4.7 Article

Level of Sulfite Oxidase Activity Affects Sulfur and Carbon Metabolism in Arabidopsis

Journal

FRONTIERS IN PLANT SCIENCE
Volume 12, Issue -, Pages -

Publisher

FRONTIERS MEDIA SA
DOI: 10.3389/fpls.2021.690830

Keywords

sulfite network; sulfite oxidase; sulfite reductase; carbon; sulfur metabolism

Categories

Funding

  1. Israel Science Foundation [212/13]
  2. Ministry of Agriculture and RuralDevelopment, Israel [16-38-0031]

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The study highlights the important role of sulfite oxidase (SO) in carbon and sulfur metabolism in plants, not only protecting against elevated sulfite toxicity but also maintaining optimal levels. Results showed that impairment of SO led to an overflow of organic S accumulation and oxidative stress, contributing to lower biomass accumulation rates in Arabidopsis plants.
Molybdenum cofactor containing sulfite oxidase (SO) enzyme is an important player in protecting plants against exogenous toxic sulfite. It was also demonstrated that SO activity is essential to cope with rising dark-induced endogenous sulfite levels and maintain optimal carbon and sulfur metabolism in tomato plants exposed to extended dark stress. The response of SO and sulfite reductase to direct exposure of low and high levels of sulfate and carbon was rarely shown. By employing Arabidopsis wild-type, sulfite reductase, and SO-modulated plants supplied with excess or limited carbon or sulfur supply, the current study demonstrates the important role of SO in carbon and sulfur metabolism. Application of low and excess sucrose, or sulfate levels, led to lower biomass accumulation rates, followed by enhanced sulfite accumulation in SO impaired mutant compared with wild-type. SO-impairment resulted in the channeling of sulfite to the sulfate reduction pathway, resulting in an overflow of organic S accumulation. In addition, sulfite enhancement was followed by oxidative stress contributing as well to the lower biomass accumulation in SO-modulated plants. These results indicate that the role of SO is not limited to protection against elevated sulfite toxicity but to maintaining optimal carbon and sulfur metabolism in Arabidopsis plants.

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