Evidence map›Paper›PMID 42332569›Full record

ArticleBMC genomics2026

Circle-seq analysis reveals the involvement of eccDNAs in salt stress response of bermudagrass (Cynodon dactylon).

Zhao Zhang, Zhiyuan Liu, Xiang Liu, Shi Chen, Xuebing Yan, Zhimin Du, Jibiao Fan

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Article in BMC genomics, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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5 · Who and what money

Authors and funding

7 authors.

Zhao ZhangCollege of Animal Science and Technology, Yangzhou University, Yangzhou, 225009, Jiangsu Province, China.
Zhiyuan LiuCollege of Animal Science and Technology, Yangzhou University, Yangzhou, 225009, Jiangsu Province, China.
Xiang LiuCollege of Animal Science and Technology, Yangzhou University, Yangzhou, 225009, Jiangsu Province, China.
Shi ChenCollege of Animal Science and Technology, Yangzhou University, Yangzhou, 225009, Jiangsu Province, China.
Xuebing YanCollege of Animal Science and Technology, Yangzhou University, Yangzhou, 225009, Jiangsu Province, China. 006817@yzu.edu.cn.
Zhimin DuCollege of Environmental Engineering, Henan University of Technology, Zhengzhou, 450001, Henan Province, China. duzhimin@haut.edu.cn.
Jibiao FanCollege of Animal Science and Technology, Yangzhou University, Yangzhou, 225009, Jiangsu Province, China. 006298@yzu.edu.cn.

Funding

Key Scientific Research Project of Higher Education Institutions in Henan Province 25A610011National Natural Science Foundation of China 32001206
6 · The paper itself

Abstract

Extrachromosomal circular DNAs (eccDNAs) have been identified in a wide variety of plant species and play a pivotal role in genomic plasticity, emerging as key drivers of stress adaptation. However, the putative roles of eccDNAs under environmental stress remain largely unexplored in plants. As a high-quality turfgrass, bermudagrass (Cynodon dactylon L.) is a pivotal species for the reclamation and improvement of saline-alkali soils. Therefore, we performed a comprehensive analysis of the eccDNA profiles in bermudagrass under salt stress. A total of 1,068 eccDNAs were identified across all chromosomes. These eccDNAs were characterized by short lengths (ranging from 100 bp to 1 kb) and low GC content. Their genomic distribution was not entirely random but rather exhibited a certain preference for intergenic regions and coding sequences (CDS). Crucially, null model analysis of A/T-rich junction sites revealed that these eccDNAs primarily originate from physically unstable scaffold/matrix attachment regions (S/MARs) via stochastic fragmentation, followed by opportunistic circularization predominantly mediated by the non-homologous end joining (NHEJ) pathway. Notably, salt stress specifically enriched eccDNAs derived from DNA transposons, including the Tc1/Mariner, CACTA and MITE superfamilies. Overall, our findings reveal complex extrachromosomal structural dynamics in bermudagrass, offering novel insights into its genomic adaptation under environmental stress.

Indexed as

CynodonDNA, CircularSalt StressExtrachromosomal DNASequence Analysis, DNADNA, CircularExtrachromosomal DNABermudagrassCircle-mapExtrachromosomal circular DNAsSalt stressTransposon

Identifiers

PMID42332569
PMCPMC13540862

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.