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首页> 外文期刊>Bulletin of Entomological Research >Spatiotemporal expression profiling of the farnesyl diphosphate synthase genes in aphids and analysis of their associations with the biosynthesis of alarm pheromone
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Spatiotemporal expression profiling of the farnesyl diphosphate synthase genes in aphids and analysis of their associations with the biosynthesis of alarm pheromone

机译:法呢基二磷酸合成酶基因在蚜虫中的时空表达分析及其关联与报警信息素生物合成的分析

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The alarm behavior plays a key role in the ecology of aphids, but the site and molecular mechanism for the biosynthesis of aphid alarm pheromone are largely unknown. Farnesyl diphosphate synthase (FPPS) catalyzes the synthesis of FPP, providing the precursor for the alarm pheromone (E)-β-farnesene (EβF), and we speculate that FPPS is closely associated with the biosynthetic pathway of EβF. We firstly analyzed the spatiotemporal expression of FPPS genes by using quantitative reverse transcription-polymerase chain reaction, showing that they were expressed uninterruptedly from the embryonic stage to adult stage, with an obvious increasing trend from embryo to 4th-instar in the green peach aphid Myzus persicae, but FPPS1 had an overall significantly higher expression level than FPPS2; both FPPS1 and FPPS2 exhibited the highest expression in the cornicle area. This expression pattern was verified in Acyrthosiphon pisum, suggesting that FPPS1 may play a more important role in aphids and the cornicle area is most likely the site for EβF biosynthesis. We thus conducted a quantitative measurement of EβF in M. persicae by gas chromatography-mass spectrometry. The data obtained were used to perform an association analysis with the expression data, revealing that the content of EβF per aphid was significantly correlated with the mean weight per aphid (r = 0.8534, P = 0.0307) and the expression level of FPPS1 (r = 0.9134, P = 0.0109), but not with that of FPPS2 (r = 0.4113, P = 0.4179); the concentration of EβF per milligram of aphid was not correlated with the mean weight per aphid or the expression level of FPPS genes. These data suggest that FPPS1 may play a key role in the biosynthesis of aphid alarm pheromone.
机译:警报行为在蚜虫的生态中发挥着关键作用,但蚜虫报警信息素生物合成的网站和分子机制在很大程度上是未知的。法呢基二磷酸合酶(FPP)催化FPP的合成,为警报信息素(E)-β-法呢烯(EβF)提供前体,并推测FPP与EβF的生物合成途径密切相关。我们首先通过使用定量逆转录 - 聚合 - 聚合酶链反应分析了FPPS基因的时空表达,表明它们是不间断地从胚胎阶段到成人阶段表达的,从胚胎蚜虫中胚胎到第4圈的显而易见的趋势Persicae,但FPPS1的表达水平总体显着高于FPPS2; FPPS1和FPPS2都表现出玉米片区域的最高表达。该表达模式在亚吡噻氏菌核实中验证,表明FPPS1可能在蚜虫中发挥更重要的作用,并且玉米饼区域最有可能成为EβF生物合成的部位。因此,通过气相色谱 - 质谱法对M.Spericae中的EβF进行了定量测量。获得的数据用于使用表达数据进行关联分析,揭示每个蚜虫的EβF的含量与每个蚜虫的平均重量显着相关(r = 0.8534,p = 0.0307)和FPPS1的表达水平(r = 0.9134,P = 0.0109),但不具有FPPS2(r = 0.4113,p = 0.4179);每毫毫克蚜虫的EβF浓度与每只蚜虫的平均重量或FPPS基因的表达水平无关。这些数据表明FPPS1可能在蚜虫报警信息素的生物合成中发挥关键作用。

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