Arabidopsis genomeCo-expression dataCytochrome P450 genesGene duplication and diversificationPlant metabolism
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Abstract (AI)
There are 244 cytochrome P450 genes (and 28 pseudogenes) in the Arabidopsis genome. P450s thus form one of the largest gene families in plants. Contrary to what was initially thought, this family diversification results in very limited functional redundancy and seems to mirror the complexity of plant metabolism. P450s sometimes share less than 20% identity and catalyze extremely diverse reactions leading to the precursors of structural macromolecules such as lignin, cutin, suberin and sporopollenin, or are involved in biosynthesis or catabolism of all hormone and signaling molecules, of pigments, odorants, flavors, antioxidants, allelochemicals and defense compounds, and in the metabolism of xenobiotics. The mechanisms of gene duplication and diversification are getting better understood and together with co-expression data provide leads to functional characterization.
Key Findings
1
Arabidopsis contains 244 cytochrome P450 genes and 28 pseudogenes, making P450s one of the largest plant gene families.
2
Despite extensive diversification, Arabidopsis P450s show limited functional redundancy, reflecting the complexity of plant metabolism.
3
P450s contribute to the formation and metabolism of lignin, cutin, suberin, sporopollenin, hormones, signaling molecules, pigments, defense compounds, and xenobiotics.
4
Some P450 proteins share less than 20% sequence identity and catalyze highly diverse reactions.
5
Understanding gene duplication, diversification, and co-expression patterns provides leads for assigning functions to uncharacterized P450 genes.
Research Object
Cytochrome P450 genes in Arabidopsis
Research Subject
Their functional diversification, catalytic roles in plant metabolism, and mechanisms of gene duplication and diversification
Publication Details
Publication Date
2011-01-01
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