葡萄糖基转移酶
糖基转移酶
硫代葡萄糖苷
突变体
功能(生物学)
葡萄糖基转移酶
基因
生物化学
酶
生物
生物合成
表型
遗传学
化学
农学
芸苔属
作者
Christopher S. Grubb,Brandon J. Zipp,Jakub Kopycki,Melvin Schubert,Marcel Quint,Eng‐Kiat Lim,Dianna J. Bowles,M. Soledade C. Pedras,Steffen Abel
出处
期刊:Plant Journal
[Wiley]
日期:2014-04-29
卷期号:79 (1): 92-105
被引量:50
摘要
Summary The study of glucosinolates and their regulation has provided a powerful framework for the exploration of fundamental questions about the function, evolution, and ecological significance of plant natural products, but uncertainties about their metabolism remain. Previous work has identified one thiohydroximate S ‐glucosyltransferase, UGT 74B1, with an important role in the core pathway, but also made clear that this enzyme functions redundantly and cannot be the sole UDP ‐glucose dependent glucosyltransferase ( UGT ) in glucosinolate synthesis. Here, we present the results of a nearly comprehensive in vitro activity screen of recombinant A rabidopsis Family 1 UGT s, which implicate other members of the UGT 74 clade as candidate glucosinolate biosynthetic enzymes. Systematic genetic analysis of this clade indicates that UGT 74C1 plays a special role in the synthesis of aliphatic glucosinolates, a conclusion strongly supported by phylogenetic and gene expression analyses. Finally, the ability of UGT 74C1 to complement phenotypes and chemotypes of the ugt74b1‐2 knockout mutant and to express thiohydroximate UGT activity in planta provides conclusive evidence for UGT 74C1 being an accessory enzyme in glucosinolate biosynthesis with a potential function during plant adaptation to environmental challenge.
科研通智能强力驱动
Strongly Powered by AbleSci AI