Automated assembly scaffolding using RagTag elevates a new tomato system for high-throughput genome editing

Advancing crop genomics requires efficient genetic systems enabled by high-quality personalized genome assemblies. Here, we introduce RagTag, a toolset for automating assembly scaffolding and patching, and we establish chromosome-scale reference genomes for the widely used tomato genotype M82 along...

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Veröffentlicht in:Genome Biology Jg. 23; H. 1; S. 258
Hauptverfasser: Alonge, Michael, Lebeigle, Ludivine, Kirsche, Melanie, Jenike, Katie, Ou, Shujun, Aganezov, Sergey, Wang, Xingang, Lippman, Zachary B., Schatz, Michael C., Soyk, Sebastian
Format: Journal Article
Sprache:Englisch
Veröffentlicht: London BioMed Central 15.12.2022
Springer Nature B.V
BMC
Schlagworte:
ISSN:1474-760X, 1474-7596, 1474-760X
Online-Zugang:Volltext
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Beschreibung
Zusammenfassung:Advancing crop genomics requires efficient genetic systems enabled by high-quality personalized genome assemblies. Here, we introduce RagTag, a toolset for automating assembly scaffolding and patching, and we establish chromosome-scale reference genomes for the widely used tomato genotype M82 along with Sweet-100, a new rapid-cycling genotype that we developed to accelerate functional genomics and genome editing in tomato. This work outlines strategies to rapidly expand genetic systems and genomic resources in other plant species.
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ISSN:1474-760X
1474-7596
1474-760X
DOI:10.1186/s13059-022-02823-7