Improved Gossypium raimondii genome using a Hi-C-based proximity-guided assembly

Introduction Genome sequence plays an important role in both basic and applied studies. Gossypium raimondii, the putative contributor of the D subgenome of upland cotton (G. hirsutum), highlights the need to improve the genome quality rapidly and efficiently. Methods We performed Hi-C sequencing of...

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Veröffentlicht in:Journal of Cotton Research 2021-08, Vol.4 (1), p.1-7, Article 23
Hauptverfasser: YANG, Qiuhong, ZUO, Dongyun, CHENG, Hailiang, ZHANG, Youping, WANG, Qiaolian, JAVARIA, Ashraf, FENG, Xiaoxu, LI, Simin, CHEN, Xiaoqin, LIU, Shang, SONG, Guoli
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Sprache:eng
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Zusammenfassung:Introduction Genome sequence plays an important role in both basic and applied studies. Gossypium raimondii, the putative contributor of the D subgenome of upland cotton (G. hirsutum), highlights the need to improve the genome quality rapidly and efficiently. Methods We performed Hi-C sequencing of G. raimondii and reassembled its genome based on a set of new Hi-C data and previously published scaffolds. We also compared the reassembled genome sequence with the previously published G. raimondii genomes for gene and genome sequence collinearity. Result A total of 98.42% of scaffold sequences were clustered successfully, among which 99.72% of the clustered sequences were ordered and 99.92% of the ordered sequences were oriented with high-quality. Further evaluation of results by heat-map and collinearity analysis revealed that the current reassembled genome is significantly improved than the previous one (Nat Genet 44:98-1103, 2012). Conclusion This improvement in G. raimondii genome not only provides a better reference to increase study efficiency but also offers a new way to assemble cotton genomes. Furthermore, Hi-C data of G. raimondii may be used for 3D structure research or regulating analysis. Keywords: Gossypium raimondii, Hi-C, Genome assembly, Heatmap and collinearity
ISSN:2523-3254
2523-3254
DOI:10.1186/s42397-021-00096-2