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| 1 | Two quantitative trait loci, Dw1 and Dw2, are primarily responsible for rootstock-induced dwarfing in apple显示文摘The apple dwarfing rootstock‘Malling9’(‘M9’)has been used worldwide both to reduce scion vigour and as a genetic source for breeding new rootstocks.Progeny of‘M9’segregate for rootstock-induced dwarfing of the scion,indicating that this trait is controlled by one or more genetic factors.A quantitative trait locus(QTL)analysis of a rootstock population derived from the cross between‘M9’בRobusta5’(non-dwarfing)and grafted with‘Braeburn’scions identified a major QTL(Dw1)on linkage group(LG)5,which exhibits a significant influence on dwarfing of the scion.A smaller-effect QTL affecting dwarfing(Dw2)was identified on LG11,and four minor-effect QTLs were found on LG6,LG9,LG10 and LG12.Phenotypic analysis indicates that the combination of Dw1 and Dw2 has the strongest influence on rootstock-induced dwarfing,and that Dw1 has a stronger effect than Dw2.Genetic markers linked to Dw1 and Dw2 were screened over 41 rootstock accessions that confer a range of effects on scion growth.The majority of the dwarfing and semi-dwarfing rootstock accessions screened carried marker alleles linked to Dw1 and Dw2.This suggests that most apple dwarfing rootstocks have been derived from the same genetic source. | Toshi M Foster Jean-Marc Celton David Chagné D Stuart Tustin Susan E Gardiner | 2015 | Horticulture Research2015,2,1: | 10 |
| 2 | Genetic and environmental control of fruit maturation,dry matter and firmness in apple(Malus×domestica Borkh.)显示文摘For any given genotype,the environment in which an apple is grown can influence the properties of the fruit considerably.While there has been extensive research on the mechanism of the genetic control of fruit quality traits,less effort has been made to investigate the way that these genetic mechanisms interact with the environment.To address this issue,we employed a large‘Royal Gala’בBraeburn’population of 572 seedlings replicated over sites in three climatically diverse apple-growing regions in New Zealand.Phenotyping for traits including fruit maturation timing,firmness and dry matter content was performed at each of these three sites for a single growing season(2011),and at two sites(Motueka and Hawke’s Bay)for two seasons(2009 and 2010).The phenotype data collected over 2 years at two sites enabled the detection of 190 quantitative trait loci(QTL)that controlled these traits regardless of year or growing location,as well as some chromosomal loci that influenced the traits in a single given environment or year.For those loci that were environmentally stable over three sites,there was an interdependency of fruit maturation date,dry matter content and storage potential within this population,with two regions on Linkage Groups(LGs)10 and 16 strongly contributing.If these loci were used in a marker-assisted selection programme to select for progeny bearing firmer fruit,this would have the unintentional consequence of selecting,high dry matter content,later maturing apples.In addition,a further 113 new QTLs with a smaller effect were identified,some of which were exhibited only in a single growing environment,demonstrating the underlying complexity of control of traits determining fruit quality,in addition to the need for being aware of environmental effects when developing new apple varieties. | David Chagne Daya Dayatilake Robert Diack Murray Oliver Hilary Ireland Amy Watson Susan E Gardiner Jason W Johnston Robert J Schaffer Stuart Tustin | 2014 | Horticulture Research2014,1,1: | 2 |
