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| 1 | Prediction of genetic value for sweet cherry fruit maturity among environments using a 6K SNP array显示文摘The timing of fruit maturity is an important trait in sweet cherry production and breeding.Phenotypic variation for phenology of fruit maturity in sweet cherry appears to be under strong genetic control,but that control might be complicated by phenotypic instability across environments.Although such genotype-by-environment interaction(G×E)is a common phenomenon in crop plants,knowledge about it is lacking for fruit maturity timing and other sweet cherry traits.In this study,1673 genome-wide SNP markers were used to estimate genomic relationships among 597 weakly pedigree-connected individuals evaluated over two seasons at three locations in Europe and one location in the USA,thus sampling eight‘environments’.The combined dataset enabled a single meta-analysis to investigate the environmental stability of genomic predictions.Linkage disequilibrium among marker loci declined rapidly with physical distance,and ordination of the relationship matrix suggested no strong structure among germplasm.The most parsimonious G×E model allowed heterogeneous genetic variance and pairwise covariances among environments.Narrow-sense genomic heritability was very high(0.60–0.83),as was accuracy of predicted breeding values(>0.62).Average correlation of additive effects among environments was high(0.96)and breeding values were highly correlated across locations.Results indicated that genomic models can be used in cherry to accurately predict date of fruit maturity for untested individuals in new environments.Limited G×E for this trait indicated that phenotypes of individuals will be stable across similar environments.Equivalent analyses for other sweet cherry traits,for which multiple years of data are commonly available among breeders and cultivar testers,would be informative for predicting performance of elite selections and cultivars in new environments. | Craig M.Hardner Ben J.Hayes Satish Kumar Stijn Vanderzande Lichun Cai Julia Piaskowski JoséQuero-Garcia JoséAntonio Campoy Teresa Barreneche Daniela Giovannini Alessandro Liverani Gérard Charlot Miguel Villamil-Castro Nnadozie Oraguzie Cameron P.Peace | 2019 | Horticulture Research2019,6,1: | 5 |
| 2 | Multi-year analyses on three populations reveal the first stable QTLs for tolerance to rain-induced fruit cracking in sweet cherry (Prunus avium L.)显示文摘Rain-induced fruit cracking is a major problem in sweet cherry cultivation.Basic research has been conducted to disentangle the physiological and mechanistic bases of this complex phenomenon,whereas genetic studies have lagged behind.The objective of this work was to disentangle the genetic determinism of rain-induced fruit cracking.We hypothesized that a large genetic variation would be revealed,by visual field observations conducted on mapping populations derived from well-contrasted cultivars for cracking tolerance.Three populations were evaluated over 7–8 years by estimating the proportion of cracked fruits for each genotype at maturity,at three different areas of the sweet cherry fruit:pistillar end,stem end,and fruit side.An original approach was adopted to integrate,within simple linear models,covariates potentially related to cracking,such as rainfall accumulation before harvest,fruit weight,and firmness.We found the first stable quantitative trait loci(QTLs)for cherry fruit cracking,explaining percentages of phenotypic variance above 20%,for each of these three types of cracking tolerance,in different linkage groups,confirming the high complexity of this trait.For these and other QTLs,further analyses suggested the existence of at least two-linked QTLs in each linkage group,some of which showed confidence intervals close to 5 cM.These promising results open the possibility of developing marker-assisted selection strategies to select cracking-tolerant sweet cherry cultivars.Further studies are needed to confirm the stability of the reported QTLs over different genetic backgrounds and environments and to narrow down the QTL confidence intervals,allowing the exploration of underlying candidate genes. | Jose Quero-Garcia Philippe Letourmy Jose Antonio Campoy Camille Branchereau Svetoslav Malchev Teresa Barreneche Elisabeth Dirlewanger | 2021 | Horticulture Research2021,8,1: | 3 |
