Affiliation:
1. Agricultural Institute Osijek, Južno Predgrađe 17, 31000 Osijek, Croatia
2. Center of Excellence for Biodiversity and Molecular Plant Breeding, Faculty of Agriculture, University of Zagreb, Svetošimunska Cesta 25, 10000 Zagreb, Croatia
Abstract
This study aimed to investigate the impact of cold stress and priming on photosynthesis in the early development of maize and soybean, crops with diverse photosynthetic pathways. The main objectives were to determine the effect of cold stress on chlorophyll a fluorescence parameters and spectral reflectance indices, to determine the effect of cold stress priming and possible stress memory and to determine the relationship between different parameters used in determining the stress response. Fourteen maize inbred lines and twelve soybean cultivars were subjected to control, cold stress, and priming followed by cold stress in a walk-in growth chamber. Measurements were conducted using a portable fluorometer and a handheld reflectance instrument. Cold stress induced an overall downregulation of PSII-related specific energy fluxes and efficiencies, the inactivation of RCs resulting in higher energy dissipation, and electron transport chain impairment in both crops. Spectral reflectance indices suggested cold stress resulted in pigment differences between crops. The effect of priming was more pronounced in maize than in soybean with mostly a cumulatively negative effect. However, priming stabilized the electron trapping efficiency and upregulated the electron transfer system in maize, indicating an adaptive response. Overall, this comprehensive analysis provides insights into the complex physiological responses of maize and soybean to cold stress, emphasizing the need for further genotype-specific cold stress response and priming effect research.
Reference98 articles.
1. Genome-wide association study identified multiple genetic loci on chilling resistance during germination in maize;Hu;Sci. Rep.,2017
2. Cold stress tolerance mechanisms in plants. A review;Yadav;Agron. Sustain. Dev.,2010
3. Ahmad, P., Ahanger, M.A., Alyemeni, M.N., and Alam, P. (2019). Photosynthesis, Productivity, and Environmental Stress, John Wiley & Sons Ltd.
4. Role of phytohormones in regulating cold stress tolerance: Physiological and molecular approaches for developing cold-smart crop plants;Raza;Plant Stress,2023
5. Stress priming, memory, and signalling in plants;Hilker;Plant Cell Environ.,2019
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