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43. | | BALDASSINI, P.; BAETHGEN, W.; CAMBA SANS, G.; QUINCKE, A.; PRAVIA, V.; TERRA, J.A.; MACEDO, F.; PIÑEIRO, G.; PARUELO, J. Carbon stocks and potential sequestration of Uruguayan soils. A road map to a comprehensive characterization of temporal and spatial changes to assess Carbon footprint. Original research. Frontiers in Sustainable Food Systems. 2023, Volume 7. https://doi.org/10.3389/fsufs.2023.1045734 Article history: Received 16 Sep 2022; Accepted 25 May 2023; Published 20 July 2023. -- Correspondence: Dr. Pablo Baldassini, Instituto Nacional de Investigación Agropecuaria, INIA La Estanzuela, Colonia, Uruguay. -- Edited by: Bruno José...Biblioteca(s): INIA Las Brujas. |
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44. | | TERRA, J.A.; MOLINA, F.; DEAMBROSI, E.; PRAVIA, V.; ROEL, A.; CASALES, L.; FERREIRA, D.; FERREIRA, R. Densidad de siembra y nitrógeno en EP144 a escala de chacra. Manejo de suelos y nutrición vegetal. ln: INIA TREINTA Y TRES. Arroz. Resultados Experimentales 2006-2007. Treinta y Tres (Uruguay): INIA, 2007. Cap. 7., p. 1-8. (INIA Serie Actividades de Difusión; 502)Biblioteca(s): INIA Treinta y Tres. |
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45. | | TERRA, J.A.; CANTOU, G.; DEAMBROSI, E.; MOLINA, F.; PRAVIA, V.; ROEL, A.; PEREIRA, M.; SARTORI, J.; STIRLING, N. Impacto de la intensidad de laboreo en los rendimientos de arroz de la UPAG, durante tres zafras (2006/07, 2007/08 y 2008/2009). In: DEAMBROSI, E.; MONTOSSI, F.; SARAVIA, H.; BLANCO, P.H.; AYALA, W. (Eds.). 10 años de la Unidad de Producción Arroz-Ganadería. Montevideo (Uruguay): INIA, 2009. p. 167-188 (INIA Serie Técnica; 180)Biblioteca(s): INIA Tacuarembó; INIA Treinta y Tres. |
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46. | | VISITA DE CAMPO Y REUNIÓN TÉCNICA, 2 DE OCTUBRE 2012, TACUAREMBÓ, URUGUAY; BERMÚDEZ, R.; PRAVIA, V.; CUADRO, R.; GIORELLO, D.; QUINCKE, A.; MORÓN, A. Fertilización fosfatada en pasturas. Montevideo, UY: INIA, 2012. 20 p. Martes 02 de octubre, INIA Tacuarembó.Biblioteca(s): INIA Tacuarembó. |
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47. | | AYALA, W.; MONTOSSI, F.; BARRIOS, E.; BERMÚDEZ, R.; CUADRO, R.; LUZARDO, S.; SILVEIRA, C.; PÉREZ GOMAR, E.; PRAVIA, V.; ROVIRA, P.J.; VELAZCO, J.I. Summer forage feeding alternatives: opportunities and chalenges for pastoral systems in Uruguay. ln: Proceedings of the International Workshop to honor Prof. John Hodgson. An overview of research on pastoral - based systems in the southern part of South America: Tandil (Argentina):Universidad Nacional del Centro de la Provincia de Buenos Aires, 2010. p. 81-93Biblioteca(s): INIA Treinta y Tres. |
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48. | | SAVIAN, J.V.; QUIÑONES, A.; PRAVIA, V.; CARDOZO, G.; GUIDO, A.; DEVINCENZI, T.; JAURENA, M.; ROVIRA, P.J.; LEONI, C.; CIGANDA, V.; DE BARBIERI, I.; AYALA, W.; CIAPPESONI, G.; LATTANZI, F. Un nuevo experimento de largo plazo en INIA Treinta y Tres con foco en la sostenibilidad del campo natural. Pasturas. Revista INIA Uruguay, Diciembre 2021, no.67, p.29-31. (Revista INIA; 67).Biblioteca(s): INIA Las Brujas. |
