2009Genome biologyOpen access

Assisted assembly: how to improve a de novo genome assembly by using related species

Sante Gnerre, Eric S. Lander, Kerstin Lindblad‐Toh, David B. Jaffe

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Abstract

We describe a new assembly algorithm, where a genome assembly with low sequence coverage, either throughout the genome or locally, due to cloning bias, is considerably improved through an assisting process via a related genome. We show that the information provided by aligning the whole-genome shotgun reads of the target against a reference genome can be used to substantially improve the quality of the resulting assembly.

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We describe a new assembly algorithm, where a genome assembly with low sequence coverage, either throughout the genome or locally, due to cloning bias, is considerably improved through an assisting process via a related genome. We show that the information provided by aligning the whole-genome shotgun reads of the target against a reference genome can be used to substantially improve the quality of the resulting assembly.

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Available abstract

We describe a new assembly algorithm, where a genome assembly with low sequence coverage, either throughout the genome or locally, due to cloning bias, is considerably improved through an assisting process via a related genome. We show that the information provided by aligning the whole-genome shotgun reads of the target against a reference genome can be used to substantially improve the quality of the resulting assembly.

Key concepts: Sequence assembly, Genome, Shotgun sequencing, Hybrid genome assembly, Shotgun, Reference genome, Computational biology, Biology

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