Dr. Burkhard Büdel 2. Gutachter: PD Dr. Jürgen Kusch Vorsitzender der Prüfungskommission: Prof. Dr. Matthias Hahn ACKNOWLEDGEMENTS I ACKNOWLEDGEMENTS I wish to thank my family for always being there; Joachim Gerhold who gave me great support and Jutta, Klaus and Markus Gerhold who decided to provide me with a second family; my supervisors Rainer Wirth, Burkhard Büdel and the department of Botany, University of Kaiserslautern for integrating me into the department and providing for such an interesting subject and the infrastructure to successfully work on it; the co-operators at the Federal University of Pernambuco (UFPE), Brazil - Inara Leal and Marcelo Tabarelli - for their assistance and interchange during my time overseas; the following students for the co-operatation in collecting and analysing data for some aspects of this study: Manoel Araújo (LAI and LCA leaf harvest), Ùrsula Costa (localization and size measurements of LCA colonies), Poliana Falcão (LCA diet breadth) and Nicole Meyer (tree density and DBH). Conservation International do Brasil, Centro de Estudos Ambientais do Nordeste and Usina Serra Grande for providing infrastructure during the field work; Marcia Nascimento, Lourinalda Silva and Lothar Bieber (UFPE) for sharing their laboratory, equipment and knowledge for chemical analyses; Jose Roberto Trigo (University of Campinas) for providing some special chemicals; my friends in Brazil Reisla Oliveira, Olivier Darrault, Cindy Garneau, Leonhard Krause, Edvaldo Florentino, Marcondes Oliveira and Alexandre Grillo for supporting me in a foreign land. -
Czech University of Life Sciences Prague
Czech University of Life Sciences Prague Faculty of Tropical AgriSciences Molecular Characterization of Plukenetia volubilis L. and Analysis of Seed Storage Protein Pattern and Protein Fractions Dissertation Thesis Department of Crop Sciences and Agroforestry Author: Ing. Martin Ocelák Supervisor: doc. Ing. Bohdan Lojka, Ph.D. Co-supervisors: Ing. Petra Hlásná Čepková, Ph.D. Ing. Iva Viehmannová, Ph.D. In Prague, September, 2016 Acknowledgment I would like to express my gratitude to my supervisor doc. Ing. Bohdan Lojka, Ph.D. and co-supervisors Ing. Petra Hlásná Čepková, Ph.D. and Ing. Iva Viehmannová, Ph.D. for their guidance, advices, help and also patience during the studies, laboratory works and mainly during the writings. My thanks also belong to IIAP represented by Ing. Danter Cachique Huansi and Lucas Garcia Chujutalli for their cooperation in samples collection, to Ing. Anna Prohasková for her guidance during analysis of proteins in Crop Research Institute in Prague - Ruzyně, to Ing. Eva Beoni, Ph.D. and Ing. Lenka Havlíčková, Ph.D. for their help in learning how to work in the laboratory; to Ing. Zdislava Dvořáková, Ph.D. for her help, teaching and encouragement and to Ing. Blanka Křivánková, Ph.D. for providing some useful materials. Also my family contributed with their support in all means. So great thanks belong to my parents Jan and Jaroslava Ocelákovi and my boyfriend Ioannis Nikolakis for their love and support in all possible means. This research was supported financially by an Internal Grant Agency of the University of Life Science Prague, CIGA (Project No. 20135004), by an Internal Grant Agency of the Faculty of Tropical AgriSciences - University of Life Science Prague, IGA (Project No. -
Euphorbia Subg
