Strategies of Molecular Signal Integration for Optimized Plant Acclimation to Stress Combinations
Kumar V, Wegener M, Knieper M, Kaya A, Viehhauser A, Dietz K-J (2024)
Methods in Molecular Biology 2832: 3-29.
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Abstract / Bemerkung
Plant growth and survival in their natural environment require versatile mitigation of diverse threats. The task is especially challenging due to the largely unpredictable interaction of countless abiotic and biotic factors. To resist an unfavorable environment, plants have evolved diverse sensing, signaling, and adaptive molecular mechanisms. Recent stress studies have identified molecular elements like secondary messengers (ROS, Ca2+, etc.), hormones (ABA, JA, etc.), and signaling proteins (SnRK, MAPK, etc.). However, major gaps remain in understanding the interaction between these pathways, and in particular under conditions of stress combinations. Here, we highlight the challenge of defining "stress" in such complex natural scenarios. Therefore, defining stress hallmarks for different combinations is crucial. We discuss three examples of robust and dynamic plant acclimation systems, outlining specific plant responses to complex stress overlaps. (a) The high plasticity of root system architecture is a decisive feature in sustainable crop development in times of global climate change. (b) Similarly, broad sensory abilities and apparent control of cellular metabolism under adverse conditions through retrograde signaling make chloroplasts an ideal hub. Functional specificity of the chloroplast-associated molecular patterns (ChAMPs) under combined stresses needs further focus. (c) The molecular integration of several hormonal signaling pathways, which bring together all cellular information to initiate the adaptive changes, needs resolving. © 2024. The Author(s), under exclusive license to Springer Science+Business Media, LLC, part of Springer Nature.
Erscheinungsjahr
2024
Zeitschriftentitel
Methods in Molecular Biology
Band
2832
Seite(n)
3-29
eISSN
1940-6029
Page URI
https://pub.uni-bielefeld.de/record/2990916
Zitieren
Kumar V, Wegener M, Knieper M, Kaya A, Viehhauser A, Dietz K-J. Strategies of Molecular Signal Integration for Optimized Plant Acclimation to Stress Combinations. Methods in Molecular Biology . 2024;2832:3-29.
Kumar, V., Wegener, M., Knieper, M., Kaya, A., Viehhauser, A., & Dietz, K. - J. (2024). Strategies of Molecular Signal Integration for Optimized Plant Acclimation to Stress Combinations. Methods in Molecular Biology , 2832, 3-29. https://doi.org/10.1007/978-1-0716-3973-3_1
Kumar, Vijay, Wegener, Melanie, Knieper, Madita, Kaya, Armagan, Viehhauser, Andrea, and Dietz, Karl-Josef. 2024. “Strategies of Molecular Signal Integration for Optimized Plant Acclimation to Stress Combinations”. Methods in Molecular Biology 2832: 3-29.
Kumar, V., Wegener, M., Knieper, M., Kaya, A., Viehhauser, A., and Dietz, K. - J. (2024). Strategies of Molecular Signal Integration for Optimized Plant Acclimation to Stress Combinations. Methods in Molecular Biology 2832, 3-29.
Kumar, V., et al., 2024. Strategies of Molecular Signal Integration for Optimized Plant Acclimation to Stress Combinations. Methods in Molecular Biology , 2832, p 3-29.
V. Kumar, et al., “Strategies of Molecular Signal Integration for Optimized Plant Acclimation to Stress Combinations”, Methods in Molecular Biology , vol. 2832, 2024, pp. 3-29.
Kumar, V., Wegener, M., Knieper, M., Kaya, A., Viehhauser, A., Dietz, K.-J.: Strategies of Molecular Signal Integration for Optimized Plant Acclimation to Stress Combinations. Methods in Molecular Biology . 2832, 3-29 (2024).
Kumar, Vijay, Wegener, Melanie, Knieper, Madita, Kaya, Armagan, Viehhauser, Andrea, and Dietz, Karl-Josef. “Strategies of Molecular Signal Integration for Optimized Plant Acclimation to Stress Combinations”. Methods in Molecular Biology 2832 (2024): 3-29.
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