Nathan Maren

Post Doc

Education

    • Student: Ph.D., Horticultural Science, NC State University
    • Projects: Production, breeding, and gene editing of cold-hardy sugar canes.

Thesis: Characterization and Improvement of Novel Bioenergy Grasses (Tripidium spp.)

Manuscripts

  • Maren, N.A. 2016. Symmetric Protoplast Fusion in Interserial Syringa (Oleaceae) Hybridization. MS Horticulture & Forestry, North Dakota State University
  • Maren, N., F. Zhao, R. Aryal, D. Touchell, W. Liu, T. Ranney, and H. Ashrafi. 2021. Reproductive developmental transcriptome analysis of Tripidium ravennae (Poaceae). BMC Genomics 22:483. https://doi.org/10.1186/s12864-021-07641-y.
  • Zhao, T., F. Zhao, N. Maren, P. Kosentka, Y. Liao, H. Lu, J. Duduit, D. Huang, H. Ashrafi, T. Zhao, A. Huerta, T. Ranney, and W. Liu. 2021. An optimized protocol for stepwise optimization of real time RT PCR analysis. Hort. Res. 8:179. https://doi.org/10.1038/s41438-021-00616-w
  • Duan, H., N.A. Maren, T.G. Ranney, and W. Liu. 2022. New opportunities for using WUS/BBM and GRF-GIF genes to enhance genetic transformation of ornamental plants. Ornamental Plant Res. 2:4. doi: 10.48130/OPR-2022-0004
  • Maren, N.A., H. Duan, K. Da, G.C. Yencho, T.G. Ranney, and W. Liu. 2022. Genotype-independent plant transformation. Hort. Res. 9:1-13. https://doi.org/10.1093/hr/uhac047
  • Maren, N.A., J.R. Duduit, D. Huang, F. Zhao, T.G. Ranney, and W. Liu. 2023. Stepwise optimization of real-time RT-PCR analysis, in: B.T. Kurien and R.H. Scofield (eds.), Plant genome engineering, Methods in Molecular Biology. Stepwise Optimization of Real-Time RT-PCR Analysis | SpringerLink

 

 

Nathan Maren