首页> 外文期刊>Scientific reports. >Diterpenoid compounds from Wedelia trilobata induce resistance to Tomato spotted wilt virus via the JA signal pathway in tobacco plants
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Diterpenoid compounds from Wedelia trilobata induce resistance to Tomato spotted wilt virus via the JA signal pathway in tobacco plants

机译:三叶草中的二萜类化合物通过JA信号途径诱导烟草植株对番茄斑萎病病毒的抗性

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Tomato spotted wilt virus (TSWV) causes major losses of many crops worldwide. Several strategies have been attempted to control disease caused by TSWV. However, many challenges for the effective control of this disease remain. A promising approach is the use of abiotic or biotic inducers to enhance plant resistance to pathogens. We screened a diterpenoid compound from Wedelia trilobata, 3α-Angeloyloxy-9β-hydroxy-ent-kaur-16-en-19-oic acid (AHK), which had higher curative and protective effects against TSWV than the ningnanmycin control. The rapid initiation of the expression of all the TSWV genes was delayed by more than 1d in the curative assay, and the expression of the NSs, NSm and RdRp genes was inhibited. In addition, the replication of all TSWV genes in systemic leaves was inhibited in the protective assay, with an inhibition rate of more than 90%. The concentrations of jasmonic acid (JA) and jasmonic acid isoleucine (JA-ILE) in the AHK-treated and systemic leaves of the treated plants were significantly higher than those observed in the control. The results suggested that AHK can induce systemic resistance in treated plants. The transcription of the NtCOI1 gene, a key gene in the JA pathway, was significantly higher in both the inoculated and systemic leaves of the AHK-treated plants compared to the control. The AHK-induced resistance to TSWV in Nicotiana benthamiana could be eliminated by VIGS-mediated silencing of the NtCOI1 gene. These results indicated that AHK can activate the JA pathway and induce systemic resistance to TSWV infection.
机译:番茄斑萎病病毒(TSWV)在全球范围内造成许多农作物的重大损失。已经尝试了几种策略来控制由TSWV引起的疾病。然而,有效控制该疾病的许多挑战仍然存在。一种有前途的方法是使用非生物或生物诱导剂来增强植物对病原体的抗性。我们从Wedelia trilobata中筛选出了一种二萜化合物,即3α-Angylyloxy-9β-hydroxy-ent-kaur-16-en-19-oicacid(AHK),该化合物对TSWV的治疗和保护作用均高于宁南霉素对照。在治愈性试验中,所有TSWV基因表达的快速启动被延迟了超过1天,并且抑制了NSs,NSm和RdRp基因的表达。另外,所有TSWV基因在系统性叶片中的复制在保护性测定中均被抑制,抑制率超过90%。经AHK处理和处理过的植物叶片中茉莉酸(JA)和茉莉酸异亮氨酸(JA-ILE)的浓度均显着高于对照。结果表明AHK可以诱导处理过的植物的系统抗性。与对照相比,在AHK处理的植物的接种叶片和系统叶片中,JA途径中的关键基因NtCOI1基因的转录均显着较高。 VIHK介导的NtCOI1基因沉默可消除AHK诱导的本氏烟草对TSWV的抗性。这些结果表明,AHK可以激活JA途径并诱导对TSWV感染的全身抗性。

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