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Registros recuperados : 21 | |
3. | | ROSA, L. H.; QUEIROZ, S. C. do N. de; WANG, X.; TECHEN, N.; CANTRELL, C. L.; WEDGE, D. E. Antifungal fatty acids produced by Coniochaeta ligniaria: a cryptic endophytic fungus associated with Smallanthus sonchifolius' autotrophic cultures. In: Planta Medica, Dordrecht, v. 79, n. 5, p. 5, 2013. Abstracts of the 12th International Conference on the Science of Botanicals (ICBS), Oxford, 2013. Biblioteca(s): Embrapa Meio Ambiente. |
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4. | | CAMPAGNANI, M. O.; CAMPOS, W. G.; AMORIM, S. S.; ROSA, L. H.; AUAD, A. M.; MAURÍCIO, M. Bioprospecção de fungos entomopatogênicos associados à Mahanarva spectabilis na Amazônia In: CONGRESSO BRASILEIRO DE MICOLOGIA, 8., 2016, Florianópolis. Anais... São Paulo: Sociedade Brasileira de Micologia, 2016. Biblioteca(s): Embrapa Gado de Leite. |
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5. | | GONÇALVES, V. N.; CAMPOS, L. S.; MELO, I. S. de; PELLIZARI, V. H.; ROSA, C. A.; ROSA, L. H. Penicillium solitum: a mesophilic, psychrotolerant fungus present in marine sediments from Antarctica. Polar Biology, v. 36, n. 12, p. 1823-1831, 2013. Biblioteca(s): Embrapa Meio Ambiente. |
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6. | | MELO, I. S. de; VASCONCELLOS, R. L. F.; NASCIMENTO, R. dos S.; VILELA, E. S. D.; KAVAMURA, V. N.; ROSA, L. H. Endophytic bacteria from Deschampsia antarctica and assessment of their potential to promote plant growth. In: INTERNATIONAL SYMPOSIUM ON MICROBIAL ECOLOGY, 15., 2014, Seoul. Proceedings... Wageningen: The International Society for Microbial Ecology (ISME), 2014. p. 139-140. Biblioteca(s): Embrapa Meio Ambiente. |
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7. | | MELO, I. S. de; VILELA, E. S. D.; PARMA, M. M.; NASCIMENTO, R. dos S.; ROSA, L. H.; PELLIZARI, V. H. Bactérias celulolíticas isoladas do lago Stenhouse na Península Antártica. In: WORKSHOP DE BIODEGRADAÇÃO E BIORREMEDIAÇÃO, 3., 2009, Campinas. Anais... Jaguariúna: Embrapa Meio Ambiente, 2009. 1 CD-ROM. Biblioteca(s): Embrapa Meio Ambiente. |
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8. | | ROSA, L. H.; QUEIROZ, S. C. do N. de; MORAES, R. M.; WANG, X.; TECHEN, N.; PAN, Z.; CANTRELL, C. L.; WEDGE, D. E. Coniochaeta ligniaria: antifungal activity of the cryptic endophytic fungus associated with autotrophic tissue cultures of the medicinal plant Smallanthus sonchifolius (Asteraceae). Symbiosis, Philadelphia, v. 60, p. 133-142, 2013. Biblioteca(s): Embrapa Meio Ambiente. |
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9. | | SILVA, L. J. da; SOUZA, D. T.; GENUÁRIO, D. B.; VARGAS-HOYOS, H. A.; SANTOS, S. N.; ROSA, L. H.; ZUCCHI, T. D.; MELO, I. S. de. Rhodococcus psychrotolerans sp. nov., isolated from rhizosphere of Deschampsia antarctica. Antonie van Leeuwenhoek, v. 111, n. 4, p. 629-636, 2018. Biblioteca(s): Embrapa Meio Ambiente. |
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10. | | MELO, I. S. de; SANTOS, S. N.; ROSA, L. H.; PARMA, M. M.; SILVA, L. J.; QUEIROZ, S. C. do N. de; PELLIZARI, V. H. Isolation and biological activities of an endophytic Mortierella alpina strain from the Antarctic moss Schistidium antarctici. Extremophiles, Tokyo, v. 18, n. 1, p. 15-23, 2014. Biblioteca(s): Embrapa Meio Ambiente. |
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11. | | MELO, I. S. de; ZUCCHI, T. D.; SILVA, R. E. da; VILELA, E. S. D.; SÁBER, M. L.; ROSA, L. H.; PELLIZARI, V. H. Isolation and characterization of cellulolytic bacteria from the Stain house Lake, Antarctica. Folia Microbiologica, Prague, v. 59, p. 303-306, 2014. Biblioteca(s): Embrapa Meio Ambiente. |
