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基因沉默改变了番茄的组成性间接和直接防御。

Genes Silencing Alters Constitutive Indirect and Direct Defense in Tomato.

机构信息

Department of Agricultural Sciences, University of Naples Federico II, 80055 Portici, Italy.

Institute for Sustainable Plant Protection, National Research Council of Italy, 80055 Portici (Na), Italy.

出版信息

Int J Mol Sci. 2018 Sep 13;19(9):2748. doi: 10.3390/ijms19092748.

Abstract

Following herbivore attacks, plants modify a blend of volatiles organic compounds (VOCs) released, resulting in the attraction of their antagonists. However, volatiles released constitutively may affect herbivores and natural enemies' fitness too. In tomato there is still a lack of information on the genetic bases responsible for the constitutive release of VOC involved in direct and indirect defenses. Here we studied the constitutive emissions related to the two most abundant sesquiterpene synthase genes expressed in tomato and their functional role in plant defense. Using an RNA interference approach, we silenced the expression of and genes and assessed the effect of this transformation on herbivores and parasitoids. We found that silenced plants displayed a different constitutive volatiles emission from controls, resulting in reduced attractiveness for the aphid parasitoid and in an impaired development of larvae. We discussed these data considering the transcriptional regulation of key-genes involved in the pathway of VOC metabolism. We provide several lines of evidence on the metabolic flux from terpenoids to phenylpropanoids. Our results shed more light on constitutive defenses mediated by plant volatiles and on the molecular mechanisms involved in their metabolic regulation.

摘要

在食草动物的攻击之后,植物会改变释放的挥发性有机化合物(VOCs)的混合物,从而吸引它们的天敌。然而,植物持续释放的挥发性物质也可能影响草食动物和天敌的适应性。在番茄中,对于涉及直接和间接防御的 VOC 持续释放的遗传基础仍然缺乏信息。在这里,我们研究了与在番茄中表达的两种最丰富的倍半萜合酶基因相关的组成型释放及其在植物防御中的功能作用。我们使用 RNA 干扰方法沉默了 和 基因的表达,并评估了这种转化对草食动物和寄生蜂的影响。我们发现,沉默的植物与对照植物相比,表现出不同的组成型挥发物排放,导致对蚜虫寄生蜂 的吸引力降低,并且 幼虫的发育受损。我们考虑了 VOC 代谢途径中关键基因的转录调控,对这些数据进行了讨论。我们提供了一些证据,证明了萜类物质到苯丙素途径的代谢通量。我们的研究结果揭示了植物挥发物介导的组成型防御机制以及它们代谢调节所涉及的分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bee3/6163538/82fc86fceee2/ijms-19-02748-g001.jpg

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