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Varietal identification of tea (Camellia sinensis) using nanofluidic array of single nucleotide polymorphism (SNP) markers

机译:使用单核苷酸多态性(SNP)标记的纳米流体阵列对茶(茶树)进行品种鉴定

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摘要

Apart from water, tea is the world’s most widely consumed beverage. Tea is produced in more than 50 countries with an annual production of approximately 4.7 million tons. The market segment for specialty tea has been expanding rapidly owing to increased demand, resulting in higher revenues and profits for tea growers and the industry. Accurate varietal identification is critically important to ensure traceability and authentication of premium tea products, which in turn contribute to on-farm conservation of tea genetic diversity. Using a set of single nucleotide polymorphism (SNP) markers developed from the expressed sequence tag (EST) database of Camilla senensis, we genotyped deoxyribonucleic acid (DNA) samples extracted from a diverse group of tea varieties, including both fresh and processed commercial loose-leaf teas. The validation led to the designation of 60 SNPs that unambiguously identified all 40 tested tea varieties with high statistical rigor (p<0.0001). Varietal authenticity and genetic relationships among the analyzed cultivars were further characterized by ordination and Bayesian clustering analysis. These SNP markers, in combination with a high-throughput genotyping protocol, effectively established and verified specific DNA fingerprints for all tested tea varieties. This method provides a powerful tool for variety authentication and quality control for the tea industry. It is also highly useful for the management of tea genetic resources and breeding, where accurate and efficient genotype identification is essential.
机译:除了水之外,茶也是世界上消费最广泛的饮料。茶在50多个国家/地区生产,年产量约为470万吨。由于需求增加,特种茶的市场领域一直在迅速扩大,从而为茶农和整个行业带来了更高的收入和利润。准确的品种鉴定对于确保优质茶产品的可追溯性和认证至关重要,这反过来又有助于在农场内保护茶遗传多样性。我们使用从Camilla senensis的表达序列标签(EST)数据库开发的一组单核苷酸多态性(SNP)标记,对从多种茶品种中提取的脱氧核糖核酸(DNA)样品进行了基因分型,包括新鲜和加工过的商业松散-叶茶。验证导致指定了60个SNP,它们明确地确定了所有40种经过测试的茶品种,具有很高的统计严格性(p <0.0001)。通过排序和贝叶斯聚类分析进一步表征了所分析品种之间的品种真实性和遗传关系。这些SNP标记与高通量基因分型方案相结合,可以有效地建立和验证所有测试茶品种的特定DNA指纹。该方法为茶叶行业的品种认证和质量控制提供了强大的工具。它对于茶遗传资源和育种的管理也非常有用,因为准确和有效的基因型鉴定至关重要。

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