Early Events in Plant Abiotic Stress Signaling: Interplay Between Calcium, Reactive Oxygen Species and Phytohormones

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Abstract

Upon exposure to abiotic stresses, plants activate early stress-signaling mechanisms within a few seconds to a few hours to counter the stress responses and bring tolerance. The most versatile signaling molecules involved during the early events of abiotic stress signaling are Ca 2+ (calcium ion) and reactive oxygen species (ROS), 1 O 2 , O 2− , and H 2 O 2 . Initially, apoplastic Ca 2+ activates plasma membrane-bound NADPH oxidase and generates H 2 O 2 , which acts as a second messenger and further leads to the activation of downstream signaling processes. Subsequently, H 2 O 2 activates calcium-dependent protein kinase (CDPK) and mitogen activated protein kinase (MAPK) pathways, leading to stress tolerance through downstream signaling cascades. In addition, fast influx of Ca 2+ from the apoplast to the cytosol further activates cytosolic CDPKs and respiratory burst oxidase D and regulates Ca 2+ and ROS signaling. Sub-cellular organelles further produce ROS and Ca 2+ to bring stress tolerance. Excessive ROS produced during these processes are quenched by ROS scavenging enzymes, whereas excessive Ca 2+ is neutralized by the action of the calcium binding proteins CDPKs, CaMs, CMLs, and CBLs. The phytohormone ABA further regulates the production of H 2 O 2 , thus maintaining the positive feedback system for ROS production and stress tolerance. Additionally, CBL proteins modulate H 2 O 2 production in the presence of NADPH oxidase via interaction with CIPK, thus maintaining a positive feedback mechanism in stress tolerance. Similarly, CaM proteins bind with MAPK and regulate stress tolerance by activating the MAPK cascade.

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Mohanta, T. K., Bashir, T., Hashem, A., Abd Allah, E. F., Khan, A. L., & Al-Harrasi, A. S. (2018, December 1). Early Events in Plant Abiotic Stress Signaling: Interplay Between Calcium, Reactive Oxygen Species and Phytohormones. Journal of Plant Growth Regulation. Springer New York LLC. https://doi.org/10.1007/s00344-018-9833-8

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