Molecular characterization of a novel powdery mildew resistance gene Pm30 in wheat originating from wild emmer
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E. Nevo | Z. Ni | Qixin Sun | Zhiyong Liu | Tsomin Yang
[1] M. Feldman,et al. A new powdery mildew resistance gene: Introgression from wild emmer into common wheat and RFLP-based mapping , 2000, Euphytica.
[2] G. Wenzel,et al. Molecular mapping of the wheat powdery mildew resistance gene Pm24 and marker validation for molecular breeding , 2000, Theoretical and Applied Genetics.
[3] Junhua Peng,et al. Microsatellite tagging of the stripe-rust resistance gene YrH52 derived from wild emmer wheat, Triticum dicoccoides, and suggestive negative crossover interference on chromosome 1B , 1999, Theoretical and Applied Genetics.
[4] B. Keller,et al. Quantitative trait loci for resistance against powdery mildew in a segregating wheat×spelt population , 1999, Theoretical and Applied Genetics.
[5] F. Zeller,et al. Identification of AFLP markers closely linked to the powdery mildew resistance genes Pm1c and Pm4a in common wheat (Triticum aestivum L.) , 1999 .
[6] R. D'Ovidio,et al. Identification of molecular markers linked to Pm13, an Aegilops longissima gene conferring resistance to powdery mildew in wheat , 1999, Theoretical and Applied Genetics.
[7] M. Ganal,et al. A microsatellite map of wheat. , 1998, Genetics.
[8] M. Ganal,et al. Genetic analysis of the dwarfing gene (Rht8) in wheat. Part I. Molecular mapping of Rht8 on the short arm of chromosome 2D of bread wheat (Triticum aestivum L.) , 1998, Theoretical and Applied Genetics.
[9] M. Ganal,et al. THE PHYSICAL MAPPING OF MICROSATELLITE MARKERS IN WHEAT , 1998 .
[10] J. Murphy,et al. A major gene for powdery mildew resistance transferred to common wheat from wild einkorn wheat. , 1998, Phytopathology.
[11] V. Korzun,et al. Intrachromosomal mapping of genes for dwarfing (Rht12) and vernalization response (Vrn1) in wheat by using RFLP and microsatellite markers , 1997 .
[12] H. Ohm,et al. Identification of RAPD markers linked to the gene PM 1 for resistance to powdery mildew in wheat , 1997, Theoretical and Applied Genetics.
[13] G. Bryan,et al. Isolation and characterisation of microsatellites from hexaploid bread wheat , 1997, Theoretical and Applied Genetics.
[14] B. Gill,et al. Identification and high-density mapping of gene-rich regions in chromosome group 1 of wheat. , 1996, Genetics.
[15] M. Maroof,et al. Development of simple sequence repeat DNA markers and their integration into a barley linkage map , 1996, Theoretical and Applied Genetics.
[16] Bikram S. Gill,et al. The Deletion Stocks of Common Wheat , 1996 .
[17] T. E. Miller,et al. RFLP-based maps of the homoeologous group-6 chromosomes of wheat and their application in the tagging of Pm12, a powdery mildew resistance gene transferred from Aegilops speltoides to wheat , 1996, Theoretical and Applied Genetics.
[18] S. Tingey,et al. Simple sequence repeats for germplasm analysis and mapping in maize. , 1996, Genome.
[19] W. Li,et al. Identification, mapping, and application of polymorphic DNA associated with resistance gene Pm21 of wheat. , 1996, Genome.
[20] M. Ganal,et al. Detection of genetic diversity in closely related bread wheat using microsatellite markers , 1995, Theoretical and Applied Genetics.
[21] J. Anderson,et al. Molecular mapping of wheat: major genes and rearrangements in homoeologous groups 4, 5, and 7. , 1995, Genetics.
[22] F. Zeller,et al. Molecular identification of powdery mildew resistance genes in common wheat (Triticum aestivum L.) , 1995, Theoretical and Applied Genetics.
[23] M. Heun,et al. Barley microsatellites: allele variation and mapping , 1995, Plant Molecular Biology.
[24] S. Tanksley,et al. RFLP markers linked to powdery mildew resistance genes Pm1, Pm2, Pm3, and Pm4 in wheat. , 1994, Genome.
[25] P. Dyck. The transfer of leaf rust resistance from Triticum turgidum ssp. dicoccoides to hexaploid wheat , 1994 .