ФЕДЕРАЛЬНОЕ ГОСУДАРСТВЕННОЕ БЮДЖЕТНОЕ УЧРЕЖДЕНИЕ НАУКИ БОТАНИЧЕСКИЙ ИНСТИТУТ ИМ. В.Л. КОМАРОВА РОССИЙСКОЙ АКАДЕМИИ НАУК На правах рукописи Гельтман Дмитрий Викторович ПОДРОД ESULA РОДА EUPHORBIA (EUPHORBIACEAE): СИСТЕМА, ФИЛОГЕНИЯ, ГЕОГРАФИЧЕСКИЙ АНАЛИЗ 03.02.01 — ботаника ДИССЕРТАЦИЯ на соискание ученой степени доктора биологических наук САНКТ-ПЕТЕРБУРГ 2015 2 Оглавление Введение ......................................................................................................................................... 3 Глава 1. Род Euphorbia и основные проблемы его систематики ......................................... 9 1.1. Общая характеристика и систематическое положение .......................................... 9 1.2. Краткая история таксономического изучения и формирования системы рода ... 10 1.3. Основные проблемы систематики рода Euphorbia и его подрода Esula на рубеже XX–XXI вв. и пути их решения ..................................................................................... 15 Глава 2. Материал и методы исследования ........................................................................... 17 Глава 3. Построение системы подрода Esula рода Euphorbia на основе молекулярно- филогенетического подхода ...................................................................................................... 24 3.1. Краткая история молекулярно-филогенетического изучения рода Euphorbia и его подрода Esula ......................................................................................................... 24 3.2. Результаты молекулярно-филогенетического -
Pflanzen Mit Invasivem Potenzial in Botanischen Gärten VII: Euphorbia Maculata Und Euphorbia Humifusa (Euphorbiaceae)
ZOBODAT - www.zobodat.at Zoologisch-Botanische Datenbank/Zoological-Botanical Database Digitale Literatur/Digital Literature Zeitschrift/Journal: Carinthia II Jahr/Year: 2014 Band/Volume: 204_124 Autor(en)/Author(s): Schlatti Felix Artikel/Article: Pflanzen mit invasivem Potenzial in Botanischen Gärten VII: Euphorbia maculata und Euphorbia humifusa (Euphorbiaceae). 205-216 ©Naturwissenschaftlicher Verein für Kärnten, Austria, download unter www.biologiezentrum.at Carinthia II n 204./124. Jahrgang n Seiten 205–216 n Klagenfurt 2014 205 Pflanzen mit invasivem Potenzial in Botanischen Gärten VII: Euphorbia maculata und Euphorbia humifusa (Euphorbiaceae) Von Felix SCHLATTI Zusammenfassung Schlüsselwörter Euphorbia maculata und Euphorbia humifusa sind zwei Beispiele für unschein- Botanische Gärten, bare Pflanzen aus derEuphorbia -Untergattung Chamaesyce, die sich derzeit weltweit Euphorbiaceae, in Ausbreitung befindet. Die kleinen, dem Boden angedrückt wachsenden Pflanzen Euphorbia humifusa, werden häufig übersehen, kommen aber oft in Massen vor. Sie können Rasenflächen Euphorbia maculata, unterminieren, Freiflächen völlig überwachsen und Baumschulen wirtschaftliche invasiver Neophyt, Einbußen bringen. Zusätzlich kann ihre Giftigkeit gesundheitliche Probleme verur- Unkraut sachen. Keywords Abstract Botanical gardens, Euphorbia maculata and Euphorbia humifusa are two examples of inconspicous Euphorbiaceae, plants of Euphorbia subgenus Chamaesyce, which currently propagates throughout Euphorbia humifusa, the world. The small plants are often -
Identification of Fatty Acids in Sacha Inchi Oil (Cursive Plukenetia Volubilis L.) from Ecuador
Online - 2455-3891 Vol 11, Issue 2, 2018 Print - 0974-2441 Research Article IDENTIFICATION OF FATTY ACIDS IN SACHA INCHI OIL (CURSIVE PLUKENETIA VOLUBILIS L.) FROM ECUADOR CARRILLO W1,3*, QUINTEROS M F1, CARPIO C1, MORALES D1,VÁSQUEZ G2,ÁLVAREZ M1, SILVA M1 1Laboratory of Functional Foods, Faculty of Foods Science and Engineering, Technical University of Ambato. Av. Los Chasquis y Rio Payamino. Campus Huachi, CP 1801334, Ambato, Ecuador. 2Escuela Superior Politécnica del Litoral, ESPOL, Faculty of Mechanical Engineering and Production Sciences, Campus Gustavo Galindo Km 30.5 VíaPerimetral, Guayaquil, Ecuador. 3Department of Research. Bolivar State University, Academic Campus, Alpacha EC. Av Ernesto Che Guevara s/n and Av Gabriel Secaira, EC 020150, Guaranda, Ecuador. Email: [email protected] Received: 04 October 2016, Revised and Accepted: 10 October 2016 ABSTRACT Objective: The aim of this study was to identify fatty acids in a sacha inchi oil sample. Methods: Sacha inchi oil was obtained of sacha inchi seeds using the cold pressing method. Fatty acids analysis was carried out using the gas chromatography with a mass selective detector and using the database Library NIST14.L to identify the compounds. Results: seeds only have 3.98% of palmitic acid. Sacha inchi seeds have a high content of unsaturated fatty acids with 34.98% of ɷ6 α- Linoleic and 47.04% of ɷ3 α- Linolenic. Sacha inchi Conclusions: functional foods. Sacha inchi seed is a good source of fatty acids ɷ3 and ɷ6, being ɷ3 and ɷ6 in a good proportion. Sacha inchi oil can be used to elaborate Keywords: Pluketeniavolubilis graph Sacha inchi, , Fatty acids, Gas chromato y - mass selective detector, Methyl ester. -
