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首页> 外文期刊>Plant Biotechnology Journal >Alleviating peanut allergy using genetic engineering: the silencing of the immunodominant allergen Ara h 2 leads to its significant reduction and a decrease in peanut allergenicity
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Alleviating peanut allergy using genetic engineering: the silencing of the immunodominant allergen Ara h 2 leads to its significant reduction and a decrease in peanut allergenicity

机译:使用基因工程缓解花生过敏:免疫优势过敏原Ara h 2的沉默导致其显着降低并降低了花生过敏原

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Peanut allergy is one of the most life?¢????threatening food allergies and one of the serious challenges facing the peanut and food industries. Current proposed solutions focus primarily on ways to alter the immune system of patients allergic to peanut. However, with the advent of genetic engineering novel strategies can be proposed to solve the problem of peanut allergy from the source. The objectives of this study were to eliminate the immunodominant Ara h 2 protein from transgenic peanut using RNA interference (RNAi), and to evaluate the allergenicity of resulting transgenic peanut seeds. A 265?¢????bp?¢????long PCR product was generated from the coding region of Ara h 2 genomic DNA, and cloned as inverted repeats in pHANNIBAL, an RNAi?¢????inducing plant transformation vector. The Ara h 2?¢????specific RNAi transformation cassette was subcloned into a binary pART27 vector to construct plasmid pDK28. Transgenic peanuts were produced by infecting peanut hypocotyl explants with Agrobacterium tumefaciens EHA 105 harbouring the pDK28 construct. A total of 59 kanamycin?¢????resistant peanut plants were regenerated with phenotype and growth rates comparable to wild type. PCR and Southern analyses revealed that 44% of plants stably integrated the transgene. Sandwich ELISA performed using Ara h 2?¢????mAbs revealed a significant ( P????< ????0.05) reduction in Ara h 2 content in several transgenic seeds. Western immunobloting performed with Ara h 2?¢????mAb corroborated the results obtained with ELISA and showed absence of the Ara h 2 protein from crude extracts of several transgenic seeds of the T 0 plants. The allergenicity of transgenic peanut seeds expressed as IgE binding capacity was evaluated by ELISA using sera of patients allergic to peanut. The data showed a significant decrease in the IgE binding capacity of selected transgenic seeds compared to wild type, hence, demonstrating the feasibility of alleviating peanut allergy using the RNAi technology.
机译:花生过敏是威胁生命的最严重的食物过敏之一,也是花生和食品工业面临的严峻挑战之一。当前提出的解决方案主要集中于改变对花生过敏的患者的免疫系统的方法。然而,随着基因工程的出现,可以提出从头解决花生过敏问题的新策略。这项研究的目的是使用RNA干扰(RNAi)消除转基因花生中的免疫性Ara h 2蛋白,并评估所得转基因花生种子的致敏性。从Ara h 2基因组DNA的编码区产生265 bp bp的长PCR产物,并将其作为反向重复序列克隆到pHANNIBAL中,该RNA诱导植物转化。向量。将Ara h2α-β特异性RNAi转化盒亚克隆到二元pART27载体中以构建质粒pDK28。通过用带有pDK28构建体的根癌农杆菌EHA 105感染花生下胚轴外植体来生产转基因花生。总共再生了59株抗卡那霉素抗性的花生植物,其表型和生长速率与野生型相当。 PCR和Southern分析表明,有44%的植物稳定整合了转基因。用Ara h2α-βmAbs进行的夹心ELISA显示出几种转基因种子中Ara h 2含量显着降低(P≤0.05≤0.05)。用Ara h2α-βmAb进行的Western免疫印迹证实了用ELISA获得的结果,并表明从T 0植物的几种转基因种子的粗提物中不存在Ara h 2蛋白。使用对花生过敏的患者的血清,通过ELISA评估以IgE结合能力表达的转基因花生种子的致敏性。数据显示与野生型相比,所选转基因种子的IgE结合能力显着降低,因此证明了使用RNAi技术减轻花生过敏的可行性。

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