Wheat Genetics Resource Center: The First 25 Years

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[5]  B. Gill,et al.  Hessian fly resistance gene H13 is mapped to a distal cluster of resistance genes in chromosome 6DS of wheat , 2005, Theoretical and Applied Genetics.

[6]  B. Gill,et al.  H9, H10, and H11 compose a cluster of Hessian fly-resistance genes in the distal gene-rich region of wheat chromosome 1AS , 2005, Theoretical and Applied Genetics.

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[16]  B. Gill,et al.  BAC-FISH in wheat identifies chromosome landmarks consisting of different types of transposable elements , 2004, Chromosoma.

[17]  B. Gill,et al.  Lr41, Lr39, and a leaf rust resistance gene from Aegilops cylindrica may be allelic and are located on wheat chromosome 2DS , 2004, Theoretical and Applied Genetics.

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[20]  B. Gill,et al.  Map-based cloning of leaf rust resistance gene Lr21 from the large and polyploid genome of bread wheat. , 2003, Genetics.

[21]  L. Yan,et al.  Positional cloning of the wheat vernalization gene VRN1 , 2003, Proceedings of the National Academy of Sciences of the United States of America.

[22]  B. Gill,et al.  Genetic Mapping of Wheat Curl Mite Resistance Genes Cmc3 and Cmc4 in Common Wheat , 2003, Crop Science.

[23]  B. Gill,et al.  Wheat Genomics: Exploring the Polyploid Model , 2002 .

[24]  B. Gill,et al.  Analysis of 106 kb of contiguous DNA sequence from the D genome of wheat reveals high gene density and a complex arrangement of genes related to disease resistance. , 2002, Genome.

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[27]  Elena Boyko,et al.  A high-density cytogenetic map of the Aegilops tauschii genome incorporating retrotransposons and defense-related genes: insights into cereal chromosome structure and function , 2002, Plant Molecular Biology.

[28]  B. Gill,et al.  Genome differentiation in Aegilops. 3. Evolution of the D-genome cluster , 2002, Plant Systematics and Evolution.

[29]  B. Gill,et al.  The colinearity of the Sh2/A1 orthologous region in rice, sorghum and maize is interrupted and accompanied by genome expansion in the triticeae. , 2002, Genetics.

[30]  B. Gill,et al.  An RGA – like marker detects all known Lr21 leaf rust resistance gene family members in Aegilops tauschii and wheat , 2001, Theoretical and Applied Genetics.

[31]  L. Qi,et al.  High-density physical maps reveal that the dominant male-sterile gene Ms3 is located in a genomic region of low recombination in wheat and is not amenable to map-based cloning , 2001, Theoretical and Applied Genetics.

[32]  B. Gill,et al.  The centromere structure in Robertsonian wheat-rye translocation chromosomes indicates that centric breakage-fusion can occur at different positions within the primary constriction , 2001, Chromosoma.

[33]  B. Keller,et al.  A diagnostic molecular marker allowing the study of Th. intermedium-derived resistance to BYDV in bread wheat segregating populations , 2001, Theoretical and Applied Genetics.

[34]  S. Seah,et al.  The introgressed segment carrying rust resistance genes Yr17, Lr37 and Sr38 in wheat can be assayed by a cloned disease resistance gene-like sequence , 2001, Theoretical and Applied Genetics.

[35]  B. Gill,et al.  Cytogenetic and molecular mapping of the leaf rust resistance gene Lr39 in wheat , 2001, Theoretical and Applied Genetics.

[36]  P. Zhang,et al.  Development of a complete set of Triticum aestivum-Aegilops speltoides chromosome addition lines , 2000, Theoretical and Applied Genetics.

[37]  K. Devos,et al.  Chromosomal location of a Triticum timopheevii - derived powdery mildew resistance gene transferred to common wheat , 2000 .

[38]  J. Dubcovsky,et al.  Development of PCR‐Based Markers for a High Grain Protein Content Gene from Triticum turgidum ssp. dicoccoides Transferred to Bread Wheat , 2000 .

[39]  R. Wing,et al.  Construction and characterization of a bacterial artificial chromosome (BAC) library for the A genome of wheat. , 1999, Genome.

[40]  B. Gill,et al.  Transfer of Wheat-Rye Translocation Chromosomes Conferring Resistance to Hessian Fly from Bread Wheat into Durum Wheat , 1999 .

