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R J Okagaki

Showing results (1-10 of 11) with videos related to

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Genetics|October 23, 1997
Analysis of recombination sites within the maize waxy locusR J Okagaki, C F Weil
Genetics|December 1, 1988
Comparison of non-mutant and mutant waxy genes in rice and maizeR J Okagaki, S R Wessler
Genetics|October 8, 1999
A core activity associated with the N terminus of the yeast RAD52 protein is revealed by RAD51 overexpression suppression of C-terminal rad52 truncation allelesE N Asleson, R J Okagaki, D M Livingston
Genetics|June 1, 1991
A deletion common to two independently derived waxy mutations of maizeR J Okagaki, M G Neuffer, S R Wessler
Functional & Integrative Genomics|May 22, 2002
Maize individualized chromosome and derived radiation hybrid lines and their use in functional genomicsR G Kynast, R J Okagaki, H W Rines, et al.
The Plant Cell|November 11, 1992
Alternative 3' splice acceptor sites modulate enzymic activity in derivative alleles of the maize bronze1-mutable 13 alleleR J Okagaki, T D Sullivan, J W Schiefelbein, et al.
Plant & Cell Physiology|August 31, 2000
Antisense waxy genes with highly active promoters effectively suppress waxy gene expression in transgenic riceR Terada, M Nakajima, M Isshiki, et al.
The Plant Journal : for Cell and Molecular Biology|September 23, 1998
A naturally occurring functional allele of the rice waxy locus has a GT to TT mutation at the 5' splice site of the first intronM Isshiki, K Morino, M Nakajima, et al.
Plant Physiology|March 13, 2001
Mapping maize sequences to chromosomes using oat-maize chromosome addition materialsR J Okagaki, R G Kynast, S M Livingston, et al.
Cytogenetic and Genome Research|June 27, 2009
Identification of a maize neocentromere in an oat-maize addition lineC N Topp, R J Okagaki, J R Melo, et al.
Pageof 2

Showing results (1-10 of 11) with videos related to

Sort By:
Pageof 2
Genetics|October 23, 1997
Analysis of recombination sites within the maize waxy locusR J Okagaki, C F Weil
Genetics|December 1, 1988
Comparison of non-mutant and mutant waxy genes in rice and maizeR J Okagaki, S R Wessler
Genetics|October 8, 1999
A core activity associated with the N terminus of the yeast RAD52 protein is revealed by RAD51 overexpression suppression of C-terminal rad52 truncation allelesE N Asleson, R J Okagaki, D M Livingston
Genetics|June 1, 1991
A deletion common to two independently derived waxy mutations of maizeR J Okagaki, M G Neuffer, S R Wessler
Functional & Integrative Genomics|May 22, 2002
Maize individualized chromosome and derived radiation hybrid lines and their use in functional genomicsR G Kynast, R J Okagaki, H W Rines, et al.
The Plant Cell|November 11, 1992
Alternative 3' splice acceptor sites modulate enzymic activity in derivative alleles of the maize bronze1-mutable 13 alleleR J Okagaki, T D Sullivan, J W Schiefelbein, et al.
Plant & Cell Physiology|August 31, 2000
Antisense waxy genes with highly active promoters effectively suppress waxy gene expression in transgenic riceR Terada, M Nakajima, M Isshiki, et al.
The Plant Journal : for Cell and Molecular Biology|September 23, 1998
A naturally occurring functional allele of the rice waxy locus has a GT to TT mutation at the 5' splice site of the first intronM Isshiki, K Morino, M Nakajima, et al.
Plant Physiology|March 13, 2001
Mapping maize sequences to chromosomes using oat-maize chromosome addition materialsR J Okagaki, R G Kynast, S M Livingston, et al.
Cytogenetic and Genome Research|June 27, 2009
Identification of a maize neocentromere in an oat-maize addition lineC N Topp, R J Okagaki, J R Melo, et al.
Pageof 2