terclim by ICS banner
IVES 9 IVES Conference Series 9 Macrowine 9 Macrowine 2025 9 Analysis and composition of grapes, wines, wine spirits 9 Crafting wine’s signature: exploring volatile compounds from terroir to aging

Crafting wine’s signature: exploring volatile compounds from terroir to aging

Abstract

The unique characteristics of terroir play a fundamental role in shaping the identity and quality of wines, influencing the aromatic complexity of young wines and their long-term aging potential. The volatile compounds responsible for these aromas are crucial to identifying and appreciating a given wine. Determining the best location for each grape is becoming increasingly difficult in the context of climate change. Agronomic practices [1] and appropriate clone selection can help winemakers maintain the desired aromatic trait when optimal placement is impractical. Some examples of sparkling and peppery wines illustrate the specific characteristics of terroir and grape. [2, 3].

Many decisions are then made by the winemaker in the cellar. One of these is which wines to intend to become a reserve. Several complex reactions occur during the aging of the wine in the bottle. In the case of classic method sparkling wines, the wine can improve its qualities during aging for decades until the moment of disgorgement. Selecting sparkling wine bases to create the cuvée for refermentation is one of the most challenging steps in producing the classic method. A deep understanding of the interaction between terroir and winemaking is essential, as the unique characteristics imparted by the vineyard influence the potential of each base wine. The questions we intend to answer include predicting which wines have the highest potential to evolve into fine reserves, the possibility of preserving the floral aroma of some aromatic wines over time, and finally, the influence of packaging on the maintenance of the sensory attributes of wine [4, 5].

References

[1] I. Ghiglieno et al., ‘Impact of meteorological conditions, canopy shading and leaf removal on yield, must quality, and norisoprenoid compounds content in Franciacorta sparkling wine’, Frontiers in Plant Science, vol. 14, 2023, doi: 10.3389/fpls.2023.1125560

[2] S. Carlin et al., ‘Regional features of northern Italian sparkling wines, identified using solid-phase micro extraction and comprehensive two-dimensional gas chromatography coupled with time-of-flight mass spectrometry’, Food Chemistry, vol. 208, pp. 68–80, Oct. 2016, doi: 10.1016/j.foodchem.2016.03.112.

[3] L. Caputi et al., ‘Relationship of changes in rotundone content during grape ripening and winemaking to manipulation of the “peppery” character of wine’, Journal of Agricultural and Food Chemistry, vol. 59, no. 10, Art. no. 10, 2011, doi: 10.1021/jf200786u.

[4] P. Arapitsas, et al., ‘Monoterpenoids isomerization and cyclization processes in Gewürztraminer wines: A kinetic investigation at different pH and temperatures’, Food Research International, p. 115017, Sep. 2024, doi: 10.1016/j.foodres.2024.115017.

[5] S. Carlin, et al., ‘Flint glass bottles cause white wine aroma identity degradation’, Proc Natl Acad Sci U S A, vol. 119, no. 29, p. e2121940119, Jul. 2022, doi: 10.1073/pnas.2121940119.

Publication date: June 5, 2025

Type: Oral communication

Authors

Silvia Carlin1,*, Panagiotis Arapitsas1,2, Urska Vrhovsek1, Fulvio Mattivi1

1 Research and Innovation Center, Fondazione Edmund Mach, 38010 San Michele all’Adige, Italy
2 Department of Wine, Vine, and Beverage Sciences, School of Food Science, University of West Attica, 12243 Athens, Greece

Contact the author*

Keywords

volatile compounds, grape origin, accelerated aging, wine evolution

Tags

IVES Conference Series | Macrowine | Macrowine 2025

Related articles…

New insights of translocation of smoke-related volatile phenols in vivo grapevines

The increasing frequency of wildfires in grape-growing regions is seen as a significant risk for the grape and wine industry.

Biosynthetic evolution of galloilated polyphenols in Tannat grapes during ripening, potential applications of grape thinning

Galloylated flavan-3-ols are a class of polyphenolic compounds present in various plants, including grape seeds. These compounds are formed through the condensation of flavan-3-ols, such as catechins, although the precise mechanism by which gallic acid is incorporated into the molecule remains unclear.

The Albariño route in Uruguay: A clonal selection process to produce quality wines

In recent years, Uruguay has embraced the Albariño grape variety (Vitis vinifera L.) as one of the most promising for commercial growth. Originally cultivated in Galicia and northern Portugal, Albariño has risen to prominence in the global wine market, driving strong demand and significantly increasing grape prices [1].

Effect of pre-fermentative cold soaking and use of different enzymes on the chemical and sensory properties of Catarratto wines

The wine industry widely recognizes that early-harvested grapes or those with uneven ripeness at harvest can produce wines with an “unripe fruit” mouthfeel [1,2]. Despite this, it is still unknown which compounds cause these sensory flaws or the most effective winemaking techniques to address them.

Unveiling the chemical headspace of sparkling wine glasses by laser spectroscopy

Right after serving a sparkling wine into a glass, thousands of rising and bursting bubbles convey gas-phase CO2 and volatile organic compounds (VOCs) in the headspace above the champagne surface, thus progressively modifying the gaseous chemical space perceived by the consumer [1].