Livro-Inpp.Pdf
GOVERNMENT OF BRAZIL President of Republic Michel Miguel Elias Temer Lulia Minister for Science, Technology, Innovation and Communications Gilberto Kassab MUSEU PARAENSE EMÍLIO GOELDI Director Nilson Gabas Júnior Research and Postgraduate Coordinator Ana Vilacy Moreira Galucio Communication and Extension Coordinator Maria Emilia Cruz Sales Coordinator of the National Research Institute of the Pantanal Maria de Lourdes Pinheiro Ruivo EDITORIAL BOARD Adriano Costa Quaresma (Instituto Nacional de Pesquisas da Amazônia) Carlos Ernesto G.Reynaud Schaefer (Universidade Federal de Viçosa) Fernando Zagury Vaz-de-Mello (Universidade Federal de Mato Grosso) Gilvan Ferreira da Silva (Embrapa Amazônia Ocidental) Spartaco Astolfi Filho (Universidade Federal do Amazonas) Victor Hugo Pereira Moutinho (Universidade Federal do Oeste Paraense) Wolfgang Johannes Junk (Max Planck Institutes) Coleção Adolpho Ducke Museu Paraense Emílio Goeldi Natural resources in wetlands: from Pantanal to Amazonia Marcos Antônio Soares Mário Augusto Gonçalves Jardim Editors Belém 2017 Editorial Project Iraneide Silva Editorial Production Iraneide Silva Angela Botelho Graphic Design and Electronic Publishing Andréa Pinheiro Photos Marcos Antônio Soares Review Iraneide Silva Marcos Antônio Soares Mário Augusto G.Jardim Print Graphic Santa Marta Dados Internacionais de Catalogação na Publicação (CIP) Natural resources in wetlands: from Pantanal to Amazonia / Marcos Antonio Soares, Mário Augusto Gonçalves Jardim. organizers. Belém : MPEG, 2017. 288 p.: il. (Coleção Adolpho Ducke) ISBN 978-85-61377-93-9 1. Natural resources – Brazil - Pantanal. 2. Amazonia. I. Soares, Marcos Antonio. II. Jardim, Mário Augusto Gonçalves. CDD 333.72098115 © Copyright por/by Museu Paraense Emílio Goeldi, 2017. Todos os direitos reservados. A reprodução não autorizada desta publicação, no todo ou em parte, constitui violação dos direitos autorais (Lei nº 9.610). -
Sacha Inchi (Plukenetia Volubilis): a Seed Source of Polyunsaturated Fatty Acids, Tocopherols, Phytosterols, Phenolic Compounds and Antioxidant Capacity
Food Chemistry 141 (2013) 1732–1739 Contents lists available at SciVerse ScienceDirect Food Chemistry journal homepage: www.elsevier.com/locate/foodchem Sacha inchi (Plukenetia volubilis): A seed source of polyunsaturated fatty acids, tocopherols, phytosterols, phenolic compounds and antioxidant capacity Rosana Chirinos a, Gledy Zuloeta a, Romina Pedreschi a,c, Eric Mignolet b, Yvan Larondelle b, ⇑ David Campos a, a Instituto de Biotecnología (IBT), Universidad Nacional Agraria La Molina-UNALM, Av., La Molina s/n, Lima, Peru b Institut des Sciences de la Vie, UCLouvain, Croix du Sud 2/8, B-1348 Louvain-la Neuve, Belgium c Food & Biobased Research, Wageningen UR, Bornse Weilanden 9, Wageningen 6708WG, The Netherlands article info abstract Article history: Fatty acids (FA), phytosterols, tocopherols, phenolic compounds, total carotenoids and hydrophilic and Received 14 December 2012 lipophilic ORAC antioxidant capacities were evaluated in 16 cultivars of Sacha inchi (SI) seeds with the Received in revised form 7 March 2013 aim to valorise them and offer more information on the functional properties of SI seeds. A high a lino- Accepted 23 April 2013 lenic (a-Ln) fatty acid content was found in all cultivars (x3, 12.8–16.0 g/100 g seed), followed by linoleic Available online 3 May 2013 (L) fatty acid (x6, 12.4–14.1 g/100 g seed). The ratio x6/x3 was within the 0.83–1.09 range. c- and d-toc- opherols were the most important tocopherols, whereas the most representative phytosterols were b- Keywords: sitosterol and stigmasterol. Contents of total phenolics, total carotenoids and hydrophilic and lipophilic Plukenetia volubilis antioxidant capacities ranged from 64.6 to 80 mg of gallic acid equivalent/100 g seed; from 0.07 to Fatty acids Phytosterols 0.09 mg of b-carotene equivalent/100 g of seed; from 4.3 to 7.3 and, from 1.0 to 2.8 lmol of Trolox equiv- Tocopherols alent/g of seed, respectively, among the evaluated SI cultivars. -