[41]  C. Ceoloni,et al.  Physical mapping of wheat-Aegilops longissima breakpoints in mildew-resistant recombinant lines using FISH with highly repeated and low-copy DNA probes , 1999 .

[42]  B. Keller,et al.  Development of a molecular marker for the adult plant leaf rust resistance gene Lr35 in wheat , 1999, Theoretical and Applied Genetics.

[43]  L. Qi,et al.  Molecular cytogenetic identification of wheat-Elymus tsukushiense introgression lines , 1999, Euphytica.

[44]  R. McIntosh,et al.  Development of SCAR markers linked to the Pm21 gene conferring resistance to powdery mildew in common wheat , 1999 .

[45]  B. Gill,et al.  Molecular cytogenetic analysis of Aegilops cylindrica host. , 1999, Genome.

[46]  L. Qi,et al.  Homoeologous relationships of Haynaldia villosa chromosomes with those of Triticum aestivum as revealed by RFLP analysis , 1999 .

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[48]  M. Blair,et al.  Inter-simple sequence repeat (ISSR) amplification for analysis of microsatellite motif frequency and fingerprinting in rice (Oryza sativa L.) , 1999, Theoretical and Applied Genetics.

[49]  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.

[50]  B. Gill,et al.  Registration of KS96WGRC40 hard red winter wheat germplasm resistant to wheat curl mite, stagnospora leaf blotch, and septoria leaf blotch , 1999 .

[51]  B. Gill,et al.  Registration of KS96WGRC37 Powdery Mildew-Resistant Hard White Winter Wheat Germplasm , 1999 .

[52]  B. Gill,et al.  Registration of KS96WGRC35 and KS96WGRC36 leaf rust-resistant hard red winter wheat germplasms , 1999 .

[53]  B. Gill,et al.  Registration of KS96WGRC34 Leaf Rust-Resistant Hard Red Winter Wheat Germplasms , 1999 .

[54]  B. Gill,et al.  Registration of KS96WGRC38 and KS96WGRC39 Tan Spot-Resistant Hard Red Winter Wheat Germplasm , 1999 .

[55]  B. Gill,et al.  Molecular Cytogenetic Analysis of Tetraploid and Hexaploid Aegilops Crassa , 1998, Chromosome Research.

[56]  J. Dubcovsky,et al.  Molecular characterization of two Triticum speltoides interstitial translocations carrying leaf rust and greenbug resistance genes , 1998 .

[57]  P. Ranjekar,et al.  Identification of a STS marker linked to the Aegilops speltoides-derived leaf rust resistance gene Lr28 in wheat , 1998, Theoretical and Applied Genetics.

[58]  B. Gill,et al.  Structural rearrangement in chromosome 2M of Aegilops comosa has prevented the utilization of the Compair and related wheat-Ae. comosa translocations in wheat improvement , 1998, Theoretical and Applied Genetics.

[59]  B. Gill,et al.  Plant cytogenetics at the dawn of the 21st century. , 1998, Current opinion in plant biology.

[60]  A. Laroche,et al.  Molecular cytogenetic characterization of Thinopyrum intermedium-derived wheat germplasm specifying resistance to wheat streak mosaic virus , 1998, Theoretical and Applied Genetics.

[61]  K. Devos,et al.  Relationships between the chromosomes of Aegilops umbellulata and wheat , 1998, Theoretical and Applied Genetics.

[62]  R. Jarret,et al.  A molecular marker associated with the H21 Hessian fly resistance gene in wheat , 1997, Molecular Breeding.

[63]  V. Korzun,et al.  About the origin of 1RS.1BL wheat-rye chromosome translocations from Germany , 1997 .

[64]  Roger Jones,et al.  Scab of Wheat and Barley: A Re-emerging Disease of Devastating Impact. , 1997, Plant disease.

[65]  F. Salamini,et al.  SITE OF EINKORN WHEAT DOMESTICATION IDENTIFIED BY DNA FINGERPRINTING , 1997 .

[66]  L. Qi,et al.  Molecular cytogenetic analysis of Leymus racemosus chromosomes added to wheat , 1997, Theoretical and Applied Genetics.

[67]  B. Gill,et al.  Chromosome Location of Leaf Rust Resistance Gene Lr43 from Aegilops tauschii in Common Wheat , 1997 .

