• M.C. Ow, S.E. Hall. (2020) Starvation memory resulting in reproductive plasticity is conserved in some Caenorhabditis elegans wild isolates. Micropubl Biol. doi: 10.17912/micropub.biology.000243.
  • M.C. Ow, K. Borziak, A.M. Nichitean, S. Dorus, S.E. Hall. (2018) Early experiences mediate distinct adult gene expression and reproductive programs in Caenorhabditis elegans. PLoS Genetics 14(2): e1007219. PMID: 29447162 https://doi.org/10.1371/journal.pgen.1007219
  • M. Hong, L. Ryu, M.C. Ow, J. Kim, A.R. Je, Y.H. Huh, K.J. Lee, R.A. Butcher, H. Choi, P. Sengupta, S.E. Hall, and K. Kim. (2017) Early pheromone experience modifies a synaptic connection to influence adult pheromone-responses of adult C. elegans. Current Biology 27(20): 3168-3177. PMID: 28988862 doi: 10.1016/j.cub.2017.08.068
  • O. Pekar, M. C. Ow, K. Y. Hui, M. B. Noyes, S. E. Hall, and E. J. A. Hubbard. (2017) Linking the environment, DAF-7/TGFb signaling and LAG-2/DSL ligand expression in the germline stem cell niche. Development 144(16): 2896-2906. doi: 10.1242/dev.147660. PMID: 28811311.
  • P.S. Bharadwaj, S.E. Hall (2017) Endogenous RNAi pathways function in neurons to regulate dauer formation in Caenorhabditis elegans. Genetics 205(4): 1503-1516. PMID: 28122825 DOI: 10.1534/genetics.116.195438.
  • J.R. Sims, M.C. Ow, M. Nishiguchi, K. Kim, P. Sengupta, S.E. Hall. (2016) Developmental programming modulates olfactory behavior in C. elegans via endogenous RNAi pathways. eLife 5. PMID: 27351255 doi: 10.7554/eLife.11642
  • M.C. Ow, S.E. Hall (2015) A method for obtaining large populations of synchronized Caenorhabditis elegans dauer larvae. Methods in Molecular Biology 1327: 209-19. PMID: 26423977 doi: 10.1007/978-1-4939-2842-2_15
  • M.C. Ow, N.C. Lau, S.E. Hall (2014) Small RNA library cloning procedure for deep sequencing of specific endogenous siRNA classes in Caenorhabditis elegans. Methods in Molecular Biology 1173: 59-70. PMID: 24920360 doi: 10.1007/978-1-4939-0931-5_6
  • S.E. Hall*, G.-w. Chirn, N.C. Lau*, P. Sengupta. (2013) RNAi pathways contribute to developmental history-dependent phenotypic plasticity in C. elegans. RNA 19(3):306-19. *corresponding authors PMID: 23329696 doi: 10.1261/rna.036418.112
  • S.E. Hall*, M. Beverly*, C. Russ, C. Nusbaum, P. Sengupta. (2010) A cellular memory of developmental history generates phenotypic diversity in C. elegans. Current Biology 20(2):149-55. * equal authorship PMID: 20079644 doi: 10.1016/j.cub.2009.11.035
  • S.E. Hall, S. Luo, A.E. Hall, D. Preuss (2005) Differential rates of local and global homogenization in centromere satellites from Arabidopsis relatives. Genetics 170:1913-27. PMID: 15937135
  • A.E. Hall, K.C. Keith, S.E. Hall, G.C. Copenhaver, D. Preuss (2004) The rapidly evolving field of plant centromeres. Current Opinion in Plant Biology 7: 108-114. PMID: 15003208 doi:10.1016/j.pbi.2004.01.008
  • S. Luo, A.E. Hall, S.E. Hall, D. Preuss (2004) Whole genome fractionation rapidly purifies DNA from centromeric regions. Nature Methods 1: 67-71. PMID: 15782155
  • S.E. Hall, G.C. Kettler, D. Preuss (2003) Centromere satellites from Arabidopsis populations: maintenance of conserved and variable domains. Genome Research 13: 105-205. PMCID: PMC420371
  • C.G. Williams, Y. Zhou, S.E. Hall (2001) A chromosomal region promoting outcrossing in a conifer. Genetics 159:1283-1289. PMID: 11729169
  • S.E. Hall, W.S. Dvorak, J.S. Johnston, H.J. Price, C.G. Williams (2000) Flow cytometric analysis of DNA content for tropical temperate New World pines. Annals of Botany 86: 1081-1086. PDF
  • C.G. Elsik, V.T. Minihan, S.E. Hall, A.M. Scarpa, C.G. Williams (2000) Low-copy microsatellite markers for Pinus taeda L. Genome 43: 550-555. PMID: 10902720