Biphenyl 4-Hydroxylases Involved in Aucuparin Biosynthesis in Rowan and Apple Are Cytochrome P450 736A Proteins1[OPEN]

A membrane-bound hydroxylase contributes to the biosynthesis of defense compounds in apple and related species. Upon pathogen attack, fruit trees such as apple ( Malus spp.) and pear ( Pyrus spp.) accumulate biphenyl and dibenzofuran phytoalexins, with aucuparin as a major biphenyl compound. 4-Hydro...

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Veröffentlicht in:Plant physiology (Bethesda) 2015-04, Vol.168 (2), p.428-442
Hauptverfasser: Sircar, Debabrata, Gaid, Mariam M., Chizzali, Cornelia, Reckwell, Dennis, Kaufholdt, David, Beuerle, Till, Broggini, Giovanni A.L., Flachowsky, Henryk, Liu, Benye, Hänsch, Robert, Beerhues, Ludger
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Sprache:eng
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Zusammenfassung:A membrane-bound hydroxylase contributes to the biosynthesis of defense compounds in apple and related species. Upon pathogen attack, fruit trees such as apple ( Malus spp.) and pear ( Pyrus spp.) accumulate biphenyl and dibenzofuran phytoalexins, with aucuparin as a major biphenyl compound. 4-Hydroxylation of the biphenyl scaffold, formed by biphenyl synthase (BIS), is catalyzed by a cytochrome P450 (CYP). The biphenyl 4-hydroxylase (B4H) coding sequence of rowan ( Sorbus aucuparia ) was isolated and functionally expressed in yeast ( Saccharomyces cerevisiae ). SaB4H was named CYP736A107. No catalytic function of CYP736 was known previously. SaB4H exhibited absolute specificity for 3-hydroxy-5-methoxybiphenyl. In rowan cell cultures treated with elicitor from the scab fungus, transient increases in the SaB4H, SaBIS, and phenylalanine ammonia lyase transcript levels preceded phytoalexin accumulation. Transient expression of a carboxyl-terminal reporter gene construct directed SaB4H to the endoplasmic reticulum. A construct lacking the amino-terminal leader and transmembrane domain caused cytoplasmic localization. Functional B4H coding sequences were also isolated from two apple ( Malus × domestica ) cultivars. The MdB4Hs were named CYP736A163. When stems of cv Golden Delicious were infected with the fire blight bacterium, highest MdB4H transcript levels were observed in the transition zone. In a phylogenetic tree, the three B4Hs were closest to coniferaldehyde 5-hydroxylases involved in lignin biosynthesis, suggesting a common ancestor. Coniferaldehyde and related compounds were not converted by SaB4H.
ISSN:0032-0889
1532-2548
DOI:10.1104/pp.15.00074