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DNA 测序技术和 DNA 条形码。

DNA Sequencing Technologies and DNA Barcoding.

机构信息

Department of Botany, School of Life Sciences, St Joseph's University, Bengaluru, India.

Sri Paramakalyani College, Tirunelveli, India.

出版信息

Methods Mol Biol. 2024;2744:139-154. doi: 10.1007/978-1-0716-3581-0_8.

Abstract

DNA barcodes are short, standardized DNA segments that geneticists can use to identify all living taxa. On the other hand, DNA barcoding identifies species by analyzing these specific regions against a DNA barcode reference library. In its initial years, DNA barcodes sequenced by Sanger's method were extensively used by taxonomists for the characterization and identification of species. But in recent years, DNA barcoding by next-generation sequencing (NGS) has found broader applications, such as quality control, biomonitoring of protected species, and biodiversity assessment. Technological advancements have also paved the way to metabarcoding, which has enabled massive parallel sequ.encing of complex bulk samples using high-throughput sequencing techniques. In future, DNA barcoding along with high-throughput techniques will show stupendous progress in taxonomic classification with reference to available sequence data.

摘要

DNA 条码是短的、标准化的 DNA 片段,遗传学家可以用它来识别所有的生物分类单元。另一方面,通过将这些特定区域与 DNA 条码参考库进行分析,DNA 条码可以识别物种。在最初的几年里,桑格测序法测序的 DNA 条码被分类学家广泛用于物种的特征描述和鉴定。但近年来,下一代测序(NGS)的 DNA 条码已经找到了更广泛的应用,如质量控制、受保护物种的生物监测和生物多样性评估。技术进步也为宏条形码铺平了道路,它使我们能够使用高通量测序技术对复杂的大量样本进行大规模平行测序。在未来,DNA 条码和高通量技术将在参考现有序列数据的情况下,在分类学分类方面取得巨大进展。

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