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Streamlined whole-genome genotyping through NGS-enhanced thermal asymmetric interlaced (TAIL)-PCR. | LitMetric

Streamlined whole-genome genotyping through NGS-enhanced thermal asymmetric interlaced (TAIL)-PCR.

Plant Commun

Shenzhen Branch, Guangdong Laboratory of Lingnan Modern Agriculture, Genome Analysis Laboratory of the Ministry of Agriculture and Rural Affairs, Agricultural Genomics Institute at Shenzhen, Chinese Academy of Agricultural Sciences, Shenzhen 518120, China. Electronic address:

Published: September 2024

AI Article Synopsis

  • Whole-genome genotyping (WGG) is crucial for genomic-assisted plant breeding, but sequencing methods can be expensive due to complex protocols and high library preparation costs.
  • The research improved a previous method called FBI-seq by using an arbitrary degenerate primer instead of the Tn5 transposase adapter, resulting in a simpler procedure akin to TAIL-PCR that can generate numerous stable PCR products.
  • The new technique, named TAIL-PCR by sequencing (TAIL-peq), is cost-effective and efficient, allowing for the analysis of many genetic loci across different species and enhancing crop breeding efforts.

Article Abstract

Whole-genome genotyping (WGG) stands as a pivotal element in genomic-assisted plant breeding. Nevertheless, sequencing-based approaches for WGG continue to be costly, primarily owing to the high expenses associated with library preparation and the laborious protocol. During prior development of foreground and background integrated genotyping by sequencing (FBI-seq), we discovered that any sequence-specific primer (SP) inherently possesses the capability to amplify a massive array of stable and reproducible non-specific PCR products across the genome. Here, we further improved FBI-seq by replacing the adapter ligated by Tn5 transposase with an arbitrary degenerate (AD) primer. The protocol for the enhanced FBI-seq unexpectedly mirrors a simplified thermal asymmetric interlaced (TAIL)-PCR, a technique that is widely used for isolation of flanking sequences. However, the improved TAIL-PCR maximizes the primer-template mismatched annealing capabilities of both SP and AD primers. In addition, leveraging of next-generation sequencing enhances the ability of this technique to assay tens of thousands of genome-wide loci for any species. This cost-effective, user-friendly, and powerful WGG tool, which we have named TAIL-PCR by sequencing (TAIL-peq), holds great potential for widespread application in breeding programs, thereby facilitating genome-assisted crop improvement.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11412933PMC
http://dx.doi.org/10.1016/j.xplc.2024.100983DOI Listing

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