42 Publications (Page 2 of 2)
2015
The maize brown midrib4 (bm4) gene encodes a functional folylpolyglutamate synthase.Li, Li⋅Hill-Skinner, Sarah⋅Liu, Sanzhen⋅Beuchle, Danielle⋅Tang, Ho Man⋅Yeh, Cheng-Ting⋅Nettleton, Dan and Schnable, Patrick SThe Plant journal : for cell and molecular biology, vol. 81, (no. 3), pp. 493-504, February 2015.
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2014
Genome-wide analysis of regulation of gene expression and H3K9me2 distribution by JIL-1 kinase mediated histone H3S10 phosphorylation in Drosophila.Cai, Weili⋅Wang, Chao⋅Li, Yeran⋅Yao, Changfu⋅Shen, Lu⋅Liu, Sanzhen⋅Bao, Xiaomin⋅Schnable, Patrick S⋅Girton, Jack⋅Johansen, Jørgen and Johansen, Kristen MNucleic acids research, vol. 42, (no. 9), pp. 5456-67, 2014.
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Histone lysine methyltransferase SDG8 is involved in brassinosteroid-regulated gene expression in Arabidopsis thaliana.Wang, Xiaolei⋅Chen, Jiani⋅Xie, Zhouli⋅Liu, Sanzhen⋅Nolan, Trevor⋅Ye, Huaxun⋅Zhang, Mingcai⋅Guo, Hongqing⋅Schnable, Patrick S⋅Li, Zhaohu and Yin, YanhaiMolecular plant, vol. 7, (no. 8), pp. 1303-1315, August 2014.
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Roothairless5, which functions in maize (Zea mays L.) root hair initiation and elongation encodes a monocot-specific NADPH oxidaseNestler, Josefine⋅Liu, Sanzhen⋅Wen, Tsui-Jung⋅Paschold, Anja⋅Marcon, Caroline⋅Tang, Ho M⋅Li, Delin⋅Li, Li⋅Meeley, Robert B⋅Sakai, Hajime⋅Bruce, Wesley⋅Schnable, Patrick S and Hochholdinger, FrankThe Plant Journal, vol. 79, (no. 5), pp. 729-740, Sep 2014.
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The maize brown midrib2 (bm2) gene encodes a methylenetetrahydrofolate reductase that contributes to lignin accumulationTang, Ho M⋅Liu, Sanzhen⋅Hill-Skinner, Sarah⋅Wu, Wei⋅Reed, Danielle⋅Yeh, Cheng-Ting⋅Nettleton, Dan and Schnable, Patrick SThe Plant Journal, vol. 77, (no. 3), pp. 380-392, Feb 2014.
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2013
Mendelian and Non-Mendelian Regulation of Gene Expression in Maize. e1003202Li, Lin⋅Petsch, Katherine⋅Shimizu, Rena⋅Liu, Sanzhen⋅Xu, Wayne W⋅Ying, Kai⋅Yu, Jianming⋅Scanlon, Mike J⋅Schnable, Patrick S⋅Timmermans, Marja C⋅Springer, Nathan M and Muehlbauer, Gary JPLoS Genetics, vol. 9, (no. 1), 2013.
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The maize glossy13 gene, cloned via BSR-Seq and Seq-walking encodes a putative ABC transporter required for the normal accumulation of epicuticular waxes.Li, Li⋅Li, Delin⋅Liu, Sanzhen⋅Ma, Xiaoli⋅Dietrich, Charles R⋅Hu, Heng-Cheng⋅Zhang, Gaisheng⋅Liu, Zhiyong⋅Zheng, Jun⋅Wang, Guoying and Schnable, Patrick SPloS one, vol. 8, (no. 12), pp. e82333, 2013.
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2012
Changes in genome content generated via segregation of non-allelic homologsLiu, Sanzhen⋅Ying, Kai⋅Yeh, Cheng-Ting⋅Yang, Jinliang⋅Swanson-Wagner, Ruth⋅Wu, Wei⋅Richmond, Todd⋅Gerhardt, Daniel J⋅Lai, Jinsheng⋅Springer, Nathan M⋅Nettleton, Dan⋅Jeddeloh, Jeffrey A and Schnable, Patrick SThe Plant Journal, vol. 72, (no. 3), pp. 390-399, Nov 2012.
