Drought-induced mortality: stem diameter variation reveals a point of no return in lavender species
Lamacque, L.; Charrier, G.; dos Santos Farnese, F.; Lemaire, B.; Ameglio, T.; Herbette, S.
Show abstract
In the context of climate changes, water availability is expected to severely decline. Consequently, there is a need to predict mortality of woody species, especially to find a physiological threshold to drought-induced mortality. Lavender species (Lavandula angustifolia and Lavandula x intermedia) which are important crops of the Mediterranean region are affected by a decline, notably caused by successive intense drought events. Lavender response to extreme drought events was monitored using continuous stem diameter measurements. Water potential, stomatal conductance, loss of xylem hydraulic conductivity and electrolyte leakage were also measured during desiccation, and recovery was evaluated after rewatering. Two parameters computed from stem diameter variations were related to stress intensity and resilience to stress: PLD (Percentage Loss of Diameter) and stem PLRC (Percentage Loss of Rehydration Capacity of the stem), respectively. We showed that plants did not recover when the PLD reached its maximal value (PLDmax) which was 21.27 {+/-} 0.57% in both lavender species and whatever the growing conditions. This point of no return was associated with a high level of cell lysis evaluated by electrolyte leakage, and occurred far after the xylem hydraulic failure. We discussed the relevance of PLDmax as a threshold for drought-induced mortality and its physiological significance, in relation to the mortality mechanisms. One-sentence summaryUnder extreme drought, lavender death occurs when the water storage of the elastic compartment of the stem is exhausted.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Plasticity of the xylem vulnerability to embolism in poplar relies on quantitative pit properties rather than on pit structure 97%
- Beyond Proxies: Towards ecophysiological indicators of drought resistance for forest management 96%
- Adaptive plasticity in plant traits increases time to hydraulic failure under drought in a foundation tree 95%
Similar papers in this journal
- Modifying root/shoot ratios improves root water influxes in wheat under drought stress 96%
- Differential warming at crown scale impacts walnut primary growth onset and secondary growth rate 96%
- Viability markers for determination of desiccation tolerance and critical stages during dehydration in Selaginella species 96%
Similar papers in this journal
- The impact of water deficit and heat stress combination on the molecular response, physiology and seed production of soybean 95%
- Changes in SWEET-mediated sugar partitioning affect photosynthesis performance and plant response to drought 95%
- Nitrate fertilization may delay autumn leaf senescence, while amino acid treatments do not 94%
Similar papers in this journal
Similar papers in this journal
- Drought exerts a greater influence than growth temperature on the temperature response of leaf day respiration in wheat (Triticum aestivum) 95%
- Relative water content consistently predicts drought mortality risk in seedling populations with different morphology, physiology, and times to death 94%
- Leaf cell wall properties and stomatal density influence oxygen isotope enrichment of leaf water 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.