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Registros recuperados : 273 | |
261. | | ANDRADE, L. R. M. de; AQUINO, F. de G.; MIRANDA, Z. de J. G.; PEREIRA, C. D.; REIS JUNIOR, F. B. dos; PESSOA FILHO, M. A. C. de P.; OLIVEIRA FILHO, E. C. de; NACIMENTO, C. T. C. do; FALEIRO, F. G.; RAMOS, A. K. B.; ECHEVARRIA, G. Native species of ultramafic massif of Barro Alto, GO, Brazil, can successfully be used to revegetate Ni mine spoil heaps. In: WORLD CONGRESS OF SOIL SCIENCE, 21., 2018, Rio de Janeiro, RJ. Proceedings... Rio de Janeiro: Sociedade Brasileira da Ciência do Solo, 2018. Biblioteca(s): Embrapa Cerrados. |
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262. | | REIS JUNIOR, F. B. dos; SIMON, M. F.; GROSS, E.; BODDEY, R. M.; ELLIOT, G. N.; NETO, N. E.; LOUREIRO, M. F.; QUEIRÓZ, L. P.; CHEN, W. M.; NOREN, A.; FARIA, S. M. de; BONTEMPS, S. M.; BONTEMPS, C.; GOI, S. R.; YOUNG, J. P. W.; YOUNG, J. P. W.; SPRENT, J. I.; JAMES, E. K. Nodulation of mimosoid and other legumes by B-rhizobia: taxonomic and geographical aspects. In: CONGRESSO BRASILEIRO DE FISIOLOGIA VEGETAL, 12., 2009, Fortaleza. Resumos... Fortaleza: Sociedade Brasileira de Fisiologia Vegetal, 2009. Biblioteca(s): Embrapa Agrobiologia. |
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263. | | REIS JUNIOR, F. B. dos; SIMON, M. F.; GROSS, E.; BODDEY, R. M.; ELLIOT, G. N.; ELIAS NETO, N.; LOUREIRO, M. de F.; QUEIROZ, L. P. de; CHEN, W-M.; NORÉM, A.; FARIA, S. M. de; BONTEMPS, C.; GOI, S. R. de; YOUNG, P. W.; SPRENT, J. I.; JAMES, E. K. Nodulation and nitrogen fixation by Mimosa spp. in the cerrado and caatinga biomes of Brazil. In: CONGRESSO BRASILEIRO DE FISIOLOGIA VEGETAL, 12., 7 a 12 de setembro de 2009, Fortaleza. Desafios para a Produção de Alimentos e Agroenergia: anais. Fortaleza: Sociedade Brasileira de Fisiologia Vegetal, 2009. Biblioteca(s): Embrapa Agrobiologia. |
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264. | | REIS JUNIOR, F. B. dos; SIMON, M. F.; GROSS, E.; BODDEY, R. M.; ELLIOTT, G. N.; ELIAS NETO, N.; LOUREIRO, M. de F; QUEIROZ, L. P. de; SCOTTI, M. R.; CHEN, W. -M.; NORÉN, A.; RUBIO, M. C.; FARIA, S. M. de; BONTEMPS, C.; GOI, S. R.; YOUNG, P. W.; SPRENT, J. I.; JAMES, E. K. Nodulation and nitrogen fixation by Mimosa spp. in the cerrado and caatinga biomes of Brazil. New Phytologist, v. 186, p. 934-946, 2010. Biblioteca(s): Embrapa Agrobiologia. |
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265. | | REIS JUNIOR, F. B. dos; SIMON, M. F.; GROSS, E.; BODDEY, R. M.; ELLIOTT, G. N.; NETO, N. E.; LOUREIRO, M. de F.; QUEIROZ, L. P. de; CHEN, W. -M.; NORÉN, A.; FARIA, S. M. de; BONTEMPS, C.; GOI, S. R.; YOUNG, P. W.; SPRENT, J. I.; JAMES, W. K. Nodulation and nitrogen fixation by Mimosa spp. in the cerrado and caatinga biomes of Brazil. In: CONGRESSO BRASILEIRO DE FISIOLOGIA VEGETAL, 12., 2009, Fortaleza. Desafios para produção de alimentos e bioenergia: livro de resumos. Fortaleza: Sociedade Brasileira de Fisiologia Vegetal: UFC: Embrapa Agroindustria Tropical, 2009. p. 283. p. 283 Biblioteca(s): Embrapa Cerrados. |
