Author:
Díaz José,Núñez-Fernández Raquel,Veloso Javier
Abstract
Some peppers are pungent due to the presence of their secondary metabolite contents—capsaicinoids. The ability to synthesize capsaicinoids is a genetic trait, but the control of their accumulation in the fruit is more complex than just biosynthesis. Besides biosynthesis, other metabolic pathways, such as oxidation and conjugation, are also involved in capsaicinoid homeostasis. Moreover, all these pathways are modulated by different factors, namely plant hormones, transcription factors, ontogeny, and the environment, including both abiotic and biotic agents. In the present chapter, the present knowledge about the control of capsaicin metabolism in pepper is reviewed. Based on the literature and our own experience, there is a correlation between pungency and lignification. We have a clue about the reason: capsaicinoid and lignin metabolic pathways are related, and their biosynthesis predate from the same intermediate compounds. Finally, this chapter mainly focuses on the cultivar Padrón, a pungent variety used in our experiments because of its economic and cultural value.
Reference28 articles.
1. Estrada B, Bernal MA, Díaz J, Pomar F, Merino F. Fruit development in Capsicum annuum: Changes in capsaicin, lignin, free phenolics and peroxidase patterns. Journal of Agricultural and Food Chemistry. 2000;48:6234-6239. DOI: 10.1021/jf000190x
2. Official Journal of the European Union. Publication of an application pursuant to Article 6(2) of Council Regulation (EC) No 510/2006 on the protection of geographical indications and designations of origin for agricultural products and foodstuffs. COUNCIL REGULATION (EC) No 510/2006 ‘PEMENTO DE HERBÓN’ EC No: ES-PDO-0005-0509-15.11.2005. [Internet]. 2009. Available from: https://eur-lex.europa.eu/legal-content/EN/TXT/PDF/?uri=CELEX:52009XC1218(07)&from=EN. [Accessed January 3, 2023]
3. Naves ER, de Ávila SL, Sulpice R, Araújo WL, Nunes-Nesi A, Peres LEP, et al. Capsaicinoids: Pungency beyond Capsicum. Trends in Plant Science. 2019;24:109-120. DOI: 10.1016/j.tplants.2018.11.001
4. Stewart C Jr, Kang B-C, Liu K, Mazourek M, Moore SL, Yoo EY, et al. The Pun1 gene for pungency in pepper encodes a putative acyltransferase. The Plant Journal. 2005;42:675-688. DOI: 10.1111/j.1365-313X.2005.02410.x
5. Díaz J, Pomar J, Bernal MA, Merino F. Peroxidases and the metabolism of capsaicin in Capsicum annuum L. Phytochemistry Reviews. 2004;3:141-157. DOI: 10.1023/B:PHYT.0000047801.41574.6e