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Scientific Reports|October 2, 2020
Construction of a dense genetic map of the Malus fusca fire blight resistant accession MAL0045 using tunable genotyping-by-sequencing SNPs and microsatellitesOfere Francis Emeriewen, Klaus Richter, Thomas Berner, et al.Genetics|March 6, 2003
Alternative transcription initiation sites and polyadenylation sites are recruited during Mu suppression at the rf2a locus of maizeXiangqin Cui, An-Ping Hsia, Feng Liu, et al.Plant Phenomics (Washington, D.C.)|August 18, 2021
KAT4IA: <i>K</i>-Means Assisted Training for Image Analysis of Field-Grown Plant PhenotypesXingche Guo, Yumou Qiu, Dan Nettleton, et al.Genetics|October 19, 2004
MuDR transposase increases the frequency of meiotic crossovers in the vicinity of a Mu insertion in the maize a1 geneMarna D Yandeau-Nelson, Qing Zhou, Hong Yao, et al.Plos Genetics|April 8, 2021
Widespread imprinting of transposable elements and variable genes in the maize endospermSarah N Anderson, Peng Zhou, Kaitlin Higgins, et al.Proceedings of the National Academy of Sciences of the United States of America|April 28, 2006
All possible modes of gene action are observed in a global comparison of gene expression in a maize F1 hybrid and its inbred parentsRuth A Swanson-Wagner, Yi Jia, Rhonda DeCook, et al.Current Protocols in Plant Biology|November 15, 2019
Bisulfite Sequence Analyses Using CyVerse Discovery Environment: From Mapping to DMRsJawon Song, Greg Zynda, Samuel Beck, et al.Plos Genetics|October 14, 2021
The genomic ecosystem of transposable elements in maizeMichelle C Stitzer, Sarah N Anderson, Nathan M Springer, et al.Genetics|February 11, 2009
Disruption of imprinting by mutator transposon insertions in the 5' proximal regions of the Zea mays Mez1 locusWilliam J Haun, Olga N Danilevskaya, Robert B Meeley, et al.G3 (Bethesda, Md.)|April 27, 2021
A capture-based assay for detection and characterization of transposon polymorphisms in maizeMinqi Li, Jaclyn M Noshay, Xiaoxiao Dong, et al.Pageof 30