Nucleic acid molecules and other molecules associated with...

Multicellular living organisms and unmodified parts thereof and – Method of using a plant or plant part in a breeding process... – Method of breeding involving a genotypic or phenotypic marker

Reexamination Certificate

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C800S265000, C800S266000

Reexamination Certificate

active

07154021

ABSTRACT:
The present invention is in the field of soybean genetics. More specifically, the invention relates to nucleic acid molecules from regions the soybean genome, which are associated with soybean cyst nematode resistance. The invention also relates to proteins encoded by such nucleic acid molecules as well as antibodies capable of recognizing these proteins. The invention also relates to nucleic acid markers from regions the soybean genome, which are associated with soybean cyst nematode resistance. Moreover, the invention relates to uses of such molecules, including, transforming soybean cyst nematode resistant soybean with constructs containing nucleic acid molecules from regions the soybean genome, which are associated with soybean cyst nematode resistance. Furthermore, the invention relates to the use of such molecules in a plant breeding program.

REFERENCES:
patent: 5491081 (1996-02-01), Webb
patent: 6096944 (2000-08-01), Vierling et al.
patent: 6162967 (2000-12-01), Webb
patent: 6228992 (2001-05-01), Jessen et al.
patent: 6284948 (2001-09-01), Jessen et al.
patent: 6300541 (2001-10-01), Lightfoot et al.
patent: 6538175 (2003-03-01), Webb
patent: 2002/0129402 (2002-09-01), Lightfoot et al.
patent: 2002/0144310 (2002-10-01), Lightfoot et al.
patent: 2003/0135881 (2003-07-01), Webb
patent: WO 95 20669 (1995-08-01), None
patent: WO 01/51627 (2002-06-01), None
Staub and Serquen 1996, HortScience 31(5):729-738.
Forugoux-Nicol et al 1999, Plant Molecular Biology 40:857-872.
Zhu et al 2003, Genetics 163:1123-1134.
Rafalski 2002, Plant Science 162: 329-333.
J.D. Thompson et al., Clustal W: Improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choice. Nucleic Acids Research, (1994) vol. 22, No. 22., pp. 4673-4680.
Wen-Yuan Song, et al., A receptor Kinase-Like Protein Encoded by the Rice Disease Resistance Gene, Xa21., Science 270 (1995) pp. 1804-1806.
Concibido et al., Cell Biology & Molecular Genetics RFLP mapping and Marker-Assisted Selected of Soybean Cyst Nematode Resistance in PI 209332., Crop. Sci. 36 (1996) pp. 1643-1650.
Mansur et al., Generation Mean Analysis of Resistance to Race 3 of Soybean Cyst Nematode., Crop Sci. 33 (1993) pp. 1249-1253.
Rao-Arelli et al., Genetic Relationships Among Soybean Plant Introductions for Resistance to Race 3 of Soybean Cyst Nematode., Crop Sc., 28 (1988) pp. 650-652.
Concibido et al., Targeted Comparative Genome Analysis and Qualitative Mapping of a Major Partial-Resistance Gene to the Soybean cyst Nematode., Theor Appl. Genet. (1996) 93:234-241.
Kobe et al., A Structural Basis of the Interactions Between Leucine-Rich Repeats and Protein Ligands., Nature vol. 374 (1995) pp. 183-186.
Cregan et al., Two Simple Sequence Repeat Markets to Select for Soybean Cyst Nematode Resistance Conditioned by theRhg1Locus., Theor Appl. Genet. (1999) 99:811-818.
Qui et al. RFLP Markers Associated with Soybean Cyst Nematode Resistance and Seed Composition in a ‘Peking’ x ‘Essex’ Population., Theor Appl. Genet 98:356-364 (1999).