[68]  T. S. Cox Deepening the wheat gene pool , 1997 .

[69]  Á. Delibes,et al.  Hessian fly-resistance gene transferred from chromosome 4Mv of Aegilops ventricosa to Triticum aestivum , 1997, Theoretical and Applied Genetics.

[70]  F. Zeller,et al.  Evidence of allelism between genes Pm8 and Pm17 and chromosomal location of powdery mildew and leaf rust resistance genes in the common wheat cultivar‘Amigo' , 1997 .

[71]  B. Gill,et al.  Registration of KS92WGRC17, KS92WGRC18, KS92WGRC19, and KS92WGRC20 Winter Wheat Germplasm Resistant to Hessian Fly , 1997 .

[72]  R. Sears,et al.  Registration of KS92WGRC16 Winter Wheat Germplasm Resistant to Leaf Rust , 1997 .

[73]  R. McIntosh,et al.  Genetic suppression of the cereal rye-derived gene Pm8 in wheat , 1997, Euphytica.

[74]  Xue-yong Zhang,et al.  Characterization of the translocated chromosome using fluorescencein situ hybridization and random amplified polymorphic DNA on twoTriticum aestivum—Thinopyrum intermedium translocation lines resistant to wheat streak mosaic or barley yellow dwarf virus , 1996, Chromosome Research.

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[76]  B. Gill,et al.  Genome differentiation in Aegilops. 2. Physical mapping of 5S and 18S-26S ribosomal RNA gene families in diploid species. , 1996, Genome.

[77]  B. Gill,et al.  Identification and high-density mapping of gene-rich regions in chromosome group 1 of wheat. , 1996, Genetics.

[78]  D. Ward,et al.  A conserved repetitive DNA element located in the centromeres of cereal chromosomes. , 1996, Proceedings of the National Academy of Sciences of the United States of America.

[79]  A. Laroche,et al.  Molecular characterization of Haynaldia villosa chromatin in wheat lines carrying resistance to wheat curl mite colonization , 1996, Theoretical and Applied Genetics.

[80]  R. Prins,et al.  A physical map of the Thinopyrum-derived Lr19 translocation. , 1996, Genome.

[81]  F. Dedryver,et al.  Molecular markers linked to the leaf rust resistance gene Lr24 in different wheat cultivars. , 1996, Genome.

[82]  B. Gill,et al.  Standard karyotypes ofAegilops uniaristata, Ae. mutica, Ae. comosa subspeciescomosa andheldreichii (Poaceae) , 1996, Plant Systematics and Evolution.

[83]  J. Jahier,et al.  Utilization of deletions to localize a gene for resistance to the cereal cyst nematode, Heterodera avenue, on an Aegilops ventricosa chromosome , 1996 .

[84]  L. Talbert,et al.  Development of PCR markers linked to resistance to wheat streak mosaic virus in wheat , 1996, Theoretical and Applied Genetics.

[85]  Bikram S. Gill,et al.  The Deletion Stocks of Common Wheat , 1996 .

[86]  Jan Dvorak,et al.  Genetic map of diploid wheat, Triticum monococcum L., and its comparison with maps of Hordeum vulgare L. , 1996, Genetics.

[87]  S. Kaeppler,et al.  A PCR assay for detection of a 2RL.2BS wheat-rye chromosome translocation. , 1996, Genome.

[88]  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.

[89]  B. Gill,et al.  Genome differentiation in Aegilops. 1. Distribution of highly repetitive DNA sequences on chromosomes of diploid species. , 1996, Genome.

[90]  B. Gill,et al.  Molecular cytogenetic analysis of Agropyron chromatin specifying resistance to barley yellow dwarf virus in wheat. , 1996, Genome.

[91]  B. Gill,et al.  Cytogenetic identification of Triticum peregrinum chromosomes added to common wheat. , 1996, Genome.

[92]  W. Li,et al.  Identification, mapping, and application of polymorphic DNA associated with resistance gene Pm21 of wheat. , 1996, Genome.

[93]  P. Jauhar Methods of Genome Analysis in Plants , 1996 .

[94]  B. Gill,et al.  Host plant resistance in some wild wheats to the Russian wheat aphid, Diuraphis noxia (Mordvilko) (Homoptera: Aphididae) , 1995 .

