Chenjiang You

Affiliations: 
University of California, Riverside, Riverside, CA, United States 
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"Chenjiang You"

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Hong Ma grad student 2010-2015
Xuemei Chen post-doc UC Riverside
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Publications

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Zhou D, Song R, Fang Y, et al. (2025) Global identification and regulatory network analysis reveal the significant roles of lncRNAs during anther and pollen development in Arabidopsis. Plant Cell Reports. 44: 44
Hang R, Li H, Liu W, et al. (2024) HOT3/eIF5B1 confers Kozak motif-dependent translational control of photosynthesis-associated nuclear genes for chloroplast biogenesis. Nature Communications. 15: 9878
Wang T, Wang H, Lian Q, et al. (2023) HEI10 is subject to phase separation and mediates RPA1a degradation during meiotic interference-sensitive crossover formation. Proceedings of the National Academy of Sciences of the United States of America. 120: e2310542120
Xu W, Yu Y, Jing J, et al. (2023) SCF mediates degradation of the meiosis-specific recombinase DMC1. Nature Communications. 14: 5044
Hang R, Xu Y, Wang X, et al. (2023) HOT3/eIF5B1 constrains rRNA RNAi by facilitating 18S rRNA maturation. Proceedings of the National Academy of Sciences of the United States of America. 120: e2301081120
Hwang Y, Han S, Yoo CY, et al. (2022) Anterograde signaling controls plastid transcription via sigma factors separately from nuclear photosynthesis genes. Nature Communications. 13: 7440
Wang Y, Le BH, Wang J, et al. (2022) ZMP recruits and excludes Pol IV-mediated DNA methylation in a site-specific manner. Science Advances. 8: eadc9454
Wang C, Huang J, Zhang J, et al. (2022) DNA polymerase epsilon interacts with SUVH2/9 to repress the expression of genes associated with meiotic DSB hotspot in . Proceedings of the National Academy of Sciences of the United States of America. 119: e2208441119
Fan L, Gao B, Xu Y, et al. (2022) AAR2, a conserved splicing factor in eukaryotes, acts in microRNA biogenesis. Proceedings of the National Academy of Sciences of the United States of America. 119: e2208415119
Li H, You C, Yoshikawa M, et al. (2022) A spontaneous thermo-sensitive female sterility mutation in rice enables fully mechanized hybrid breeding. Cell Research
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