Concibido et al., Genome Mapping of Soybean Cyst Nematode Resistance Genes of ‘Peking’, PI 90763 and PI 88788 Using DNA markers., Crop Sci. 37:258-264 (1997).
Jones et al., The Role of Leucine-Rich Repeat Proteins and Plant Defences, Adv. Bot. Res. Incorp. Ad. Plant Path 24:89-167 (1997).
Matson and Williams, Evidence of a Fourth Gene For Resistance to the Soybean Cyst Nematode., Crop Sci. 5:447 (1965).
Concibido, V.C., et al., “A Common Soybean Cyst Nematode Resistance Gene,” Phytopathology, vol. 85(10):1140 (1995).
Dong, K., et al., “Genetics of Soybean-Heterodera glycinesInteractions,” Journal of Nematology, vol. 29(4):509-522 (1997).
Prabhu, R. R., et al., “Selecting Soybean Cultivars for Dual Resistance to Soybean Cyst Nematode and Sudden Death Syndrome Using Two DNA Markers,” Crop Science, vol. 39(4):982-987 (Jul.-Aug. 1999).
Concibido et al., “A Decade of QTL Mapping for Cyst Nematode Resistance in Soybean”,Crop Science, 44(4):1121-1131 (2004).
Lange et al., “A Plant DNA Isolation Protocol Suitable for Polymerase Chain Reaction Based Marker-Assisted Breeding”,Crop Science, 38:217-220 (1998).
Matthews et al., “Molecular Markers Residing Close to theRhg4Locus Conferring Resistance to Soybean Cyst Nematode Race 3 on Linkage Group A of Soybean”,Theor. Appl. Genet., 97:1047-1052 (1998).
Meksem et al.; “Clustering Among LOCI Underlying Soybean Resistance toFusarium solani, SDS and SCN in Near-Isogenic Lines”,Theor. Appl. Genet., 99:1131-1142 (1999).
Meksem et al., “Conversion of AFLP Bands into High-Throughput DNA Markers”,Mol. Genet. Genomics, 265:207-214 (2001).
Meksem et al., ‘“Forrest’ Resistance to the Soybean Cyst Nematode is Bigenic: Saturation Mapping of theRhg1andRhg4LOCI”,Theor. Appl. Gene., 103:710-717 (2001).
Meksem et al., “Two Large-Insert Soybean Genomic Libraries constructed in a Binary Vector: Applications in Chromosome Walking and Genome Wide Physical Mapping”,Theor. Appl. Gene., 101:747-755 (2000).
Meksem et al., “High-Throughput Genotyping for a Polymorphism Linked to Soybean Cyst Nematode Resistance GeneRhg4by Using Taqman™ Probes”,Molecular Breeding, 7:63-71 (2001).
Bell-Johnson et al., “Biotechnology Approaches to Improving Resistance to SCN and SDS: Methods for High Throughput Marker Assisted Selection”,Soybean Genetics Newsletter, 25:115-117 (1998).
Boutin et al., “RFLP Analysis of Cyst Nematode Resistance in Soybeans”,Soybean Genetics Newsletter, 19:123-127 (1992).
Chang et al., “Association of Loci Underlying Field Resistance to Soybean Sudden Death Syndrome (SDS) and Cyst Nematode (SCN) Race 3”,Crop Sci., 37(3):965-971 (1997).
Concibido et al., “DNA Marker Analysis of Loci Underlying Resistance to Soybean Cyst Nematode (Heterodera Glycines Ichinohe)”,Crop Sci., 34(1):240-246 (1994).
Concibido et al., “RFLP Mapping of Cyst Nematode Resistance Genes in Soybeans”,Soybean Genetics Newsletter, 20:136-139 (1993).
Mahalingam et al., “Cytological Expression of Early Response to Infection byHeterodera gylcines Ichinohein Resistant PI 437654 Soybean”,Genome, 39:986-998 (1996).
Mahalingam et al., “DNA Markers for Resistance toHeterodera glycines I. Race 3 in Soybean Cultivar Peking”,Breeding Science, 45:435-443 (1995).
Meksem et al., “A High-Resolution Map of the Vicinity of the R1 Locus on Chromosome V of Potato Based on RFLP and AFLP Markers”,Mol Gen Genet, 249:74-81 (1995).
Webb et al., “Genetic Mapping of Soybean Cyst Nematode Race-3 Resistance LOCI in the Soybean P1 437.654”,Theor Appl Genet, 91(1):574-581 (1995).

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