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Gene mapping via bulked segregant RNA-Seq (BSR-Seq).Liu, Sanzhen⋅Yeh, Cheng-Ting⋅Cheng-Ting, Yeh⋅Tang, Ho M⋅Nettleton, Dan and Schnable, Patrick SPloS one, vol. 7, (no. 5), pp. e36406, 2012.
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2011
B73-Mo17 near-isogenic lines demonstrate dispersed structural variation in maize.Eichten, Steven R⋅Foerster, Jillian M⋅De Leon, Natalia⋅de Leon, Natalia⋅Kai, Ying⋅Yeh, Cheng-Ting⋅Liu, Sanzhen⋅Jeddeloh, Jeffrey A⋅Schnable, Patrick S⋅Kaeppler, Shawn M and Springer, Nathan MPlant physiology, vol. 156, (no. 4), pp. 1679-90, 2011/Aug.
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Heritable epigenetic variation among maize inbreds.Eichten, Steve R⋅Swanson-Wagner, Ruth A⋅Schnable, James C⋅Waters, Amanda J⋅Hermanson, Peter J⋅Liu, Sanzhen⋅Yeh, Cheng-Ting⋅Jia, Yi⋅Gendler, Karla⋅Freeling, Michael⋅Schnable, Patrick S⋅Vaughn, Matthew W and Springer, Nathan MPLoS genetics, vol. 7, (no. 11), pp. e1002372, 2011/Nov.
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2010
High-throughput genetic mapping of mutants via quantitative single nucleotide polymorphism typing.Liu, Sanzhen⋅Chen, Hsin D⋅Makarevitch, Irina⋅Shirmer, Rebecca⋅Emrich, Scott J⋅Dietrich, Charles R⋅Barbazuk, William B⋅Springer, Nathan M and Schnable, Patrick SGenetics, vol. 184, (no. 1), pp. 19-26, 2010/Jan.
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2009
DLA-Based Strategies for Cloning Insertion Mutants: Cloning the gl4 Locus of Maize Using Mu Transposon Tagged AllelesLiu, Sanzhen⋅Dietrich, Charles R and Schnable, Patrick SGenetics, vol. 183, (no. 4), pp. 1215-25, Dec 2009.
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Mu transposon insertion sites and meiotic recombination events co-localize with epigenetic marks for open chromatin across the maize genome.Liu, Sanzhen⋅Liu, Sanzhen⋅Yeh, Cheng-Ting⋅Yeh, Cheng-Ting⋅Ji, Tieming⋅Ji, Tieming⋅Ying, Kai⋅Ying, Kai⋅Wu, Haiyan⋅Wu, Haiyan⋅Tang, Ho M⋅Tang, Ho Man⋅Fu, Yan⋅Fu, Yan⋅Nettleton, Daniel⋅Nettleton, Dan⋅Schnable, Patrick S⋅Schnable, Patrick S and Malik, Harmit SPLoS genetics, vol. 5, (no. 11), pp. e1000733, November 2009.
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2005
Analysis of the factors affecting the accuracy of detection for single base alterations by oligonucleotide microarrayLiu, Sanzhen⋅Li, Yao⋅Fu, Xuping⋅Qiu, Minyan⋅Jiang, Bin⋅Wu, Hai⋅Li, Rongyu⋅Mao, Yumin and Xie, YiExperimental & Molecular Medicine, vol. 37, (no. 2), pp. 71-77, Apr 2005.
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2004
Comparison of hybridization behavior between double and single strands of targets and the application of asymmetric PCR targets in cDNA microarray.Wei, Qing⋅Liu, Sanzhen⋅Huang, Jianfeng⋅Mao, Xueying⋅Chu, Xiaohui⋅Wang, Yu⋅Qiu, MinYan⋅Mao, Yumin⋅Xie, Yi and Li, YaoJournal of biochemistry and molecular biology, vol. 37, (no. 4), pp. 439-444, July 31, 2004.
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Systematic comparison of the fidelity of aRNA, mRNA and T-RNA on gene expression profiling using cDNA microarray.Li, Yao⋅Li, Tao⋅Liu, Sanzhen⋅Qiu, Minyan⋅Han, Zhiyong⋅Jiang, Zhenling⋅Li, Rongyu⋅Ying, Kang⋅Xie, Yi and Mao, YuminJournal of biotechnology, vol. 107, (no. 1), pp. 19-28, January 8, 2004.
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