Online data resource for exploring transposon insertion polymorphisms in public soybean germplasm accessions

Abstract Soybean (Glycine max L. Merrill) is one of the most important economical crops. A large number of whole-genome resequencing datasets have been generated and are increasingly expanded for exploring genetic diversity and mining important quantitative trait loci. Most genome-wide association s...

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Veröffentlicht in:Plant physiology (Bethesda) 2023-09, Vol.193 (2), p.1036-1044
Hauptverfasser: Yin, Zhiyuan, Yang, Qingjie, Shen, Danyu, Liu, Jinding, Huang, Wen, Dou, Daolong
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Sprache:eng
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Zusammenfassung:Abstract Soybean (Glycine max L. Merrill) is one of the most important economical crops. A large number of whole-genome resequencing datasets have been generated and are increasingly expanded for exploring genetic diversity and mining important quantitative trait loci. Most genome-wide association studies have focused on single-nucleotide polymorphisms, short insertions, and deletions. Nevertheless, structure variants mainly caused by transposon element mobilization are not fully considered. To fill this gap, we uniformly processed the publicly available whole-genome resequencing data from 5,521 soybean germplasm accessions and built an online soybean transposon insertion polymorphisms database named Soybean Transposon Insertion Polymorphisms Database (SoyTIPdb) (https://biotec.njau.edu.cn/soytipdb). The collected germplasm accessions derived from more than 45 countries and 160 regions representing the most comprehensive genetic diversity of soybean. SoyTIPdb implements easy-to-use query, analysis, and browse functions to help understand and find meaningful structural variations from TE insertions. In conclusion, SoyTIPdb is a valuable data resource and will help soybean breeders/researchers take advantage of the whole-genome sequencing datasets available in the public depositories. SoyTIPdb is a valuable data resource that enables researchers to explore meaningful structure variations due to the movement of transposon elements in a large number of soybean accessions.
ISSN:0032-0889
1532-2548
DOI:10.1093/plphys/kiad386