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光合作用潜力受损的生化和分子基础。

Biochemical and molecular basis for impairment of photosynthetic potential.

机构信息

Department of Plant Pathology, the Pennsylvania State University, 16802, University Park, PA, USA.

出版信息

Photosynth Res. 1994 Mar;39(3):453-62. doi: 10.1007/BF00014598.

Abstract

Ozone induces reductions in net photosynthesis in a large number of plant species. A primary mechanism by which photosynthesis is reduced is through impact on carbon dioxide fixation. Ozone induces loss in Rubisco activity associated with loss in concentration of the protein. Evidence is presented that ozone may induce oxidative modification of Rubisco leading to subsequent proteolysis. In addition, plants exposed to ozone sustain reduction in rbcS, the mRNA for the small subunit of Rubisco. This loss in rbcS mRNA may lead to a reduced potential for synthesis of the protein. The regulation of O3-induced loss of Rubisco, and implications of the decline in this protein in relation to accelerated senescence are discussed.

摘要

臭氧会导致大量植物物种的净光合作用减少。光合作用减少的一个主要机制是通过影响二氧化碳固定。臭氧会导致与蛋白浓度降低相关的 Rubisco 活性丧失。有证据表明,臭氧可能会诱导 Rubisco 的氧化修饰,从而导致随后的蛋白水解。此外,暴露在臭氧中的植物会持续减少 rbcS,即 Rubisco 小亚基的 mRNA。这种 rbcS mRNA 的减少可能会导致蛋白合成能力降低。本文讨论了臭氧诱导的 Rubisco 丧失的调控机制,以及这种蛋白的减少与加速衰老的关系。

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