Impact of intra-annual wood density fluctuation on tree hydraulic function: insights from a continuous monitoring approach

Author:

Niccoli Francesco12ORCID,Kabala Jerzy Piotr12ORCID,Pacheco-Solana Arturo123ORCID,Battipaglia Giovanna12ORCID

Affiliation:

1. Department of Environmental , Biological and Pharmaceutical Sciences and Technologies, , Via Vivaldi 43, Caserta 81100 , Italy

2. University of Campania ‘L. Vanvitelli’ , Biological and Pharmaceutical Sciences and Technologies, , Via Vivaldi 43, Caserta 81100 , Italy

3. Tree-Ring Laboratory, Lamont-Doherty Earth Observatory of Columbia University , 61 Route 9W, Palisades, NY 10964 , USA

Abstract

Abstract Climate change significantly impacts global forests, leading to tree decline and dieback. To cope with climate change, trees develop several functional traits, such as intra-annual density fluctuations (IADFs) in tree rings. The formation of these traits facilitates trees to optimize resource allocation, allowing them to withstand periods of stress and eventually recover when the conditions become favourable again. This study focuses on a Pinus pinaster Aiton forest in a warm, drought-prone Mediterranean area, comparing two growing seasons with different weather patterns. The innovative continuous monitoring approach used in this study combines high-resolution monitoring of sap flow (SF), analysis of xylogenesis and quantitative wood anatomy. Our results revealed the high plasticity of P. pinaster in water use and wood formation, shedding light on the link between IADFs and tree conductance. Indeed, the capacity to form large cells in autumn (as IADFs) improves the total xylem hydraulic conductivity of this species. For the first time, a continuous SF measurement system captured the dynamics of bimodal SF during the 2022 growing season in conjunction with the bimodal growth pattern observed through xylogenesis monitoring. These results highlight the intricate interplay between environmental conditions, water use, wood formation and tree physiology, providing valuable insights into the acclimation mechanisms employed by P. pinaster to cope with weather fluctuations.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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