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Sulfite Oxidase Activity Level Determines the Sulfite Toxicity Effect in Leaves and Fruits of Tomato Plants

机译:亚硫酸盐氧化酶活性水平决定了番茄植物叶片和果实中的亚硫酸盐毒性作用

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摘要

Increasing plant tolerance to sulfites/SO2 can lead to the development of tolerant crops to biotic and abiotic stresses. Plant sulfite oxidase (SO) is a molybdo-enzyme that oxidizes excess SO2/sulfite into non-toxic sulfate. The effect of toxic sulfite on leaves and fruits was studied in tomato plants with different SO expression: wild-type, SO overexpression (OE) and SO RNA interference (Ri). Sulfite-dipped ripe-fruits and sulfite treated leaf discs of Ri plants impaired in SO activity were more susceptible, whereas OE plants were more resistant, as revealed by remaining chlorophyll and tissue damage levels. Application of molybdenum further enhanced the tolerance of leaf discs to sulfite by enhancing SO activity in OE lines, but not in wild-type or Ri plants. Notably, incubation with tungsten, the molybdenum antagonist, overturned the effect of molybdenum spray in OE plants, revealed by remaining chlorophyll content and SO activity. The results indicate that SO in tomato leaves and ripe fruits determines the resistance to sulfite and the application of molybdenum enhances sulfite resistance in OE plants by increasing SO activity. Overall, the results suggest that SO overexpression can be employed, with or without molybdenum application, for developing fruit and vegetable crops tolerant to sulfite/SO2 containing pre- and postharvest treatments.
机译:将植物耐受性增加对亚硫酸盐/ SO2可以导致耐受性作物与生物和非生物胁迫的发展。植物亚硫酸盐氧化酶(SO)是一种钼酶,其将过量的SO2 /亚硫酸盐氧化成无毒的硫酸盐。在番茄植物中研究了毒性亚硫酸盐对叶片和果实的影响,具有不同的表达:野生型,所以过表达(OE)等RNA干扰(RI)。浸出的RI植物的硫酸盐成熟 - 果实和亚硫酸盐处理的叶片在所以活性损害,而OE植物更耐受,如剩余叶绿素和组织损伤水平所揭示的。钼的应用进一步增强了叶片对亚硫酸盐的耐受性通过在OE线中的活性,但不在野生型或RI植物中。值得注意的是,与钨,钼拮抗剂一起孵育,通过剩余的叶绿素含量和活性延伸了OE植物中钼喷雾的影响。结果表明,在番茄叶和成熟水果中确定对亚硫酸盐的耐药性,钼的应用通过增加所以活性来增强OE植物中的亚硫酸盐抗性。总的来说,结果表明,如此过表达可以使用或不具有钼应用,用于耐受含有前后处理的亚硫酸盐/ SO 2的果实和蔬菜作物。

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