Use of near-infrared spectroscopy to estimate physical, anatomical and hydraulic properties ofEucalyptuswood

Author:

Barotto Antonio José1ORCID,Martínez-Meier Alejandro23,Segura Vincent4,Monteoliva Silvia5,Charpentier Jean-Paul6,Gyenge Javier37,Sergent Anne Sophie38,Millier Frédéric9,Rozenberg Philippe310,Fernández María Elena37

Affiliation:

1. Cátedra de Dendrología, Facultad de Ciencias Agrarias y Forestales, Universidad Nacional de La Plata , CC 31 (1900) La Plata , Argentina

2. INTA EEA Bariloche, Grupo de Ecología Forestal, UEDD IFAB INTA-CONICET - Laboratorio de Ecología, Ecofisiología y Madera (LEEMA) , Modesta Victoria 4450 (8400), Río Negro , Argentina

3. Laboratorio Internacional Asociado LIA-Forestia (INTA - INRAE - UNAH)

4. UMR AGAP Institut, Univ Montpellier, CIRAD, INRAE , Institut Agro, F-34398 Montpellier , France

5. INFIVE UNLP-CONICET , Diag. 113 esq. 61 (1900), La Plata , Argentina

6. UMR 0588 BioForA, INRAE, ONF, Orléans , France, 2163 Avenue de la Pomme de Pin, CS 40001 Ardon, 45075 Orléans Cedex 2 , France

7. Grupo Forestal, UEDD IPADS INTA-CONICET-Oficina Tandil , Rodríguez 370 (7000), Tandil , Argentina

8. Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Argentina UEDD IFAB INTA-CONICET - Laboratorio de Ecología, Ecofisiología y Madera (LEEMA), Modesta Victoria 4450 (8400) , RíoNegro , Argentina

9. UMR 0588 BioForA, INRAE, ONF, Orléans, France, 2163 Avenue de la Pomme de Pin , CS 40001 Ardon, 45075 Orléans Cedex 2 , France

10. UMR 0588 BioForA, INRAE, ONF, Orléans, France, 2163 Avenue de la Pomme de Pin, CS 40001 Ardon , 45075 Orléans Cedex 2 , France

Abstract

AbstractTree breeding programs and wood industries require simple, time- and cost-effective techniques to process large volumes of samples. In recent decades, near-infrared spectroscopy (NIRS) has been acknowledged as one of the most powerful techniques for wood analysis, making it the most used tool for high-throughput phenotyping. Previous studies have shown that a significant number of anatomical, physical, chemical and mechanical wood properties can be estimated through NIRS, both for angiosperm and gymnosperm species. However, the ability of this technique to predict functional traits related to drought resistance has been poorly explored, especially in angiosperm species. This is particularly relevant since determining xylem hydraulic properties by conventional techniques is complex and time-consuming, clearly limiting its use in studies and applications that demand large amounts of samples. In this study, we measured several wood anatomical and hydraulic traits and collected NIR spectra in branches of two Eucalyptus L'Hér species. We developed NIRS calibration models and discussed their ability to accurately predict the studied traits. The models generated allowed us to adequately calibrate the reference traits, with high R2 (≥0.75) for traits such as P12, P88, the slope of the vulnerability curves to xylem embolism or the fiber wall fraction, and with lower R2 (0.39–0.52) for P50, maximum hydraulic conductivity or frequency of ray parenchyma. We found that certain wavenumbers improve models’ calibration, with those in the range of 4000–5500 cm−1 predicting the highest number of both anatomical and functional traits. We concluded that the use of NIRS allows calibrating models with potential predictive value not only for wood structural and chemical variables but also for anatomical and functional traits related to drought resistance in wood types with complex structure as eucalypts. These results are promising in light of the required knowledge about species and genotypes adaptability to global climatic change.

Funder

TOPWOOD

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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