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12. | | MENDONÇA, M. C. de; AUAD, A. M.; MADUREIRA, A. P.; MAURÍCIO, R. M.; SILVA, N. B. N.; SILVA, A. C. C. R.; ROSA, L. H.; CAMPOS, W. G. Inoculação endofítica de fungos entomopatogênicos em Brassica oleracea var. acephala L. para o controle biológico de Plutella xylostella (Lepdoptera) e Brevicoryne brassicae (Hemiptera). In: CONGRESSO BRASILEIRO DE MICROBIOLOGIA, 32., 2023, Foz do Iguaçu. Resumos. São Paulo: Sociedade Brasileira de Microbiologia, 2023. Biblioteca(s): Embrapa Gado de Leite. |
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13. | | CAMPAGNANI, M. O.; CAMPOS, W. G.; AMORIM, S. S.; ROSA, L. H.; AUAD, A. M.; CANGUSSÚ, M. A.; MAURÍCIO, R. M. Prospection and fungal virulence associated with Mahanarva spectabilis (Hemiptera: Cercopidae) in an Amazon silvopastoral system. Florida Entomologist, v. 100, n. 2, p. 426-432, 2017. Biblioteca(s): Embrapa Gado de Leite. |
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14. | | CAMPAGNANI, M. O.; MADUREIRA, A. P.; VIANA, J. P. R.; AMORIM, S. S.; ROSA, L. H.; AUAD, A. M.; CANGUSSU, M. A.; MAURICIO, R. M.; CAMPOS, W. G. Virulência em lagartas (lepidoptera) de novos fungos entomopatogênicos isolados de Mahanarva spectabilis (Distant) (Hemiptera: Cercopidae). In: SIMPÓSIO DE MICROBIOLOGIA DA UFMG, 5., 2018, Belo Horizonte. Resumos... Belo Horizonte: Universidade Federal de Minas Gerais, 2018. p. 93. Biblioteca(s): Embrapa Gado de Leite. |
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15. | | CAMPAGNANI, M. O.; MADUREIRA, A. P.; OLIVEIRA, M. M. B.; MAGALHÃES SILVA, N. B.; RIOS SILVA, A. C.; COELHO, L. C.; ROSA, L. H.; AUAD, A. M.; CANGUSSÚ, M. A.; MAURÍCIO, R. M.; CAMPOS, W. G. Eficiência de fungos entomopatogênicos contra Mahanarva spectabilis (distant) (hemiptera: cercopidae) a campo. In: SIMPÓSIO DE MICROBIOLOGIA DA UFMG, 5., 2018, Belo Horizonte. Resumos... Belo Horizonte: Universidade Federal de Minas Gerais, 2018. p. 94. Biblioteca(s): Embrapa Gado de Leite. |
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16. | | MENDONÇA, M. C. de; AUAD, A. M.; MADUREIRA, A. P.; MAURÍCIO, R. M.; CANGUSSU, M.; ROSA, L. H.; PEREIRA, M. F.; MUNIZ, M.; SOUZA, S. R. O.; SILVA, A. C. R.; SILVA, N. B. N.; CAMPOS, W. G. Eficiência de fungos isolados em sistema silvipastoril no controle biológico de Mahanarva spectabilis (hemiptera: cercopidae) em condições de campo. In: CONGRESSO BRASILEIRO DE MICROBIOLOGIA, 32., 2023, Foz do Iguaçu. Resumos. São Paulo: Sociedade Brasileira de Microbiologia, 2023. Biblioteca(s): Embrapa Gado de Leite. |
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17. | | OKI, Y.; GOTO, B. T.; JOBIM, K.; ROSA, L. H.; FERREIRA, M. C.; COUTINHO, E. S.; XAVIER, J. H. de A.; CARVALHO, F.; MOREIRA, F. M. de S.; SOUZA, F. A. de; BERBARA, R. L. L.; FERNANDES, G. W. Arbuscular mycorrhiza and endophytic fungi in ruspestrian grasslands. In: FERNANDES, G. W. (Ed.). Ecology and conservation of mountaintop grasslands in Brazil. Switzerland: Springer International Publishing, 2016. cap. 8, p. 157-179. Biblioteca(s): Embrapa Milho e Sorgo. |
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18. | | SILVA, L. J. da; CREVELIN, E. J.; SOUZA, D. T.; LACERDA JÚNIOR, G. V.; OLIVEIRA, V. M.; RUIZ, A. L. T. G.; ROSA, L. H.; MORAES, L. A. B.; MELO, I. S. de. Actinobacteria from Antarctica as a source for anticancer discovery. Scientific Reports, v. 10, article 13870, 2020. p. 1-15. Biblioteca(s): Embrapa Meio Ambiente. |
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19. | | CARVALHO, C. R. de; MAIA, M. Q.; SOBRAL, M.; PEREIRA, G. M. D.; SILVA, K. da; VITAL, M. J. S.; ZILLI, J. E.; ROSA, C. A.; ROSA, L. H. Diversity and antimicrobial activity of culturable endophytic fungi associated with the neotropical ethnomedicinal plants Copaifera langsdorffii and Copaifera pubiflora South African Journal of Botany, v. 142, p. 305-315, Nov. 2021. 11 p. Biblioteca(s): Embrapa Agrobiologia; Embrapa Florestas. |
