Nitric Oxide: A Double-Edged Sword in Photosynthetic Stress Responses
Author:
Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-97-1883-2_15
Reference127 articles.
1. Alber NA, Sivanesan H, Vanlerberghe GC (2017) The occurrence and control of nitric oxide generation by the plant mitochondrial electron transport chain. Plant Cell Environ 40(7):1074–1085
2. Alderton WK, Cooper CE, Knowles RG (2001) Nitric oxide synthases: structure, function and inhibition. Biochem J 357(3):593–615
3. Allegre A, Silvestre J, Morard P, Kallerhoff J, Pinelli E (2004) Nitrate reductase regulation in tomato roots by exogenous nitrate: a possible role in tolerance to long-term root anoxia. J Exp Bot 55(408):2625–2634
4. Anand P, Stamler JS (2012) Enzymatic mechanisms regulating protein S-nitrosylation: implications in health and disease. Journal of molecular medicine 90:233–244
5. Aranda-Caño L, Sánchez-Calvo B, Begara-Morales JC, Chaki M, Mata-Pérez C, Padilla MN et al (2019) Post-translational modification of proteins mediated by nitro-fatty acids in plants: nitroalkylation. Plants 8(4):82
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