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1. |  | GUARIN, J. R.; MARTRE, P; EWERT, F.; WEBBER, H.; DUERI, S.; CALDERINI, D.; REYNOLDS, M.; MOLERO, G.; MIRALLES, D.; GARCIA, G.; SLAFER, G.; GIUNTA, F.; PEQUENO, D. N. L.; STELLA, T.; AHMED, M.; ALDERMAN, P. D.; BASSO, B.; BERGER, A.; BINDI, M.; BRACHO-MUJICA, G.; CAMMARANO, D.; CHEN, Y.; DUMONT, B.; REZAEI, E. E.; FERERES, E.; FERRISE, R.; GAISER, T.; GAO, Y.; GARCIA-VILA, M.; GAYLER, S.; HOCHMAN, Z.; HOOGENBOOM, G.; HUNT, L. A.; KERSEBAUM, K. C.; NENDEL, C.; OLESEN, J. E.; PALOSUO, T.; PRIESACK, E.; PULLENS, J. W. M.; RODRÍGUEZ, A.; RÖTTER, R. P.; RUIZ RAMOS, M.; SEMENOV, M. A.; SENAPATI, N.; SIEBERT, S.; SRIVASTAVA, A. M.; STÖCKLE, C.; SUPIT, I.; TAO, F.; THORBURN, P.; WANG, E.; WEBER, T. K. D.; XIAO, L.; ZHANG, Z.; ZHAO, C.; ZHAO, J.; ZHAO, Z.; ZHU, Y.; ASSENG, S. Evidence for increasing global wheat yield potential. [Letter]. Environmental Research Letters, 12 December 2022, Volume 17, 124045. OPEN ACCESS. doi: https://doi.org/10.1088/1748-9326/aca77c Article history: Received 13 June 2022; Accepted 30 November 2022; Published 12 December 2022. -- Corresponding author: Jose Rafael Guarin, E-mail: j.guarin@columbia.edu -- LICENSE: Original content from this work may be used under the...Biblioteca(s): INIA Las Brujas. |
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2. |  | 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 : 2 | |
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 | Acceso al texto completo restringido a Biblioteca INIA Las Brujas. Por información adicional contacte bibliolb@inia.org.uy. |
Registro completo
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Biblioteca (s) : |
INIA Las Brujas. |
Fecha actual : |
16/08/2019 |
Actualizado : |
16/08/2019 |
Tipo de producción científica : |
Artículos en Revistas Indexadas Internacionales |
Circulación / Nivel : |
Internacional - -- |
Autor : |
HERNÁNDEZ-RODRÍGUEZ, L.; RAMOS-GONZÁLEZ, P. L.; SISTACHS-VEGA, V.; ZAMORA-RODRÍGUEZ, V.; BATISTA-LE RIVEREND, L.; RAMOS-LEAL, M.; PEÑA-BÁRZAGA, I.; LLANES-ALVAREZ, Y. |
Afiliación : |
LESTER HERNÁNDEZ RODRÍGUEZ, Instituto de Investigaciones en Fruticultura Tropical (IIFT), Cuba; INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay.; P. L. RAMOS GONZÁLEZ, Instituto de Investigaciones en Fruticultura Tropical (IIFT), Cuba; Instituto Biológico de São Paulo, Brazil.; V. SISTACHS-VEGA, Statistics Department, Faculty of Mathematics, Universidad de La Habana, Cuba.; V. ZAMORA-RODRI?GUEZ, Instituto de Investigaciones en Fruticultura Tropical (IIFT), Cuba.; L. BATISTA-LE RIVEREND, Instituto de Investigaciones en Fruticultura Tropical (IIFT), Cuba; M. RAMOS-LEAL, Department, Faculty of Mathematics, Universidad de La Habana, Cuba.; I. PEN?A-BA?RZAGA, Instituto de Investigaciones en Fruticultura Tropical (IIFT), Cuba.; Y. LLANES-ALVAREZ, Instituto de Investigaciones en Fruticultura Tropical (IIFT), Cuba. |
Título : |
The viral complex associated with mealybug wilt disease of pineapple in Cuba. |
Fecha de publicación : |
2019 |
Fuente / Imprenta : |
Acta Horticulturae, 30 April 2019, Volume 1239, pages 203-212. |
Serie : |
(Acta Horticulturae; 1239). |
ISBN : |
978-94-62612-36-5 |
ISSN : |
0567-7572 (print) // 2406-6168 (electronic) |
DOI : |
10.17660/ActaHortic.2019.1239.25 |
Idioma : |
Inglés |
Notas : |
Article history: Published 30 april 2019. In: Acta Horticulturae (ISHS) 1239: IX International Pineapple Symposium. Editors: D.P. Bartholomew, D.H. Reinhardt, F.V. Duarte Souza. Convener: J. Valdés-Infante Herrero .
