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桃(Prunus persica L. Batsch)过敏原编码基因受发育调控,并受果实负载量和光照辐射的影响。

Peach ( Prunus persica L. Batsch) allergen-encoding genes are developmentally regulated and affected by fruit load and light radiation.

作者信息

Botton Alessandro, Andreotti Carlo, Costa Guglielmo, Ramina Angelo

机构信息

Department of Environmental Agronomy and Crop Science, Agripolis, University of Padova, Viale dell'Universita, Legnaro, Italy.

出版信息

J Agric Food Chem. 2009 Jan 28;57(2):724-34. doi: 10.1021/jf802709k.

DOI:10.1021/jf802709k
PMID:19090764
Abstract

The fruits of Rosaceae species may frequently induce allergic reactions in both adults and children, especially in the Mediterranean area. In peach, true allergens and cross-reactive proteins may cause hypersensitive reactions involving a wide diversity of symptoms. Three known classes of allergenic proteins, namely, Pru p 1, Pru p 3, and Pru p 4, have been reported to be mostly involved, but an exhaustive survey of the proteins determining the overall allergenic potential, their biological functions, and the factors affecting the expression of the related genes is still missing. In the present study, the expression profiles of some selected genes encoding peach allergen isoforms were studied during fruit growth and development and upon different fruit load and light radiation regimens. The results indicate that the majority of allergen-encoding genes are expressed at their maximum during the ripening stage, therefore representing a potential risk for peach consumers. Nevertheless, enhancing the light radiation and decreasing the fruit load achieved a reduction of the transcription rate of most genes and a possible decrease of the overall allergenic potential at harvest. According to these data, new growing practices could be set up to obtain hypoallergenic peach fruits and eventually combined with the cultivation of hypoallergenic genotypes to obtain a significant reduction of the allergenic potential.

摘要

蔷薇科植物的果实常常会在成人和儿童中引发过敏反应,在地中海地区尤为常见。在桃子中,真正的过敏原和交叉反应蛋白可能会引发涉及多种症状的过敏反应。据报道,三种已知的过敏原蛋白类别,即Pru p 1、Pru p 3和Pru p 4,大多与此有关,但对于决定总体过敏潜力的蛋白质、它们的生物学功能以及影响相关基因表达的因素,仍缺乏详尽的研究。在本研究中,研究了一些选定的编码桃子过敏原异构体的基因在果实生长发育过程中以及在不同果实负载和光照条件下的表达谱。结果表明,大多数编码过敏原的基因在成熟阶段表达量最高,因此对桃子消费者构成潜在风险。然而,增加光照和减少果实负载可降低大多数基因的转录率,并可能降低收获时的总体过敏潜力。根据这些数据,可以建立新的种植方法来获得低过敏性的桃子果实,并最终与低过敏性基因型的种植相结合,以显著降低过敏潜力。

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