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20. | | CARVALHO, C. R. de; MAIA, M. Q.; SOBRAL, M.; PEREIRA, G. M. D.; SILVA, K. da; VITL, M. J. S.; ZILLI, J. E.; ROSA, C. A.; ROSA, L. H. Diversity and antimicrobial activity of culturable endophytic fungi associated with the neotropical ethnomedicinal plants Copaifera langsdorffii and Copaifera pubiflora. South African Journal of Botany, v. 142, p. 305-331, November 2021. Biblioteca(s): Embrapa Agrobiologia. |
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Registros recuperados : 21 | |
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Registro Completo
Biblioteca(s): |
Embrapa Agrobiologia. |
Data corrente: |
09/11/2021 |
Data da última atualização: |
09/11/2021 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
A - 2 |
Autoria: |
CARVALHO, C. R. de; MAIA, M. Q.; SOBRAL, M.; PEREIRA, G. M. D.; SILVA, K. da; VITL, M. J. S.; ZILLI, J. E.; ROSA, C. A.; ROSA, L. H. |
Afiliação: |
CAMILA RODRIGUES DE CARVALHO, UFMG; MARA QUINTELA MAIA, UFMG; MARCOS SOBRAL, UNIVERSIDADE FEDERAL DE SÃO JOÃO DEL REI; GILMARA MARIA DUARTE PEREIRA, UNIVERSIDADE FEDERAL DE RORAIMA; KRISLE DA SILVA, CNPF; MARCOS JOSÉ SALGADO VITAL, UNIVERSIDADE FEDERAL DE RORAIMA; JERRI EDSON ZILLI, CNPAB; CARLOS AUGUSTO ROSA, UFMG; LUIZ HENRIQUE ROSA, UFMG. |
Título: |
Diversity and antimicrobial activity of culturable endophytic fungi associated with the neotropical ethnomedicinal plants Copaifera langsdorffii and Copaifera pubiflora. |
Ano de publicação: |
2021 |
Fonte/Imprenta: |
South African Journal of Botany, v. 142, p. 305-331, November 2021. |
ISSN: |
0254-6299 |
DOI: |
https://doi.org/10.1016/j.sajb.2021.06.021 |
Idioma: |
Inglês |
Conteúdo: |
Medicinal plants represent a promising reservoir of diverse endophytic fungi, including taxa that are able to produce bioactive metabolites. In Brazil, the genus Copaifera includes species that are well known in folk medicine mainly due to their ability to produce oleoresin. In this study, we characterized the endophytic fungal communities associated with Copaifera langsdorffii and Copaifera pubiflora and investigated their ability to produce antimicrobial agents. We obtained 668 fungal isolates from the leaves, stems, and seeds of both plants, which were later classified into 64 taxa and 22 genera. Diaporthe sp. 6, Xylariaceae sp. 1, Diaporthales sp. 1, and Diaporthales sp. 2 were the most abundant taxa in C. langsdorffii, while Phyllosticta sp., Diaporthe sp. 7, Diaporthales sp. 3, and Diaporthe miriciae were the most abundant taxa in C. pubiflora. Diaporthe sp. 4, Phyllosticta sp., Diaporthe sp. 1, Diaporthe sp. 7, and Neopestalotiopsis sp. were the only taxa common between the two plants. Both plants were found to have high fungal diversity, especially C. langsdorffii. Six extracts displayed antibacterial, being Alternaria sp., Diaporthe sp. 1, D. miriciae, and Diaporthe sp. 14. Our results showed that different tissues of the ethnomedicinal plants C. langsdorffii and C. pubiflora are systematically colonized by rich and diverse endophytic fungal communities, and that some of the fungi are able to produce antimicrobial compounds, which may be explored in further studies as potential candidates for the development of new drugs. MenosMedicinal plants represent a promising reservoir of diverse endophytic fungi, including taxa that are able to produce bioactive metabolites. In Brazil, the genus Copaifera includes species that are well known in folk medicine mainly due to their ability to