[95]  W. Kim,et al.  PCR-based RAPD/DGGE markers linked to leaf rust resistance genes Lr29 and Lr25 in wheat (Triticum aestivum L.) , 1995 .

[96]  L. Qi,et al.  Development and molecular cytogenetic analysis of wheat-Haynaldia villosa 6VS/6AL translocation lines specifying resistance to powdery mildew , 1995, Theoretical and Applied Genetics.

[97]  B. Gill,et al.  Molecular marker-facilitated analysis of introgression in winter wheat × Triticum tauschii populations , 1995 .

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[99]  B. Gill,et al.  Cytologically based physical maps of the group 3 chromosomes of wheat , 1995, Theoretical and Applied Genetics.

[100]  R. Koebner,et al.  Cytogenetic and molecular mapping of the wheat-Aegilops longissima chromatin breakpoints in powdery mildew-resistant introgression lines , 1995, Theoretical and Applied Genetics.

[101]  B. Gill,et al.  Detection of intergenomic translocations with centromeric and noncentromeric breakpoints in Triticum araraticum: mechanism of origin and adaptive significance. , 1995, Genome.

[102]  B. Gill,et al.  Cytologically based physical maps of the group-2 chromosomes of wheat , 1995, Theoretical and Applied Genetics.

[103]  B. Gill,et al.  Detection of 5S rDNA and other repeated DNA on supernumerary B chromosomes ofTriticum species (Poaceae) , 1995, Plant Systematics and Evolution.

[104]  B. Gill,et al.  Standard karyotype of Triticum searsii and its relationship with other S-genome species and common wheat , 1995, Theoretical and Applied Genetics.

[105]  B. Gill,et al.  Registration of KS93WGRC28 Powdery Mildew Resistant T6BS‐6RL Wheat Germplasm , 1995 .

[106]  B. Gill,et al.  Registration of KS93WGRC27 Wheat Streak Mosaic Virus Resistant T4DL‐4Ai#2S Wheat Germplasm , 1995 .

[107]  Wei Zhang,et al.  Non-homoeologous wheat-rye chromosomal translocations conferring resistance to greenbug , 1995, Euphytica.

[108]  B. Gill,et al.  A cytogenetic ladder-map of the wheat homoeologous group-4 chromosomes , 1995, Theoretical and Applied Genetics.

[109]  R. Koebner,et al.  RFLP analysis of an Aegilops ventricosa chromosome that carries a gene conferring resistance to leaf rust (Puccinia recondita) when transferred to hexaploid wheat , 1995, Theoretical and Applied Genetics.

[110]  B. Keller,et al.  Identification of molecular markers linked to the Agropyron elongatum-derived leaf rust resistance gene Lr24 in wheat , 1995, Theoretical and Applied Genetics.

[111]  B. Gill,et al.  Characterization of Hordeum chilense chromosomes by C-banding and in situ hybridization using highly repeated DNA probes. , 1995, Genome.

[112]  B. Gill,et al.  Targeted mapping of rye chromatin in wheat by representational difference analysis. , 1995, Genome.

[113]  F. Zeller,et al.  Transfer of Amigo wheat powdery mildew resistance gene Pm17 from T1AL·1RS to the T1BL·1RS wheat-rye translocated chromosome , 1995, Heredity.

[114]  P. Waterhouse,et al.  The use of cell culture for subchromosomal introgressions of barley yellow dwarf virus resistance from Thinopyrum intermedium to wheat. , 1995, Genome.

[115]  S. Tanksley,et al.  Molecular markers for four leaf rust resistance genes introgressed into wheat from wild relatives. , 1995, Genome.

[116]  B. Gill,et al.  Comparison of genetic and physical maps of group 7 chromosomes from Triticum aestivum L. , 1994, Molecular and General Genetics MGG.

[117]  Jiming Jiang,et al.  Chromosome painting of Amigo wheat , 1994, Theoretical and Applied Genetics.

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[119]  M. Yamamori An N-band marker for gene Lr18 for resistance to leaf rust in wheat , 1994, Theoretical and Applied Genetics.

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[121]  B. Gill,et al.  Nonisotopic in situ hybridization and plant genome mapping: the first 10 years. , 1994, Genome.

[122]  B. Gill,et al.  Registration of KS92WGRC26, Hessian Fly-Resistant Hard Red Winter Wheat Germplasm , 1994 .

