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Published Papers

Su-Chiung Fang*, Jhun-Chen Chen, Pou-Yi Chang, Hsiang-Yin Lin (2022) Co-option of the SHOOT MERISTEMLESS network regulates protocorm-like-body development in Phalaenopsis aphrodite. Plant Physiology, 190 (1): 127-145. doi.org/10.1093/plphys/kiac100
Yen-Ling Lin, Chin-Lin Chung, Pin-jui Huang, Chun-Han Chen, Su-Chiung Fang* (2020) Revised annotation and extended characterizations of components of the Chlamydomonas reinhardtii SUMOylation system. PLANT DIRECT, 4(9): e00266. 10.1002/pld3.266
Yen-Ling Lin , Chin-Lin Chung , Ming-Hui Chen , Chun-Han Chen , Su-Chiung Fang* (2020) SUMO protease SMT7 modulates ribosomal protein L30 and regulates cell-size checkpoint function. Plant Cell, 32(4): 1285-1307. doi.org/10.1105/tpc.19.00301
Jhun-Chen Chen, Chii-Gong Tong, Hsiang-Yin Lin, Su-Chiung Fang* (2019) Phalaenopsis LEAFY COTYLEDON1-induced somatic embryonic structures are morphologically distinct from protocorm-like bodies. Frontiers in Plant Science, 10: 1594. doi.org/10.3389/fpls.2019.01594
Hsiang-Yin Lin, Jhun-Chen Chen, Su-Chiung Fang * (2018) A protoplast transient expression system to enable molecular, cellular, and functional studies in Phalaenopsis orchids. Frontiers in Plant Science, 9: 1-13. doi.org/10.3389/fpls.2018.00843
Jhun-Chen Chen and Su-Chiung Fang* (2016) The long pollen tube journey and in vitro pollen germination of Phalaenopsis orchids. Plant Reprod, 29(1-2): 179-188. doi.org/10.1007/s00497-016-0280-z
Su-Chiung Fang*, Jhun-Chen Chen, Miao-Ju Wei (2016) Protocorms and protocorm-like bodies are molecularly distinct from zygotic embryonic tissues in Phalaenopsis aphrodite. Plant Physiology, 171(4): 2682-2700. doi.org/10.1104/pp.114.251009
Jhun-Chen Chen, Miao-Ju Wei, Su-Chiung Fang* (2016) Expression analysis of fertilization/early embryogenesis-associated genes in Phalaenopsis orchids. Plant Signaling & Behavior, 11(10): e1237331. doi.org/10.1080/15592324.2016.1237331
Tien-Kuan Chen, Hui-Ting Yang, Su-Chiung Fang, Yi-Chen Lien, Ting-Ting Yang, and Swee-Suak Ko (2016) Hybrid-Cut: An improved sectioning method for recalcitrant plant tissue samples. JOVE-Journal of Visualized Experiments, 117: e54754. doi.org/10.3791/54754
Hsiang-Yin Lin, Jhun-Chen Chen, Miao-Ju Wei, Yi-Chen Lien, Huang-Hsien Li, Swee-Suak Ko, Zin-Huang Liu, Su-Chiung Fang* (2014) Genome-wide Annotation, Expression Profiling, and Protein Interaction Studies of the Core Cell-Cycle Genes in Phalaenopsis aphrodite. Plant Molecular Biology, 84(1-2): 203-226. doi.org/10.1007/s11103-013-0128-y
Su-Chiung Fang*, Chin-Lin Chung , Chun-Han Chen , Cristina Lopez-Paz , James G Umen (2014) Defects in a new class of sulfate/anion transporter link sulfur acclimation responses to intracellular glutathione levels and cell cycle control. Plant Physiology, 166(4): 1852-1868. doi.org/10.1104/pp.114.251009
Bradley J. S. C. Olson, Michael Oberholzer, Yubing Li, Matt J. Zones, Harjivan S. Kohli, Katerina Bisova, Su-Chiung Fang, Jill Meisenhelder, Tony Hunter, James J. Umen (2010) Regulation of the chlamydomonas cell cycle by a stable, chromatin-associated retinoblastoma tumor suppressor complex. Plant Cell, 22(10): 3331-3347
Su-Chiung Fang and James G. Umen (2008) A Suppressor Screen in Chlamydomonas Identifies Novel Components of the Retinoblastoma Tumor Suppressor Pathway. GENETICS, 178: 1295–1310
Su-Chiung Fang, Chris de los Reyes, James G. Umen (2006) Cell Size Checkpoint Control by the Retinoblastoma Tumor Suppressor Pathway. PLoS Genetics, 2 (10): e167
Jun-Zhi Wei, Kristina Hale, Lynn Carta, Edward Platzeri, Cynthie Wong, Su-Chiung Fang, and Raffi V. Aroian (2003) Bacillus thuringiensis crystal proteins that target nematodes. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 100(5): 2760–2765
Su-Chiung Fang and Donna E. Fernandez (2002) Effect of Regulated Overexpression of the MADS Domain Factor AGL15 on Flower Senescence and Fruit Maturation. Plant Physiology, 130: 78–89
Donna E. Fernandez, Gregory R. Heck, Sharyn E. Perry, Sara E. Patterson, Anthony B. Bleecker, and Su-Chiung Fang (2000) The Embryo MADS Domain Factor AGL15 Acts Postembryonically: Inhibition of Perianth Senescence and Abscission via Constitutive Expression. Plant Cell, 12: 183–197