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49. | | VILLARINO, S.H.; PINTO, P.; DELLA CHIESA, T.; JOBBÁGY, E.G.; STUDDERT, G.A.; BAZZONI, B.; CONTI, G.; RUFINO, M.; ÁLVAREZ, R.; BODDEY , R.; BAYER, C.; DE F CARVALHO, P.C.; FERNÁNDEZ , R.J.; LATTANZI, F.; OESTERHELD , M.; OYHANTÇABAL, W.; PARUELO, J.; PRAVIA, V.; PIÑEIRO, G. The role of South American grazing lands in mitigating greenhouse gas emissions. A reply to: "Reassessing the role of grazing lands in carbon-balance estimations: Meta-analysis and review", by Viglizzo et al., (2019). (Letter). Science of the Total Environment, 20 October 2020, Volume 740, Article number 140108. Doi: https://doi-org/10.1016/j.scitotenv.2020.140108Biblioteca(s): INIA La Estanzuela; INIA Treinta y Tres. |
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50. | | BASSU, S.; BRISSON, N.; DURAND, J.L.; BOOTE, K.; LIZASO, J.; JONES, J.W.; ROSENZWEIG, C.; RUANE, A.C.; ADAM, M.; BARON, C.; BASSO, B.; BIERNATH, C.; BOOGAARD, H.; CONIJN, S.; CORBEELS, M.L; DERYNG, D.; SANTIS, G. DE; GAYLER, S.; GRASSINI, P.; HATFIELD, J.; HOEK, S.; IZAURRALDE, C.; JONGSCHAAP, R.; KEMANIAN, A.R.; KERSEBAUM, C.KIM, S-H.; KUMAR, N.; MAKOWSKI, D.; MÜLLER, C.; NENDEL, C.; PRIESACK, E.; PRAVIA, V.; SAU, F.; SHCHERBAK, I.; TAO, F.; TEXEIRA, E.; TIMLIN, D.; WAHA, K. How do various maize crop models vary in their responses to climate change factors? Global Change Biology, 2014, v.20(7), p. 2301-2320. Article history: Received 7 June 2013 and accepted 2 December 2013, published 2014.Biblioteca(s): INIA Treinta y Tres. |
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51. | | MARCAIDA, M.; ASSENG, S.; EWERT, F.; BASSU, S.; DURAND, J.L.; LI, T.; MARTRE, P.; ADAM, M.; AGGARWAL, P.K.; ANGULO, C.; BARON, C.; BASSO, B.; BERTUZZI, P.; BIERNATH, C.; BOOGAARD, H.; BOOTE, K.J.; BOUMAN, B.; BREGAGLIO, S.; BRISSON, N.; BUIS, S.; CAMMARANO, D.; CHALLINOR, A.J.; CONFALONIERI, R.; CONIJN, J.G.; CORBEELS, M.; DERYNG, D.; DE SANCTIS, G.; DOLTRA, J.; FUMOTO, T.; GAYDON, D.; GAYLER, S.; GOLDBERG, R.; GRANT, R.F.; GRASSINI, P.; HATFIELD, J.L.; HASEGAWA, T.; HENG, L.; HOEK, S.; HOOKER, J.; HUNT, L.A.; INGWERSEN, J.; IZAURRALDE, R.C.; JONGSCHAAP, R.E.E.; JONES, J.W.; KEMANIAN, R.A.; KERSEBAUM, K.C.; KIM, S.-H.; LIZASO, J.; MÜLLER, C.; NAKAGAWA, H.; NARESH KUMAR, S.; NENDEL, C.; O'LEARY, G.J.; OLESEN, J.E.; ORIOL, P.; OSBORNE, T.M.; PALOSUO, T.; PRAVIA, V.; PRIESACK, E.; RIPOCHE, D.; ROSENZWEIG, C.; RUANE, A.C.; RUGET, F.; SAU, F.; SEMENOV, M.A.; SHCHERBAK, I.; SINGH, B.; SINGH, U.; SOO, H.K.; STEDUTO, P.; STÖCKLE, C.; STRATONOVITCH, P.; STRECK, T.; SUPIT, I.; TANG, L.; TAO, F.; TEIXEIRA, E.I.; THORBURN, P.; TIMLIN, D.; TRAVASSO, M.; RÖTTER, R.P.; WAHA, K.; WALLACH, D.; WHITE, J.W.; WILKENS, P.; WILLIAMS, J.R.; WOLF, J.; YIN, X.; YOSHIDA, H.; ZHANG, Z.; ZHU, Y. A statistical analysis of three ensembles of crop model responses to temperature and CO2 concentration. Agricultural and Forest Meteorology, 2015, v.214-215, p. 483-493. Article history: Received 6 March 2015 / Received in revised form 29 July 2015 / Accepted 20 September 2015 / Available online 1 October 2015.Biblioteca(s): INIA Las Brujas; INIA Treinta y Tres. |