[26] M. Maroof,et al. Extraordinarily polymorphic microsatellite DNA in barley: species diversity, chromosomal locations, and population dynamics. , 1994, Proceedings of the National Academy of Sciences of the United States of America.
[27] J. L. Weber,et al. Survey of plant short tandem DNA repeats , 1994, Theoretical and Applied Genetics.
[28] N. Blake,et al. Evaluation of “sequence-tagged-site” PCR products as molecular markers in wheat , 1994, Theoretical and Applied Genetics.
[29] S. Tanksley,et al. Abundance, polymorphism and genetic mapping of microsatellites in rice , 1993, Molecular and General Genetics MGG.
[30] G. Moore,et al. RFLP-based genetic maps of the homoeologous group 5 chromosomes of bread wheat (Triticum aestivum L.) , 1993, Theoretical and Applied Genetics.
[31] M. Senior,et al. Mapping maize microsatellites and polymerase chain reaction confirmation of the targeted repeats using a CT primer. , 1993, Genome.
[32] F. Zeller,et al. Use of RFLP markers for the identification of alleles of the Pm3 locus conferring powdery mildew resistance in wheat (Triticum aestivum L.) , 1993, Theoretical and Applied Genetics.
[33] L. Andersson,et al. The abundance of various polymorphic microsatellite motifs differs between plants and vertebrates. , 1993, Nucleic acids research.
[34] P. Cregan,et al. Length polymorphisms of simple sequence repeat DNA in soybean. , 1992, Genetics.
[35] P. Hayes,et al. Sequence-tagged-site-facilitated PCR for barley genome mapping , 1992, Theoretical and Applied Genetics.
[36] R. Michelmore,et al. Identification of markers linked to disease-resistance genes by bulked segregant analysis: a rapid method to detect markers in specific genomic regions by using segregating populations. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[37] E. Nevo,et al. Resistance of wild emmer wheat to stem rust: Ecological, pathological and allozyme associations , 1991, Euphytica.
[38] T. E. Miller,et al. The introduction into bread wheat of a major gene for resistance to powdery mildew from wild emmer wheat , 1991, Euphytica.
[39] Z. Gerechter-Amitai,et al. Yr15 — a new gene for resistance to Puccinia striiformis in Triticum dicoccoides sel. G-25 , 1989, Euphytica.
[40] E. Nevo,et al. Resistance of Triticum dicoccoides Collected in Israel to Infection with Puccinia recondita tritici1 , 1985 .
[41] R. Jorgensen,et al. Ribosomal DNA spacer-length polymorphisms in barley: mendelian inheritance, chromosomal location, and population dynamics. , 1984, Proceedings of the National Academy of Sciences of the United States of America.
[42] E. Nevo,et al. Resistance of Triticum dicoccoides to infection with Erysiphe graminis tritici , 1984, Euphytica.
[43] A. Grama,et al. Inheritance of resistance to stripe rust (Puccinia striformis) in crosses between wild emmer (Triticum dicoccoides) and cultivated tetraploid and hexaploid wheats. I. Triticum durum , 1974, Euphytica.
[44] E. Nevo,et al. Resistance of wild wheat to stripe rust: Predictive method by ecology and allozyme genotypes , 2004, Plant Systematics and Evolution.
[45] Z. Gerechter-Amitai,et al. Inheritance of resistance to stripe rust (Puccinia striiformis) in crosses between wild emmer (Triticum dicoccoides) and cultivated tetraploid and hexaploid wheats. II. Triticum aestivum , 2004, Euphytica.
[46] C. Morris,et al. Catalogue of gene symbols for wheat: 2000 supplement. , 2000 .
[47] F. Salamini,et al. Catalogue of gene symbols for wheat , 1998 .
[48] F. Zeller. Progress in breeding for resistance to powdery mildew in common wheat (Triticum aectivum L.) , 1998 .
[49] B. Gill,et al. Identification and high-density mapping of gene-rich regions in chromosome group 5 of wheat. , 1996, Genetics.
[50] J. Ecker,et al. Assignment of 30 microsatellite loci to the linkage map of Arabidopsis. , 1994, Genomics.
[51] Q. Zhuang,et al. Present status of wheat breeding and related genetic study in China. , 1993 .
[52] D. D. Kosambi. The estimation of map distances from recombination values. , 1943 .