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Exogenous citrate and malate alleviate cadmium stress in Oryza sativa L.: Probing role of cadmium localization and iron nutrition

机译:外源柠檬酸和苹果酸缓解水稻的镉胁迫:探究镉定位和铁营养的作用

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摘要

Organic acids play an important role in metal uptake and trafficking in plants. Therefore, the role of exogenous citrate and malate on Cd tolerance was studied in the seedlings of Oryza sativa L. cv MTU 7029. Seedlings were exposed to Cd plus organic acids in hydroponics and monitored changes in Cd accumulation, expression of metal transporters, chlorophyll fluorescence, and antioxidants. It found that organic acid supplements decrease Cd accumulation in leaf because of up-regulation of tonoplast localized heavy metal ATPase (OsHMA3) which allows vacuolar sequestration of Cd in the root. Malic acid helped Cd exclusion in the root too. A shift in Cd speciation from sulphhydryl to the carboxylic group also noticed in the roots of plants exposed to organic acids. Treatment of organic acids was effective to prevent Cd inducible Fe deficiency via up-regulation of the iron regulated transporter (OsIRT1), increase in ferric chelate reductase activity, and formation of Cd stabilized Fe3+ - organic acid complex respectively. Also, exposure to organic acids increased the accumulation of antioxidants such as anthocyanin and glutathione (GSH) under Cd stress. Above changes assisted in upholding of photosynthetic electron transport and biomass productivity during the course of Cd treatment with organic acid supplements.
机译:有机酸在植物的金属吸收和运输中起重要作用。因此,研究了外源柠檬酸盐和苹果酸对稻米MTU 7029幼苗对Cd耐受性的作用。幼苗在水培法中暴露于Cd和有机酸中,并监测Cd积累,金属转运蛋白表达,叶绿素荧光的变化。和抗氧化剂。研究发现,有机酸补充剂减少了叶片中Cd的积累,这是由于液泡膜中重金属ATPase(OsHMA3)的上调所致,从而使液泡中的Cd固存在根中。苹果酸也有助于镉在根部的排斥。在暴露于有机酸的植物根部,也注意到了Cd形态从巯基到羧基的转变。通过上调铁调节转运蛋白(OsIRT1),增加铁螯合物还原酶活性以及形成Cd稳定的Fe3 +-有机酸复合物,有机酸的处理可有效预防Cd诱导的Fe缺乏。同样,暴露于有机酸会增加镉胁迫下抗氧化剂如花色苷和谷胱甘肽(GSH)的积累。上述变化有助于在用有机酸补充剂进行镉处理的过程中维持光合电子的运输和生物量的生产力。

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