scholarly journals An expedient survey and characterization of the soybean JAGGED 1 (GmJAG1) transcription factor binding preference in the soybean genome by modified ChIPmentation on soybean protoplasts

Genomics ◽  
2021 ◽  
Vol 113 (1) ◽  
pp. 344-355
Author(s):  
Mingkun Huang ◽  
Ling Zhang ◽  
Limeng Zhou ◽  
Mozhu Wang ◽  
Wai-Shing Yung ◽  
...  
2019 ◽  
Author(s):  
Olivera Grujic ◽  
Tanya N. Phung ◽  
Soo Bin Kwon ◽  
Adriana Arneson ◽  
Yuju Lee ◽  
...  

AbstractAnnotations of evolutionarily constraint provide important information for variant prioritization. Genome-wide maps of epigenomic marks and transcription factor binding provide complementary information for interpreting a subset of such prioritized variants. Here we developed the Constrained Non-Exonic Predictor (CNEP) to quantify the evidence of each base in the human genome being in a constrained non-exonic element from over 60,000 epigenomic and transcription factor binding features. We find that the CNEP score outperforms baseline and related existing scores at predicting constrained non-exonic bases from such data. However, a subset of such bases are still not well predicted by CNEP. We developed a complementary Conservation Signature Score by CNEP (CSS-CNEP) using conservation state and constrained element annotations that is predictive of those bases. Using human genetic variation, regulatory sequence motifs, mouse epigenomic data, and retrospectively considered additional human data we further characterize the nature of constrained non-exonic bases with low CNEP scores.


Genome ◽  
2004 ◽  
Vol 47 (1) ◽  
pp. 84-95 ◽  
Author(s):  
Leonardo Miguel Galindo ◽  
Eliana Gaitán-Solís ◽  
Prasith Baccam ◽  
Joe Tohme

Retroelements have proved useful for molecular marker studies and play an important role in genome evolution. Ty1-copia retrotransposons are ubiquitous and heterogeneous in plant genomes, and although many elements have been isolated and characterized, almost no information about them is available in the literature for Phaseolus vulgaris L. We report here the isolation and characterization of new RNase long terminal repeat (LTR) sections of the Ty1-copia group for this crop plant. RNAse sections showed conserved amino acids with the downstream sections corresponding to the polypurine-tract and 5' sections of 3' LTRs. The RNase sections were aligned using ClustalX to find potential relationships between sequences. A comparison with this analysis was made using the partition analysis of quasispecies package (PAQ), which is specific for quasispecies-like populations. The analysis revealed eight distinct groups. To uncover LTR variability and potential conserved promoter motifs, we also designed new primers from the presumed polypurine-tract regions. A similarity search found short stretches similar to upstream and downstream regions of some genes. Conserved motifs, corresponding to transcription factor binding sites, were discovered through MatInspector software and two sequences characterized. From a putative LTR fragment, we then designed a new primer, which, through sequence-specific amplification polymorphism (SSAP), showed numerous polymorphic bands between two distinct P. vulgaris accessions.Key words: Phaseolus vulgaris, quasispecies, retrotransposon, RNase-LTR, transcription factor binding site.


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