288 resultados para Euterpe oleracea MART.


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Fragmentos de florestas inundáveis localizam-se naturalmente na Planície do Araguaia entre os estados de Tocantins e Mato Grosso nas áreas de Cerrado. Ocorrem sob a forma de depressões naturais, que no estado do Tocantins estão situados nas áreas de planícies de inundação, que favorecem seu alagamento, conseqüentemente, o maior tempo de retenção da água em épocas de elevada precipitação. Este estudo teve como objetivo caracterizar a estrutura de um fragmento de floresta inundável de aproximadamente um hectare, inserido em área de Campo Sujo, no município de Lagoa da Confusão, TO. Foram amostrados todos os indivíduos arbustivo-arbóreos com circunferência 1,30m do solo (CAP) > 15 cm. Ao todo, foram encontrados 665 indivíduos, 34 famílias e 49 espécies. As espécies com maior valor de cobertura, em ordem decrescente, foram Sclerolobium paniculatum var. rubiginosum (Mart. ex Tul.) Benth., Calophyllum brasiliense Cambess. e Licania apetala (E. Mey.) Fritsch. As famílias mais ricas foram Fabaceae (8), Arecaceae, Chrysobalanaceae e Vochysiaceae (3). O índice de diversidade de Shannon (H') foi de 2,97nats/ind. A distribuição de classes de diâmetro apresentou curva na forma de "J" invertido estando a maioria dos indivíduos nas sete primeiras classes.

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There have been ethnoveterinary reports from around the world investigating plant usage in therapeutic protocols; however, there is no information regarding the ethnoveterinary practices in Brazilian Amazonia. The objective of this work was to register and document the ethnoveterinary knowledge of the inhabitants of the Island of Marajó, eastern Amazonia, Brazil. In the study, interviews were conducted with 50 individuals, with the application of semi-structured questionnaires that were quantitatively analyzed using descriptive statistic methods of frequency distribution. Use-value was calculated to determine the most important species. Samples of plants that were reported to have medicinal value were collected and identified by botanical classification. Fifty plants, distributed among 48 genera and 34 families, were indicated for 21 different medicinal uses. The family Asteraceae had the largest number of reported species; Carapa guianensis Aubl., Copaifera martii Hayne, Crescentia cujete L., Caesalpinia ferrea Mart., Chenopodium ambrosioides L., Jatropha curcas L. and Momordica charantia L. were species with highest use- value. The plant parts that were more commonly utilized for the preparation of ethnoveterinary medicines were the leaves (56%), bark (18%), roots (14%), seeds (14%) and fruit (8%). With regard to usage, tea was reported as a usage method by 56% of the informants; most preparations (90.9%) utilized only a single plant. In addition to medicinal plants, informants reported using products of animal and mineral origin. The present study contributed to the construction of an inventory of Marajó Island's ethnoveterinary plants, which might be the basis for future scientific validation studies.