produce oleoresin. In this study, we characterized the endophytic fungal communities associated with Copaifera langsdorffii and Copaifera pubiflora and investigated their ability to produce antimicrobial agents. We obtained 668 fungal isolates from the leaves, stems, and seeds of both plants, which were later classified into 64 taxa and 22 genera. Diaporthe sp. 6, Xylariaceae sp. 1, Diaporthales sp. 1, and Diaporthales sp. 2 were the most abundant taxa in C. langsdorffii, while Phyllosticta sp., Diaporthe sp. 7, Diaporthales sp. 3, and Diaporthe miriciae were the most abundant taxa in C. pubiflora. Diaporthe sp. 4, Phyllosticta sp., Diaporthe sp. 1, Diaporthe sp. 7, and Neopestalotiopsis sp. were the only taxa common between the two plants. Both plants were found to have high fungal diversity, especially C. langsdorffii. Six extracts displayed antibacterial, being Alternaria sp., Diaporthe sp. 1, D. miriciae, and Diaporthe sp. 14. Our results showed that different tissues of the ethnomedicinal plants C. langsdorffii and C. pubiflora are systematically colonized by rich and diverse endophytic fungal communities, and that some of the fungi are able to produce antimicrobial compounds, which may be explored in further studies ... Mostrar Tudo |
Palavras-Chave: |
Antimicrobial activity. |
Thesaurus NAL: |
Biodiversity; Endophytes; Taxonomy. |
Categoria do assunto: |
S Ciências Biológicas |
Marc: |
LEADER 02488naa a2200289 a 4500 001 2135958 005 2021-11-09 008 2021 bl uuuu u00u1 u #d 022 $a0254-6299 024 7 $ahttps://doi.org/10.1016/j.sajb.2021.06.021$2DOI 100 1 $aCARVALHO, C. R. de 245 $aDiversity and antimicrobial activity of culturable endophytic fungi associated with the neotropical ethnomedicinal plants Copaifera langsdorffii and Copaifera pubiflora.$h[electronic resource] 260 $c2021 520 $aMedicinal plants represent a promising reservoir of diverse endophytic fungi, including taxa that are able to produce bioactive metabolites. In Brazil, the genus Copaifera includes species that are well known in folk medicine mainly due to their ability to produce oleoresin. In this study, we characterized the endophytic fungal communities associated with Copaifera langsdorffii and Copaifera pubiflora and investigated their ability to produce antimicrobial agents. We obtained 668 fungal isolates from the leaves, stems, and seeds of both plants, which were later classified into 64 taxa and 22 genera. Diaporthe sp. 6, Xylariaceae sp. 1, Diaporthales sp. 1, and Diaporthales sp. 2 were the most abundant taxa in C. langsdorffii, while Phyllosticta sp., Diaporthe sp. 7, Diaporthales sp. 3, and Diaporthe miriciae were the most abundant taxa in C. pubiflora. Diaporthe sp. 4, Phyllosticta sp., Diaporthe sp. 1, Diaporthe sp. 7, and Neopestalotiopsis sp. were the only taxa common between the two plants. Both plants were found to have high fungal diversity, especially C. langsdorffii. Six extracts displayed antibacterial, being Alternaria sp., Diaporthe sp. 1, D. miriciae, and Diaporthe sp. 14. Our results showed that different tissues of the ethnomedicinal plants C. langsdorffii and C. pubiflora are systematically colonized by rich and diverse endophytic fungal communities, and that some of the fungi are able to produce antimicrobial compounds, which may be explored in further studies as potential candidates for the development of new drugs. 650 $aBiodiversity 650 $aEndophytes 650 $aTaxonomy 653 $aAntimicrobial activity 700 1 $aMAIA, M. Q. 700 1 $aSOBRAL, M. 700 1 $aPEREIRA, G. M. D. 700 1 $aSILVA, K. da 700 1 $aVITL, M. J. S. 700 1 $aZILLI, J. E. 700 1 $aROSA, C. A. 700 1 $aROSA, L. H. 773 $tSouth African Journal of Botany$gv. 142, p. 305-331, November 2021.
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