Carbohydrate content governs growth‐storage allocation during recovery from carbon depletion

Summary How plants prioritize carbon (C) allocation between growth and storage remains an outstanding question, limiting predictions of forest C cycling and ecosystem resilience following periods of C limitation. To address this gap, we experimentally depleted carbohydrate reserves via low‐CO 2 conditions and quantified C allocation to reserves and growth during recovery at ambient CO 2 in Fagus sylvatica juveniles. Trees with lower carbohydrate reserves following C depletion prioritized C allocation to storage, whereas trees replete with carbohydrates favored growth, demonstrating that internal carbohydrate status governs allocation priorities during recovery from periods of C limitation. Our findings show that storage‐growth allocation during recovery from C limitation is driven by internal carbohydrate status, identifying plant carbohydrate concentration as a key variable for parameterizing the substrate‐dependent sink strength that current process‐based vegetation models largely omit.

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Publication Details

Journal
New Phytologist
Published
2026-09-29
DOI
https://doi.org/10.1111/nph.71630
Primary Topic
Plant Water Relations and Carbon Dynamics
Type
article
Field-Weighted Citation Impact
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article

Carbohydrate content governs growth‐storage allocation during recovery from carbon depletion

Nadine Katrin Ruehr, Franklin Alongi, Meghan Blumstein, Danielle E. M. Ulrich
New Phytologist
Plant Water Relations and Carbon Dynamics
article

Carbohydrate content governs growth‐storage allocation during recovery from carbon depletion

Nadine Katrin Ruehr, Franklin Alongi, Meghan Blumstein, Danielle E. M. Ulrich
article en

Abstract

Summary How plants prioritize carbon (C) allocation between growth and storage remains an outstanding question, limiting predictions of forest C cycling and ecosystem resilience following periods of C limitation. To address this gap, we experimentally depleted carbohydrate reserves via low‐CO 2 conditions and quantified C allocation to reserves and growth during recovery at ambient CO 2 in Fagus sylvatica juveniles. Trees with lower carbohydrate reserves following C depletion prioritized C allocation to storage, whereas trees replete with carbohydrates favored growth, demonstrating that internal carbohydrate status governs allocation priorities during recovery from periods of C limitation. Our findings show that storage‐growth allocation during recovery from C limitation is driven by internal carbohydrate status, identifying plant carbohydrate concentration as a key variable for parameterizing the substrate‐dependent sink strength that current process‐based vegetation models largely omit.

New Phytologist
Karlsruhe Institute of Technology (DE), Montana State University (US), Wake Forest University (US), University of Virginia (US)
Openalex Percentile: Top 15%
Plant Water Relations and Carbon Dynamics
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