
pmid: 20352114
pmc: PMC2843724
The genus Aquilegia is an emerging model system in plant evolutionary biology predominantly because of its wide variation in floral traits and associated floral ecology. The anatomy of the Aquilegia flower is also very distinct. There are two whorls of petaloid organs, the outer whorl of sepals and the second whorl of petals that form nectar spurs, as well as a recently evolved fifth whorl of staminodia inserted between stamens and carpels.We designed an oligonucleotide microarray based on EST sequences from a mixed tissue, normalized cDNA library of an A. formosa x A. pubescens F2 population representing 17,246 unigenes. We then used this array to analyze floral gene expression in late pre-anthesis stage floral organs from a natural A. formosa population. In particular, we tested for gene expression patterns specific to each floral whorl and to combinations of whorls that correspond to traditional and modified ABC model groupings. Similar analyses were performed on gene expression data of Arabidopsis thaliana whorls previously obtained using the Ath1 gene chips (data available through The Arabidopsis Information Resource).Our comparative gene expression analyses suggest that 1) petaloid sepals and petals of A. formosa share gene expression patterns more than either have organ-specific patterns, 2) petals of A. formosa and A. thaliana may be independently derived, 3) staminodia express B and C genes similar to stamens but the staminodium genetic program has also converged on aspects of the carpel program and 4) staminodia have unique up-regulation of regulatory genes and genes that have been implicated with defense against microbial infection and herbivory. Our study also highlights the value of comparative gene expression profiling and the Aquilegia microarray in particular for the study of floral evolution and ecology.
Arabidopsis, Evolutionary biology, plant, dna, oligonucleotide array sequence analysis, Gene Expression Regulation, Plant, Oligonucleotide Array Sequence Analysis, plant biology, Expressed Sequence Tags, Fields of Research::270000 Biological Sciences::270700 Ecology and Evolution::270799 Ecology and evolution not elsewhere classified, Ecology, flowers, Q, Cell Cycle, R, Nucleic Acid Hybridization, gene expression regulation, genetics and genomics, plant-environment interactions, aquilegia, Medicine, cell cycle, ecology, Research Article, nucleic acid hybridization, 570, DNA, Complementary, Evolution, Science, 612, Flowers, Evolution, Molecular, complementary, evolution, gene expression profiling, genomics, molecular, expressed sequence tags, DNA Primers, plant genetics and gene expression, 580, dna primers, Gene Expression Profiling, evolutionary biology, Aquilegia, arabidopsis, evolutionary ecology, gene expression, Gene expression
Arabidopsis, Evolutionary biology, plant, dna, oligonucleotide array sequence analysis, Gene Expression Regulation, Plant, Oligonucleotide Array Sequence Analysis, plant biology, Expressed Sequence Tags, Fields of Research::270000 Biological Sciences::270700 Ecology and Evolution::270799 Ecology and evolution not elsewhere classified, Ecology, flowers, Q, Cell Cycle, R, Nucleic Acid Hybridization, gene expression regulation, genetics and genomics, plant-environment interactions, aquilegia, Medicine, cell cycle, ecology, Research Article, nucleic acid hybridization, 570, DNA, Complementary, Evolution, Science, 612, Flowers, Evolution, Molecular, complementary, evolution, gene expression profiling, genomics, molecular, expressed sequence tags, DNA Primers, plant genetics and gene expression, 580, dna primers, Gene Expression Profiling, evolutionary biology, Aquilegia, arabidopsis, evolutionary ecology, gene expression, Gene expression
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