Lycopersicon esculentum lines containing small overlapping introgressions from L. pennellii

Yuval Eshed1, Mohamad Abu-Abied2, Yehoshua Saranga2, Dani Zamir2
1Faculty of Agriculture, The Hebrew University of Jerusalem, 76100, Rehovot, Israel.
2Faculty of Agriculture, The Hebrew University of Jerusalem, Rehovot, Israel

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Behare J, Laterrot H, Sarfatti M, Zamir D (1991) RFLP mapping of the Stemphylium resistance gene in tomato. Mol Plant-Microbe Int 4:489–492

Bernatzky R, Tanksley SD (1986) Methods for detection of single or low copy sequences in tomato on Southern blots. Plant Mol Biol Rep 4:37–41

Burr B, Burr FA (1991) Recombinant inbreds for molecular mapping in maize: theoretical and practical considerations. Trends Genet 7:55–60

Burr B, Burr FA, Thompson KH, Albertson MC, Stuber CW (1988) Gene mapping with recombinant inbreds in maize. Genetics 118:519–526

Feinberg AP, Vogelstein B (1983) A technique for radiolabelling DNA restriction endonuclease fragments to high specific activity. Anal Biochem 132:6–13

Gadish I, Zamir D (1987) Differential zygotic abortion in an interspecific Lycopersicon cross. Genome 29:156–159

Klein-Lankhorst RM, Rietveld P, Machiels B, Verkerk R, Weide R, Gebhardt C, Koornneef M, Zabel P (1991a) RFLP marker linked to the root knot nematode resistance gene Mi in tomato. Theor Appl Genet 81:661–667

Klein-Lankhorst RM, Vermunt A, Weide R, Liharska T, Zabel P (1991b) Isolation of molecular markers for tomato (L. esculenttum) using random amplified polymorphic DNA (RAPD). Theor Appl Genet 83:108–114

Lander ES, Green P, Abrahamson J, Barlow A, Daly MJ, Lincoln SE, Newburg L (1987) MAPMAKER: An interactive computer package for constructing primary genetic linkage maps of experimental and natural populations. Genomics 1:174–181

Levesque H, Vedel F, Mathieu C, Decurcel AGL (1990) Identification of a short rDNA spacer sequence highly specific of a tomato line containing Tm-1 gene introgressed from Lycopersicon hirsutum. Theor Appl Genet 80:602–608

Martin B, Nienhuis J, King G, Schaefer A (1989) Restriction fragment length polymorphism associated with water use efficiency in tomato. Science 243:1725–1728

Martin GB, Williams JGK, Tanksley SD (1991) Rapid identification of markers linked to a Pseudomonas resistance gene in tomato using random primers and near isogenic lines. Proc Natl Acad Sci USA 88:2336–2340

Messeguer R, Ganal M, De-Vincente MC, Young ND, Bolkan H, Tanksley SD, (1991) High resolution RFLP map around the root knot nematode resistance gene (Mi) in tomato. Theor Appl Genet 82:529–536

Miller JC, Tanksley SD (1990) RFLP analysis of phylogenetic relationship and genetic variation in the genus Lycopersicon. Theor Appl Genet 80:437–448

Nienhuis J, Helentjaris T, Slocum M, Ruggero B, Schaefer A (1987) Restriction fragment length polymorphism analysis of loci associated with insect resistance in tomato. Crop Sci 27:797–803

Paterson AH, Lander ES, Hewitt JD, Peterson S, Lincoln SE, Tanksley SD (1988) Resolution of quantitative traits into Mendelian factors by using a complete linkage map of restriction fragment lengh polymorphisms. Nature 355:721–726

Paterson AH, Deverna JW, Lanini B, Tanksley SD (1990) Fine mapping of quantitative trait loci using overlapping recombinant chromosomes, in an interspecies cross of tomato. Genetics 124:735–742

Paterson AH, Damon S, Hewitt JD, Zamir D, Rabinowitch HD, Lincoln SE, Lander ES, Tanksley SD (1991) Mendelian factors underlying quantitative traits in tomato: comparison across species, generations, and environments. Genetics 127:181–197

Rick CM (1969) Controlled introgression of chromosomes of Solanum pennellii into Lycopersicon esculentum: segregation and recombination. Genetics 62:753–768

Rick CM (1973) Potential genetic resources in tomato species: clues from observations in native habitats. In: Srb AM (ed) Genes, enzymes, and populations. Plenum, New York, pp 255–269

Rick CM, Tanksley SD (1981) Genetic variation in Solanum pennellii: comparisons with two other sympatric tomato species. Plant System Evol 139:11–45

Saranga Y, Zamir D, Marani A, Rudich J (1991) Breeding tomato for salt tolerance: I. field evaluation of Lycopersicon germ-plasm for yield and dry matter production. J Am Soc Hortic Sci 116:1067–1071

Sarfatti M, Katan J, Fluhr R, Zamir D (1989) An RFLP marker in tomato linked to the Fusarium oxysporum resistance gene I2. Theor Appl Genet 78:755–759

Sarfatti M, Abu-Abied M, Katan J, Zamir D (1991) RFLP mapping of I1, a new locus in tomato conferring resistance against Fusarium oxysporum f. sp. lycopersici race 1. Theor Appl Genet 82:22–26

Sharp PJ, Chao S, Desay S, Gale MD (1989) The isolation, characterization and application in the Triticieae of a set of wheat RFLP probes identifying each homoeologeus chromosome arm. Theor Appl Genet 78:342–348

Tanksley SD, Young ND, Paterson AH, Bonierbale MW (1989) RFLP mapping in plant breeding: new tools for an old science. Bio/Technology 7:257–264

Weber D, Helentjaris T (1989) Mapping RFLP loci in maize using B-A translocations. Genetics 121:583–590

Young ND, Miller JC, Tanksley SD (1987) Rapid chromosomal assignment of multiple genomic clones in tomato using primary trisomics. Nucleic Acids Res 15:9339–9348

Young ND, Zamir D, Ganal M, Tanksley SD (1988) Use of isogenic lines and simultaneous probing to identify DNA markers tightly linked to the Tm-2a gene in tomato. Genetics 120:579–585

Zamir D, Tal M (1987) Genetic analysis of sodium, potassium and chloride ion content in Lycopersicon. Euphytica 36:187–191