23 resultados para Gesneriaceae


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Kohleria eriantha (Benth.) Hanst is a plant belonging to the family Gesneriaceae, with an underground organ, which is associated with vegetative reproduction. This organ is a rhizome, whose stem bears buds covered with modified leaves that store up starch. In small sections of this rhizome, containing six buds (1.5 to 2.0cm long), only one bud sprouted. The sprouted bud could be differentiated into two morphological pattern: aerial part or rhizome. Sprouting of the rhizome pattern occurred in sections kept on substrate with low water content (1mL of water), or lacking water, whereas sprouting of the aerial part pattern occurred in sections on substrate with high water content (12mL of water). Temperature at 20ºC also stimulated sprouting of the rhizome pattern, regardless of the water volume in the substrate. Sprouting of the rhizome pattern occurred still in sections on substrate to which polyethylene glycol 6000 (PEG) solution was added at the concentrations of 161.2, 235.2 and 340.0g/L, resulting in potentials of -3, -6 and -12 MPa, respectively. Sections kept on substrate with low water content (1 ml of water) showed a reduction in the dry matter content and high osmotic concentration in comparison with those on substrate with high water content. The results obtained revealed that forming of the rhizome pattern was influenced by water content and temperature. It is suggested that sprouting of the rhizome pattern was induced by the low water potential in the sections, when kept on substrate with low water content. Moreover, it was observed that the rhizome buds of Kohleria eriantha showed a high degree of plasticity.

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A new species of Gesneriaceae discovered in remnants of deciduous forests on limestone outcrops in Minas Gerais, Brazil, is described and compared with morphologically related taxa. This plant presents the diagnostic features of the tribe Gloxinieae, but a unique combination of morphological traits distinguishes this taxon from previously described genera. Its phylogenetic position was inferred based on analyzing DNA sequences variation of five loci: the rpl1 intron, rps16 intron, trnL-F intron-spacer, a portion of the plastid-expressed glutamine synthetase gene (ncpGS) and the ribosomal DNA internal transcribed spacer (ITS). Molecular phylogenetic analyses confirm the position of this new species in the Gloxinieae, as a sister lineage of a clade including the Brazilian genera Mandirola and Goyazia. However, tests using topological constraints do not reject the alternative relationship that places this taxon with Gloxiniopsis in a monophyletic group. To accomodate this species in the current generic circumscription of gloxinieae, the new genus chautemsia A.O. Araujo V.C. Souza is created.

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Gesneriaceae are represented in the New World (NW) by a major clade (c. 1000 species) currently recognized as subfamily Gesnerioideae. Radiation of this group occurred in all biomes of tropical America and was accompanied by extensive phenotypic and ecological diversification. Here we performed phylogenetic analyses using DNA sequences from three plastid loci to reconstruct the evolutionary history of Gesnerioideae and to investigate its relationship with other lineages of Gesneriaceae and Lamiales. Our molecular data confirm the inclusion of the South Pacific Coronanthereae and the Old World (OW) monotypic genus Titanotrichum in Gesnerioideae and the sister-group relationship of this subfamily to the rest of the OW Gesneriaceae. Calceolariaceae and the NW genera Peltanthera and Sanango appeared successively sister to Gesneriaceae, whereas Cubitanthus, which has been previously assigned to Gesneriaceae, is shown to be related to Linderniaceae. Based on molecular dating and biogeographical reconstruction analyses, we suggest that ancestors of Gesneriaceae originated in South America during the Late Cretaceous. Distribution of Gesneriaceae in the Palaeotropics and Australasia was inferred as resulting from two independent long-distance dispersals during the Eocene and Oligocene, respectively. In a short time span starting at 34 Mya, ancestors of Gesnerioideae colonized several Neotropical regions including the tropical Andes, Brazilian Atlantic forest, cerrado, Central America and the West Indies. Subsequent diversification within these areas occurred largely in situ and was particularly extensive in the mountainous systems of the Andes, Central America and the Brazilian Atlantic forest. Only two radiations account for 90% of the diversity of Gesneriaceae in the Brazilian Atlantic forest, whereas half of the species richness in the northern Andes and Central America originated during the last 10 Myr from a single radiation.