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266. | | REIS JUNIOR, F. B. dos; SIMON, M. F.; GROSS, E.; BODDEY, R. M.; ELLIOTT, G. N.; NETO, N. E.; LOUREIRO, M. de F.; QUEIROZ, L. P. de; SCOTTI, M. R.; CHEN, W. -M.; NORÉN, A.; RUBIO, M. C.; FARIA, S. M. de; BONTEMPS, C.; GOI, S. R.; YOUNG, J. P. W; SPRENT, J. I.; JAMES, E. K. Nodulation and nitrogen fixation by Mimosa spp. in the cerrado and caatinga biomes of Brazil. New Phytologist, v. 186, p. 934-946, 2010. Biblioteca(s): Embrapa Agrobiologia; Embrapa Recursos Genéticos e Biotecnologia. |
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267. | | REIS JUNIOR, F. B. dos; SIMON, M. F.; GROSS, E.; BODDEY, R. M.; ELLIOTT, G. N.; NETO, N. E.; LOUREIRO, M. de F.; QUEIROZ, L. P. de; SCOTTI, M. R.; CHEN, W. -M.; NORÉN, A.; RUBIO, M. C.; FARIA, S. M. de; BONTEMPS, C.; GOI, S. R.; YOUNG, J. P. W.; SPRENT, J. I.; JAMES, E. K. Nodulation and nitrogen fixation by Mimosa spp. in the cerrado and caatinga biomes of Brazil. New Phytologist, v. 186, p. 934-946, 2010. Biblioteca(s): Embrapa Cerrados. |
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268. | | TURETTA, A. P. D.; ARAGAO, D. V.; VASCONCELOS, S. S.; AMARAL, A. J. do; PRADO, R. B.; SILVA NETO, L. de F. da; OLIVEIRA, A. P. de; MATTOS, L. M. de; REIS JUNIOR, F. B. dos; EVANGELISTA, B. A.; FERREIRA, E. A. B.; SILVA, O. D. D. da; FELIZZOLA, J. F.; TONUCCI, R. G.; AMARO, G. C.; ARCO-VERDE, M. F. Seleção de indicadores de serviços ambientais no Projeto Transição Produtiva e Serviços Ambientais da Embrapa. Rio de Janeiro: Embrapa Solos, 2015. 5 p. (Embrapa Solos. Comunicado técnico, 72). Biblioteca(s): Embrapa Amazônia Oriental; Embrapa Caprinos e Ovinos; Embrapa Cerrados; Embrapa Florestas; Embrapa Pesca e Aquicultura; Embrapa Roraima; Embrapa Solos. |
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269. | | ESTRADA DE LOS DANTOS, P.; PALMER, M.; CHAVEZ-RAMIREZ, B.; BEUKES, C.; STEENKAMP, E. T.; BRISCOE, L.; KHAN, N.; MALUK, M.; LAFOS, M.; HUMM, E.; ARRABIT, M.; CROOK, M.; GROSS, E.; SIMON, M. F.; REIS JUNIOR, F. B. dos; WHITMAN, W. B.; SHAPIRO, N.; POOLE, P. S.; HIRSCH, A. M.; VENTER, S. N.; JAMES, E. K. Whole genome analyses suggests that Burkholderiasensu lato contains two additional novel genera (Mycetohabitans gen. nov., and Trinickia gen. nov.): implications for the evolution of diazotrophy and nodulation in the Burkholderiaceae. Genes, v. 9, n. 8, article 389, 2018. Biblioteca(s): Embrapa Cerrados. |
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270. | | ESTRADA DE LOS SANTOS, P.; PALMER, M.; CHAVEZ-RAMIREZ, B.; BEUKES, C.; STEENKAMP, E. T.; BRISCOE, L.; KHAN, N.; MALUK, M.; LAFOS, M.; HUMM, E.; ARRABIT, M.; CROOK, M.; GROSS, E.; SIMON, M. F.; REIS JUNIOR, F. B. dos; WHITMAN, W. B.; SHAPIRO, N.; POOLE, P. S.; HIRSCH, A. M.; VENTER, S. N.; JAMES, E. K. Whole genome analyses suggests that Burkholderiasensu lato contains two additional novel genera (Mycetohabitans gen. nov., and Trinickia gen. nov.): implications for the evolution of diazotrophy and nodulation in the Burkholderiaceae. Genes, v. 9, n. 8, article 389, 2018. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia. |
