AI Article Synopsis

  • The study focuses on the role of the PAP90 regulatory protein in the Photosystem II (PSII) complex of rice, aiming to improve photosynthesis efficiency.
  • The researchers created a mutant rice strain lacking PAP90, which revealed that without this protein, photosynthesis declined due to instability of the D1 protein and reduced PSII functionality.
  • The findings suggest that PAP90 is vital for D1 protein stability, which is crucial for PSII assembly and overall plant stress tolerance, particularly under water-limited conditions.

Article Abstract

Introduction: Photosystem II (PSII) protein complex plays an essential role in the entire photosynthesis process. Various known and unknown protein factors are involved in the dynamics of the PSII complex that need to be characterized in crop plants for enhancing photosynthesis efficiency and productivity.

Objectives: The experiments were conducted to decipher the regulatory proteins involved in PSII dynamics of rice crop.

Methods: A novel rice regulatory protein PAP90 (PSII auxiliary protein ~90 kDa) was characterized by generating a loss-of-function mutant . The mutation was characterized at molecular level followed by various experiments to analyze the morphological, physiological and biochemical processes of mutant under control and abiotic stresses.

Results: The mutant showed reduced photosynthesis due to D1 protein instability that subsequently causes inadequate accumulation of thylakoid membrane complexes, especially PSII and decreases PSII functional efficiency. Expression of family genes and proteins were induced in the mutant, which are known to play a key role in D1 protein degradation and turnover. The reduced D1 protein accumulation in the mutant increased the production of reactive oxygen species (ROS). The accumulation of ROS along with the increased activity of antioxidant enzymes and induced expression of stress-associated genes and proteins in mutant contributed to its water-limited stress tolerance ability.

Conclusion: We propose that PAP90 is a key auxiliary protein that interacts with D1 protein and maintains its stability, thereby promoting subsequent assembly of the PSII and associated membrane complexes.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8132209PMC
http://dx.doi.org/10.1016/j.jare.2020.11.008DOI Listing

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