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BACKGROUND: Major factors influencing the phenotypic diversity of a lineage can be recognized by characterizing the extent and mode of trait evolution between related species. Here, we compared the evolutionary dynamics of traits associated with floral morphology and climatic preferences in a clade composed of the genera Codonanthopsis, Codonanthe and Nematanthus (Gesneriaceae). To test the mode and specific components that lead to phenotypic diversity in this group, we performed a Bayesian phylogenetic analysis of combined nuclear and plastid DNA sequences and modeled the evolution of quantitative traits related to flower shape and size and to climatic preferences. We propose an alternative approach to display graphically the complex dynamics of trait evolution along a phylogenetic tree using a wide range of evolutionary scenarios. RESULTS: Our results demonstrated heterogeneous trait evolution. Floral shapes displaced into separate regimes selected by the different pollinator types (hummingbirds versus insects), while floral size underwent a clade-specific evolution. Rates of evolution were higher for the clade that is hummingbird pollinated and experienced flower resupination, compared with species pollinated by bees, suggesting a relevant role of plant-pollinator interactions in lowland rainforest. The evolution of temperature preferences is best explained by a model with distinct selective regimes between the Brazilian Atlantic Forest and the other biomes, whereas differentiation along the precipitation axis was characterized by higher rates, compared with temperature, and no regime or clade-specific patterns. CONCLUSIONS: Our study shows different selective regimes and clade-specific patterns in the evolution of morphological and climatic components during the diversification of Neotropical species. Our new graphical visualization tool allows the representation of trait trajectories under parameter-rich models, thus contributing to a better understanding of complex evolutionary dynamics.

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We used axillary buds as initial explants for hormone interaction studies required for in vitro cultivation of S. allagophylla. Callus production was achieved on gelled Murashige & Skoog medium (MS) supplemented with indole-3-acetic acid (IAA= 0.1 and 0.5 mg.l­1 alone or combined with 6 benzylaminopurine) (BA= 0.01 and 0.1 mg.l-1). A hormone balance between IAA and BA that would encourage shoot bud development was not found. Nodal segments from axenic cultures grown in the presence of cytokinin (0.1 mg.1­1 of BA) without any auxin on MS medium with half-strength macronutrients were used as a standard explant source for subsequent experiments on optimum mineral culture media composition for S. allagophylla in vitro cultivation. We found that explants kept in vitro on gelled Gamborg et al. (B5) mineral composition culture medium showed better shoot and specially root growth than on MS medium. Comparisons of the ammonium and nitrate ratios of MS and B5 media indicate that B5 medium has a substantial reduced ammonium ion when compared to MS medium, as well as a lower total nitrogen level. The growth response pattern obtained in vitro may be evidence of the adaptation of this species to soils of poor mineral composition as found in the Brazilian cerrado, as well as an indication that nitrogen levels play a key role for S. allagophylla growth.

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O estudo in vitro foi realizado a partir de sementes de S. allagophylla, colhidas de plantas crescidas na Reserva Biológica de Moji-Guaçu. Foram testadas duas interfaces da adaptação desta espécie às condições do cerrado: efeito do pH e das concentrações de nutrientes, utilizando o meio básico de Murashige & Skoog (MS) e o de Gamborg et al. (B5). Modificações do meio MS foram feitas em relação ao pH, com um gradiente de valores iniciais, indo do 4,2 ao 5,8 (intervalos de 0,2), e em relação aos nutrientes KNO3, KH2PO4 e MgSO4.7H2O, com concentrações progressivamente menores destes. Quanto ao meio B5 foi testada a composição nutricional nas concentrações totais e reduzidas à metade (B5 50%). Os resultados mostraram que as adaptações desta espécie do cerrado in vitro foram: todos os explantes, independente do valor inicial do pH, acidificaram o meio e o crescimento foi mais favorável em meios com menores valores iniciais de pH; o crescimento não foi afetado pela diminuição da concentração de nitrato e a redução da composição nutricional do meio B5 até promoveu o crescimento, principalmente quanto à expansão foliar; o crescimento foi similar tanto na presença como na ausência total de KH2PO4 e de MgSO4.7H2O (em relação ao meio MS). Estes resultados são consistentes com o conceito de uma planta bem adaptada em absorver nutrientes de solos de cerrado, solos estes ácidos, pobres em nutrientes e ricos em alumínio.

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Gesneriaceae é predominantemente tropical e compreende aproximadamente 3.000 espécies. A Cadeia do Espinhaço inclui parte dos Estados de Minas Gerais e Bahia e sua vegetação é dominada pelos campos rupestres. O Espinhaço de Minas Gerais tem seu limite norte no município de Espinosa e sul na Serra de Ouro Branco. O trabalho foi baseado no levantamento bibliográfico, consulta a herbários, coletas e observações de campo. O levantamento revelou a presença de 21 espécies, pertencentes a seis gêneros: Anetanthus, Codonanthe, Gloxinia, Nematanthus, Paliavana e Sinningia. São apresentados chaves de identificação, descrições e comentários dos táxons, mapas de distribuição das espécies na área de estudo e ilustrações.

