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Biblioteca (s) : |
INIA La Estanzuela. |
Fecha : |
08/10/2019 |
Actualizado : |
08/10/2019 |
Tipo de producción científica : |
Artículos en Revistas Indexadas Internacionales |
Autor : |
SINGH, D.; ZIEMS, L.A.; DRACATOS, P.M.; POURKHEIRANDISH, M.; TSHEWANG, S.; CZEMBOR, P.; GERMAN, S.; FOWLER, R.A.; SNYMAN, L.; PLATZD, G.J.; PARK, R.F. |
Afiliación : |
Sydney Institute of Agriculture, University of Sydney, PBICobbitty, PMB 4011, Sydney, NSW 2567, Australia.; Queensland Alliance for Agriculture and Food Innovation,University of Queensland, St Lucia, QLD 4072, Australia; Sydney Institute of Agriculture, University of Sydney, PBI Cobbitty, PMB 4011, Sydney, NSW 2567, Australia; Sydney Institute of Agriculture, University of Sydney, PBI Cobbitty, PMB 4011, Sydney, NSW 2567, Australia.; Queensland Alliance for Agriculture and Food Innovation,University of Queensland, St Lucia, QLD 4072, Australia.; Plant Breeding and Acclimatization Institute–National ResearchInstitute, Radzików, 05-870 B?onie, Poland.; SILVIA ELISA GERMAN FAEDO, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay; Department of Agriculture and Fisheries Queensland, Hermitage Research Facility, Warwick, QLD 4370, Australia; Department of Agriculture and Fisheries Queensland, Hermitage Research Facility, Warwick, QLD 4370, Australia; Department of Agriculture and Fisheries Queensland, Hermitage Research Facility, Warwick, QLD 4370, Australia; Sydney Institute of Agriculture, University of Sydney, PBI Cobbitty, PMB 4011, Sydney, NSW 2567, Australia. |
Título : |
Genome-wide association studies provide insights on genetic architecture of resistance to leaf rust in a worldwide barley collection. |
Fecha de publicación : |
2018 |
Fuente / Imprenta : |
Molecular Breeding, 1 April 2018, Volume 38, Issue 4, Article number 43. |
DOI : |
10.1007/s11032-018-0803-4 |
Idioma : |
Inglés |
Notas : |
Article history:Received: 16 August 2017 /Accepted: 13 March 2018. |
Contenido : |
Abstract:
We assembled an international barley panel comprising 282 entries from 26 countries with various levels of field resistance to leaf rust caused by Puccinia hordei. The panel was screened for leaf rust response with an array of pathotypes at the seedling stage, and at the adult plant stage in multiple environments (2013?2015) in Australia and Uruguay, and genotyped using > 13 K polymorphic DArT-Seq markers. Multipathotype testing in the greenhouse postulated the presence of seedling resistance genes Rph1, Rph2, Rph3, Rph4, Rph7, Rph9.am, Rph12, Rph14, Rph15, Rph19, and Rph25. Genome-wide association studies (GWAS) based on field data identified 13 QTLs significantly associated with DArT-Seq markers on chromosomes 2H (Rph_G_Q1, Rph_G_Q2, Rph_G_Q3, and Rph_G_Q4), 4H (Rph_G_Q5), 5H (Rph_G_Q6, Rph_G_Q7, Rph_G_Q8), 6H (Rph_G_Q9 and Rph_G_Q10), and 7H (Rph_G_Q11, Rph_G_Q12, and Rph_G_Q13). Three QTLs (Rph_G_Q3, Rph_G_Q5, and Rph_G_Q6) were detected under all environments, whereas the other ten were variable, being detected in 1?4 environments; Rph_G_Q1 and Rph_G_Q13 being detected only in Uruguay. Among the three QTLs detected under all environments, Rph_G_Q6 on chromosome 5H had the largest effect and corresponded to a region where the cataloged APR gene Rph20 is located. Rph_G_Q3 and Rph_G_Q5 detected on chromosome 2H and 4H aligned with QTLs reported in at least three previous studies. The studies provide useful information towards better understanding of the genetic architecture of seedling and adult plant resistance to leaf rust in diverse global barley germplasm. MenosAbstract:
We assembled an international barley panel comprising 282 entries from 26 countries with various levels of field resistance to leaf rust caused by Puccinia hordei. The panel was screened for leaf rust response with an array of pathotypes at the seedling stage, and at the adult plant stage in multiple environments (2013?2015) in Australia and Uruguay, and genotyped using > 13 K polymorphic DArT-Seq markers. Multipathotype testing in the greenhouse postulated the presence of seedling resistance genes Rph1, Rph2, Rph3, Rph4, Rph7, Rph9.am, Rph12, Rph14, Rph15, Rph19, and Rph25. Genome-wide association studies (GWAS) based on field data identified 13 QTLs significantly associated with DArT-Seq markers on chromosomes 2H (Rph_G_Q1, Rph_G_Q2, Rph_G_Q3, and Rph_G_Q4), 4H (Rph_G_Q5), 5H (Rph_G_Q6, Rph_G_Q7, Rph_G_Q8), 6H (Rph_G_Q9 and Rph_G_Q10), and 7H (Rph_G_Q11, Rph_G_Q12, and Rph_G_Q13). Three QTLs (Rph_G_Q3, Rph_G_Q5, and Rph_G_Q6) were detected under all environments, whereas the other ten were variable, being detected in 1?4 environments; Rph_G_Q1 and Rph_G_Q13 being detected only in Uruguay. Among the three QTLs detected under all environments, Rph_G_Q6 on chromosome 5H had the largest effect and corresponded to a region where the cataloged APR gene Rph20 is located. Rph_G_Q3 and Rph_G_Q5 detected on chromosome 2H and 4H aligned with QTLs reported in at least three previous studies. The studies provide useful information towards better understanding of the genetic a... Presentar Todo |
Palabras claves : |
ADULT PLANT RESISTANCE; BARLEY; GENOME; HORDEUM VULGARE; LEAF RUST; MAPPING; RPH; WIDE ASSOCIATION STUDIES. |
Thesagro : |
CEBADA; PUCCINIA HORDEI. |
Asunto categoría : |
F01 Cultivo |
Marc : |
LEADER 02750naa a2200385 a 4500 001 1060298 005 2019-10-08 008 2018 bl uuuu u00u1 u #d 024 7 $a10.1007/s11032-018-0803-4$2DOI 100 1 $aSINGH, D. 245 $aGenome-wide association studies provide insights on genetic architecture of resistance to leaf rust in a worldwide barley collection.$h[electronic resource] 260 $c2018 500 $aArticle history:Received: 16 August 2017 /Accepted: 13 March 2018. 520 $aAbstract: We assembled an international barley panel comprising 282 entries from 26 countries with various levels of field resistance to leaf rust caused by Puccinia hordei. The panel was screened for leaf rust response with an array of pathotypes at the seedling stage, and at the adult plant stage in multiple environments (2013?2015) in Australia and Uruguay, and genotyped using > 13 K polymorphic DArT-Seq markers. Multipathotype testing in the greenhouse postulated the presence of seedling resistance genes Rph1, Rph2, Rph3, Rph4, Rph7, Rph9.am, Rph12, Rph14, Rph15, Rph19, and Rph25. Genome-wide association studies (GWAS) based on field data identified 13 QTLs significantly associated with DArT-Seq markers on chromosomes 2H (Rph_G_Q1, Rph_G_Q2, Rph_G_Q3, and Rph_G_Q4), 4H (Rph_G_Q5), 5H (Rph_G_Q6, Rph_G_Q7, Rph_G_Q8), 6H (Rph_G_Q9 and Rph_G_Q10), and 7H (Rph_G_Q11, Rph_G_Q12, and Rph_G_Q13). Three QTLs (Rph_G_Q3, Rph_G_Q5, and Rph_G_Q6) were detected under all environments, whereas the other ten were variable, being detected in 1?4 environments; Rph_G_Q1 and Rph_G_Q13 being detected only in Uruguay. Among the three QTLs detected under all environments, Rph_G_Q6 on chromosome 5H had the largest effect and corresponded to a region where the cataloged APR gene Rph20 is located. Rph_G_Q3 and Rph_G_Q5 detected on chromosome 2H and 4H aligned with QTLs reported in at least three previous studies. The studies provide useful information towards better understanding of the genetic architecture of seedling and adult plant resistance to leaf rust in diverse global barley germplasm. 650 $aCEBADA 650 $aPUCCINIA HORDEI 653 $aADULT PLANT RESISTANCE 653 $aBARLEY 653 $aGENOME 653 $aHORDEUM VULGARE 653 $aLEAF RUST 653 $aMAPPING 653 $aRPH 653 $aWIDE ASSOCIATION STUDIES 700 1 $aZIEMS, L.A. 700 1 $aDRACATOS, P.M. 700 1 $aPOURKHEIRANDISH, M. 700 1 $aTSHEWANG, S. 700 1 $aCZEMBOR, P. 700 1 $aGERMAN, S. 700 1 $aFOWLER, R.A. 700 1 $aSNYMAN, L. 700 1 $aPLATZD, G.J. 700 1 $aPARK, R.F. 773 $tMolecular Breeding, 1 April 2018, Volume 38, Issue 4, Article number 43.
