Corn variety DE811ASR(BC5)

Multicellular living organisms and unmodified parts thereof and – Plant – seedling – plant seed – or plant part – per se – Higher plant – seedling – plant seed – or plant part

Reexamination Certificate

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Details

C800S275000, C800S300100, C800S303000

Reexamination Certificate

active

08084671

ABSTRACT:
This invention relates to polynucleotide sequences encoding a gene that can confer resistance to the plant pathogenColletotrichum, which causes anthracnose stalk rot, leaf blight and top dieback in corn and other cereals. It further relates to plants and seeds of plants carrying chimeric genes comprising said polynucleotide sequences, which enhance or confer resistance to the plant pathogenColletotrichum, and processes of making said plants and seeds. The invention further presents sequences that can be used as molecular markers that in turn can be used to identify the region of interest in corn lines resulting from new crosses and to quickly and efficiently introgress the gene from corn lines carrying said gene into other corn lines that do not carry said gene, in order to make them resistant toColletotrichumand resistant to stalk rot.

REFERENCES:
patent: 6479731 (2002-11-01), Valent et al.
Weldekidan and Hawk. Inheritance of anthracnose stalk rot resistance in maize. (1993) Maydica; vol. 38; pp. 189-192.
Hawk, J.A., Registration of DE811 Germplasm Line of Maize, Crop Science, (1985), 25:716.
Cowen, N., et al., Mapping of Anthracnose Stalk Rot resistance in maize using RFLP analysis, Maize Genetics Conference Abstracts 33, (1991) .
Toman, et al., Inheritance of Resistance to Anthracnose Stalk Rot of Corn, Phytopathology, (1993), 83:981-986.
Weldekidan and Hawk, Inheritance of Anthracnose Stalk Rot Resistance in Maize, Maydica, (1993), 38:189-192.
Jung, et al., Generation-means analysis and quantitative trait locus mapping of anthracnose stalk rot genes in maize, Theor Appl Genet, (1994), 89:413-418.
Polacco, et al., IBM2 Neighbors 4 (Map), (2002), Maize Genetics and Genomics Database.
Gusui Wu, Molecular Breeding & Breeding Molecules, Charlie Rick Symposium Presentation, (2006).
Collins, et al., The Isolation and Mapping of Disease Resistance Gene Analogs in Maize, MPMI, (1998), 11 (10):968-978.
Travis J. Frey, Finemapping, Cloning, Verification, and Fitness Evaluation of a QTL, RCG1, Which Confers Resistance to Colletotricum Graminicola in Maize, (2005), Dissertation to Faculty of University of Delaware.
Frey, et al., Fine mapping and cloning of a maize QTL for resistance to Colletotrichum graminicola, (2005), Poster presented at IPS Meeting.
Gerdes, et al., Compilation of North American Maize Breeding Germplasm, (1993), p. 4, 37.
Mark T. Jung, Generation Means Analysis and Molecular Mapping of Anthracnose Stalkrot Resistance Genes in Maize, (1993), Thesis submitted to Faculty of University of Delaware.
Joseph Toman, Jr., Inheritance of Resistance to Anthracnose Stalk Rot of Corn, (1991), Thesis submitted to Graduate College of University of Illinois.
Hawk, J.A. , Weldekidan, T., Inheritance of Anthracnose Stalk Rot Resistance in Maize, 48th Annual Northeastern Corn Improvement Conference (NEC-29), (1993) p. 8.
Jung, et al., Generation means analysis and QTL mapping of anthracnose stalk rot resistance genes in maize, 48th Annual Northeastern Corn Improvement Conference (NEC-29) (1993) p. 40.
Badu-Apraku, et al., A major Gene for Resistance to Anthracnose Stalk Rot in Maize, Phytopathology, (1987), 77 (6):957-959.
Badu-Apraku, et al., A Major Gene for Resistance to Anthracnose Leaf Blight in Maize, (1987), 98(3): 194-199.
Ferrier-Cana, et al., Distinct post-transcriptional modifications result into seven alternative transcripts of the CC-NBS-LRR gene JA1tr of Phaseolus vulgaris, Theor. Appl. Genet (2005) 110:895-905.

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