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The transcriptome of cis-jasmone-induced resistance in Arabidopsis thaliana and its role in indirect defence

机译:拟南芥顺式茉莉酮抗性的转录组及其在间接防御中的作用

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cis-jasmone (CJ) is a plant-derived chemical that enhances direct and indirect plant defence against herbivorous insects. To study the signalling pathway behind this defence response, we performed microarray-based transcriptome analysis of CJ-treated Arabidopsis plants. CJ influenced a different set of genes from the structurally related oxylipin methyl jasmonate (MeJA), suggesting that CJ triggers a distinct signalling pathway. CJ is postulated to be biosynthetically derived from jasmonic acid, which can boost its own production through transcriptional up-regulation of the octadecanoid biosynthesis genes LOX2, AOS and OPR3. However, no effect on these genes was detected by treatment with CJ. Furthermore, CJ-responsive genes were not affected by mutations in COI1 or JAR1, which are critical signalling components in MeJA response pathway. Conversely, a significant proportion of CJ-inducible genes required the three transcription factors TGA2, TGA5 and TGA6, as well as the GRAS regulatory protein SCARECROW-like 14 (SCL14), indicating regulation by a different pathway from the classical MeJA response. Moreover, the biological importance was demonstrated in that mutations in TGA2, 5, 6, SCL14 and the CJ-inducible gene CYP81D11 blocked CJ-induced attraction of the aphid parasitoid Aphidius ervi, demonstrating that these components play a key role in CJ-induced indirect defence. Collectively, our results identify CJ as a member of the jasmonates that controls indirect plant defence through a distinct signalling pathway.
机译:顺式茉莉酮(CJ)是一种植物衍生的化学物质,可增强植物对草食性昆虫的直接和间接防御能力。为了研究这种防御反应背后的信号通路,我们对CJ处理的拟南芥植物进行了基于微阵列的转录组分析。 CJ影响了与结构相关的茉莉酮酸甲酯(MeJA)结构不同的基因集,表明CJ触发了独特的信号传导途径。 CJ被认为是茉莉酸的生物合成来源,其可以通过十八烷类生物合成基因LOX2,AOS和OPR3的转录上调来促进自身的生产。然而,通过CJ处理未检测到对这些基因的影响。此外,CJ响应基因不受COI1或JAR1突变的影响,COI1或JAR1是MeJA响应途径中的关键信号成分。相反,相当大比例的CJ诱导基因需要三个转录因子TGA2,TGA5和TGA6,以及GRAS调节蛋白SCARECROW-like 14(SCL14),表明它是通过不同于经典MeJA反应的途径进行调节的。此外,生物学上的重要性得到了证实,TGA2、5、6,SCL14和CJ诱导基因CYP81D11的突变阻断了CJ诱导的蚜虫寄生性蚜虫Avidius ervi的吸引,表明这些成分在CJ诱导的间接诱导中起关键作用防御。总的来说,我们的结果确定CJ是茉莉花的成员,其通过独特的信号传导途径控制间接植物防御。

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