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271. | | PELEGRINELLI, F.; XAVIER, J. H. V.; BRAGA, A. R. dos S.; KARIA, C. T.; MACHADO, C. T. de T.; VIEIRA, E. A.; SOUSA, E. dos S. de; AQUINO, F. de G.; REIS JUNIOR, F. B. dos; LIMA, J. E. F. W.; VILELA, L.; CARVALHO, M. A.; VILELA, M. de F.; SA, M. A. C. de; MARCHAO, R. L.; SILVA NETO, S. P. da; REIN, T. A. Agenda de P&D da Embrapa Cerrados: metodologia de construção. Planaltina, DF: Embrapa Cerrados, 2018. 28 p. (Embrapa Cerrados. Documentos, 349). Biblioteca(s): Embrapa Cerrados; Embrapa Recursos Genéticos e Biotecnologia; Embrapa Unidades Centrais. |
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272. | | JAMES, E. K.; FARIA, S. M. de; HUGHE, C. E.; VENTER, S. N.; AMETSITSI, G. K. D.; ARDLEY, J.; BEUKES, C. W.; CARDOSO, D.; CHAN, A.; CHIMPHANG, S.; REIS JUNIOR, F. B. dos; GEHLO, H. S.; ROSS, E.; KOENEN, E. J. M.; LIMA, H. de C.; MALUK, M.; MAVIMA, L.; DE MEYER, S. E.; MUASYA, M.; PRIN, Y.; RINGELBERG, J. J.; SIMON, M. F.; SPRENT, J. I.; STEENKAMP, E.; TAK, N.; YOUNG, P. W.; ZARTMANN, C. What can the diversity of nodulation phenotypes and rhizobial symbionts in the caesalpinioideae tell us about the evolution of the legume-rhizobium symbiosis? In: INTERNATIONAL LEGUME CONFERENCE, 8., 2023, Pirenópolis. Integrating knowledge on the legume family: [abstracts]. Pirenópolis: [s.n.], 2023. Biblioteca(s): Embrapa Cerrados. |
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273. | | JAMES, E. K.; FARIA, S. M. de; HUGHE, C. E.; VENTER, S. N.; AMETSITSI, G. K. D.; ARDLEY, J.; BEUKES, C. W.; CARDOSO, D.; CHAN, A.; CHIMPHANG, S.; REIS JUNIOR, F. B. dos; GEHLO, H. S.; ROSS, E.; KOENEN, E. J. M.; LIMA, H. de C.; MALUK, M.; MAVIMA, L.; DE MEYER, S. E.; MUASYA, M.; PRIN, Y.; RINGELBERG, J. J.; SIMON, M. F.; SPRENT, J. I.; STEENKAMP, E.; TAK, N.; YOUNG, P. W.; ZARTMANN, C. What can the diversity of nodulation phenotypes and rhizobial symbionts in the caesalpinioideae tell us about the evolution of the legume-rhizobium symbiosis? In: INTERNATIONAL LEGUME CONFERENCE, 8., 2023, Pirenópolis. Integrating knowledge on the legume family: [abstracts]. Pirenópolis: [s.n.], 2023. Biblioteca(s): Embrapa Agrobiologia; Embrapa Recursos Genéticos e Biotecnologia. |
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Registros recuperados : 273 | |
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Registro Completo
Biblioteca(s): |
Embrapa Pantanal; Embrapa Pecuária Sul. |
Data corrente: |
14/09/2021 |
Data da última atualização: |
14/09/2021 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
B - 1 |
Autoria: |
MCMANUS, C. M.; HERMUCHE, P.; GUIMARÃES, R. F.; CARVALHO JÚNIOR, O. A. de; DALLAGO, B. S. L.; VIEIRA, R. A.; FARIA, D. A. de; BLACKBURN, H.; MORAES, J. C. F.; SOUZA, C. J. H. de; FACO, O.; ARAUJO, A. M. de; AZEVEDO, H. C.; CARNEIRO, P. L. S.; SANTOS, S. A.; MATTOS, P. S. R. de; PAIVA, S. R. |
Afiliação: |
CONCEPTA MARGARET MCMANUS; POTIRA HERMUCHE; RENATO FONTES GUIMARÃES; OSMAR ABÍLIO DE CARVALHO JÚNIOR; BRUNO STÉFANO LIMA DALLAGO; RENATA AUGUSTO VIEIRA; DANIELLE ASSIS DE FARIA; HARVEY BLACKBURN; JOSE CARLOS FERRUGEM MORAES, CPPSUL; CARLOS JOSE HOFF DE SOUZA, CPPSUL; OLIVARDO FACO, CNPC; ADRIANA MELLO DE ARAUJO, CPAMN; HYMERSON COSTA AZEVEDO, CPATC; PAULO LUIZ SOUZA CARNEIRO; SANDRA APARECIDA SANTOS, CPAP; PAULO SERGIO RIBEIRO DE MATTOS, Cenargen; SAMUEL REZENDE PAIVA, Cenargen. |
Título: |
Integration of georeferenced and genetic data for the management of biodiversity in sheep genetic resources in Brazil. |