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Com base nas características florais tem sido inferida a polinização por beija-flores na maioria das espécies de Sinningia e Vanhouttea, entretanto, informações detalhadas sobre a biologia da polinização são restritas a poucas espécies. Neste estudo são apresentadas as observações sobre a biologia da polinização e as espécies de beija-flores polinizadores, relacionando as características do néctar com o comportamento desses beija-flores em três espécies de Vanhouttea e três de Sinningia. As flores são tubulosas, avermelhadas e inodoras. Em relação ao tamanho da corola estas espécies formam dois grupos morfológicos, sendo as corolas em V. hilariana, V. brueggeri e S. gigantifolia significativamente maiores que em V. calcarata, S. cochlearis e S. tuberosa. O volume de néctar secretado durante 24 horas pelas espécies de Vanhouttea (21,8 ± 13,2 µL) é maior que nas espécies de Sinningia (6,3 ± 5,7 µL). Assim também, a quantidade de açúcares produzida pelas espécies de Vanhouttea é mais alta (6,1 ± 3,9 mg) e difere significativamente das espécies de Sinningia (1,8 ± 1,6 mg). Estas diferenças nas características do néctar podem estar relacionadas com a variação do tamanho das glândulas nectaríferas entre os dois gêneros. Cinco espécies de beija-flores, Leucochloris albicollis, Stephanoxis lalandi, Clytolaema rubricauda (Trochilinae), Phaethornis pretrei e P. eurynome (Phaethornithinae), são os principais polinizadores das espécies de Vanhouttea e Sinningia. O grupo de beija-flores polinizadores (Trochilinae ou Phaethornithinae) de cada espécie parece ser determinado pelo hábitat da planta, mais do que pelo tamanho do tubo da corola, enquanto que a freqüência de visitas dos beija-flores às flores, parece ser determinada, principalmente, pelas características do néctar.

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Foi apresentado o estudo polínico de três espécies de Besleria L. (B. longimucronata Hoehne, B. selloana Klotzsch & Hanst., B. umbrosa Mart.) e uma espécie de Napeanthus (Napeanthus primulifolius (Raddi) Sandw.) ocorrentes no Estado de São Paulo, além de Napeanthus reitzii (L. B. Sm.) B. L. Burtt ex Leeuwenb. que ocorre no Sul do Brasil. Os grãos de pólen foram acetolisados, medidos, descritos e fotomicrografados sob microscopia de luz. Para observar detalhes da ornamentação e estrutura da exina, grãos de pólen não acetolisados foram analisados em microscopia eletrônica de varredura e de transmissão. As medidas receberam tratamento estatístico. Os grãos de pólen foram descritos como pequenos a médios, isopolares, oblato-esferoidais, 3-colporados, endoaberturas lolongadas, psilado-perfurados (B. longimucronata), rugulados (B. umbrosa) ou microrreticulados (B. selloana, N. primulifolius e N. reitzii). Os resultados obtidos demonstram a importância taxonômica da morfologia polínica para corroborar a subdivisão dos táxons nas tribos Beslerieae e Napeantheae.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Pollen morphology of 24 Brazilian species of Codonanthe and Nematanthus (Gesneriaceae) was investigated by means of light microscopy, scanning and transmission electron microscopy, in search of new characters that might contribute to taxonomic characterisation of the genera. The pollen grains are tricolpate or tricolporate, semitectate, reticulate, with simplicolumellate muri, sometimes with microreticulum and perforations, or duplicolumellate muri ring-shaped around lumina. The species studied were grouped into five pollen types on the basis of aperture characteristics and details of surface ornamentation. Sub-types were defined with reference to presence or absence of microreticulum and perforations around the lumina. Based on analysis of the morphology and measurements of pollen grains, we verified a close relationship among the genera, but can nevertheless discriminate their species. © 2013 Copyright Collegium Palynologicum Scandinavicum.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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(Taxonomic studies on Gloxinieae (Gesneriaceae) - nomenclatural notes). Gloxinia L'Her. is a genus that has undergone major changes since the reorganization of the tribe Gloxinieae in the last few decades. We here designate 15 lectotypes, indicate six illegitimate superfluous names, and propose one new combination for this group; comments about three species with uncertain identities are also included.

