Invention Grant
- Patent Title: Method for large scale scaffolding of genome assemblies
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Application No.: US15024990Application Date: 2014-09-27
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Publication No.: US11694764B2Publication Date: 2023-07-04
- Inventor: Jay Shendure , Andrew Adey , Joshua Burton , Jacob Kitzman , Maitreya J. Dunham , Ivan Liachko
- Applicant: UNIVERSITY OF WASHINGTON
- Applicant Address: US WA Seattle
- Assignee: UNIVERSITY OF WASHINGTON
- Current Assignee: UNIVERSITY OF WASHINGTON
- Current Assignee Address: US WA Seattle
- Agency: Perkins Coie LLP
- International Application: PCT/US2014/057930 2014.09.27
- International Announcement: WO2015/048595A 2015.04.02
- Date entered country: 2016-03-25
- Main IPC: G16B5/00
- IPC: G16B5/00 ; G16B30/00 ; G16B20/00 ; G16B20/20 ; G16B30/20 ; G16B30/10 ; G16B40/00

Abstract:
Computational methods used for large scale scaffolding of a genome assembly are provided. Such methods may include a step of applying a location clustering model to a test set of contigs to form two or more location cluster groups, each location cluster group comprising one or more location-clustered contigs; a step of applying an ordering model to each of the two or more location cluster groups to form an ordered set of one or more location-clustered contigs within each cluster group; and a step of applying an orienting model to each ordered set of one or more location-clustered contigs to assign a relative orientation to each of the location-clustered contigs within each location cluster group. In some aspects, the test set of contigs are generated from aligning a set of reads generated by a chromosome conformation analysis technique (e.g., Hi-C) with a draft assembly, a reference assembly, or both.
Public/Granted literature
- US20160239602A1 METHODS AND SYSTEMS FOR LARGE SCALE SCAFFOLDING OF GENOME ASSEMBLIES Public/Granted day:2016-08-18
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