Kang, Y.; Li, C.-Z.; Ullah, A.; Zhang, Q.; Yu, X.-Z.
The Accumulation of Abscisic Acid Increases the Innate Pool of Soluble Phenolics through Polyamine Metabolism in Rice Seedlings under Hexavalent Chromium Stress. Toxics 2024, 12, 577.
https://doi.org/10.3390/toxics12080577
AMA Style
Kang Y, Li C-Z, Ullah A, Zhang Q, Yu X-Z.
The Accumulation of Abscisic Acid Increases the Innate Pool of Soluble Phenolics through Polyamine Metabolism in Rice Seedlings under Hexavalent Chromium Stress. Toxics. 2024; 12(8):577.
https://doi.org/10.3390/toxics12080577
Chicago/Turabian Style
Kang, Yi, Cheng-Zhi Li, Abid Ullah, Qing Zhang, and Xiao-Zhang Yu.
2024. "The Accumulation of Abscisic Acid Increases the Innate Pool of Soluble Phenolics through Polyamine Metabolism in Rice Seedlings under Hexavalent Chromium Stress" Toxics 12, no. 8: 577.
https://doi.org/10.3390/toxics12080577
APA Style
Kang, Y., Li, C.-Z., Ullah, A., Zhang, Q., & Yu, X.-Z.
(2024). The Accumulation of Abscisic Acid Increases the Innate Pool of Soluble Phenolics through Polyamine Metabolism in Rice Seedlings under Hexavalent Chromium Stress. Toxics, 12(8), 577.
https://doi.org/10.3390/toxics12080577