Biosynthesis of the Major Tetrahydroxystilbenes in Spruce, Astringin and Isorhapontin, Proceeds via Resveratrol and Is Enhanced by Fungal Infection

被引:105
作者
Hammerbacher, Almuth [1 ]
Ralph, Steven G. [2 ]
Bohlmann, Joerg [2 ]
Fenning, Trevor M. [1 ]
Gershenzon, Jonathan [1 ]
Schmidt, Axel [1 ]
机构
[1] Max Planck Inst Chem Ecol, Dept Biochem, D-07745 Jena, Germany
[2] Univ British Columbia, Michael Smith Lab, Vancouver, BC V6T 1Z4, Canada
关键词
STILBENE SYNTHASE GENE; PINE PINUS-SYLVESTRIS; BLUE-STAIN FUNGUS; CHALCONE SYNTHASE; NORWAY SPRUCE; PICEA-ABIES; SCOTS-PINE; POLYKETIDE SYNTHASES; OPHIOSTOMA-POLONICUM; EMBRYOGENIC TISSUE;
D O I
10.1104/pp.111.181420
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Stilbenes are dibenzyl polyphenolic compounds produced in several unrelated plant families that appear to protect against various biotic and abiotic stresses. Stilbene biosynthesis has been well described in economically important plants, such as grape (Vitis vinifera), peanut (Arachis hypogaea), and pine (Pinus species). However, very little is known about the biosynthesis and ecological role of stilbenes in spruce (Picea), an important gymnosperm tree genus in temperate and boreal forests. To investigate the biosynthesis of stilbenes in spruce, we identified two similar stilbene synthase (STS) genes in Norway spruce (Picea abies), PaSTS1 and PaSTS2, which had orthologs with high sequence identity in sitka (Picea sitchensis) and white (Picea glauca) spruce. Despite the conservation of STS sequences in these three spruce species, they differed substantially from angiosperm STSs. Several types of in vitro and in vivo assays revealed that the P. abies STSs catalyze the condensation of p-coumaroyl-coenzyme A and three molecules of malonyl-coenzyme A to yield the trihydroxystilbene resveratrol but do not directly form the dominant spruce stilbenes, which are tetrahydroxylated. However, in transgenic Norway spruce over-expressing PaSTS1, significantly higher amounts of the tetrahydroxystilbene glycosides, astringin and isorhapontin, were produced. This result suggests that the first step of stilbene biosynthesis in spruce is the formation of resveratrol, which is further modified by hydroxylation, O-methylation, and O-glucosylation to yield astringin and isorhapontin. Inoculating spruce with fungal mycelium increased STS transcript abundance and tetrahydroxystilbene glycoside production. Extracts from STS-overexpressing lines significantly inhibited fungal growth in vitro compared with extracts from control lines, suggesting that spruce stilbenes have a role in antifungal defense.
引用
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页码:876 / 890
页数:15
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