Funding text: Part of these results are included in the Ph.D. thesis document of Lester Hernández-Rodrı́guez, |
Contenido : |
ABSTRACT.
Mealybug wilt of pineapple (MWP) disease has been associated with the infection by a complex of ampeloviruses (Pineapple mealybug wilt-associated virus 1 (PMWaV-1), PMWaV-2, PMWaV-3, PMWaV-4 and PMWaV-5)) (Closteroviridae) and badnaviruses (Pineapple bacilliform CO virus (PBCOV) and Pineapple bacilliform ER virus (PBERV) (Caulimoviridae)). In Cuba, PMWaV-1, PMWaV-2, PMWaV-3 and PBCOV are widespread in commercial pineapple fields, but the association of these viruses with the aetiology of the disease remains unknown. During 2009 to 2012, a survey to detect PMWaV-1, PMWaV-2 and PMWaV-3 by RT-PCR, and PBCOV by non-radioactive Dot Blot hybridization was carried out on samples collected from asymptomatic or MWP symptomatic pineapple plants from 24 commercial fields in 10 provinces and Isla de la Juventud. PMWaV-1, PMWaV-2, PMWaV-3, and PBCOV occurred in simple or mixed infections, whereas PMWaV-2 was the viral species most frequently detected in symptomatic plants. The positive or negative diagnostic results of the RT-PCR to detect PMWaV-2 was more reliably associated with the MWP symptomatic or asymptomatic status of the sampled plants, respectively, than those from PMWaV-1, PMWaV-3 or PBCOV detection techniques. This work discloses the correlation between the infection by PMWaV-2 and the presence of MWP symptoms in Cuba, supporting previous studies indicating the major role of this virus triggering MWP disease.
© 2019 International Society for Horticultural Science. All rights reserved. MenosABSTRACT.
Mealybug wilt of pineapple (MWP) disease has been associated with the infection by a complex of ampeloviruses (Pineapple mealybug wilt-associated virus 1 (PMWaV-1), PMWaV-2, PMWaV-3, PMWaV-4 and PMWaV-5)) (Closteroviridae) and badnaviruses (Pineapple bacilliform CO virus (PBCOV) and Pineapple bacilliform ER virus (PBERV) (Caulimoviridae)). In Cuba, PMWaV-1, PMWaV-2, PMWaV-3 and PBCOV are widespread in commercial pineapple fields, but the association of these viruses with the aetiology of the disease remains unknown. During 2009 to 2012, a survey to detect PMWaV-1, PMWaV-2 and PMWaV-3 by RT-PCR, and PBCOV by non-radioactive Dot Blot hybridization was carried out on samples collected from asymptomatic or MWP symptomatic pineapple plants from 24 commercial fields in 10 provinces and Isla de la Juventud. PMWaV-1, PMWaV-2, PMWaV-3, and PBCOV occurred in simple or mixed infections, whereas PMWaV-2 was the viral species most frequently detected in symptomatic plants. The positive or negative diagnostic results of the RT-PCR to detect PMWaV-2 was more reliably associated with the MWP symptomatic or asymptomatic status of the sampled plants, respectively, than those from PMWaV-1, PMWaV-3 or PBCOV detection techniques. This work discloses the correlation between the infection by PMWaV-2 and the presence of MWP symptoms in Cuba, supporting previous studies indicating the major role of this virus triggering MWP disease.