Ano de publicação: |
2021 |
Fonte/Imprenta: |
Tropical Animal Health and Production, v. 53, n. 1, 126, Mar. 2021. |
DOI: |
https://doi.org/10.1007/s11250-021-02573-x |
Idioma: |
Inglês |
Conteúdo: |
Abstract: There are few animal germplasm/gene bank collections in Brazil, and basic studies are needed to attend the future internal and external demands from international partners. The aim of this work was to validate a ?proof of concept? that integrates spatial (georeferenced data) and genetic data regarding the local of origin from 3518 DNA samples from 17 different genetic groups or breeds of sheep in the Brazilian Germplasm bank. Spatialisation shows that not all genetic groups have samples in the bank, and collection is concentrated in the conservation nuclei spread nationwide. Only 21% of states with a specific breed have samples in the gene bank. The mean number of animals sampled per collection was 32, while the mean distance travelled to collect samples was 262 km from the conservation nuclei. For example, the Brazilian Somali were only collected in the conservation nucleus in Ceará State. No samples were collected to date for the Cariri breed, which is recognised by the Brazilian Ministry of Agriculture. Only two farms and one breed in the bank are from the northern region. Of the 27 states, there are samples in the gene bank of sheep from 13, so several states have no samples, requiring collection from herds outside the official system of conservation to make sure that studies using this germplasm realised are not biased. Significant genetic differences are seen above 332 km, which should guide future sampling efforts. Suggestions are given for improving the quantity, quality and diversity of samples in the gene bank. MenosAbstract: There are few animal germplasm/gene bank collections in Brazil, and basic studies are needed to attend the future internal and external demands from international partners. The aim of this work was to validate a ?proof of concept? that integrates spatial (georeferenced data) and genetic data regarding the local of origin from 3518 DNA samples from 17 different genetic groups or breeds of sheep in the Brazilian Germplasm bank. Spatialisation shows that not all genetic groups have samples in the bank, and collection is concentrated in the conservation nuclei spread nationwide. Only 21% of states with a specific breed have samples in the gene bank. The mean number of animals sampled per collection was 32, while the mean distance travelled to collect samples was 262 km from the conservation nuclei. For example, the Brazilian Somali were only collected in the conservation nucleus in Ceará State. No samples were collected to date for the Cariri breed, which is recognised by the Brazilian Ministry of Agriculture. Only two farms and one breed in the bank are from the northern region. Of the 27 states, there are samples in the gene bank of sheep from 13, so several states have no samples, requiring collection from herds outside the official system of conservation to make sure that studies using this germplasm realised are not biased. Significant genetic differences are seen above 332 km, which should guide future sampling efforts. Suggestions are given for improving the qua... Mostrar Tudo |
