# Yield and Quality of Walnuts Subjected to Deficit Irrigation in Mountainous Water-Starved Environments

**Authors:** Víctor Hugo Durán Zuazo, Belén Cárceles Rodríguez, Esther Sendra, Ángel Antonio Carbonell-Barrachina, Leontina Lipan, Francisca Hernández, Baltasar Gálvez Ruiz, Iván Francisco García-Tejero

PMC · DOI: 10.3390/plants14121777 · Plants · 2025-06-10

## TL;DR

This study shows how deficit irrigation can reduce water use in walnut trees while maintaining quality and even improving health benefits.

## Contribution

The study introduces a water-saving irrigation strategy that maintains walnut quality and enhances phytochemical content.

## Key findings

- Cv. Cisco showed higher tolerance to moderate water deficit compared to Chandler.
- SDI75 treatment preserved kernel quality and improved unsaturated fatty acid and mineral content.
- Approximately 25% irrigation water can be saved without harming walnut tree performance.

## Abstract

Walnut (Juglans regia L.) exhibits a high sensitivity to water deficit, making it crucial to comprehend this characteristic in order to optimize irrigation strategies to improve its productivity. Deficit irrigation is widely used under drought conditions to achieve water savings goals. This study examines the impact of sustained deficit irrigation (SDI) strategies—applying 33%, 50%, or 75% of the crop water demand—on yield and quality parameters of two walnut cultivars (Chandler and Cisco) over a three-year monitoring period. These treatments were compared against control trees receiving full irrigation at 100% of crop water requirements (C100). The nut yield was significantly and proportionally reduced under the SDI treatments. In the experiment, the average yield for cv. Chandler amounted to 6.7, 6.4, and 12.2 kg tree−1 under SDI33, SDI50, and SDI75, respectively, which were less than 13.9 kg tree−1 in the C100 plot. Similarly, cv. Cisco yielded 8.0, 11.6, 11, and 15.6 kg tree−1 under SDI33, SDI50, SDI75, and C100, respectively. These findings indicate that the cultivar Cisco exhibits greater tolerance to moderate and intermediate levels of water deficit. Furthermore, the SDI treatments notably influenced several morphological and physicochemical kernel parameters. The key affected attributes include the weight, size, color, profiles of specific sugars, and mineral content (notably potassium, iron, and zinc), as well as the composition of unsaturated fatty acids (palmitoleic and cis-vaccenic) and polyunsaturated fatty acids (linoleic and α-linolenic), with pronounced effects observed particularly under the SDI75 treatment. Thus, deficit irrigation did not drastically affect the kernel quality parameters, and it is also possible to augment them by selecting the appropriate water stress level. Therefore, for both walnut cultivars, approximately 25% of the irrigation water (SDI75), equivalent to an average of 1681 m3 ha−1, can be conserved relative to the total crop water requirement without negatively impacting walnut tree performance in the short to medium term. Here, we show the key role of adjusting irrigation practices by stressing the benefits of SDI that can save water, foster water productivity, and boost walnut health-promoting phytochemicals.

## Linked entities

- **Chemicals:** potassium (PubChem CID 813), iron (PubChem CID 23925), zinc (PubChem CID 23994), linoleic (PubChem CID 5280450), α-linolenic (PubChem CID 860)

## Full-text entities

- **Diseases:** water deficit (MESH:D000069578)
- **Chemicals:** potassium (MESH:D011188), polyunsaturated fatty acids (MESH:D005231), Cisco (-), sugars (MESH:D000073893), iron (MESH:D007501), zinc (MESH:D015032)
- **Species:** Coregonus artedi (cisco, species) [taxon 36181], Juglans regia (English walnut, species) [taxon 51240]

## Full text

_Full body text omitted from this summary view._ Fetch the complete paper as Markdown: https://tomesphere.com/paper/PMC12197118/full.md

## Figures

3 figures with captions in the complete paper: https://tomesphere.com/paper/PMC12197118/full.md

## References

132 references — full list in the complete paper: https://tomesphere.com/paper/PMC12197118/full.md

---
Source: https://tomesphere.com/paper/PMC12197118