© 2019 International Society for Horticultural Science. ... Presentar Todo |
Palabras claves : |
AMPELOVIRUS; ANANAS COMOSUS; BADNAVIRUS; CAULIMOVIRIDAE; CLOSTEROVIRIDAE; MWP; PBCOV; PMWaV. |
Asunto categoría : |
F01 Cultivo |
Marc : |
LEADER 02929naa a2200361 a 4500 001 1060012 005 2019-08-16 008 2019 bl uuuu u00u1 u #d 020 $a978-94-62612-36-5 022 $a0567-7572 (print) // 2406-6168 (electronic) 024 7 $a10.17660/ActaHortic.2019.1239.25$2DOI 100 1 $aHERNÁNDEZ-RODRÍGUEZ, L. 245 $aThe viral complex associated with mealybug wilt disease of pineapple in Cuba.$h[electronic resource] 260 $c2019 490 $a(Acta Horticulturae; 1239). 500 $aArticle history: Published 30 april 2019. In: Acta Horticulturae (ISHS) 1239: IX International Pineapple Symposium. Editors: D.P. Bartholomew, D.H. Reinhardt, F.V. Duarte Souza. Convener: J. Valdés-Infante Herrero . Funding text: Part of these results are included in the Ph.D. thesis document of Lester Hernández-Rodrı́guez, 520 $aABSTRACT. Mealybug wilt of pineapple (MWP) disease has been associated with the infection by a complex of ampeloviruses (Pineapple mealybug wilt-associated virus 1 (PMWaV-1), PMWaV-2, PMWaV-3, PMWaV-4 and PMWaV-5)) (Closteroviridae) and badnaviruses (Pineapple bacilliform CO virus (PBCOV) and Pineapple bacilliform ER virus (PBERV) (Caulimoviridae)). In Cuba, PMWaV-1, PMWaV-2, PMWaV-3 and PBCOV are widespread in commercial pineapple fields, but the association of these viruses with the aetiology of the disease remains unknown. During 2009 to 2012, a survey to detect PMWaV-1, PMWaV-2 and PMWaV-3 by RT-PCR, and PBCOV by non-radioactive Dot Blot hybridization was carried out on samples collected from asymptomatic or MWP symptomatic pineapple plants from 24 commercial fields in 10 provinces and Isla de la Juventud. PMWaV-1, PMWaV-2, PMWaV-3, and PBCOV occurred in simple or mixed infections, whereas PMWaV-2 was the viral species most frequently detected in symptomatic plants. The positive or negative diagnostic results of the RT-PCR to detect PMWaV-2 was more reliably associated with the MWP symptomatic or asymptomatic status of the sampled plants, respectively, than those from PMWaV-1, PMWaV-3 or PBCOV detection techniques. This work discloses the correlation between the infection by PMWaV-2 and the presence of MWP symptoms in Cuba, supporting previous studies indicating the major role of this virus triggering MWP disease. © 2019 International Society for Horticultural Science. All rights reserved. 653 $aAMPELOVIRUS 653 $aANANAS COMOSUS 653 $aBADNAVIRUS 653 $aCAULIMOVIRIDAE 653 $aCLOSTEROVIRIDAE 653 $aMWP 653 $aPBCOV 653 $aPMWaV 700 1 $aRAMOS-GONZÁLEZ, P. L. 700 1 $aSISTACHS-VEGA, V. 700 1 $aZAMORA-RODRÍGUEZ, V. 700 1 $aBATISTA-LE RIVEREND, L. 700 1 $aRAMOS-LEAL, M. 700 1 $aPEÑA-BÁRZAGA, I. 700 1 $aLLANES-ALVAREZ, Y. 773 $tActa Horticulturae, 30 April 2019, Volume 1239, pages 203-212.
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