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Registros recuperados : 51 | |
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Registro completo
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Biblioteca (s) : |
INIA Las Brujas. |
Fecha actual : |
06/10/2022 |
Actualizado : |
06/10/2022 |
Tipo de producción científica : |
Artículos en Revistas Indexadas Internacionales |
Circulación / Nivel : |
Internacional - -- |
Autor : |
GIANNITTI, F.; SILVEIRA, C.S.; BULLOCK, H.; BERON, M.; FERNÁNDEZ-CIGANDA, S.; BENÍTEZ-GALEANO, M.J.; RODRÍGUEZ-OSORIO, N.; SILVA-FLANNERY, L.; PERDOMO, T.; CABRERA, A.; PUENTES, R.; COLINA, R.; RITTER, J.M.; CASTELLS, M. |
Afiliación : |
FEDERICO GIANNITTI, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay; CAROLINE DA SILVA SILVEIRA, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay; HANNAH BULLOCK, Synergy America Inc., Atlanta, GA 30329, USA; MARINA MAURENTE BERON, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay; SOFÍA FERNÁNDEZ-CIGANDA, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay; MARÍA JOSÉ BENÍTEZ-GALEANO, Unidad de Genómica y Bioinformática, Departamento de Ciencias Biológicas, Centro Universitario Regional (CENUR) Litoral Norte, Universidad de la República, Salto 50000, Uruguay; NÉLIDA RODRÍGUEZ-OSORIO, Unidad de Genómica y Bioinformática, Departamento de Ciencias Biológicas, Centro Universitario Regional (CENUR) Litoral Norte, Universidad de la República, Salto 50000, Uruguay; LUCIANA SILVA-FLANNERY, Infectious Diseases Pathology Branch, Centers for Disease Control and Prevention (CDC), Atlanta, GA 30329, USA; TERESITA YISELL PERDOMO TORRES, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay; ANDRÉS CABRERA, Facultad de Veterinaria, Universidad de la República, Montevideo 13000, Uruguay; Laboratorio de Interacciones Hospedero-Patógeno, Institut Pasteur de Montevideo, Montevideo 11400, Uruguay; RODRIGO PUENTES, Facultad de Veterinaria, Universidad de la República, Montevideo 13000, Uruguay; RODNEY COLINA, Laboratorio de Virología Molecular, Departamento de Ciencias Biológicas, Centro Universitario Regional (CENUR) Litoral Norte, Universidad de la República, Salto 50000, Uruguay; JANA M. RITTER, Infectious Diseases Pathology Branch, Centers for Disease Control and Prevention (CDC), Atlanta, GA 30329, USA; MATÍAS CASTELLS, Laboratorio de Virología Molecular, Departamento de Ciencias Biológicas, Centro Universitario Regional (CENUR) Litoral Norte, Universidad de la República, Salto 50000, Uruguay. |
Título : |
Bovine Polyomavirus-1 (Epsilonpolyomavirus bovis): An emerging fetal pathogen of cattle that causes renal lesions resembling Polyomavirus-associated nephropathy of humans. |
Fecha de publicación : |
2022 |
Fuente / Imprenta : |
Viruses, 2022; 14 (9): 2042. OPEN ACCESS. doi: https://doi.org/10.3390/v14092042 |
ISSN : |
1999-4915 |
DOI : |
10.3390/v14092042 |
Idioma : |
Inglés |
Notas : |
Article history: Received 12 August 2022; Revised 8 September 2022: Accepted 9 September 2022; Published 14 September 2022.
Academic Editors: Fernando Bauermann and Mayara Maggioli.
