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Deciphering extrachromosomal circular DNA in Arabidopsis.


ABSTRACT: Extrachromosomal circular DNA (eccDNA) is independent of the chromosome and exists in many eukaryotes. However, the nature and origin of eccDNA in plants remains unclear. In this study, we sequenced 12 samples from four tissues (leaf, flower, stem and root) with three biological replicates. In total, we found 743 eccDNAs found in at least two samples. Most of eccDNA have inverted repeats ranging from 4 to 12 bp in the boundaries. Interestingly, eccDNA is not only related to transposon activity, but also hosts tRNA genes, suggesting that the eccDNAs may be associated with tRNA abundance which controls protein synthesis under conditions of stress. Our results provide an unprecedented view of eccDNA, which is still naïve in scope.

SUBMITTER: Wang K 

PROVIDER: S-EPMC7899950 | biostudies-literature | 2021

REPOSITORIES: biostudies-literature

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Deciphering extrachromosomal circular DNA in Arabidopsis.

Wang Keyi K   Tian Hui H   Wang Lequn L   Wang Lin L   Tan Yacong Y   Zhang Ziting Z   Sun Kai K   Yin Meng M   Wei Qinggong Q   Guo Baohua B   Han Jinyu J   Zhang Peiru P   Li Han H   Liu Yulong Y   Zhao Hongwei H   Sun Xiaoyong X  

Computational and structural biotechnology journal 20210209


Extrachromosomal circular DNA (eccDNA) is independent of the chromosome and exists in many eukaryotes. However, the nature and origin of eccDNA in plants remains unclear. In this study, we sequenced 12 samples from four tissues (leaf, flower, stem and root) with three biological replicates. In total, we found 743 eccDNAs found in at least two samples. Most of eccDNA have inverted repeats ranging from 4 to 12 bp in the boundaries. Interestingly, eccDNA is not only related to transposon activity,  ...[more]

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