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Lengthening single-stem rotation improves biomass yield and water use efficiency in black poplar genotype multi-stem rotation coppice plantations

Saulino Luigi, Allevato Emilia, Rossi Sergio, Minotta Gianfranco, Fiorentino Nunzio et Saracino Antonio. (2021). Lengthening single-stem rotation improves biomass yield and water use efficiency in black poplar genotype multi-stem rotation coppice plantations. Biomass and Bioenergy, 154, e106256.

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URL officielle: http://dx.doi.org/doi:10.1016/j.biombioe.2021.1062...

Résumé

Poplar short rotation coppice (SRC) plantations have great potential for supplying environmentally friendly bio-based industries. However, little research has focussed on the linkages between SRC management regimes and the consumption of water for biomass production in the Mediterranean environment. Therefore, we compared six hybrid clones and four native black poplar genotypes with an aim to examine how two different lengthening periods (3 vs. 5 years) of single-stem rotation affected growth performance in the following three years of multi-stem rotation coppice. To achieve this goal, we assessed the aboveground dry biomass production and variation in water use efficiency (WUE) of the genotypes annually. A longer single-stem rotation increased biomass productivity and WUE in the multi-stem rotation of the native black poplar, rather than that of the hybrid genotypes. In contrast, biomass and WUE performances did not diverge between the native and hybrid genotypes under the shorter single-stem phase. These findings underline the importance of lengthening the rotation of single-stem SRC plantations in hot and dry Mediterranean climates. Native black poplar genotypes managed in SRC should be strongly considered as environmentally compatible genetic resources both in protected areas and in areas where water supply constrains biomass production.

Type de document:Article publié dans une revue avec comité d'évaluation
ISSN:09619534
Volume:154
Pages:e106256
Version évaluée par les pairs:Oui
Date:Novembre 2021
Identifiant unique:10.1016/j.biombioe.2021.106256
Sujets:Sciences naturelles et génie > Sciences appliquées > Foresterie et sciences du bois
Sciences naturelles et génie > Sciences naturelles > Biologie et autres sciences connexes
Département, module, service et unité de recherche:Unités de recherche > Centre de recherche sur la Boréalie (CREB)
Départements et modules > Département des sciences fondamentales
Mots-clés:Populus nigra, hybrid poplar clones, bioenergy crops, canopy transpiration, maximum leaf conductance
Déposé le:01 juin 2023 15:15
Dernière modification:01 juin 2023 15:15
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