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Knocking out expression of plant allergen genes.

机译:敲除植物过敏原基因的表达。

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摘要

Pollen of many grasses, trees, and weeds are the source of inhalant allergic proteins while various other plant products are allergenic only upon their ingestion as a food source. Allergenic proteins of pollen are exposed to human immune system after their rapid release from pollen upon coming in contact with moist surface of nasal mucosa. The advent of molecular cloning and ability to genetically transform plants now offer unprecedented opportunities to produce hypoallergenic plants by targeted switching off allergen production. Gene silencing strategies that operate at post-transcriptional level are highly suitable for blocking allergen production. We have demonstrated the concept of allergen gene silencing through antisense approach by producing ryegrass plants that do not produce major allergen in its pollen. Our results show the potential of antisense approach in reducing the allergenic potential of plants. Such a strategy can have a general applicability for production of transgenic plants depleted of both inhaled and ingested allergens. In addition, such an approach could also help in elucidating the in vivo function of allergen(s) in plants and contribution of an allergen to overall allergenic potential of an allergen source.
机译:许多草,树和杂草的花粉是吸入性过敏蛋白的来源,而其他多种植物产品仅在以食物为食时才具有致敏性。花粉的变应原性蛋白质在与鼻粘膜潮湿的表面接触后迅速从花粉中释放出来后,就会暴露于人类免疫系统。现在,分子克隆的出现和植物遗传转化的能力为通过定向关闭变应原生产来生产低变应原植物提供了前所未有的机会。在转录后水平运行的基因沉默策略非常适合阻止过敏原的产生。我们已经通过产生在其花粉中不产生主要变应原的黑麦草植物证明了通过反义方法沉默变应原基因的概念。我们的结果显示了反义方法在减少植物过敏原潜力方面的潜力。这样的策略可具有普遍的适用性,用于生产同时缺乏吸入和摄入的过敏原的转基因植物。另外,这种方法还可以帮助阐明植物中变应原的体内功能和变应原对变应原来源的总变应原潜力的贡献。

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