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The Plant Journal : for Cell and Molecular Biology|February 22, 2025
Tasselyzer, a machine learning method to quantify maize anther exertion, based on PlantCVChong Teng, Noah Fahlgren, Blake C MeyersThe Plant Journal : for Cell and Molecular Biology|June 5, 2015
Secondary siRNAs from Medicago NB-LRRs modulated via miRNA-target interactions and their abundancesQili Fei, Pingchuan Li, Chong Teng, et al.The Plant Cell|August 21, 2020
PhasiRNAs in Plants: Their Biogenesis, Genic Sources, and Roles in Stress Responses, Development, and ReproductionYuanlong Liu, Chong Teng, Rui Xia, et al.Nature Communications|June 11, 2020
Dicer-like 5 deficiency confers temperature-sensitive male sterility in maizeChong Teng, Han Zhang, Reza Hammond, et al.The Plant Journal : for Cell and Molecular Biology|November 28, 2022
Coexpression network and trans-activation analyses of maize reproductive phasiRNA lociJunpeng Zhan, Lily O'Connor, D Blaine Marchant, et al.Methods in Molecular Biology (Clifton, N.J.)|July 26, 2020
Quantitative Fluorescence In Situ Hybridization Detection of Plant mRNAs with Single-Molecule ResolutionKun Huang, Mona Batish, Chong Teng, et al.The Plant Cell|January 12, 2022
A cascade of bHLH-regulated pathways programs maize anther developmentGuo-Ling Nan, Chong Teng, John Fernandes, et al.The New Phytologist|April 22, 2022
24-nt phasiRNAs move from tapetal to meiotic cells in maize anthersXue Zhou, Kun Huang, Chong Teng, et al.Plant Reproduction|March 10, 2021
Transgenerational conditioned male fertility of HD-ZIP IV transcription factor mutant ocl4: impact on 21-nt phasiRNA accumulation in pre-meiotic maize anthersPranjal Yadava, Saleh Tamim, Han Zhang, et al.The New Phytologist|May 1, 2018
Cis-directed cleavage and nonstoichiometric abundances of 21-nucleotide reproductive phased small interfering RNAs in grassesSaleh Tamim, Zhaoxia Cai, Sandra M Mathioni, et al.Pageof 39