[123]  J. Hatchett,et al.  Hessian fly-resistance gene H26 transferred from Triticum tauschii to common wheat , 1994 .

[124]  Jiming Jiang,et al.  New 18S·26S ribosomal RNA gene loci: chromosomal landmarks for the evolution of polyploid wheats , 1994, Chromosoma.

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[126]  B. Gill,et al.  Cytogenetically monitored transfer of powdery mildew resistance from rye into wheat. , 1994 .

[127]  B. Keller,et al.  Identification and localization of molecular markers linked to the Lr9 leaf rust resistance gene of wheat , 1994, Theoretical and Applied Genetics.

[128]  B. Gill,et al.  Intraspecific karyotype divergence inTriticum araraticum (Poaceae) , 1994, Plant Systematics and Evolution.

[129]  B. Gill,et al.  Registration of KS91WGRC11, KS92WGRC15, KS92WGRC23 Leaf Rust-Resistant Hard Red Winter Wheat Germplasms , 1994 .

[130]  G. Bergstrom,et al.  Registration of KS92WGRC21 and KS92WGRC22 Hard Red Winter Wheat Germplasms Resistant to Wheat Spindle-Streak Mosaic Virus, Wheat Soilborne Mosaic Virus, and Powdery Mildew , 1994 .

[131]  B. Gill,et al.  Leaf rust-resistance genes Lr41, Lr42, and Lr43 transferred from triticum tauschii to common wheat , 1994 .

[132]  N. Blake,et al.  Evaluation of “sequence-tagged-site” PCR products as molecular markers in wheat , 1994, Theoretical and Applied Genetics.

[133]  Jiming Jiang,et al.  A ‘zebra’ chromosome arising from multiple translocations involving non-homologous chromosomes , 1993, Chromosoma.

[134]  A. Lukaszewski Reconstruction in wheat of complete chromosomes 1B and 1R from the 1RS.1BL translocation of 'Kavkaz' origin. , 1993, Genome.

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[137]  B. Gill,et al.  A chromosome region-specific mapping strategy reveals gene-rich telomeric ends in wheat , 1993, Chromosoma.

[138]  H. Bariana,et al.  Cytogenetic studies in wheat. XV. Location of rust resistance genes in VPM1 and their genetic linkage with other disease resistance genes in chromosome 2A. , 1993, Genome.

[139]  B. Gill,et al.  A cytogenetically based physical map of chromosome 1B in common wheat. , 1993, Genome.

[140]  B. Gill,et al.  Radiation-induced nonhomoeologous wheat-Agropyron intermedium chromosomal translocations conferring resistance to leaf rust , 1993, Theoretical and Applied Genetics.

[141]  B. Gill,et al.  Alloplasmic wheat - Elymus ciliaris chromosome addition lines. , 1993, Genome.

[142]  B. Gill,et al.  Molecular cytogenetic analysis of Agropyron elongatum chromatin in wheat germplasm specifying resistance to wheat streak mosaic virus , 1993, Theoretical and Applied Genetics.

[143]  B. Gill,et al.  Chromosomal Location of Hessian Fly–Resistance Genes H22, H23, and H24 Derived from Triticum tauschii in the D Genome of Wheat , 1993 .

[144]  P. Langridge,et al.  Characterisation of wheat-rye recombinants with RFLP and PCR probes , 1993, Theoretical and Applied Genetics.

[145]  S. Tanksley,et al.  RELP markers linked to two Hessian fly-resistance genes in wheat (Triticum aestivum L.) from Triticum tauschii (coss.) Schmal , 1993, Theoretical and Applied Genetics.

[146]  Katrien M. Devos,et al.  Chromosomal rearrangements in the rye genome relative to that of wheat , 1993, Theoretical and Applied Genetics.

[147]  J Dvorák,et al.  The evolution of polyploid wheats: identification of the A genome donor species. , 1993, Genome.

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[149]  B. Gill,et al.  Toward a cytogenetically based physical map of the wheat genome. , 1992, Proceedings of the National Academy of Sciences of the United States of America.

[150]  B. Gill,et al.  Distribution of telomeric repeats and their role in the healing of broken chromosome ends in wheat , 1992 .

[151]  B. Gill,et al.  Resistance to foliar diseases in a collection of Triticum tauschii germ plasm , 1992 .

[152]  P. Dyck Transfer of a gene for stem rust resistance from Triticum araraticum to hexaploid wheat , 1992 .

