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一种参与拟南芥中致甲状腺肿的2-羟基丁-3-烯基硫代葡萄糖苷形成和广谱抗虫性的新型2-氧代酸依赖性双加氧酶

A novel 2-oxoacid-dependent dioxygenase involved in the formation of the goiterogenic 2-hydroxybut-3-enyl glucosinolate and generalist insect resistance in Arabidopsis,

作者信息

Hansen Bjarne G, Kerwin Rachel E, Ober James A, Lambrix Virginia M, Mitchell-Olds Thomas, Gershenzon Jonathan, Halkier Barbara A, Kliebenstein Daniel J

机构信息

Plant Biochemistry Laboratory, Department of Plant Biology, VKR Centre for Pro-Active Plants, Faculty of Life Sciences, University of Copenhagen, DK-1871 Frederiksberg C, Denmark.

出版信息

Plant Physiol. 2008 Dec;148(4):2096-108. doi: 10.1104/pp.108.129981. Epub 2008 Oct 22.

Abstract

Glucosinolates are secondary metabolites found almost exclusively in the order Brassicales. They are synthesized from a variety of amino acids and can have numerous side chain modifications that control biological function. We investigated the biosynthesis of 2-hydroxybut-3-enyl glucosinolate, which has biological activities including toxicity to Caenorhabditis elegans, inhibition of seed germination, induction of goiter disease in mammals, and production of bitter flavors in Brassica vegetable crops. Arabidopsis (Arabidopsis thaliana) accessions contain three different patterns of 2-hydroxybut-3-enyl glucosinolate accumulation (present in leaves and seeds, seeds only, or absent) corresponding to three different alleles at a single locus, GSL-OH. Fine-scale mapping of the GSL-OH locus identified a 2-oxoacid-dependent dioxygenase encoded by At2g25450 required for the formation of both 2R- and 2S-2-hydroxybut-3-enyl glucosinolate from the precursor 3-butenyl glucosinolate precursor. Naturally occurring null mutations and T-DNA insertional mutations in At2g25450 exhibit a complete absence of 2-hydroxybut-3-enyl glucosinolate accumulation. Analysis of herbivory by the generalist lepidopteran Trichoplusia ni showed that production of 2-hydroxybut-3-enyl glucosinolate provides increased resistance. These results show that At2g25450 is necessary for the hydroxylation of but-3-enyl glucosinolate to 2-hydroxybut-3-enyl glucosinolate in planta and that this metabolite increases resistance to generalist herbivory.

摘要

硫代葡萄糖苷是几乎仅在十字花目植物中发现的次生代谢产物。它们由多种氨基酸合成,并且可以有许多控制生物学功能的侧链修饰。我们研究了2-羟基丁-3-烯基硫代葡萄糖苷的生物合成,其具有多种生物学活性,包括对秀丽隐杆线虫的毒性、抑制种子萌发、在哺乳动物中诱导甲状腺肿疾病以及在芸苔属蔬菜作物中产生苦味。拟南芥(Arabidopsis thaliana)的不同生态型含有三种不同模式的2-羟基丁-3-烯基硫代葡萄糖苷积累情况(存在于叶片和种子中、仅存在于种子中或不存在),这对应于单个位点GSL-OH处的三种不同等位基因。对GSL-OH位点的精细定位鉴定出由At2g25450编码的一种2-氧代酸依赖性双加氧酶,该酶是从前体3-丁烯基硫代葡萄糖苷形成2R-和2S-2-羟基丁-3-烯基硫代葡萄糖苷所必需的。At2g25450中自然发生的无效突变和T-DNA插入突变表现出完全没有2-羟基丁-3-烯基硫代葡萄糖苷的积累。对多食性鳞翅目昆虫粉纹夜蛾(Trichoplusia ni)的食草行为分析表明,2-羟基丁-3-烯基硫代葡萄糖苷的产生提供了增强的抗性。这些结果表明,At2g25450对于植物中3-丁烯基硫代葡萄糖苷羟基化为2-羟基丁-3-烯基硫代葡萄糖苷是必需的,并且这种代谢产物增加了对多食性食草动物的抗性。

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