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Biorxiv : the Preprint Server for Biology|May 4, 2026
The cistrome response to hypoxia in human umbilical vein endothelial cellsAyush Singh, Viktor Pastukh, Justin T Roberts, et al.The Plant Cell|November 2, 2014
Differential nuclease sensitivity profiling of chromatin reveals biochemical footprints coupled to gene expression and functional DNA elements in maizeDaniel L Vera, Thelma F Madzima, Jonathan D Labonne, et al.Plos Genetics|August 12, 2021
The native cistrome and sequence motif families of the maize earSavannah D Savadel, Thomas Hartwig, Zachary M Turpin, et al.Genome Biology|July 8, 2020
The regulatory landscape of early maize inflorescence developmentRajiv K Parvathaneni, Edoardo Bertolini, Md Shamimuzzaman, et al.Data in Brief|September 4, 2018
Chromatin structure profile data from DNS-seq: Differential nuclease sensitivity mapping of four reference tissues of B73 maize (<i>Zea mays</i> L)Zachary M Turpin, Daniel L Vera, Savannah D Savadel, et al.Plant Physiology|March 25, 2020
Arabidopsis DNA Replication Initiates in Intergenic, AT-Rich Open ChromatinEmily Wheeler, Ashley M Brooks, Lorenzo Concia, et al.Molecular Biology and Evolution|May 17, 2024
Evolutionary Dynamics of Chromatin Structure and Duplicate Gene Expression in Diploid and Allopolyploid CottonGuanjing Hu, Corrinne E Grover, Daniel L Vera, et al.The Journal of Heredity|January 25, 2008
Maize centromere mapping: a comparison of physical and genetic strategiesRon J Okagaki, Morrison S Jacobs, Adrian O Stec, et al.Elife|August 20, 2025
Making conferences in the plant sciences more inclusive through community recommendationsMarcia Puig-Lluch, Mary Williams, Eric Wada, et al.Nature Genetics|August 11, 2025
Genetic variation at transcription factor binding sites largely explains phenotypic heritability in maizeJulia Engelhorn, Samantha J Snodgrass, Amelie Kok, et al.Pageof 6