| 3 | Materials used as PCM in thermal energy storage in buildings: a review 显示文摘 | Cabeza E Castell A Barreneche C Graeia A Fernandez A | 2011 | Renewable and Sustainable Energy Reviews2011,15,3: | 1 |
| 4 | Materials used as PCM in thermal energy storage in buildings: A review 显示文摘 | Cabeza L F Castell A Barreneche C | 2011 | Renewable Sustainable Energy Rev2011,15,3: | 1 |
| 5 | Materials used as PCM in thermal energy storage in bui|dings: a review显示文摘 | Cabeza L F Caste11 A Barreneche C | 2011 | Renewable and Sustainable Energy Reviews2011,1,3: | 1 |
| 6 | Physico- chemical and mechanical properties of microencapsulated phase change material 显示文摘 | Giro-Paloma J Oneins G Barreneche C | 2013 | Applied Energy2013,109,9: | 1 |
| 7 | 显示文摘 | Barreneche C de Gracia A Serrano S | 2013 | Applied Ener gy2013,109,: | 1 |
| 8 | Materials used as PCM in thermal energy storage in buildings: a review 显示文摘 | CABEZA L F CASTELL A BARRENECHE C | 2011 | Renewable and Sustainable Energy Reviews2011,15,3: | 1 |
| 9 | Comparative mapping between Quercus and Castanea using simple se- quence repeats(SSRs) 显示文摘 | Barreneche T Casasoli M Russell K | 2004 | TAG Theoretical and Applied Genetics2004,108,3: | 1 |
| 10 | Materials used as PCM in thermal energy storage in buildings: a review显示文摘 | CABEZA L CASTELLA BARRENECHE C | 2011 | Renewable and Sustainable Energy Reviews2011,15,3: | 1 |
| 11 | Materials used as PCM in thermal energy storage in buildings:A review显示文摘 | CABEZA L F CASTELL A BARRENECHE C | | 0,,03: | 1 |
| 12 | Materials used as PCM in thermal energy storage in buildings: A review 显示文摘 | L F Cabeza A Castell C Barreneche | 2011 | Renewable and Sustainable Energy Reviews2011,,15: | 1 |
| 13 | A genetic linkage map of Quercus robur L. (pedunculate oak) based on RAPD, SCAR, microsatellite, minisatellite, isozyme and 5S rDNA markers显示文摘 | T. Barreneche C. Bodenes C. Lexer J.-F. Trontin S. Fluch R. Streiff C. Plomion G. Roussel H. Steinkellner K. Burg J.-M. Favre J. Gl?ssl A. Kremer | 1998 | TAG Theoretical and Applied Genetics1998,,7: | 1 |
| 14 | Low carbon and low embodied energy materials in buildings: A re- view显示文摘 | Cabeza L F Barreneche C Mir6 L | 2013 | Renewable and Sustainable Energy Reviews2013,,23: | 1 |
| 15 | Materials used as PCM in thermal energy storage in buildings: A review 显示文摘 | Cabeza L F Castell A Barreneche C | 2011 | Renewable and Sustainable Energy Reviews2011,15,3: | 1 |
| 16 | Materials used as PCM in thermal energy storage in buildings显示文摘 | Cabeza L F Castell A Barreneche C | 2011 | Renewable and Sustainable Energy Reviews2011,15,91: | 1 |
| 17 | In situ thermal and a- coustic performance and environmental impact of the introduction of a shape-stabilized PCM layer for building applications 显示文摘 | Barreneche C Navarro L de Gracia A | 2016 | Renew- able Energy2016,85,: | 1 |
| 18 | Mate- rials used as PCM in thermal energy storage in buildings: A review显示文摘 | CABEZA L F CASTELL A BARRENECHE C | 2011 | Renewable and Sustainable Energy Reviews2011,15,3: | 1 |
| 19 | Corrosion of metal containers for use in PCM energy storage 显示文摘 | Ferrer G Sole A Barreneche C | 2015 | Renewable Energy2015,76,: | 1 |
| 20 | Materials used as PCM in thermal energy storage in buildings: A review显示文摘 | L.F. Cabeza A. Castell C. Barreneche A. de Gracia A.I. Fernández | 2010 | Renewable and Sustainable Energy Reviews2010,,3: | 1 |