Fluoride tolerance in rice is negatively regulated by the ‘stress-phytohormone’ abscisic acid (ABA), but promoted by ABA-antagonist growth regulators, melatonin, and gibberellic acid

Author:

Singh Ankur,Banerjee Aditya,Roychoudhury Aryadeep

Funder

Science and Engineering Research Board

Publisher

Springer Science and Business Media LLC

Subject

Cell Biology,Plant Science,General Medicine

Reference61 articles.

1. Adamakis I-D, Panteris E, Eleftheriou E (2012) Tungsten toxicity in plants. Plants 1:82–99

2. Arc E, Sechet J, Corbineau F, Rajjou L, Marion-Poll A (2013) ABA crosstalk with ethylene and nitric oxide in seed dormancy and germination. Front Plant Sci 4:63

3. Banerjee A, Roychoudhury A (2018) Abiotic stress, generation of reactive oxygen species, and their consequences: an overview. In: Singh VP, Singh S, Tripathi D, Mohan Prasad S, Chauhan DK (eds) Revisiting the role of reactive oxygen species (ROS) in plants: ROS Boon or bane for plants? John Wiley & Sons Inc, USA, pp 23–50

4. Banerjee A, Roychoudhury A (2019a) Differential regulation of defence pathways in aromatic and non-aromatic indica rice cultivars towards fluoride toxicity. Plant Cell Rep 38:1217–1233

5. Banerjee A, Roychoudhury A (2019b) Melatonin application reduces fluoride uptake and toxicity in rice seedlings by altering abscisic acid, gibberellin, auxin and antioxidant homeostasis. Plant Physiol Biochem 145:164–173

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