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In Brazilian Amazonia, Cholini (Coleoptera, Curculionidae, Molytinae) is represented by 53 species distributed in seven genera: Ameris Dejean, 1821; Cholus Germar, 1824; Homalinotus Sahlberg, 1823; Lobaspis Chevrolat, 1881; Odontoderes Sahlberg, 1823; Ozopherus Pascoe, 1872 and Rhinastus Schoenherr, 1825. This work documents the species of Cholini housed in the Invertebrate Collection of the Instituto Nacional de Pesquisas da Amazônia, Manaus, Brazil and gives the geographical and biological data associated with them. A total of 186 Cholini specimens were identified as belonging to 14 species (13 from Brazilian Amazonia) and five genera (Cholus, Homalinotus, Odontoderes, Ozopherus and Rhinastus). Only 24% of the Cholini species reported from Brazilian Amazonia are actually represented in the INPA collection, underscoring the need for a more systematical collecting based on available biological information. The known geographical distribution was expanded for the following species: Cholus granifer (Chevrolat, 1881) for Brazil; C. pantherinus (Olivier, 1790) for Manaus (Amazonas); Cholus parallelogrammus (Germar, 1824) for Piraquara (Paraná); Homalinotus depressus (Linnaeus, 1758) for lago Janauacá (Amazonas) and rio Tocantins (Pará); H. humeralis (Gyllenhal, 1836) for Novo Airão, Coari (Amazonas) and Porto Velho (Rondônia); H. nodipennis (Chevrolat, 1878) for Carauari, Lábrea (Amazonas) and Ariquemes (Rondônia); H. validus (Olivier, 1790) for rio Araguaia (Brasil), Manaus (Amazonas), rio Tocantins (Pará), Porto Velho and BR 364, Km 130 (Rondônia); Odontoderes carinatus (Guérin-Méneville, 1844) for Manaus (Amazonas); O. spinicollis (Boheman, 1836) for rio Uraricoera (Roraima); and Ozopherus muricatus Pascoe, 1872 for lago Janauacá (Amazonas). Homalinotus humeralis is reported for the first time from "urucuri" palm, Attalea phalerata Mart. ex Spreng.

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O objetivo deste trabalho foi designar o nome correto do afídeo que ataca palmáceas nativas amazônicas e descrever sua infestação. O monitoramento de insetos-praga em mudas e em plantas adultas permitiu a identificação de Cerataphis brasiliensis (Hempel, 1901) (Hemiptera: Aphididae: Hormaphidinae: Cerataphidini). Relatos anteriores identificaram erroneamente a espécie como Cerataphis lataniae (Boisduval, 1867). Recomenda-se o monitoramento dessa espécie em palmáceas.

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A utilização de plantas medicinais é uma prática comum entre as populações humanas. O presente trabalho teve por objetivo efetuar levantamento etnobotânico sobre o conhecimento e uso das plantas medicinais em quatro comunidades ribeirinhas do Município de Manacapuru. Foram coletadas informações de 164 moradores locais, selecionados aleatoriamente, por meio de entrevistas semi-estruturadas, observações participantes e visitas guiadas. Os problemas de saúde citados foram classificados de acordo com a Classificação Estatística Internacional de Doenças e Problemas Relacionados à Saúde (CID-10) e índices de concordância foram utilizados para identificar os principais usos de cada espécie. Identificaram-se 171 plantas medicinais, pertencentes a 65 famílias. Lamiaceae (14 espécies), Asteraceae (9 espécies), Fabaceae e Euphorbiaceae (8 espécies) foram as famílias mais comuns. As espécies mais citadas foram Mentha arvensis (hortelã), Ruta graveolens (arruda) e Citrus sinensis (laranja). As folhas foram as partes da planta mais utilizadas e a decocção da folha o procedimento mais comum usado para preparar medicamentos. Os problemas mais comuns citados foram doenças do aparelho digestivo, doenças do aparelho respiratório e problemas com sintomas não classificados. Plantas com índices de concordância maior que 25% foram Plectranthus amboinicus, Chenopodium ambrosioides, Citrus aurantiifolia, Acmella oleracea, Plectranthus barbatus, Mentha arvensis, Citrus sinensis, Lippia origanoides, Lippia alba, Cymbopogon citratus e Ruta graveolens. Estes resultados confirmam que as populações que vivem em Manacapuru ainda utilizam plantas medicinais como uma das formas de tratar suas doenças mais frequentes.

