Response to organic cultivation of heirloom Capsicum peppers: Variation in the level of bioactive compounds and effect of ripening

Реакция староместных перцев Capsicum на органическое выращивание: вариабельность содержания биологически активных соединений и влияние созревания
Ana Maria Ribes-Moya, María Dolores Raigón, Estela Moreno‐Peris, Ana Fita, Adrián Rodríguez‐Burruezo
2018-11-21

Capsicum annuum landracesascorbic acidbioactive compoundsorganic cultivationripening stages
Peppers (Capsicum spp.) are one of the most important vegetables and their double use (vegetable or spice) and two commercial stages (unripe and fully ripe) contributed to their use in many recipes and fast diffusion from America. Nowadays, Spain is a center of diversity for C. annuum, with many landraces, offering a great opportunity for adaptation to organic cultivation. Furthermore, Capsicum peppers contain many bioactive compounds, essential to provide high added-value to these cultivars, especially for organic markets, although knowledge about the effect of organic cultivation on Capsicum fruit quality is still scarce. Here, 37 accessions of Spanish landraces and foreign materials from C. annuum and other species were grown under organic and conventional conditions and evaluated for ascorbic acid (AAC), total phenolics (TP) and total red and yellow/orange carotenoids, considering both ripening stages. A large genotypic variation was found within each ripening stage and growing condition for the studied traits. Also, both stages showed high levels, although fully ripe fruits were the richest. Organic conditions enabled higher levels in fully ripe fruits of AAC and TP on average (135 vs 117 mg·100 g-1 and 232 vs 206 mg·100 g-1) and in most accessions, although the genotype×growing conditions interaction also contributed, but at lower extent, to the observed variation. Significant genotype×ripening stage and growing conditions×ripening stage interactions were also found, suggesting that the magnitude of the increase with ripening depends on the accession and growing conditions. By contrast, there were no differences between growing conditions for carotenoids and differences were mainly due to the genotype factor. Finally, the large genotypic variation and favourable organic conditions allowed identifying several materials from different types and uses with very high levels of bioactive compounds for organic cultivation, in both ripening stages but particularly at fully ripe stage (>500 mg·100 g-1).
1
Across 37 Capsicum accessions, bioactive compound levels showed substantial genotypic variation under both organic and conventional cultivation.
2
Carotenoid levels did not differ between organic and conventional cultivation and were primarily determined by genotype; several accessions were identified as promising for organic production.
3
Fully ripe fruits generally contained higher levels of bioactive compounds than unripe fruits, with ripening effects depending on genotype and growing conditions.
4
Genotype-by-growing-condition interactions influenced ascorbic acid and phenolic variation, but their contribution was smaller than the main effects.
5
Organic cultivation increased average ascorbic acid and total phenolic contents in fully ripe fruits: 135 versus 117 and 232 versus 206 mg·100 g−1, respectively.

Heirloom Capsicum peppers (37 accessions of Spanish landraces and foreign materials) grown under organic and conventional conditions at unripe and fully ripe stages

Variation in ascorbic acid, total phenolics, and red and yellow/orange carotenoid levels as affected by genotype, cultivation system, and ripening stage

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2018-11-21
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Ana Maria Ribes-Moya
María Dolores Raigón
Estela Moreno‐Peris
Ana Fita
Adrián Rodríguez‐Burruezo
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