[153]  B. Gill,et al.  C-banding and in-situ hybridization analyses of Agropyron intermedium, a partial wheat x Ag. intermedium amphiploid, and six derived chromosome addition lines , 1992, Theoretical and Applied Genetics.

[154]  G. Fedak,et al.  Identification of a Triticum–Lophopyrum noncompensating translocation line and detection of Lophopyrum DNA using a wheatgrass specific molecular probe , 1992 .

[155]  B. Gill,et al.  Comparison of C-banding patterns and in situ hybridization sites using highly repetitive and total genomic rye DNA probes of `Imperial' rye chromosomes added to `Chinese Spring' wheat , 1992 .

[156]  F. Zeller,et al.  Characterization of rust-resistant wheat-Agropyron intermedium derivatives by C-banding, in situ hybridization and isozyme analysis , 1992, Theoretical and Applied Genetics.

[157]  B. Gill,et al.  C-banding polymorphisms in several accessions of Triticum tauschii (Aegilops squarrosa) , 1992 .

[158]  K. Hammer,et al.  C-banding pattern and polymorphism of Aegilops caudata and chromosomal constitutions of the amphiploid T. aestivum — Ae. caudata and six derived chromosome addition lines , 1992, Theoretical and Applied Genetics.

[159]  B. Gill,et al.  Registration of Hamlet, A Hessian Fly Resistant Red Winter Wheat Germplasm , 1992 .

[160]  G. M. Paulsen,et al.  Registration of KS89WGRC9 Stress-Tolerant Hard Red Winter Wheat Germplasm , 1992 .

[161]  B. Gill,et al.  Transfer of Hessian fly resistance from rye to wheat via radiation-induced terminal and intercalary chromosomal translocations , 1991, Theoretical and Applied Genetics.

[162]  R. Appels,et al.  Characterization of stem rust resistant derivatives of wheat cultivar Amigo , 1991, Euphytica.

[163]  J. A. Webster,et al.  New Sources of Resistance to Greenbug in Wheat , 1991 .

[164]  B. Gill,et al.  Standard karyotype and nomenclature system for description of chromosome bands and structural aberrations in wheat (Triticum aestivum) , 1991 .

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[168]  B. Gill,et al.  Identification of alien chromatin specifying resistance to wheat streak mosaic and greenbug in wheat germ plasm by C-banding and in situ hybridization , 1991, Theoretical and Applied Genetics.

[169]  B. Gill,et al.  Physical mapping of the 18S.26S rRNA multigene family in common wheat: Identification of a new locus , 1991, Chromosoma.

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[173]  B. Gill,et al.  Physical Mapping of the 5S rRNA Multigene Family in Common Wheat , 1990 .

[174]  B. Gill,et al.  Cytogenetic identification of Aegilops squarrosa chromosome additions in durum wheat , 1990, Theoretical and Applied Genetics.

[175]  B. Gill,et al.  Transfer of Hessian fly resistance from ‘Chaupon’ rye to hexaploid wheat via a 2BS/2RL wheat-rye chromosome translocation , 1990, Theoretical and Applied Genetics.

[176]  G. F. Marais,et al.  The assignment of a Thinopyrum distichum (Thunb.) Löve-derived translocation to the long arm of wheat chromosome 7D using endopeptidase polymorphisms , 1990, Theoretical and Applied Genetics.

[177]  B. Gill,et al.  Isolation of Ht genome chromosome additions from polyploid Elymus trachycaulus (StStHtHt) into common wheat (Triticum aestivum). , 1990 .

[178]  J. Jahier,et al.  Analysis of the level of eyespot resistance due to genes transferred to wheat from Aegilops ventricosa , 1989, Euphytica.

[179]  W. Bushuk,et al.  Cytological characterization, powdery mildew resistance and storage protein composition of tetraploid and hexaploid 1BL/1RS wheat-rye translocation lines , 1989, Theoretical and Applied Genetics.

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[181]  G. Hart,et al.  A spontaneous translocation that transfers wheat curl mite resistance from decaploid Agropyron elongatum to common wheat , 1988 .

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[183]  F. Zeller,et al.  Transfer of the 1BL/1RS wheat-rye-translocation from hexaploid bread wheat to tetraploid durum wheat , 1987, Theoretical and Applied Genetics.

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