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This paper is a small contribution to the knowledge of some species of brazilian Ithomiidae (Lep., Rhop.). The Author, during the year 1950, had an oportunity to study the development of the following species: Mechanitis lysimnia Fabr. Mechanitis polymnia casabranca Hsch. Dircenna dero Hübn. Methona themisto (Hübn.) The three first species live, in Piracicaba (State of São Paulo, Brasil), on Solanum variabile Mart., damaging its leaves, Mechanitis polymnia casàbranca being a serious enemy of this medicinal plant. The Author presents some notes on the biological cycle of M. lysimnia, which confirm D'Almeida's observations. Methona themisto is an old pest of Brunfelsia hopeana Benth. In Argentine, according to Hayward's observations, it occurs on Brunfelsia pauciflora Benth. The biology of this species previously has been studied by Figueiredo (1939). In Piracicaba it is not an enemy of B. hopeana on which it is reported to be so harmful elsewhere. The Author's observations were made in the Laboratory of Zoology of the Escola Superior de Agricultura "Luiz de Queiroz" in order to protect the larvae from the attack of their possible natural enemies. Notwithstanding, the Mechanitis polymnia casabranca caterpillars were attacked by an interesting Salticidae, identified by Hélio Camargo as Hasarius adan-soni (Audouin, 1827).

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Brassolis sophorae (L.) (Lep., Brassolidae) is an old and important pest of some Brazilian Palmae, among which Cocos nucifera L. and Copemicia cerifera Mart, are the most valuable economically. Eggs are attacked by Anastatus reduvii (Howard) (Eupel-midae) and Telenomus sp. and Telenomus nigrocoxdlis Ashmead (Scelionidae), the larvae being destroyed by Withemia pinguis (F.) (Tachinidae). Six other insects devellop inside the pupae : Xanthozona melanopyga (Wiedmann) and Belvosia sp. (Tachinidae) and the Hymenoptera Brachymeria annulata (F.), B. incerta (Cres-son), Spilochalcis nigrifrons Cameron and S. morleyi Ashmead (Chalcicidae), the last of them being principally treated in this paper. A species of Sarcophagidae (Sarcophaga lambens Wiedmann) was also noted, some flies being gotten from a single pupa. In Piracicaba (State of S. Paulo, Brasil), according to the Author's observations, B. sophorae principal enemy is X. melanopyga, to which our attention has to be directed in a biological fight against the mentioned Brassolidae. The reported Telenomus sp. is also very harmful to B. sophorae eggs. In the whole zone of its distribution, the hosts of B. sophorae caterpillars are Palmae plants, appearing sporadically feeding on banana and sugar cane leaves.

