Effect of ethylene pretreatment on tomato plant responses to salt, drought, and waterlogging stress

Author:

Mohorović Petar1ORCID,Geldhof Batist1ORCID,Holsteens Kristof1ORCID,Rinia Marilien1ORCID,Ceusters Johan23ORCID,Van de Poel Bram13ORCID

Affiliation:

1. Division of Crop Biotechnics, Department of Biosystems KU Leuven Leuven Belgium

2. Research Group for sustainable plant production and protection, Division of Crop Biotechnics, Department of Biosystems KU Leuven Geel Belgium

3. Leuven Plant Institute (LPI) University of Leuven Leuven Belgium

Abstract

AbstractSalinity, drought, and waterlogging are common environmental stresses that negatively impact plant growth, development, and productivity. One of the responses to abiotic stresses is the production of the phytohormone ethylene, which induces different coping mechanisms that help plants resist or tolerate stress. In this study, we investigated if an ethylene pretreatment can aid plants in activating stress‐coping responses prior to the onset of salt, drought, and waterlogging stress. Therefore, we measured real‐time transpiration and CO2 assimilation rates and the impact on biomass during and after 3 days of abiotic stress. Our results showed that an ethylene pretreatment of 1 ppm for 4 h did not significantly influence the negative effects of waterlogging stress, while plants were more sensitive to salt stress as reflected by enhanced water losses due to a higher transpiration rate. However, when exposed to drought stress, an ethylene pretreatment resulted in reduced transpiration rates, reducing water loss during drought stress. Overall, our findings indicate that pretreating tomato plants with ethylene can potentially regulate their responses during the forthcoming stress period, but optimization of the ethylene pre‐treatment duration, timing, and dose is needed. Furthermore, it remains tested if the effect is related to the stress duration and severity and whether an ethylene pretreatment has a net positive or negative effect on plant vigor during stress recovery. Further investigations are needed to elucidate the mode of action of how ethylene priming impacts subsequent stress responses.

Funder

Fonds Wetenschappelijk Onderzoek

KU Leuven

Publisher

Wiley

Subject

Plant Science,Biochemistry, Genetics and Molecular Biology (miscellaneous),Ecology,Ecology, Evolution, Behavior and Systematics

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