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685. SEBESTA, E.E., and E.A. WOOD, Jr. 1978 Transfer of greenbug resistance from rye to wheat with X-rays. Agron. Abstr. pp. 61-62.
686. TYLER, J.M., J.A. WEBSTER and E.L. SMITH. 1985. Biotype E greenbug resistance in WSMV resistant wheat germplasm lines. Crop Sci. 25: 686-688.
687. DHALIWAL, H.S., S.K. SHARMA and A.S. RANDHAWA. 1986. How to overcome hybrid necrosis in wheat. Wheat Inform. Serv. 61: 27-28.
688. BARTOS. P., and E. STUCHLIKOVA. 1986. Genes for rust resistance. Ann. Wheat Newsl. 32: 65-66.
689. ROELFS, A.P., and D.V. MCVEY. 1979. Low infection types produced by Puccinia graminis f.sp. tritici and wheat lines with designated genes for resistance. Phytopathology 69: 722-730.
690-699. References reserved for section on Height - under review.
700. MAYSTRENKO, O.I. 1986. Personal communication.
723. Replace with: AINSWORTH, C.C., T.E. MILLER and M.D. GALE. 1987. Alpha-amylase and Beta-amylase homoeoloci in species related to wheat. Genet. Res., Cam. (In Press).
725. AINSWORTH, C.C., T.E. MILLER and M.D. GALE 1986. Theor. Appl. Genet. 72: 219-225.
734. FLAVELL, R.B. and M. O'DELL. 1976. Ribosomal RNA genes on homoeologous chromosomes of group 5 and 6 in hexaploid wheat. Heredity 37: 377-385.
735. FIGUEIRAS, A.M., M.T. GONZALES- JAEN and C. BENITO. 1986. Biochemical evidence of homoeology between Triticum aestivum and Agropyon intermedium chromosomes. Theor. Appl. Genet. 72: 826-832.
736. MCMILLAN, D.E., R.E. ALLAN and D.E. ROBERTS. 1986. Association of an isozyme locus and strawbreaker foot rot resistance derived from Aegilops ventricosa in wheat. Theor. Appl. Genet. 72: 743-747.
738. PAYNE, P.I., L.M. HOLT and C.N. LAW. 1981. Structural and genetical studies on the high-molecular-weight subunits of wheat glutenin. Theor. Appl. Genet. 60: 229-236.
739. PAYNE, P.I., L.M. HOLT, R.D. THOMPSON, D. BARTELS, N.P. HARBERD, P.A. HARRIS and C.N. LAW. 1983. The high-molecular-weight subunits of glutenin: classical genetics, molecular genetics and the relationship of bread-making quality. Proc. 6th Int. Wheat Genet Symp. pp. 827-834.
740. THOMPSON, R.D., D. BARTELS and N.P. HARBERD. 1985. Nucleotide sequence of a gene from chromosome ID of wheat encoding a HMW-glutenin subunit. Nucleic Acids Res. 13: 6833-6846.
741. SUGIYAMA, T., A. RATALSKI, D. PETERSON and D. SOLL. 1985. A wheat HMW glutenin subunit gene reveals ahighly repeated structure. Nucleic Acids Res. 13: 8729-8737.
742. FORDE, J. J.M. MALPICA, N.G. HALFORD, P.R. SHEWRY, O.D. ANDERSON, F.C. GREENE and B.J. MIFLIN. 1985. The nucleotide sequence of an HMW glutenin subunit gene located on chromosome 1A of wheat (Triticum aestivum L.) Nucleic Acids Res. 13: 6817-6832.
743. HARBERD, N.P., D. BARTELS and R.D. THOMPSON. 1986. DNA restriction-fragment variation in the gene family encoding high-molecular-weight (HMW) glutenin subunits of wheat. Biochem. Genet. 24: 579-596.
744. THOMPSON, R.D., D. BARTELS, N.P. HARBERD and R.B. FLAVELL. 1983. Characterisation of the multigene family coding for HMW glutenin subunits in wheat using cDNA clones. Theor. Appl. Genet. 67: 87-96.
745. JACKSON, E.A., L.M. HOLT and P.I. PAYNE. 1983. Characterisation of high-molecular-weight gliadin and low-molecular-weight glutenin subunits of wheat endosperm by two-dimensional electrophoresis and the chromosomal localisation of their controlling genes. Theor. Appl. Genet. 66: 29-37.
746. HARBERD, N.P., D. BARTELS and R.D. THOMPSON. 1985. Analysis of the gliadin multigene loci in bread wheat using nullisomic-tetrasomic lines. Mol. Gen. Genet. 198: 234-242.
747. MOONEN, J.H.E., A. SCHEEPSTRA and A. GRAVELAND. 1985. Biochemical properties of some high-molecular-weight subunits of wheat glutenin. J. Cereal Sci. 3: 17-27.
748. LAWRENCE, G.J. 1986. The high-molecular-weight glutenin subunit composition of Australian wheat cultivars. Aust. J. Agric. Res. 37: 125-133.
749. MECHAM, D.K., D.D. KASARDA and C.O. QUALSET. 1978. Genetic aspects of wheat gliadin proteins. Biochem. Genet. 16: 831-853.
751. SANCHEZ-MONGE, R., D. BARBER, E. MENDEZ, F. GARCIA-OLMEDO and G. SALCEDO. 1986. Genes encoding Alpha-amylase inhibitors are located in the short arms of chromosomes 3B, 3D and 6D of wheat (Triticum aestivum L.). Theor. Appl. Genet. 72: 108-113.


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