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Biology of Arsenura xanthopus (Walker, 1855) (Lep., Adelocephalidae), a pest of Luehea spp. (Tiliaceae), and notes on its natural enemies. In the beginning of 1950, one of the Authors made some observations about the biology of Arsenura xanthopus (Walker), in Piracicaba, State of S. Paulo, Brazil. From 1951 to 1953, both Authors continued the observations on such an important Adelocephalidae, the caterpillars of which represent a serious pest of Luehea spp. leaves. Actually, in some occasions, the caterpillars can destroy completely the leaves of the trees. The species is efficientely controlled by two natural enemies: an egg parasite (Tetrastichus sp., Hym., Eulophidae) and a fly attacking the last instar caterpillar (Winthemia tricolor (van der Wulp), Dip., Tachinidae). Tetrastichus sp. can destroy 100% of the eggs and the fly, 70 to 100% of the caterpillars. Indeed, facts as such are very interesting because we rarely know of a case of so complete a control of a pest by an insect. A. xanthopus had not yet been mentioned in our literature. Actually neither the systematic bibliography nor the economic one has treated of this species. However, a few other species of Arsenura are already known as living on Luehea spp. According to the Authors' observations, W. tricolor was also unknown by the Brazilian entomological literature. Arsenura xanthopus (Walker, 1855) After giving the sinonimy and a few historical data concerning the species, and its geographical distribution, the Authors discuss its placing in the genus Arsenura Duncan or Rhescyntis Huebner, finishing by considering Arsenura xanthopus as a valid name. The Authors put the species in the family Adelocephalidae, as it has been made by several entomologists. The host plant The species of Tiliaceae plants belonging to the genus Luehea are called "açoita-cavalo" and are well known for the usefulness of their largely utilized wood. The genus comprises exclusively American plants, including about 25 species distributed throughout the Latin America. Luehea divaricata Mart, is the best known species and the most commonly cultivated. Biology of Arsenura xanthopus Our observations show that the species passes by 6 larval stages. Eggs and egg-postures, all the 6 instars of the caterpillars as well as the chrysalid are described. The pupal period is the longest of the cycle, taking from 146 to 256 days. Data on the eclosion and habits of the caterpillars are also presented. A redescription of the adult is also given. Our specimens agreed with BOUVIER's description, except in the dimension between the extremities of the extended wings, which is a little shorter (107 mm according to BOUVlErVs paper against from 80 to 100mm in our individuals). Winthemia tricolor (van der Wulp, 1890) Historical data, geographical distribution and host are first related. W. tricolor had as yet a single known host-; Ar^-senura armida (Cramer). This chapter also contains some observations on the biolcn gy of the fly and on its behaviour when trying to lay eggs on the caterpillars' skin. The female of W. tricolor lays from 1 to 33 eggs on the skin of the last instar caterpillar. The mam region of the body where the eggs are laid are the membranous legs. Eggs are also very numerous oh the ventral surface of the thorax and abdomen. The. preference for such regions is easily cleared up considering the position assumed by the caterpillar when fixed motionless in a branch. In such an occasion, the fly approaches, the victim, puts the ovipositor out and lays the eggs on different parts of the body, mainly on the mentioned regions, which are much more easily reached. The eggs of the fly are firmly attached to the host's skin, being almost impossible to detach them, without having them broken. The minute larvae of the fly enter the body of, the host when it transforms into chrysalid. Chrysalids recentely formed and collected in nature f requentely show a few small larvae walking on its skin and looking for an adequate place to get into the body. A few larvae die by remaining in the skin of the caterpillar which is pushed away to some distance by the active movements of the chrysalid recentely formed. From 1 to 10 larvae completely grown may emerge from the attacked chrysalid about 8 days after their penetrating into the caterpillars' body and soon begin to look for an adequate substratum where they can transform themselves into pupae. In natural conditions, the metamorphosis occurs in the soil. The flies appear within 15 days. Tetrastichus sp. This microhymenoptera is economically the most interesting parasite, being commonly able to destroy the whole pos^ ture of the moth. Indeed, some days after the beginning of the infestation of the trees, it is almost impossible to obtain postures completely free of parasites. The active wasp introduces the ovipositor into the egg of the moth, laying its egg inside, from 80 to 120 seconds after having introduced it. A single adult wasp emerges from each egg. Sarcophaga lambens Wiedemann, 1830 During the observations carried out, the Authors obtained 10 flies from a chysalid that were recognized as belonging to the species above. S. lambens is a widely distributed Sarcophagidae, having a long list of hosts. It is commonly obtained from weak or died invertebrates, having no importance as one of their natural enemies. Sinonimy, list of hosts and distribution are presented in this paper. Control of Arsenura xanthopus A test has been carefully made in the laboratory just to find out the best insecticide for controlling A. xanthopus caterpillars. Four different products were experimented (DDT, Pa-rathion, BHC and Fenatox), the best results having been obtained with DDT at 0,25%. However, the Authors believe in spite of the initial damages of the trees, that the application of an insecticide may be harmful by destroying the natural agents of control. A biological desiquilibrium may in this way take place. The introduction of the parasites studied (Tetrastichus sp. and Winthemia tricolor) seems to be the most desirable measure to fight A. xanthopus.

