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亚硫酸盐氧化酶活性水平影响……中的硫和碳代谢。

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

作者信息

Oshanova Dinara, Kurmanbayeva Assylay, Bekturova Aizat, Soltabayeva Aigerim, Nurbekova Zhadyrassyn, Standing Dominic, Dubey Arvind Kumar, Sagi Moshe

机构信息

The Albert Katz International School for Desert Studies, The Jacob Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, Beersheba, Israel.

The Albert Katz Department of Dryland Biotechnologies, French Associates Institute for Agriculture and Biotechnology of Dryland, The Jacob Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, Beersheba, Israel.

出版信息

Front Plant Sci. 2021 Jun 24;12:690830. doi: 10.3389/fpls.2021.690830. eCollection 2021.

Abstract

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 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 plants.

摘要

含钼辅因子的亚硫酸盐氧化酶(SO)是保护植物免受外源有毒亚硫酸盐侵害的重要参与者。研究还表明,在暴露于长时间黑暗胁迫的番茄植株中,SO活性对于应对黑暗诱导的内源性亚硫酸盐水平升高以及维持最佳的碳和硫代谢至关重要。SO和亚硫酸盐还原酶对直接暴露于低水平和高水平硫酸盐及碳的反应鲜有报道。通过使用野生型、亚硫酸盐还原酶和SO调节型植株,并为其提供过量或有限的碳或硫供应,本研究证明了SO在碳和硫代谢中的重要作用。与野生型相比,施加低水平和过量的蔗糖或硫酸盐会导致生物量积累速率降低,随后SO功能受损突变体中的亚硫酸盐积累增加。SO功能受损导致亚硫酸盐进入硫酸盐还原途径,从而导致有机硫积累过量。此外,亚硫酸盐增加之后会引发氧化应激,这也导致了SO调节型植株中生物量积累降低。这些结果表明,SO的作用不仅限于防止亚硫酸盐毒性升高,还在于维持植物中最佳的碳和硫代谢。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/714c/8264797/cfb2e964d092/fpls-12-690830-g0001.jpg

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