The high-throughput molecular analysis of gene targeting (GT) events is made technically challenging by the residual presetabce of donor molecules. Large donor molecules restrict primer placement, resulting in long amplicons that cannot be readily analyzed using standard NGS pipelines or qPCR-based approaches such as ddPCR. In plants, removal of excess donor is time and resource intensive, often requiring plant regeneration and weeks to months of effort. Here, we utilized Oxford Nanopore Amplicon Sequencing (ONAS) to bypass the limitations imposed by donor molecules with 1 kb of homology to the target and dissected GT outcomes at three loci in Nicotiana benthamia leaves. We developed a novel bioinformatic pipeline, Phased ANalysis of Genome...
Provides a global view of the recent advances in the biological sciences and the adaption of the pat...
Provides a global view of the recent advances in the biological sciences and the adaption of the pat...
Background: The Oxford Nanopore Technologies MinION™ sequencer is a small, portable, low cost device...
Molecular characterization of genetically modified plants can provide crucial information for the de...
DNA sequencing was dominated by Sanger’s chain-termination method until the mid-2000s, when it was p...
International audienceBackground: Transposables elements (TEs) contribute to both structural and fun...
International audienceBackground: Transposables elements (TEs) contribute to both structural and fun...
International audienceBackground: Transposables elements (TEs) contribute to both structural and fun...
International audienceBackground: Transposables elements (TEs) contribute to both structural and fun...
International audienceBackground: Transposables elements (TEs) contribute to both structural and fun...
International audienceBackground: Transposables elements (TEs) contribute to both structural and fun...
To the best of our knowledge, one or more authors of this paper were federal employees when contribu...
Background: Transposables elements (TEs) contribute to both structural and functional dynamics of mo...
Provides a global view of the recent advances in the biological sciences and the adaption of the pat...
Background: Transposables elements (TEs) contribute to both structural and functional dynamics of mo...
Provides a global view of the recent advances in the biological sciences and the adaption of the pat...
Provides a global view of the recent advances in the biological sciences and the adaption of the pat...
Background: The Oxford Nanopore Technologies MinION™ sequencer is a small, portable, low cost device...
Molecular characterization of genetically modified plants can provide crucial information for the de...
DNA sequencing was dominated by Sanger’s chain-termination method until the mid-2000s, when it was p...
International audienceBackground: Transposables elements (TEs) contribute to both structural and fun...
International audienceBackground: Transposables elements (TEs) contribute to both structural and fun...
International audienceBackground: Transposables elements (TEs) contribute to both structural and fun...
International audienceBackground: Transposables elements (TEs) contribute to both structural and fun...
International audienceBackground: Transposables elements (TEs) contribute to both structural and fun...
International audienceBackground: Transposables elements (TEs) contribute to both structural and fun...
To the best of our knowledge, one or more authors of this paper were federal employees when contribu...
Background: Transposables elements (TEs) contribute to both structural and functional dynamics of mo...
Provides a global view of the recent advances in the biological sciences and the adaption of the pat...
Background: Transposables elements (TEs) contribute to both structural and functional dynamics of mo...
Provides a global view of the recent advances in the biological sciences and the adaption of the pat...
Provides a global view of the recent advances in the biological sciences and the adaption of the pat...
Background: The Oxford Nanopore Technologies MinION™ sequencer is a small, portable, low cost device...