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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Vydáno v:Genome Biology Ročník 23; číslo 1; s. 258
Hlavní autoři: Alonge, Michael, Lebeigle, Ludivine, Kirsche, Melanie, Jenike, Katie, Ou, Shujun, Aganezov, Sergey, Wang, Xingang, Lippman, Zachary B., Schatz, Michael C., Soyk, Sebastian
Médium: Journal Article
Jazyk:angličtina
Vydáno: London BioMed Central 15.12.2022
Springer Nature B.V
BMC
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ISSN:1474-760X, 1474-7596, 1474-760X
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Shrnutí: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.
Bibliografie:SourceType-Scholarly Journals-1
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ISSN:1474-760X
1474-7596
1474-760X
DOI:10.1186/s13059-022-02823-7