Transcriptome Analysis Reveals Potential Mechanisms for Ethylene-Inducible Pedicel–Fruit Abscission Zone Activation in Non-Climacteric Sweet Cherry (Prunus avium L.)
Abstract
Share and Cite
Hewitt, S.; Kilian, B.; Koepke, T.; Abarca, J.; Whiting, M.; Dhingra, A. Transcriptome Analysis Reveals Potential Mechanisms for Ethylene-Inducible Pedicel–Fruit Abscission Zone Activation in Non-Climacteric Sweet Cherry (Prunus avium L.). Horticulturae 2021, 7, 270. https://doi.org/10.3390/horticulturae7090270
Hewitt S, Kilian B, Koepke T, Abarca J, Whiting M, Dhingra A. Transcriptome Analysis Reveals Potential Mechanisms for Ethylene-Inducible Pedicel–Fruit Abscission Zone Activation in Non-Climacteric Sweet Cherry (Prunus avium L.). Horticulturae. 2021; 7(9):270. https://doi.org/10.3390/horticulturae7090270
Chicago/Turabian StyleHewitt, Seanna, Benjamin Kilian, Tyson Koepke, Jonathan Abarca, Matthew Whiting, and Amit Dhingra. 2021. "Transcriptome Analysis Reveals Potential Mechanisms for Ethylene-Inducible Pedicel–Fruit Abscission Zone Activation in Non-Climacteric Sweet Cherry (Prunus avium L.)" Horticulturae 7, no. 9: 270. https://doi.org/10.3390/horticulturae7090270
APA StyleHewitt, S., Kilian, B., Koepke, T., Abarca, J., Whiting, M., & Dhingra, A. (2021). Transcriptome Analysis Reveals Potential Mechanisms for Ethylene-Inducible Pedicel–Fruit Abscission Zone Activation in Non-Climacteric Sweet Cherry (Prunus avium L.). Horticulturae, 7(9), 270. https://doi.org/10.3390/horticulturae7090270

