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首页> 外文期刊>Chembiochem: A European journal of chemical biology >Desulfation Followed by Sulfation: Metabolism of Benzylglucosinolate in Athalia rosae (Hymenoptera: Tenthredinidae)
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Desulfation Followed by Sulfation: Metabolism of Benzylglucosinolate in Athalia rosae (Hymenoptera: Tenthredinidae)

机译:脱硫后进行硫酸化:玫瑰红(Athalia rosae)中的芥子油酰苄酯的代谢(膜翅目:蝇科)

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The sawfly species Athalia rosae (L.) (Hymenoptera: Tenthredinidae) is phytophagous on plants of the family Brassicaceae and thus needs to cope with the plant defence, the glucosinolate-myrosinase system. The larvae sequester glucosinolates in their haemolymph. We investigated how these compounds are metabolized by this specialist. When larvae were fed with ([~(14)C]-labelled) benzylglucosinolate, one major degradation metabolite, with the same sum formula as benzylglucosinolate, was defecated. This metabolite was also found in the haemolymph along with desulfobenzylglucosinolate, which continuously increased in concentration. NMR spectroscopy in conjunction with LC-TOF-MS measurements revealed the major degradation metabolite to be desulfobenzylglucosinolate-3-sulfate, probably converted from desulfobenzylglucosinolate after sulfation at the sugar moiety. The enzymes responsible must be located in the haemolymph. Additionally, a putative sulfotransferase forms benzylglucosinolate sulfate in the gut from intact, non-sequestered glucosinolate. The corresponding desulfoglucosinolate sulfates were also detected in faeces after feeding experiments with phenylethylglucosinolate and prop-2-enylglucosinolate, which indicates a similar degradation mechanism for various glucosinolates in the larvae. This is the first report on glucosinolate metabolism of a glucosinolate-sequestering insect species.
机译:锯齿蝇Athalia rosae(L.)(膜翅目:Tenthredinidae)在十字花科的植物上具有吞噬作用,因此需要应对植物防御,即芥子油苷-黑芥子酶系统。幼虫在其血淋巴中螯合了芥子油苷。我们调查了这位专家如何代谢这些化合物。当幼虫饲喂([〜(14)C]标记)苄基芥子油苷时,一种主要的降解代谢产物便被排便,其总配方与苄基芥子油苷相同。在血淋巴中还发现了这种代谢产物以及脱硫苄基芥子油苷,其浓度不断增加。 NMR光谱结合LC-TOF-MS测量显示,主要的降解代谢产物是脱硫苄基硫代葡萄糖苷-3-硫酸盐,可能是在糖基上硫酸化后由脱硫苄基硫代葡萄糖苷转化而来的。负责的酶必须位于血淋巴中。另外,推定的磺基转移酶在肠道中由完整的,非异链的芥子油苷生成硫酸苄基硫代糖苷。饲喂苯乙基芥子油苷和丙-2-基芥子油苷后,在粪便中也检测到了相应的葡糖异硫代葡萄糖苷,这表明幼虫中各种芥子油苷具有相似的降解机理。这是关于含芥子油苷的昆虫物种中芥子油苷代谢的首次报道。

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