The Sn locus of maize is functionally similar to the R and B loci, in that Sn differentially controls the tissue-specific deposition of anthocyanin pigments in certain seedling and plant cells. We show that Sn shows molecular similarity to the R gene and have used R DNA probes to characterize several Sn alleles. Northern analysis demonstrates that all Sn alleles encode a 2.5 kb transcript, which is expressed in a tissue-specific fashion consistent with the distribution of anthocyanins. Expression of the Sn gene is light-regulated. However, the Sn: bol3 allele allows Sn mRNA transcription to occur in the dark, leading to pigmentation in dark-grown seedlings and cob integuments. We report the isolation of genomic and cDNA clones of the light-...
Abstract only availableFaculty Mentor: Karen Cone, Biological SciencesSuppressor of Plant Blotching ...
Anthocyanins and condensed tannins are major flavonoid end-products in higher plants. While the tran...
Anthocyanin accumulation in various maize tissues plays important roles in plant growth and developm...
The red and purple anthocyanin pigments of plants are visible genetic markers and their spatial and ...
The genetic system under investigation is defined by three major components: a gene, Sn, conferring ...
The duplicated R and Sn genes are involved in the regulation of the maize anthocyanin biosynthetic p...
The duplicated R and Sn genes regulate the maize anthocyanin biosynthetic pathway and encode tissue-...
Several dicotyledonous species were infected with an Agrobacterium rhizogenes binary vector harbouri...
We investigated the role of transcription factors (R, SN, C1, and PL) in the regulation of anthocyan...
Linkages between molecular markers and genes involved in the expression of agronomical traits have a...
Abstract only availableSuppressor of Plant Blotching 1, or Spb1, is a proposed epigenetic modifier o...
Linkages between molecular markers and genes involved in the expression of agronomical traits have a...
<div><p>Anthocyanin accumulation in various maize tissues plays important roles in plant growth and ...
The ultimate aim of our work is to understand how a regulatory gene produces a specific pattern of g...
The maize R gene is said to show more phenotypic variation than any other locus in higher plants. Th...
Abstract only availableFaculty Mentor: Karen Cone, Biological SciencesSuppressor of Plant Blotching ...
Anthocyanins and condensed tannins are major flavonoid end-products in higher plants. While the tran...
Anthocyanin accumulation in various maize tissues plays important roles in plant growth and developm...
The red and purple anthocyanin pigments of plants are visible genetic markers and their spatial and ...
The genetic system under investigation is defined by three major components: a gene, Sn, conferring ...
The duplicated R and Sn genes are involved in the regulation of the maize anthocyanin biosynthetic p...
The duplicated R and Sn genes regulate the maize anthocyanin biosynthetic pathway and encode tissue-...
Several dicotyledonous species were infected with an Agrobacterium rhizogenes binary vector harbouri...
We investigated the role of transcription factors (R, SN, C1, and PL) in the regulation of anthocyan...
Linkages between molecular markers and genes involved in the expression of agronomical traits have a...
Abstract only availableSuppressor of Plant Blotching 1, or Spb1, is a proposed epigenetic modifier o...
Linkages between molecular markers and genes involved in the expression of agronomical traits have a...
<div><p>Anthocyanin accumulation in various maize tissues plays important roles in plant growth and ...
The ultimate aim of our work is to understand how a regulatory gene produces a specific pattern of g...
The maize R gene is said to show more phenotypic variation than any other locus in higher plants. Th...
Abstract only availableFaculty Mentor: Karen Cone, Biological SciencesSuppressor of Plant Blotching ...
Anthocyanins and condensed tannins are major flavonoid end-products in higher plants. While the tran...
Anthocyanin accumulation in various maize tissues plays important roles in plant growth and developm...