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Dynamic transcriptome analysis and volatile profiling of Gossypium hirsutum in response to the cotton bollworm Helicoverpa armigera

机译:棉铃虫对棉铃虫的动态转录组分析和挥发性分析

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摘要

In response to insect herbivory, plants emit elevated levels of volatile organic compounds for direct and indirect resistance. However, little is known about the molecular and genomic basis of defense response that insect herbivory trigger in cotton plants and how defense mechanisms are orchestrated in the context of other biological processes. Here we monitored the transcriptome changes and volatile characteristics of cotton plants in response to cotton bollworm (CBW; Helicoverpa armigera) larvae infestation. Analysis of samples revealed that 1,969 transcripts were differentially expressed (log2|Ratio| ≥ 2; q ≤ 0.05) after CBW infestation. Cluster analysis identified several distinct temporal patterns of transcriptome changes. Among CBW-induced genes, those associated with indirect defense and jasmonic acid pathway were clearly over-represented, indicating that these genes play important roles in CBW-induced defenses. The gas chromatography-mass spectrometry (GC-MS) analyses revealed that CBW infestation could induce cotton plants to release volatile compounds comprised lipoxygenase-derived green leaf volatiles and a number of terpenoid volatiles. Responding to CBW larvae infestation, cotton plants undergo drastic reprogramming of the transcriptome and the volatile profile. The present results increase our knowledge about insect herbivory-induced metabolic and biochemical processes in plants, which may help improve future studies on genes governing processes.
机译:响应昆虫的食草植物,植物释放出较高水平的挥发性有机化合物,以产生直接和间接的抗性。然而,关于昆虫食草性触发棉花植物的防御反应的分子和基因组基础以及在其他生物过程中如何协调防御机制的知识鲜为人知。在这里,我们监测了棉铃虫(CBW; Helicoverpa armigera)幼虫侵染后棉株转录组的变化和挥发性特征。样品分析显示,在CBW感染后,有1,969个转录本被差异表达(log2 | Ratio |≥2; q≤0.05)。聚类分析确定了转录组变化的几种不同的时间模式。在CBW诱导的基因中,与间接防御和茉莉酸途径相关的基因明显被过度代表,表明这些基因在CBW诱导的防御中起重要作用。气相色谱-质谱(GC-MS)分析表明,CBW侵染可诱导棉株释放挥发性成分,包括脂氧合酶衍生的绿叶挥发物和大量萜类挥发物。响应于CBW幼虫侵染,棉花植株经历了转录组和挥发性成分的急剧重编程。目前的结果增加了我们对昆虫食草动物诱导的植物代谢和生化过程的了解,这可能有助于改进对基因调控过程的研究。

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