Suppr超能文献

利用 ITS 区中的 DNA 迷你条码鉴定毒蘑菇中毒中的有毒鹅膏。

Using a DNA mini-barcode within the ITS region to identify toxic Amanita in mushroom poisoning cases.

机构信息

National Key Laboratory for Market Supervision (Food Authentication), Chinese Academy of Inspection and Quarantine, No. 11, Ronghua South Street, Daxing District, Beijing, 100176, China.

College of Food Science, South China Agricultural University, Guangzhou, 510642, China.

出版信息

Appl Microbiol Biotechnol. 2024 Jun 17;108(1):376. doi: 10.1007/s00253-024-13219-x.

Abstract

Mushroom poisoning contributes significantly to global foodborne diseases and related fatalities. Amanita mushrooms frequently cause such poisonings; however, identifying these toxic species is challenging due to the unavailability of fresh and intact samples. It is often necessary to analyze residues, vomitus, or stomach extracts to obtain DNA sequences for the identification of species responsible for causing food poisoning. This usually proves challenging to obtain usable DNA sequences that can be analyzed using conventional molecular biology techniques. Therefore, this study aimed to develop a DNA mini-barcoding method for the identification of Amanita species. Following the evaluation and optimization of universal primers for DNA mini-barcoding in Amanita mushrooms, we found that the internal transcribed spacer (ITS) gene sequence primer ITS-a was the most suitable DNA barcode primer for identifying Amanita species. Forty-three Amanita samples were subsequently amplified and sequenced. The sequences obtained were analyzed for intra- and inter-species genetic distances, and a phylogenetic tree was constructed. The findings indicated that the designed primers had strong universality among the Amanita samples and could accurately identify the target gene fragment with a length of 290 bp. Notably, the DNA mini-barcode accurately identified the 43 Amanita samples, demonstrating high consistency with the conventional DNA barcode. Furthermore, it effectively identified DNA from digested samples. In summary, this DNA mini-barcode is a promising tool for detecting accidental ingestion of toxic Amanita mushrooms. It may be used as an optimal barcode for species identification and traceability in events of Amanita-induced mushroom poisoning. KEY POINTS: • Development of a DNA mini-barcoding method for Amanita species identification without fresh samples. • The ITS-a primer set was optimized for robust universality in Amanita samples. • The mini-barcode is suitable for screening toxic mushroom species in mushroom poisoning cases.

摘要

蕈类中毒对全球食源性疾病和相关死亡人数有重大影响。鹅膏菌蕈经常引起此类中毒;然而,由于无法获得新鲜和完整的样本,识别这些有毒物种具有挑战性。通常需要分析残留物、呕吐物或胃提取物,以获得用于鉴定引起食物中毒的物种的 DNA 序列。通常很难获得可用于分析的可用 DNA 序列,这些序列可使用常规分子生物学技术进行分析。因此,本研究旨在开发一种用于鉴定鹅膏菌物种的 DNA 微条形码方法。在评估和优化鹅膏菌蕈 DNA 微条形码的通用引物后,我们发现内部转录间隔区 (ITS) 基因序列引物 ITS-a 是鉴定鹅膏菌物种最适合的 DNA 条码引物。随后对 43 个鹅膏菌样本进行扩增和测序。分析所得序列的种内和种间遗传距离,并构建系统发育树。研究结果表明,设计的引物在鹅膏菌样本中具有很强的通用性,能够准确识别目标基因片段,长度为 290 bp。值得注意的是,该 DNA 微条形码能够准确识别 43 个鹅膏菌样本,与常规 DNA 条形码具有高度一致性。此外,它还可以有效地识别消化样本中的 DNA。总之,这种 DNA 微条形码是检测误食有毒鹅膏菌的一种很有前途的工具。它可作为物种鉴定和鹅膏菌中毒事件溯源的最佳条形码。

关键点

  • 无需新鲜样本即可开发用于鉴定鹅膏菌物种的 DNA 微条形码方法。

  • 优化了 ITS-a 引物对,以确保在鹅膏菌样本中具有强大的通用性。

  • 微条形码适用于筛选蘑菇中毒事件中的有毒蘑菇物种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87e2/11182838/cedce2e7bcfd/253_2024_13219_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验