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Êste trabalho tem por objetivo contribuir para o conhecimento da Brassolis astyra God. e B. sophorae (L.), espécies muito nocivas ao coqueiro da Bahia (Cocos nucifera L.), carnaubera (Copernicia cerifera Mart.) e outras Palmáceas. Contém a sinonímia, resumo da bibliografia e a distribuição geográfica das duas espécies. Contém, além de dados biológicos, importância econômica e a natureza dos estragos causados pelos insetos, a lista das plantas hospedeiras. Apontam-se medidas de combate que incluem medidas culturais, artificiais, química, biológicas, inclusive a manutenção de parasitas. Trata também de todos os insetos parasitas das duas espécies de Brassolis. Os autores limitaram-se a dar a sinonímia, distribuição geográfica, resumo da literatura e lista dos insetos hospedeiros dos parasitas que não foram vistos. Dos parasitas obtidos pelos autores, dão-se também algumas notas biológicas e sistemáticas.

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This paper deals with anatomical descriptions of some types of nectaries in 27 species of honey plants of Piracicaba, S. P. The material studied was divides in two groups: a) Extra-floral nectaries; b) Floral nectaries. Euphorbia pulcherrima, Willd; showed to belonging to the first group: its nectaries tissue consist of an epidermal layer of cell without stomata and with true gland, with subepidermal cells diferentiated by the thickness of the wall. Among the plants with floral nectaries, the following types has been listed, according the location of the nectary in the flower: 1 - with true glands: a) in sepals, Hibiscus rosa sinensis, L.; Dombeya Wallichii, Bth. e Hk; b) in the stamens tube, Antigonum leptopus, Hook e Arn.; 2 - on the receptacle with nectariferous tissue in the epidermal cell with: a) thickness wall with stomata, Prunus persical, L.; b) thin wall without stomata, Crotalaria paulinia, Shranck; Caesal-pinia sepiaria, Roxb; Aberia caffra; 3 - with a disc located in the receptacle with: epidermal: a) with stomata, Coffea arábica, L. var. semper florens; Citrus aurantifolia, Swing; Cinchona sp.; Pryrostegia ignea, Presl.; b) without stomata and with thin wall, Leojurus sibiricus, L.; Bactocydia unguis, Mart., Ipomoea purpurea, L.; Greviüea Thelemanniana, Hueg.; Dolichos lablab, L.; Vernonia polyanthes, Less., Montanoa bipinatifida, C. Koch., Eruca sativa, L. Brassica Juncea, Co; Eucalyptus tereticomis, Smith.; Eucalyptus rostrata, Schleche; Salvia splendens, Selow.; 4 - in the basal tissues of the ovary, Budleia brasiliensis, Jacq F.; Petrea subserrata, Cham.; 5 - in the base of stamens, Per sea americana, Mill. On the anatomical point of view, most of the types of nectary studied has external nectariferous tissues, located on the epidermal cells with thin periclinal wall and without stomata. The sub-epidermal layer were rich in sugar. Short correlation was found between the structure of the nectary and the amount of nectar secretion. So, in the nectary with true glands, in those with thin wall and without stomata on epidermal cells and in those with stomata, the secretion was higher than in the other types listed.

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O presente trabalho apresenta um método de réplica de superfície para o estudo da estrutura das fôlhas de vegetais ao microscípio eletrônico. O método permitiu a observação do mesmo tipo de estrutura observada por outros autores na superfície das fôlhas de couve (Brassica oleracea). O método permitiu observar que nas superfícies das fôlhas de café (Coffea arabica) a ultraestrutura característica e pràticamente desprovida do tipo de ornamentação encontrado nas fôlhas de couve.

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Root-knot nematodes were found attacking Coffea spp. and also roots of a few weed species usually found in the coffee orchards in São Paulo. C. arabica cv. Catuaí, C. arabica cv. Mundo Novo, Timor Hybrid and a few plants of C. racemosa showed to be susceptible to Meloidogyne exigua. Roots of Ageratum conyzoides, Amaranthus viridis, Bidens pilosa, Coffea arabica cv. Mundo Novo, Coffea racemosa, Commelina virginica, Digitaria sanguinalis, Galinsoga parviflora, Gnaphalium spathulatum, Porophyllum ruderale, Portulaca oleracea, Pterocaulon virgatum and Solanum americanum were disfigured by M. incognita M. arenaria was found attacking roots of Eleusine indica and Gnaphalium spathulatum, and the presence of an unidentified Meloidogyne species was verified in roots of the following species: Vernonia ferruginea, C. arabica x C. canephora, Eupatorium pauciflorum, Coffea canephora cv. Kouillou, Coffea eugenioides, Coffea racemosa, Coffea stenophylla, Euphorbia pilullifera, Solanum americanum, Ageratum conyzoides, Phyllanthus corcovadensis, and Emilia sagittata.

