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Evaluating physiological responses of plants to salinity stress

Annals of Botany · 2016 · Vol. 119(1) · pp. 1–11
Sónia NegrãoSandra M. SchmöckelMark Tester

Abstract

We discuss how to quantify the impact of salinity on different traits, such as relative growth rate, water relations, transpiration, transpiration use efficiency, ionic relations, photosynthesis, senescence, yield and yield components. We also suggest some guidelines to assist with the selection of appropriate experimental systems, imposition of salinity stress, and obtaining and analysing relevant physiological data using appropriate indices. We illustrate how these indices can be used to identify relationships amongst the proposed traits to identify which traits are the most important contributors to salinity tolerance. Salinity tolerance is complex and involves many genes, but progress has been made in studying the mechanisms underlying a plant's response to salinity. Nevertheless, several previous studies on salinity tolerance could have benefited from improved experimental design. We hope that this paper will provide pertinent information to researchers on performing proficient assays and interpreting results from salinity tolerance experiments.

Plant Stress Responses and TolerancePlant nutrient uptake and metabolismPlant Physiology and Cultivation StudiesSalinityBiologyTranspirationAbiotic componentSoil salinityAbiotic stressPhotosynthesisEcologyAgronomyBotany

MeSH terms

BotanyPhotosynthesisStress, PhysiologicalWaterPlant Physiological PhenomenaPlant TranspirationSalt ToleranceSalt-Tolerant PlantsPlant Development

Funding

  • King Abdullah University of Science and Technology
Citations
1,148
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