Palavras-Chave: |
Conservation nuclei; Espacialização; Genetic resources conservation; Germplasm banks; GIS. |
Thesagro: |
Banco de Germoplasma; Engenharia Genética; Marcador Molecular; Ovino; Variação Genética. |
Thesaurus NAL: |
Animal genetic resources; Gene banks; Genetic engineering; Genetic markers; Genetic variation; Sheep breeds. |
Categoria do assunto: |
G Melhoramento Genético |
Marc: |
LEADER 03108naa a2200517 a 4500 001 2134324 005 2021-09-14 008 2021 bl uuuu u00u1 u #d 024 7 $ahttps://doi.org/10.1007/s11250-021-02573-x$2DOI 100 1 $aMCMANUS, C. M. 245 $aIntegration of georeferenced and genetic data for the management of biodiversity in sheep genetic resources in Brazil.$h[electronic resource] 260 $c2021 520 $aAbstract: There are few animal germplasm/gene bank collections in Brazil, and basic studies are needed to attend the future internal and external demands from international partners. The aim of this work was to validate a ?proof of concept? that integrates spatial (georeferenced data) and genetic data regarding the local of origin from 3518 DNA samples from 17 different genetic groups or breeds of sheep in the Brazilian Germplasm bank. Spatialisation shows that not all genetic groups have samples in the bank, and collection is concentrated in the conservation nuclei spread nationwide. Only 21% of states with a specific breed have samples in the gene bank. The mean number of animals sampled per collection was 32, while the mean distance travelled to collect samples was 262 km from the conservation nuclei. For example, the Brazilian Somali were only collected in the conservation nucleus in Ceará State. No samples were collected to date for the Cariri breed, which is recognised by the Brazilian Ministry of Agriculture. Only two farms and one breed in the bank are from the northern region. Of the 27 states, there are samples in the gene bank of sheep from 13, so several states have no samples, requiring collection from herds outside the official system of conservation to make sure that studies using this germplasm realised are not biased. Significant genetic differences are seen above 332 km, which should guide future sampling efforts. Suggestions are given for improving the quantity, quality and diversity of samples in the gene bank. 650 $aAnimal genetic resources 650 $aGene banks 650 $aGenetic engineering 650 $aGenetic markers 650 $aGenetic variation 650 $aSheep breeds 650 $aBanco de Germoplasma 650 $aEngenharia Genética 650 $aMarcador Molecular 650 $aOvino 650 $aVariação Genética 653 $aConservation nuclei 653 $aEspacialização 653 $aGenetic resources conservation 653 $aGermplasm banks 653 $aGIS 700 1 $aHERMUCHE, P. 700 1 $aGUIMARÃES, R. F. 700 1 $aCARVALHO JÚNIOR, O. A. de 700 1 $aDALLAGO, B. S. L. 700 1 $aVIEIRA, R. A. 700 1 $aFARIA, D. A. de 700 1 $aBLACKBURN, H. 700 1 $aMORAES, J. C. F. 700 1 $aSOUZA, C. J. H. de 700 1 $aFACO, O. 700 1 $aARAUJO, A. M. de 700 1 $aAZEVEDO, H. C. 700 1 $aCARNEIRO, P. L. S. 700 1 $aSANTOS, S. A. 700 1 $aMATTOS, P. S. R. de 700 1 $aPAIVA, S. R. 773 $tTropical Animal Health and Production$gv. 53, n. 1, 126, Mar. 2021.
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