Aleksieienko, I.; Fernandes Hertel, M.; Reilhan, J.; de Castro, M.; Légeret, B.; Caixeta Oliveira, H.; Reiter, I.M.; Santaella, C.
Soil-Gradient-Derived Bacterial Synthetic Communities Enhance Drought Tolerance in Quercus pubescens and Sorbus domestica Seedlings. Plants 2025, 14, 1659.
https://doi.org/10.3390/plants14111659
AMA Style
Aleksieienko I, Fernandes Hertel M, Reilhan J, de Castro M, Légeret B, Caixeta Oliveira H, Reiter IM, Santaella C.
Soil-Gradient-Derived Bacterial Synthetic Communities Enhance Drought Tolerance in Quercus pubescens and Sorbus domestica Seedlings. Plants. 2025; 14(11):1659.
https://doi.org/10.3390/plants14111659
Chicago/Turabian Style
Aleksieienko, Ivan, Mariana Fernandes Hertel, Jérôme Reilhan, Marie de Castro, Bertrand Légeret, Halley Caixeta Oliveira, Ilja M. Reiter, and Catherine Santaella.
2025. "Soil-Gradient-Derived Bacterial Synthetic Communities Enhance Drought Tolerance in Quercus pubescens and Sorbus domestica Seedlings" Plants 14, no. 11: 1659.
https://doi.org/10.3390/plants14111659
APA Style
Aleksieienko, I., Fernandes Hertel, M., Reilhan, J., de Castro, M., Légeret, B., Caixeta Oliveira, H., Reiter, I. M., & Santaella, C.
(2025). Soil-Gradient-Derived Bacterial Synthetic Communities Enhance Drought Tolerance in Quercus pubescens and Sorbus domestica Seedlings. Plants, 14(11), 1659.
https://doi.org/10.3390/plants14111659