食品中植物源性过敏原成分的DNA条形码鉴定
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1.长沙市食品药品检验所,湖南 长沙 410036;2.长沙市疾病预防控制中心,湖南 长沙 410004

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通讯作者:

李莎(1981—),女,长沙市疾病预防控制中心副主任技师,硕士。E-mail:7699459@qq.com

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湖南省自然科学基金部门联合基金项目(编号:2024JJ8269)


Component identification of plant-derived allergens in food based on DNA barcoding
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1.Changsha Institute for Food and Drug Control, Changsha, Hunan 410036, China;2.Changsha Center for Diseases Prevention and Control, Changsha, Hunan 410004, China

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    摘要:

    目的 建立食品中植物源性过敏原鉴定的DNA条形码检测方法。方法 采用psbA-trnHtrnlrbcl 3种分子标记对榛果、巴西坚果、澳洲坚果、核桃、山核桃、杏仁、扁桃仁、腰果、开心果、花生和大豆共11个植物源性过敏原物种进行鉴定。从GenBank获取各物种的psbA-trnHtrnlrbcl基因序列,使用MEGA 11软件进行序列比对、遗传距离计算、系统发育树构建。结果psbA-trnHtrnlrbcl 3个基因序列中,psbA-trnH序列的种间遗传距离差异最大,平均种间遗传距离达0.527 3,高于trnlrbcl基因序列的。从邻接法(NJ)构建的系统发育树分析结果来看,基于psbA-trnHtrnl序列构建的系统发育树具有良好的分支结构,不同物种能够准确聚类。相比之下,rbcl序列构建的系统发育树无法实现核桃和山核桃、杏仁和扁桃仁的有效区分。综合分析,psbA-trnH序列是区分坚果、花生和大豆等11个物种的最优DNA条形码。将psbA-trnH条形码检测与高通量测序技术相结合用于15个实际样品检测,可以同时检测出多种过敏原成分。结论 psbA-trnH序列作为DNA条形码,能够精准识别常见植物源性过敏原成分。

    Abstract:

    Objective A method for the identification of plant-derived allergens in food by using DNA barcoding technology was established.Methods psbA-trnH, trnl, and rbcl molecular markers were used to identify 11 plant-derived allergen species, including hazelnut, Brazil nut, macadamia nut, walnut, pecan, almond, sweet almond, cashew, pistachio, peanut, and soybean. The psbA-trnH, trnl, and rbcl gene sequences of each species were downloaded from GenBank, and sequence alignment, genetic distance calculation, and phylogenetic tree construction were performed using MEGA 11 software.Results Among the three gene sequences, the psbA-trnH sequence exhibits the most significant genetic distance variation, with an average interspecies genetic distance of 0.527 3, which is greater than those of the trnl and rbcl sequences. The analysis results of the phylogenetic trees constructed by the neighbor joining (NJ) method show that the phylogenetic trees constructed based on the psbA-trnH and trnl sequences have a good branching structure, and different species can be accurately clustered. In contrast, the phylogenetic tree constructed based on the rbcl sequence can not distinguish walnut from pecan or almond from sweet almond. Therefore, the psbA-trnH sequence is the optimal barcode for the identification of the 11 species. Combining the psbA-trnH barcode detection with high-throughput sequencing technology for the detection of 15 practical samples allows for the simultaneous detection of multiple allergen components.Conclusion The psbA-trnH sequence, as a DNA barcode, can accurately identify components of common plant-derived allergens.

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易姿,杨丽霞,钟菲菲,等.食品中植物源性过敏原成分的DNA条形码鉴定[J].食品与机械,2025,41(10):20-26.
YI Zi, YANG Lixia, ZHONG Feifei, et al. Component identification of plant-derived allergens in food based on DNA barcoding[J]. Food & Machinery,2025,41(10):20-26.

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  • 收稿日期:2025-04-25
  • 最后修改日期:2025-09-29
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  • 在线发布日期: 2025-11-20
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