Correspondence authors: Giannitti, F.; Plataforma de Investigación en Salud Animal, Instituto Nacional de Investigación Agropecuaria (INIA), Estación Experimental La Estanzuela, Colonia, Uruguay; email:fgiannitti@inia.org.uy - Castells, M.; Laboratorio de Virología Molecular, Departamento de Ciencias Biológicas, Centro Universitario Regional (CENUR) Litoral Norte, Universidad de la República, Salto, Uruguay; email:matiascastellsbauer@gmail.com --
Funding: Instituto Nacional de Investigación Agropecuaria (INIA), grant PL_27 N-23398. -- This article belongs to the Special Issue Pathogenesis and Host Responses to Viral Diseases in Livestock Species: https://www.mdpi.com/journal/viruses/special_issues/pathogenesis_livestock |
Contenido : |
ABSTRACT.- Bovine polyomavirus-1 (BoPyV-1, Epsilonpolyomavirus bovis) is widespread in cattle and has been detected in commercialized beef at supermarkets in the USA and Germany. BoPyV-1 has been questioned as a probable zoonotic agent with documented increase in seropositivity in people exposed to cattle. However, to date, BoPyV-1 has not been causally associated with pathology or disease in any animal species, including humans. Here we describe and illustrate pathological findings in an aborted bovine fetus naturally infected with BoPyV-1, providing evidence of its pathogenicity and probable abortigenic potential. Our results indicate that: (i) BoPyV-1 can cause severe kidney lesions in cattle, including tubulointerstitial nephritis with cytopathic changes and necrosis in tubular epithelial cells, tubular and interstitial inflammation, and interstitial fibroplasia; (ii) lesions are at least partly attributable to active viral replication in renal tubular epithelial cells, which have abundant intranuclear viral inclusions; (iii) BoPyV-1 large T (LT) antigen, resulting from early viral gene expression, can be detected in infected renal tubular epithelial cells using a monoclonal antibody raised against Simian Virus-40 polyomavirus LT antigen; and (iv) there is productive BoPyV-1 replication and virion assembly in the nuclei of renal tubular epithelial cells, as demonstrated by the ultrastructural observation of abundant arrays of viral particles with typical polyomavirus morphology. Altogether, these lesions resemble the "cytopathic-inflammatory pathology pattern" proposed in the pathogenesis of Human polyomavirus-1-associated nephropathy in immunocompromised people and kidney allograft recipients. Additionally, we sequenced the complete genome of the BoPyV-1 infecting the fetus, which represents the first whole genome of a BoPyV-1 from the Southern Hemisphere. Lastly, the BoPyV-1 strain infecting this fetus was isolated, causing a cytopathic effect in Madin-Darby bovine kidney cells. We conclude that BoPyV-1 is pathogenic to the bovine fetus under natural circumstances. Further insights into the epidemiology, biology, clinical relevance, and zoonotic potential of BoPyV-1 are needed. © 2022 by the authors. MenosABSTRACT.- Bovine polyomavirus-1 (BoPyV-1, Epsilonpolyomavirus bovis) is widespread in cattle and has been detected in commercialized beef at supermarkets in the USA and Germany. BoPyV-1 has been questioned as a probable zoonotic agent with documented increase in seropositivity in people exposed to cattle. However, to date, BoPyV-1 has not been causally associated with pathology or disease in any animal species, including humans. Here we describe and illustrate pathological findings in an aborted bovine fetus naturally infected with BoPyV-1, providing evidence of its pathogenicity and probable abortigenic potential. Our results indicate that: (i) BoPyV-1 can cause severe kidney lesions in cattle, including tubulointerstitial nephritis with cytopathic changes and necrosis in tubular epithelial cells, tubular and interstitial inflammation, and interstitial fibroplasia; (ii) lesions are at least partly attributable to active viral replication in renal tubular epithelial cells, which have abundant intranuclear viral inclusions; (iii) BoPyV-1 large T (LT) antigen, resulting from early viral gene expression, can be detected in infected renal tubular epithelial cells using a monoclonal antibody raised against Simian Virus-40 polyomavirus LT antigen; and (iv) there is productive BoPyV-1 replication and virion assembly in the nuclei of renal tubular epithelial cells, as demonstrated by the ultrastructural observation of abundant arrays of viral particles with typical polyomavirus mor... Presentar Todo |
Palabras claves : |
