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Epimerisation of chiral hydroxylactones by short-chain dehydrogenases/reductases accounts for sex pheromone evolution in Nasonia

机译:短链脱氢酶/还原酶对手性羟基内酯的差异化作用解释了Nasonia中的性信息素进化

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摘要

Males of all species of the parasitic wasp genus Nasonia use (4R,5S)-5-hydroxy-4-decanolide (RS) as component of their sex pheromone while only N. vitripennis (Nv), employs additionally (4R,5R)-5-hydroxy-4-decanolide (RR). Three genes coding for the NAD + -dependent short-chain dehydrogenases/reductases (SDRs) NV10127, NV10128, and NV10129 are linked to the ability of Nv to produce RR. Here we show by assaying recombinant enzymes that SDRs from both Nv and N. giraulti (Ng), the latter a species with only RS in the pheromone, epimerise RS into RR and vice versa with (4R)-5-oxo-4-decanolide as an intermediate. Nv-derived SDR orthologues generally had higher epimerisation rates, which were also influenced by NAD + availability. Semiquantitative protein analyses of the pheromone glands by tandem mass spectrometry revealed that NV10127 as well as NV10128 and/or NV10129 were more abundant in Nv compared to Ng. We conclude that the interplay of differential expression patterns and SDR epimerisation rates on the ancestral pheromone component RS accounts for the evolution of a novel pheromone phenotype in Nv.
机译:Nasonia寄生黄蜂属的所有物种的雄性都使用(4R,5S)-5-羟基-4-癸醇(RS)作为其性信息素的组成部分,而只有紫薇猪笼草(Nv)才使用(4R,5R)- 5-羟基-4-癸醇化物(RR)。编码NAD +依赖性短链脱氢酶/还原酶(SDR)的三个基因NV10127,NV10128和NV10129与Nv产生RR的能力有关。在这里,我们通过分析重组酶显示了来自Nv和N. giraulti(Ng)的SDR,后者是一种仅在信息素中具有RS的物种,将RS差向异构化成RR,反之亦然,与(4R)-5-氧-4-癸醇作为中间体。 Nv衍生的SDR直系同源物通常具有较高的差向发生率,这也受NAD +可用性的影响。通过串联质谱对信息素腺进行半定量蛋白质分析显示,与Ng相比,Nv10中的NV10127以及NV10128和/或NV10129含量更高。我们得出结论,祖传信息素成分RS上差异表达模式和SDR差向异构率的相互作用解释了Nv中一种新的信息素表型的进化。

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