| 3 | Apple dwarfing rootstocks and interstocks affect the type of growth units produced during the annual growth cyde:Precodous transition to fowerlng affiects the compoffnlon and vigour of annual shoots显示文摘 | Seleznyova A N Tustin D S Thorp T G | 2008 | Annals of Botany2008,101,5: | 1 |
| 4 | Apple dwarfing rootstocks and interstocks affect the type of growth units produced during the annual growth cycle: precocious transition to flowering affects the composition and vigour of annual shoots显示文摘 | Alla N Seleznyova D Stuart Tustin | 2007 | Annals of Botany2007,101,5: | 1 |
| 5 | Growth of young sweet cherry trees in response to root restriction using root control bags 显示文摘 | White M D Tustin D S | 2001 | Acta Hort2001,557,: | 1 |
| 6 | Genome mapping of three major resistance genes to woolly apple aphid (Eriosoma lanigerum Hausm.)显示文摘 | V. G. M. Bus D. Chagné H. C. M. Bassett D. Bowatte F. Calenge J.-M. Celton C.-E. Durel M. T. Malone A. Patocchi A. C. Ranatunga E. H. A. Rikkerink D. S. Tustin J. Zhou S. E. Gardiner | 2008 | Tree Genetics & Genomes2008,,2: | 1 |
| 7 | The Role of Patient Satisfaction in Online Health Infor mation Seeking显示文摘 | Tustin N | 2010 | Journal of Health Communication2010,15,1: | 1 |
| 8 | Apple dwarfing rootstocks and interstocks affect the type of growth u- nits produced during the annual growth cycle: preco- cious transition to flowering affects the composition and vigour of annual shoots显示文摘 | Seleznyova A Tustin D S Thorp T G | 2008 | Annals of Botany2008,,101: | 1 |
| 9 | Pollination effects on fruit mineral composition,seeds and cropping characteristics of ‘Braeburn’apple trees显示文摘 | Tustin D S Ferguson I B | 1996 | Sci Hort,1996,66,: | 1 |
| 10 | Preliminary report on the stimulation of immunity to the larval stage of Taenia multiceps 显示文摘 | Verster A Tustin R C | 1982 | J S Afr Vet Assoc1982,53,3: | 1 |
| 11 | Genome mapping of three major resistance genes to woolly apple aphid (Eriosoma lanigerum Hausm.)显示文摘 | V. G. M. Bus D. Chagné H. C. M. Bassett D. Bowatte F. Calenge J.-M. Celton C.-E. Durel M. T. Malone A. Patocchi A. C. Ranatunga E. H. A. Rikkerink D. S. Tustin J. Zhou S. E. Gardiner | 2008 | Tree Genetics & Genomes2008,,2: | 1 |
| 12 | Influence of orientation and position of fruiting laterals on canopy light penetration,yield and fruit quality of 'Granny Smith' apple 显示文摘 | Tustin D S Hirst P M | 1998 | J Amer Soc Hort Sci1998,113,5: | 1 |
| 13 | Immunization of sheep against the larval stage of Taenia multiceps 显示文摘 | Verster A Tustin R C | 1987 | Onderstepoort J Vet Res1987,54,2: | 1 |
| 14 | Apple dwar-fing rootstocks and interstocks affect the type ofgrowth units produced during the annual growth cy-cle: precocious trarusition to flowering affects thecomposition and vigour of annual shoots显示文摘 | Seleznyova A Tustin D S Thorp T G | 2008 | Annalsof Botany2008,,101: | 1 |
| 15 | Light distribution and fruit quality through multi-layered trellis apple canopies显示文摘 | | 1989 | Acta Hort,1989,243,: | 1 |
| 16 | Construction of a dense ge-netic linkage map for apple rootstocks using SSRs developed from Ma-lus ESTs and Pyrus genomic sequences显示文摘 | Celton J M Tustin D S Chagne D | | 0,,01: | 1 |
| 17 | Growth responses of young apple replants induced by rail remediation treatments for specific apple replant disease显示文摘 | Tustin D S Horner I J Breen K | 2008 | Acta Horticulturae2008,772,: | 1 |
| 18 | Vernier reluctance motor 显示文摘 | Mukherji K C Tustin A | 1974 | Proceedings of the Institution of Electrical Engineers1974,121,9: | 1 |
| 19 | Cropping effects on the loss of apple fruit firmness during stor- age: The relationship between texture retention and fruit dry matter concentration显示文摘 | Saei A Tustin D S Zamani Z | 2011 | Scientia Horticul- turae2011,130,1: | 1 |
| 20 | Light distribution and fruit quality through multi-layered trellis apple canopies显示文摘 | TUSTIN D S HURST P | 1989 | Acta Hort1989,243,: | 1 |