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Guo, J.-C.

Publications and source records attributed to Guo, J.-C..

2 recordsLinked to original sources

eccDB: a comprehensive repository for eccDNA-mediated chromatin contacts in multi-species

The role of extrachromosomal circular DNA (eccDNA) has been highlighted. More recently, eccDNA-chromosome interactions were identified, suggesting a potential role of eccDNA in transcriptional regulation. Several databases currently provide valuable resources for the study of eccDNAs. However, these databases are primarily focused on Human eccDNAs and do not provide analysis of eccDNA-chromosome interaction and eccDNA gene expression in different tissues. Herein, to further integrate available resources for eccDNA data across multiple species, we developed the eccDB database. The current version of eccDB has collected a total of 1,317,182 eccDNAs in 424 samples from four species (homo sapiens, mus musculus, saccharomyces cerevisiae, and arabidopsis thaliana). eccDB provides regulatory and epigenetic information on eccDNA, including typical enhancers, super-enhancers, transcription factors, DNA methylation positions, risk SNPs, expression quantitative trait locus, chromatin accessibility regions, and chromHMM states. In particular, eccDB provides eccDNAs intrachromosomal and interchromosomal interaction analysis to predict the transcriptional regulatory functions of eccDNA. Moreover, eccDB identifies eccDNAs from unknown DNA sequences and analyzes the functional and evolutionary relationships of an eccDNA among different species. Overall, eccDB offers web-based analytical tools and a comprehensive resource for biologists and clinicians to decipher the molecular regulatory mechanisms of eccDNA. eccDB is freely available at http://www.xiejjlab.bio/eccDB

bioinformatics↗

Establishment of an efficient transformation and CRISPR/Cas9-mediated gene editing system in Chinese local planting cassava (Manihot esculenta Crantz) cultivar SC8

Cassava starch is a widely used raw material for industrial production. South Chinese cassava cultivar 8 (Manihot esculenta Crantz cv. SC8) is one of the main locally planted cultivars. In this study, an efficient transformation system for cassava SC8 mediated with Agrobacterium strain LBA4404 was presented for the first time, in which the factors of Agrobacterium strain cell infection (density OD600 = 0.65), 250 {micro}M acetosyringone induction, and agro-cultivation with wet friable embryogenic callus (FEC) for 3 days in dark conditions were found to increase the transformation efficiency through the binary vector pCAMBIA1304 harboring GUS- and GFP-fused genes driven by the CaMV35S promoter. Based on the optimized transformation protocol, approximately 120-140 independent transgenic lines per mL settled FEC cell volume (SCV) by gene transformation in approximately five months, and 45.83% homozygous mono-allelic mutations of the MePDS gene with a YAO promoter-driven CRISPR/Cas9 system were generated. This study will open a more functional avenue for the genetic improvement of cassava SC8.

molecular biology↗