David J. Hannapel
Affiliations: | Iowa State University, Ames, IA, United States |
Area:
Horticulture Agriculture, Plant Physiology, BiochemistryGoogle:
"David Hannapel"Mean distance: (not calculated yet)
Children
Sign in to add traineeMichael Kolomiets | grad student | 1998 | Iowa State |
Faye M. Rosin | grad student | 2002 | Iowa State |
Chunzhen Zhang | grad student | 2009 | Iowa State |
Tian Lin | grad student | 2014 | Iowa State |
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Publications
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Kondhare KR, Patil NS, Siddappa S, et al. (2023) Tandem Expression of a Mobile RNA and Its RNA-Binding Protein(s) Enhances Tuber Productivity in Potato. International Journal of Molecular Sciences. 24 |
Yu Z, Cho SK, Zhang P, et al. (2020) Utilizing Potato Virus X to Monitor RNA Movement. Methods in Molecular Biology (Clifton, N.J.). 2166: 181-194 |
Natarajan B, Kondhare KR, Hannapel DJ, et al. (2019) Mobile RNAs and proteins: Prospects in storage organ development of tuber and root crops. Plant Science : An International Journal of Experimental Plant Biology. 284: 73-81 |
Cho SK, Hannapel DJ. (2018) The Yeast Three-Hybrid System for Screening RNA-Binding Proteins in Plants. Methods in Molecular Biology (Clifton, N.J.). 1794: 207-224 |
Kondhare KR, Kumar A, Hannapel DJ, et al. (2018) Conservation of polypyrimidine tract binding proteins and their putative target RNAs in several storage root crops. Bmc Genomics. 19: 124 |
Hannapel DJ, Sharma P, Lin T, et al. (2017) Update on the Tuber Activation Pathway: The multiple signals that control tuber formation. Plant Physiology |
Hannapel DJ, Banerjee AK. (2017) Multiple Mobile mRNA Signals Regulate Tuber Development in Potato. Plants (Basel, Switzerland). 6 |
Ghate TH, Sharma P, Kondhare KR, et al. (2017) The mobile RNAs, StBEL11 and StBEL29, suppress growth of tubers in potato. Plant Molecular Biology |
Zhang C, Fei S, Liu P, et al. (2017) Transcriptome Changes in Response to Cold Acclimation in Perennial Ryegrass as Revealed by a Cross-Species Microarray Analysis Crop Science. 57: S-179-S-191 |
Sharma P, Lin T, Hannapel DJ. (2015) Targets of the StBEL5 transcription factor include the FT ortholog StSP6A. Plant Physiology |