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A presente pesquisa foi conduzida na Escola Superior de Agricultura "Luiz de Queiroz", em Piracicaba, SP, no ano de 1981, com o objetivo de se estudar o comportamento dos herbicidas bentazon e paraquat, aplicados isoladamente ou em misturas, em alguns cultivares de feijão e algumas espécies de plantas daninhas. Para tanto, foram instalados dois experimentos a campo, sendo um "das secas" e outro "das águas" de 1981. Os cultivares de feijão estudados foram Carioca e Moruna. Os tratamentos utilizados foram os seguintes: bentazon a 0,48 e 0,96 kg/ha; paraquat a 0,05 e 0,10 kg/ha e as misturas de tanque com 0,48 + 0,05; 0,96 + 0,10; 0,48 + +0,10 e 0,96 + 0,05 kg/ha de bentazon + paraquat, respectivamente. Foram realizadas avaliações visuais da porcentagem de injúria nos cultivares de feijão e nas espécies de plantas daninhas, sendo utilizada a fórmula de Colby para verificação dos efeitos das misturas. Os resultados mostraram que as misturas exerceram evidente efeito antagonístico nos cultivares ensaiados. Os tratamentos não influíram na produção dos cultivares Carioca e Moruna. Em solos arenosos e com baixa precipitação, o sinergismo das misturas ficou evidenciado na guanxuma (Sida glaziovii K. Sch.) e na beldroega (Portulacca oleracea L.). Em solos argilosos, com precipitação normal, os efeitos sinergísticos foram evidentes no capim-marmelada (Brachiaria plantaginea (Link.) Hitch.), capim-pé-de-galinha (Eleusine indica (L.) Gaertn.) e no apaga-fogo (Alternanthera ficoidea (L.) R. Br.).

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Neste trabalho buscou-se identificar as plântulas de cinco taxa do gênero Brassica: B.napus, var. olei fera (colza), B.oleracea var. botrytis (couve-flor), B.oleracea var. capitata (repolho), B.oleroeca var. italica (brócolo) e B. pekinensis (couve-chinesa). Foram elaboradas chaves para adistinção das plântulas nos estágios cotiledonar, da primeira folha e da terceira - quarta folha e feitas as descrições. Foi possível a distinção das taxa por características corno: forma dos cotilédones e pilosidade, forma, bordo, cerosidade e nervação foliar.

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Este trabalho trata do estudo da biologia de Rolepa unimoda (Dognin,1923) (Lepidoptera, Lymantriidae), cujas lagartas são desfolhadoras em plantios ornamentais de Tabebuia avellanedae Lor. ex-Griseb (Bignoniaceae). Ataca também T. caraiba (Mart.) Burm. Os insetos foram criados em condições de laboratório (Temperatura 27±2°C; UR: 70 ± 15%, Fotoperíodo de 12 h), na Seção de Entomologia do Centro de Ciências Agrárias da Fundação Universidade Federal de Mato Grosso, em Cuiabá, MT. Foram estudados os seguintes parâmetros: período e viabilidade das fases de ovos,lagarta, pré-pupa e pupa; número e duração dos ínstares larvais e consumo foliar da fase de lagarta; longevidade dos adultos e proporção quanto ao sexo; inimigos naturais; plantas hospedeiras e ocorrência do inseto nos Estados de Mato Grosso e Mato Grosso do Sul.