An SSR from the leucine-rich repeat region of the rose Rdr1 gene family is a useful resistance gene analogue marker for roses and other Rosaceae
Author:
Publisher
Wiley
Subject
Plant Science,Genetics,Agronomy and Crop Science
Link
http://onlinelibrary.wiley.com/wol1/doi/10.1111/j.1439-0523.2010.01780.x/fullpdf
Reference13 articles.
1. Microsatellite markers from a BAC contig spanning the Rdr1 locus: a tool for marker-assisted selection in roses;Biber;Theor. Appl. Genet.,2009
2. Genetic linkage maps of rose constructed with new microsatellite markers and locating QTL controlling flowering traits;Hibrand-Saint Oyant;Tree Genet. Genom.,2008
3. Construction of a BAC library of Rosa rugosa Thunb. and assembly of a contig spanning Rdr1, a gene that confers resistance to black spot;Kaufmann;Mol. Gen. Genomics.,2003
4. Multiple genetic processes result in heterogeneous rates of evolution within the major cluster disease resistance genes in lettuce;Kuang;Plant Cell,2004
5. Evolution and genetic population structure of prickly lettuce (Lactuca serriola) and its RGC2 resistance gene cluster;Kuang;Genetics,2008
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1. Mining of resistance gene analogue specific SSR markers (RGA-eSSRs) in pomegranate and their validation;2022-09-12
2. An Updated Host Differential Due to Two Novel Races of Diplocarpon rosae Wolf, the Causal Agent of Rose Black Spot Disease;HortScience;2020-11
3. Analysis of the Rdr1 gene family in different Rosaceae genomes reveals an origin of an R-gene cluster after the split of Rubeae within the Rosoideae subfamily;PLOS ONE;2020-01-23
4. Identification of a polymorphism within the Rosa multiflora muRdr1A gene linked to resistance to multiple races of Diplocarpon rosae W. in tetraploid garden roses (Rosa × hybrida);Theoretical and Applied Genetics;2019-09-28
5. The TNL geneRdr1confers broad-spectrum resistance toDiplocarpon rosae;Molecular Plant Pathology;2017-10-17
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