Sepúlveda, S.L.; Neale, D.B.; Holliday, J.A.; Famula, R.; Fiehn, O.; Stanton, B.J.; Guerra, F.P.
GWAS on the Attack by Aspen Borer Saperda calcarata on Black Cottonwood Trees Reveals a Response Mechanism Involving Secondary Metabolism and Independence of Tree Architecture. Forests 2023, 14, 1129.
https://doi.org/10.3390/f14061129
AMA Style
Sepúlveda SL, Neale DB, Holliday JA, Famula R, Fiehn O, Stanton BJ, Guerra FP.
GWAS on the Attack by Aspen Borer Saperda calcarata on Black Cottonwood Trees Reveals a Response Mechanism Involving Secondary Metabolism and Independence of Tree Architecture. Forests. 2023; 14(6):1129.
https://doi.org/10.3390/f14061129
Chicago/Turabian Style
Sepúlveda, Sebastián L., David B. Neale, Jason A. Holliday, Randi Famula, Oliver Fiehn, Brian J. Stanton, and Fernando P. Guerra.
2023. "GWAS on the Attack by Aspen Borer Saperda calcarata on Black Cottonwood Trees Reveals a Response Mechanism Involving Secondary Metabolism and Independence of Tree Architecture" Forests 14, no. 6: 1129.
https://doi.org/10.3390/f14061129
APA Style
Sepúlveda, S. L., Neale, D. B., Holliday, J. A., Famula, R., Fiehn, O., Stanton, B. J., & Guerra, F. P.
(2023). GWAS on the Attack by Aspen Borer Saperda calcarata on Black Cottonwood Trees Reveals a Response Mechanism Involving Secondary Metabolism and Independence of Tree Architecture. Forests, 14(6), 1129.
https://doi.org/10.3390/f14061129