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首页> 外文期刊>BMC Plant Biology >Genome-wide identification and functional analysis of the ERF2 gene family in response to disease resistance against Stemphylium lycopersici in tomato
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Genome-wide identification and functional analysis of the ERF2 gene family in response to disease resistance against Stemphylium lycopersici in tomato

机译:ERF2基因家族对番茄苯硫代苯磺酸苯抗抗病性的基因组鉴定及功能分析

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摘要

APETALA2/ethylene responsive factor (AP2/ERF) transcription factors are a plant-specific family of transcription factors and one of the largest families of transcription factors. Ethylene response factors (ERF) regulate plant growth, development, and responses to biotic and abiotic stress. In a previous study, the ERF2 gene was significantly upregulated in both resistant and susceptible tomato cultivars in response to Stemphylium lycopersici. The main purpose of this study was to systematically analyze the ERF family and to explore the mechanism of ERF2 in tomato plants resisting pathogen infection by the Virus-induced Gene Silencing technique. In this experiment, 134 ERF genes were explored and subjected to bioinformatic analysis and divided into twelve groups. The spatiotemporal expression characteristics of ERF transcription factor gene family in tomato were diverse. Combined with RNA-seq, we found that the expression of 18 ERF transcription factors increased after inoculation with S. lycopersici. In ERF2-silenced plants, the susceptible phenotype was observed after inoculation with S. lycopersici. The hypersensitive response and ROS production were decreased in the ERF2-silenced plants. Physiological analyses showed that the superoxide dismutase, peroxidase and catalase activities were lower in ERF2-silenced plants than in control plants, and the SA and JA contents were lower in ERF2-silenced plants than in control plants after inoculation with S. lycopersici. Furthermore, the results indicated that ERF2 may directly or indirectly regulate Pto, PR1b1 and PR-P2 expression and enhance tomato resistance. In this study, we identified and analyzed members of the tomato ERF family by bioinformatics methods and classified, described and analyzed these genes. Subsequently, we used VIGS technology to significantly reduce the expression of ERF2 in tomatoes. The results showed that ERF2 had a positive effect on tomato resistance to S. lycopersici. Interestingly, ERF2 played a key role in multiple SA, JA and ROS signaling pathways to confer resistance to invasion by S. lycopersici. In addition, ERF2 may directly or indirectly regulate Pto, PR1b1 and PR-P2 expression and enhance tomato resistance to S. lycopersici. In summary, this study provides gene resources for breeding for disease resistance in tomato.
机译:Apetala2 /乙烯响应因子(AP2 / ERF)转录因子是植物特异性的转录因子系列,以及最大的转录因子家族之一。乙烯反应因子(ERF)调节植物生长,发育和对生物和非生物胁迫的反应。在先前的研究中,ERF2基因在抗硫酸羟基氏硅酸钠中,在抗性和敏感的番茄品种中显着上调。本研究的主要目的是系统地分析ERF家族,并探讨ERF2在番茄植物中抵抗病毒诱导的基因沉默技术的机制。在该实验中,探索134个ERF基因并进行生物信息分析并分成12个组。番茄中ERF转录因子基因家族的时空表达特征多元化。结合RNA-SEQ,我们发现用S.Lycopersici接种后18个ERF转录因子的表达增加。在ERF2-沉默的植物中,用S.Lycopersici接种后观察到敏感的表型。在ERF2-沉默的植物中减少了过敏反应和ROS生产。生理分析表明,ERF2-沉默的植物中超氧化物歧化酶,过氧化物酶和过氧化氢酶活性低于对照植物,在与S.Lycopersici接种后,ERF2-沉默的植物中的SA和JA含量低于对照植物。此外,结果表明ERF2可以直接或间接调节PTO,PR1B1和PR-P2表达并增强番茄抗性。在这项研究中,我们通过生物信息学方法确定并分析了番茄ERF家族的成员,并分类,描述和分析了这些基因。随后,我们使用Vigs技术来显着减少西红柿中ERF2的表达。结果表明,ERF2对番茄抗性对番茄素抗性的阳性作用。有趣的是,ERF2在多个SA,JA和ROS信号传导途径中发挥了关键作用,以赋予S. Lycopersici的侵袭。另外,ERF2可以直接或间接调节PTO,PR1B1和PR-P2表达,并增强番茄抗性的番茄菌。总之,本研究为番茄中抗病性育种提供了基因资源。

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