Bunch Microclimate Affects Carotenoids Evolution in cv. Nebbiolo (V. vinifera L.)

Author:

Asproudi Andriani,Petrozziello MaurizioORCID,Cavalletto Silvia,Ferrandino Alessandra,Mania Elena,Guidoni Silvia

Abstract

This study investigates the impact of bunch microclimate on the evolution of some relevant carotenoids in Nebbiolo grapes. Four bunch-zone microclimates, defined by different vineyard aspect and vine vigor, were characterized by radiation and temperature indices. Berry samples were collected from green phase up to harvest, during two consecutive seasons and carotenoid determination was assessed by High-Performance Liquid Chromatography (HPLC). High carotenoid concentrations were highlighted in Nebbiolo. Lutein and neoxanthin contents (μg berry−1) varied similarly in both seasons achieving a concentration peak after veraison especially in the cooler plots while a variety effect on the lutein seasonal trend was presumed. Conversely, β-carotene content remained generally constant during ripening, with the exception of the south plots showing dissimilar evolution between the seasons. Furthermore, higher temperature in the less vigorous and south facing vineyards led to lower amounts of carotenoids, both during ripening and at harvest. Bunch zone temperature and light condition may affect both synthesis and degradation of grape carotenoids determining their amount and profile at harvest. These findings add further knowledge about the influence of climate changes on grape aroma precursors, and are useful to adapt cultural strategies and preserve grape quality consequently.

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference42 articles.

1. Carotenoid biosynthesis in flowering plants

2. Carotenoid cleavage products: An Introduction;Winterhalter,2013

3. Carotenoid breakdown products the—norisoprenoids—in wine aroma

4. Carotenoid-Derived Aroma Compounds;Winterhalter,2002

5. Acid-Catalyzed Hydrolysis of Alcohols and Their β-d-Glucopyranosides

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