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Registro original : |
INIA La Estanzuela (LE) |
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Registro completo
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Biblioteca (s) : |
INIA Las Brujas. |
Fecha actual : |
05/10/2015 |
Actualizado : |
15/03/2021 |
Tipo de producción científica : |
Abstracts/Resúmenes |
Autor : |
MONTOYA, F.; VILARO, F.; GARCIA, C. |
Afiliación : |
FRANCISCO MONTOYA, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay; FRANCISCO LUIS VILARO PAREJA, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay; CLAUDIO CESAR GARCIA GALLARRETA, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay. |
Título : |
Assessment of AquaCrop Model on Potato Crop in Uruguay. |
Complemento del título : |
Sección: Evapotranspiration and Crop. |
Fecha de publicación : |
2015 |
Fuente / Imprenta : |
Agrociencia Uruguay, 2015, v.19, Special Issue, Congreso CIGR. 3r. Inter-Regional CIGR Conference on Land and Water Challenges: Tools for developing "Dr. Mario García Petillo", p.2 |
ISSN : |
1510-0839 |
Idioma : |
Inglés |
Notas : |
EDITORIAL BOARD SPECIAL ISSUE: García, C. (Instituto Nacional de Investigación Agropecuaria); Puppo, L. (Universidad de la República, Facultad de Agronomía); Tarjuelo, J.M. (Univ. Castilla-La Mancha, España); Carsjens, G-.J. (Univ.Wageningen, Holanda). |
Thesagro : |
AGUA; CULTIVAR; CULTIVOS; DECISION SUPPORT SYSTEM; EVAPOTRANSPIRACION; EVAPOTRANSPIRATION; PAPA; POTATO; RENDIMIENTO; RIEGO; SUPPLEMENTAL IRRIGATION; WATER PRODUCTIVITY; YIELD. |
Asunto categoría : |
P30 Ciencia del suelo y manejo del suelo |
URL : |
http://www.ainfo.inia.uy/digital/bitstream/item/6806/1/Montoya-F.-2015.-Agrociencia-Sp.Issue-3rd.CIGR-p.2.pdf
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Marc : |
LEADER 01167naa a2200313 a 4500 001 1053487 005 2021-03-15 008 2015 bl uuuu u00u1 u #d 022 $a1510-0839 100 1 $aMONTOYA, F. 245 $aAssessment of AquaCrop Model on Potato Crop in Uruguay. 260 $c2015 500 $aEDITORIAL BOARD SPECIAL ISSUE: García, C. (Instituto Nacional de Investigación Agropecuaria); Puppo, L. (Universidad de la República, Facultad de Agronomía); Tarjuelo, J.M. (Univ. Castilla-La Mancha, España); Carsjens, G-.J. (Univ.Wageningen, Holanda). 650 $aAGUA 650 $aCULTIVAR 650 $aCULTIVOS 650 $aDECISION SUPPORT SYSTEM 650 $aEVAPOTRANSPIRACION 650 $aEVAPOTRANSPIRATION 650 $aPAPA 650 $aPOTATO 650 $aRENDIMIENTO 650 $aRIEGO 650 $aSUPPLEMENTAL IRRIGATION 650 $aWATER PRODUCTIVITY 650 $aYIELD 700 1 $aVILARO, F. 700 1 $aGARCIA, C. 773 $tAgrociencia Uruguay, 2015$gv.19, Special Issue, Congreso CIGR. 3r. Inter-Regional CIGR Conference on Land and Water Challenges: Tools for developing "Dr. Mario García Petillo", p.2
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