4.7 Article

Effect of Irrigation Methods on Black Truffle Production

Journal

AGRONOMY-BASEL
Volume 13, Issue 10, Pages -

Publisher

MDPI
DOI: 10.3390/agronomy13102505

Keywords

truffle farming; truffle cultivation; micro-sprinkler irrigation; drip irrigation system; irrigation system improvement

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This study compares the efficiency of two different irrigation systems in a truffle plantation in Spain, and finds that there are no differences in terms of truffle yields, quality, and harvesting dates. However, considering economic and environmental factors, drip irrigation is deemed superior due to its higher water use efficiency.
Spain is one of the main producers of black truffle (Tuber melanosporum Vittad.), a fungus of great economic importance. Black truffles are usually cultivated in Quercus ilex orchards, as water availability is one of the most important factors influencing truffle production. Optimizing watering systems is essential to reduce the amount of water wasted. Nevertheless, up to now, no study has been carried out comparing the efficiency of different irrigation systems in truffle plantations. The aim of this study was to compare the efficiency of two different irrigation systems, namely a drip irrigation system and a micro-sprinkler system, in a Quercus ilex plantation situated in Burgos, Spain. Our data showed that there were no differences between the two irrigation systems in terms of truffle yields, the number of truffles, quality (based on truffle size), or the date of truffle harvesting. However, when other parameters were taken into consideration, such as the economic and environmental impact of installing and running these systems, drip irrigation was deemed the superior irrigation system because it uses less water. This study validates for the first time the use of drip irrigation rather than a micro-sprinkler system (the most commonly used in truffle plantations) because of its greater water use efficiency, which is an increasingly important consideration given future climate change scenarios marked by global water scarcity.

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