Abortion; Cattle; Emerging diseases; Epsilonpolyomavirus bovis; Nephropathy; Next generation sequencing; Pathology; PLATAFORMA DE INVESTIGACIÓN EN SALUD ANIMAL; Polyomavirus; Reproductive diseases; Viral diseases. |
Asunto categoría : |
L20 Ecología animal |
URL : |
http://www.ainfo.inia.uy/digital/bitstream/item/16810/1/viruses-14-02042-v2.pdf
|
Marc : |
LEADER 04533naa a2200445 a 4500 001 1063641 005 2022-10-06 008 2022 bl uuuu u00u1 u #d 022 $a1999-4915 024 7 $a10.3390/v14092042$2DOI 100 1 $aGIANNITTI, F. 245 $aBovine Polyomavirus-1 (Epsilonpolyomavirus bovis)$bAn emerging fetal pathogen of cattle that causes renal lesions resembling Polyomavirus-associated nephropathy of humans.$h[electronic resource] 260 $c2022 500 $aArticle history: Received 12 August 2022; Revised 8 September 2022: Accepted 9 September 2022; Published 14 September 2022. Academic Editors: Fernando Bauermann and Mayara Maggioli. Correspondence authors: Giannitti, F.; Plataforma de Investigación en Salud Animal, Instituto Nacional de Investigación Agropecuaria (INIA), Estación Experimental La Estanzuela, Colonia, Uruguay; email:fgiannitti@inia.org.uy - Castells, M.; Laboratorio de Virología Molecular, Departamento de Ciencias Biológicas, Centro Universitario Regional (CENUR) Litoral Norte, Universidad de la República, Salto, Uruguay; email:matiascastellsbauer@gmail.com -- Funding: Instituto Nacional de Investigación Agropecuaria (INIA), grant PL_27 N-23398. -- This article belongs to the Special Issue Pathogenesis and Host Responses to Viral Diseases in Livestock Species: https://www.mdpi.com/journal/viruses/special_issues/pathogenesis_livestock 520 $aABSTRACT.- Bovine polyomavirus-1 (BoPyV-1, Epsilonpolyomavirus bovis) is widespread in cattle and has been detected in commercialized beef at supermarkets in the USA and Germany. BoPyV-1 has been questioned as a probable zoonotic agent with documented increase in seropositivity in people exposed to cattle. However, to date, BoPyV-1 has not been causally associated with pathology or disease in any animal species, including humans. Here we describe and illustrate pathological findings in an aborted bovine fetus naturally infected with BoPyV-1, providing evidence of its pathogenicity and probable abortigenic potential. Our results indicate that: (i) BoPyV-1 can cause severe kidney lesions in cattle, including tubulointerstitial nephritis with cytopathic changes and necrosis in tubular epithelial cells, tubular and interstitial inflammation, and interstitial fibroplasia; (ii) lesions are at least partly attributable to active viral replication in renal tubular epithelial cells, which have abundant intranuclear viral inclusions; (iii) BoPyV-1 large T (LT) antigen, resulting from early viral gene expression, can be detected in infected renal tubular epithelial cells using a monoclonal antibody raised against Simian Virus-40 polyomavirus LT antigen; and (iv) there is productive BoPyV-1 replication and virion assembly in the nuclei of renal tubular epithelial cells, as demonstrated by the ultrastructural observation of abundant arrays of viral particles with typical polyomavirus morphology. Altogether, these lesions resemble the "cytopathic-inflammatory pathology pattern" proposed in the pathogenesis of Human polyomavirus-1-associated nephropathy in immunocompromised people and kidney allograft recipients. Additionally, we sequenced the complete genome of the BoPyV-1 infecting the fetus, which represents the first whole genome of a BoPyV-1 from the Southern Hemisphere. Lastly, the BoPyV-1 strain infecting this fetus was isolated, causing a cytopathic effect in Madin-Darby bovine kidney cells. We conclude that BoPyV-1 is pathogenic to the bovine fetus under natural circumstances. Further insights into the epidemiology, biology, clinical relevance, and zoonotic potential of BoPyV-1 are needed. © 2022 by the authors. 653 $aAbortion 653 $aCattle 653 $aEmerging diseases 653 $aEpsilonpolyomavirus bovis 653 $aNephropathy 653 $aNext generation sequencing 653 $aPathology 653 $aPLATAFORMA DE INVESTIGACIÓN EN SALUD ANIMAL 653 $aPolyomavirus 653 $aReproductive diseases 653 $aViral diseases 700 1 $aSILVEIRA, C.S. 700 1 $aBULLOCK, H. 700 1 $aBERON, M. 700 1 $aFERNÁNDEZ-CIGANDA, S. 700 1 $aBENÍTEZ-GALEANO, M.J. 700 1 $aRODRÍGUEZ-OSORIO, N. 700 1 $aSILVA-FLANNERY, L. 700 1 $aPERDOMO, T. 700 1 $aCABRERA, A. 700 1 $aPUENTES, R. 700 1 $aCOLINA, R. 700 1 $aRITTER, J.M. 700 1 $aCASTELLS, M. 773 $tViruses, 2022; 14 (9): 2042. OPEN ACCESS. doi: https://doi.org/10.3390/v14092042
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