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首页> 外文期刊>New biotechnology >Eugenol confers resistance to Tomato yellow leaf curl virus (TYLCV) by regulating the expression of SlPer1 in tomato plants
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Eugenol confers resistance to Tomato yellow leaf curl virus (TYLCV) by regulating the expression of SlPer1 in tomato plants

机译:丁香酚通过调节番茄植物中SlPer1的表达赋予对番茄黄叶卷曲病毒(TYLCV)的抗性

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Tomato yellow leaf curl virus (TYLCV) is one of the most devastating plant diseases, and poses a significant agricultural concern because of the lack of an efficient control method. Eugenol is a plant derived natural compound that has been widely used as a food additive and in medicine. In the present study, we demonstrated the potential of eugenol to enhance the resistance of tomato plants to TYLCV. The anti-TYLCV efficiency of eugenol was significantly higher than that of moroxydine hydrochloride (MH), a widely used commercial antiviral agent. Eugenol application stimulated the production of endogenous nitric oxide (NO) and salicylic acid (SA) in tomato plants. The full-length cDNA of SlPer1, which has been suggested to be a host R gene specific to TYLCV, was isolated from tomato plants. A sequence analysis suggested that SlPer1 might be a nucleobase-ascorbate transporter (NAT) belonging to the permease family. The transcript levels of SlPer1 increased markedly in response to treatment with eugenol or TYLCV inoculation. The results of this study also showed that SlPer1 expression was strongly induced by SA, MeJA (jasmonic acid methyl ester), and NO. Thus, we propose that the increased transcription of SlPer1 contributed to the high anti-TYLCV efficiency of eugenol, which might involve in the generation of endogenous SA and NO. Such findings provide the basis for the development of eugenol as an environmental-friendly agricultural antiviral agent.
机译:番茄黄叶卷曲病毒(TYLCV)是最具破坏性的植物病害之一,由于缺乏有效的控制方法,引起了农业上的极大关注。丁香酚是植物来源的天然化合物,已被广泛用作食品添加剂和药物。在本研究中,我们证明了丁香酚可能增强番茄植物对TYLCV的抗性。丁子香酚的抗TYLCV效率明显高于广泛使用的商业抗病毒剂盐酸莫洛西定(MH)。丁香酚的应用刺激了番茄植物内源性一氧化氮(NO)和水杨酸(SA)的产生。从番茄植物中分离出SlPer1的全长cDNA,该cDNA被认为是对TYLCV特异的宿主R基因。序列分析表明,SlPer1可能是属于渗透酶家族的核碱基抗坏血酸转运蛋白(NAT)。响应丁香酚或TYLCV接种的治疗,SlPer1的转录水平显着增加。这项研究的结果还表明,SA,MeJA(茉莉酸甲酯)和NO强烈诱导了SlPer1表达。因此,我们建议增加SlPer1的转录有助于丁香酚的高抗TYLCV效率,这可能与内源性SA和NO的产生有关。这些发现为丁香酚作为环境友好型农业抗病毒剂的开发提供了基础。

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