T. Teker Et Al. , "α-Thujone exhibits an antifungal activity against F. graminearum by inducing oxidative stress, apoptosis, epigenetics alterations and reduced toxin synthesis," European Journal of Plant Pathology , vol.160, no.3, pp.611-622, 2021
Teker, T. Et Al. 2021. α-Thujone exhibits an antifungal activity against F. graminearum by inducing oxidative stress, apoptosis, epigenetics alterations and reduced toxin synthesis. European Journal of Plant Pathology , vol.160, no.3 , 611-622.
Teker, T., Sefer, Ö., Gazdağlı, A., YÖRÜK, E., VAROL, G. İ., & ALBAYRAK, G., (2021). α-Thujone exhibits an antifungal activity against F. graminearum by inducing oxidative stress, apoptosis, epigenetics alterations and reduced toxin synthesis. European Journal of Plant Pathology , vol.160, no.3, 611-622.
Teker, Tuğba Et Al. "α-Thujone exhibits an antifungal activity against F. graminearum by inducing oxidative stress, apoptosis, epigenetics alterations and reduced toxin synthesis," European Journal of Plant Pathology , vol.160, no.3, 611-622, 2021
Teker, Tuğba Et Al. "α-Thujone exhibits an antifungal activity against F. graminearum by inducing oxidative stress, apoptosis, epigenetics alterations and reduced toxin synthesis." European Journal of Plant Pathology , vol.160, no.3, pp.611-622, 2021
Teker, T. Et Al. (2021) . "α-Thujone exhibits an antifungal activity against F. graminearum by inducing oxidative stress, apoptosis, epigenetics alterations and reduced toxin synthesis." European Journal of Plant Pathology , vol.160, no.3, pp.611-622.
@article{article, author={Tuğba Teker Et Al. }, title={α-Thujone exhibits an antifungal activity against F. graminearum by inducing oxidative stress, apoptosis, epigenetics alterations and reduced toxin synthesis}, journal={European Journal of Plant Pathology}, year=2021, pages={611-622} }