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Une taxonomie révisée et une connaissance des limites d’espèces demeurent toujours importantes dans les points chauds en biodiversité comme les Antilles où de nombreuses espèces endémiques sont retrouvées. Des limites d’espèces divergentes impliquent un différent nombre d’espèces retrouvées dans un écosystème, ce qui peut exercer une influence sur les décisions prises face aux enjeux de conservation. Les genres Gesneria et Rhytidophyllum qui forment les principaux représentants de la famille des Gesneriaceae dans les Antilles comprennent plusieurs taxons aux limites d’espèces ambigües et quelques espèces qui ont des sous-espèces reconnues. C’est le cas de Gesneria viridiflora (Decne.) Kuntze qui comprend quatre sous-espèces géographiquement isolées et qui présentent des caractères végétatifs et reproducteurs similaires et variables. Une délimitation d’espèces approfondie de ce complexe d’espèce est effectuée ici à partir d’une approche de taxonomie intégrative considérant des données morphologiques, génétiques et bioclimatiques. Les données morphologiques quantitatives et qualitatives obtenues à partir de spécimens d’herbier sont utilisées pour délimiter des groupes morphologiques à l’aide d’une analyse en coordonnées principales. Ces groupes sont ensuite testés à l’aide de séquences d’ADN de quatre régions nucléaires en utilisant une méthode bayesienne basée sur la théorie de la coalescence. Finalement, les occurrences et les valeurs de variables de température et de précipitation qui y prévalent sont utilisées dans une analyse en composantes principales bioclimatique pour comparer les groupes délimités morphologiquement et génétiquement. Les résultats de l’analyse morphologique multivariée supportent la distinction entre les groupes formés par les sous-espèces actuellement reconnues de G. viridiflora. Les résultats, incluant des données génétiques, suggèrent une distinction jusqu’ici insoupçonnée des populations du Massif de la Hotte au sud-ouest d’Haïti qui sont génétiquement plus rapprochées des populations de Cuba que de celles d’Hispaniola. Bioclimatiquement, les groupes délimités par les analyses morphologiques et génétiques sont distincts. L’approche de taxonomie intégrative a permis de distinguer cinq espèces distinctes plutôt que les quatre sous-espèces acceptées jusqu’à aujourd’hui. Ces espèces sont : G. acrochordonanthe, G. quisqueyana, G. sintenisii, G. sylvicola et G. viridiflora. Une carte de distribution géographique, un tableau de la nouvelle taxonomie applicable et une clé d’identification des espèces sont présentés. La nouvelle taxonomie déterminée dans cette étude démontre un endémisme insoupçonné dans plusieurs régions du point chaud en biodiversité des Antilles et souligne l’importance d’investiguer les limites d’espèces dans les groupes diversifiés comprenant des taxons aux limites d’espèces incomprises.

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Une taxonomie révisée et une connaissance des limites d’espèces demeurent toujours importantes dans les points chauds en biodiversité comme les Antilles où de nombreuses espèces endémiques sont retrouvées. Des limites d’espèces divergentes impliquent un différent nombre d’espèces retrouvées dans un écosystème, ce qui peut exercer une influence sur les décisions prises face aux enjeux de conservation. Les genres Gesneria et Rhytidophyllum qui forment les principaux représentants de la famille des Gesneriaceae dans les Antilles comprennent plusieurs taxons aux limites d’espèces ambigües et quelques espèces qui ont des sous-espèces reconnues. C’est le cas de Gesneria viridiflora (Decne.) Kuntze qui comprend quatre sous-espèces géographiquement isolées et qui présentent des caractères végétatifs et reproducteurs similaires et variables. Une délimitation d’espèces approfondie de ce complexe d’espèce est effectuée ici à partir d’une approche de taxonomie intégrative considérant des données morphologiques, génétiques et bioclimatiques. Les données morphologiques quantitatives et qualitatives obtenues à partir de spécimens d’herbier sont utilisées pour délimiter des groupes morphologiques à l’aide d’une analyse en coordonnées principales. Ces groupes sont ensuite testés à l’aide de séquences d’ADN de quatre régions nucléaires en utilisant une méthode bayesienne basée sur la théorie de la coalescence. Finalement, les occurrences et les valeurs de variables de température et de précipitation qui y prévalent sont utilisées dans une analyse en composantes principales bioclimatique pour comparer les groupes délimités morphologiquement et génétiquement. Les résultats de l’analyse morphologique multivariée supportent la distinction entre les groupes formés par les sous-espèces actuellement reconnues de G. viridiflora. Les résultats, incluant des données génétiques, suggèrent une distinction jusqu’ici insoupçonnée des populations du Massif de la Hotte au sud-ouest d’Haïti qui sont génétiquement plus rapprochées des populations de Cuba que de celles d’Hispaniola. Bioclimatiquement, les groupes délimités par les analyses morphologiques et génétiques sont distincts. L’approche de taxonomie intégrative a permis de distinguer cinq espèces distinctes plutôt que les quatre sous-espèces acceptées jusqu’à aujourd’hui. Ces espèces sont : G. acrochordonanthe, G. quisqueyana, G. sintenisii, G. sylvicola et G. viridiflora. Une carte de distribution géographique, un tableau de la nouvelle taxonomie applicable et une clé d’identification des espèces sont présentés. La nouvelle taxonomie déterminée dans cette étude démontre un endémisme insoupçonné dans plusieurs régions du point chaud en biodiversité des Antilles et souligne l’importance d’investiguer les limites d’espèces dans les groupes diversifiés comprenant des taxons aux limites d’espèces incomprises.