Enfermedadesyplagascultivodec
Sterling Cuellar, Armando, Rodríguez León, Carlos Hernando (Editores) Estrategias de manejo para las principales enfermedades y plagas del cultivo del caucho con énfasis en la amazonia colombiana. Armando Sterling Cuellar, Carlos Hernando Rodríguez León (Eds.). Bogotá, Colombia: Instituto Amazónico de Investigaciones Científicas SINCHI, 2018 1. CAUCHO 2. Hevea brasiliensis 3. CONTROL DE ENFERMEDA- DES 4. CONTROL DE PLAGAS 5. AMAZONIA COLOMBIANA ISBN: 978-958-5427-08-2 © Instituto Amazónico de Investigaciones Científicas SINCHI Ministerio de Ambiente y Desarrollo Sostenible Primera edición: agosto de 2018 Revisión técnica: Ibonne Aydee García Romero PhD Juan Sierra Hayer, PhD Fotografías: Armando Sterling Cuéllar, Eidy Martinez Viuche, Yeny Virguez Díaz, Jesica Fonseca Restrepo, Lyda Constanza Galindo, Luis Carlos Loaiza, Julieth Zapata Ortíz Coordinación de la producción editorial: Diana Patricia Mora Rodríguez Diseño de cubierta y concepto editorial: Paola Aponte Reservados todos los Derechos Disponible en: Instituto SINCHI, Calle 20 No. 5-44 Tel.: 4442084 www.sinchi.org.co Impreso en Colombia Printed in Colombia ESTRATEGIAS DE MANEJO PARA LAS PRINCIPALES ENFERMEDADES Y PLAGAS DEL CULTIVO DEL CAUCHO CON ÉNFASIS EN LA AMAZONIA COLOMBIANA Asociación de Reforestadores y Cultivadores de Caucho del Caquetá LUZ MARINA MANTILLA CÁRDENAS Directora General JOSÉ RICARDO GUTIÉRREZ ROJAS Representante legal MARCO EHRLICH Subdirector Científico y Tecnológico Junta Directiva CARLOS ALBERTO MENDOZA VÉLEZ Subdirector Administrativo y Financiero JOSÉ -
Euphorbiaceae)
Polish Botanical Journal 60(2): 147–161, 2015 DOI: 10.1515/pbj-2015-0024 PHYTOGEOGRAPHICAL ANALYSIS OF EUPHORBIA SUBGENUS ESULA (EUPHORBIACEAE) Dmitry V. Geltman Abstract. Euphorbia subg. Esula is one of four major clades within the genus. A geographical analysis of the 466 species in the subgenus is reported here. Every species was assigned to one of 29 geographical elements clustered in ten groups of ele- ments. This geographical analysis showed that the Tethyan group (comprising nine geographical elements) clearly dominates the subgenus and contains 260 species (55.79% of the total number of species). The most numerous geographical elements are Irano-Turanian (105 species) and Mediterranean (85). Other significant groups of elements are Boreal (91 species, 19.54%), East Asian (40 species, 8.58%), Madrean (26 species, 5.58%), Paleotropical (23 species, 4.94%) and South African (16 species, 3.43%). The area of the Tethyan floristic subkingdom is the center of the modern diversity of E. subg. Esula. It is likely that such diversity is the result of intensive speciation that took place during the Eocene–Miocene. Key words: Euphorbia subg. Esula, geographical elements, Irano-Turanian floristic region, Mediterranean floristic region, phytogeographical analysis, Tethyan floristic subkingdom Dmitry V. Geltman, Komarov Botanical Institute of the Russian Academy of Sciences, Prof. Popov Street, 2, St. Petersburg, 197376, Russia; e-mail: [email protected] Introduction genus euphorbia and its taxonomy cantly differ from traditional ones. For subgenus Esula (Riina et al. 2013), 21 sections were ac- The giant genus Euphorbia L. (Euphorbiaceae) re- cepted on the basis of analyses of the combined cently became a subject of detailed phylogenetic and ITS + ndhF dataset (Fig.