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首页> 外文期刊>Ecotoxicology and Environmental Safety >Cadmium spiked soil modulates root organic acids exudation and ionic contents of two differentially Cd tolerant maize (Zea mays L.) cultivars
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Cadmium spiked soil modulates root organic acids exudation and ionic contents of two differentially Cd tolerant maize (Zea mays L.) cultivars

机译:掺镉的土壤可调节两种耐镉差异性玉米(Zea mays L.)品种的根系有机酸分泌和离子含量

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Our earlier work described that the roots of two maize cultivars, grown hydroponically, differentially responded to cadmium (Cd) stress by initiating changes in medium pH depending on their Cd tolerance. The current study investigated the root exudation, elemental contents and antioxidant behavior of the same maize cultivars (cv. 3062 (Cd-tolerant) and cv. 31P41 (Cd-sensitive)] under Cd stress. Plants were maintained in a rhizobox-like system carrying soil spiked with Cd concentrations of 0, 10, 20, 30, 40 and 50 mu mol/kg soil. The root and shoot Cd contents increased, while Mg, Ca and Fe contents mainly decreased at higher Cd levels, and preferentially in the sensitive cultivar. Interestingly, the K contents increased in roots of cv. 3062 at low Cd treatments. The Cd stress caused acidosis of the maize root exudates predominantly in cv. 3062. The concentration of various organic acids was significantly increased in the root exudates of cv. 3062 with applied Cd levels. This effect was diminished in cv. 31P41 at higher Cd levels. Cd exposure increased the relative membrane permeability, anthocyanin (only in cv. 3062), proline contents and the activities of peroxidases (POD) and superoxide dismutase (SOD). The only exception was the catalase activity, which was diminished in both cultivars. Root Cd contents were positively correlated with the secretion of acetic acid, oxalic acid, glutamic acid, citric acid, and succinic acid. The antioxidants like POD and SOD exhibited a positive correlation with the organic acids under Cd stress. It is likly that a high exudation of dicarboxylic organic acids improves nutrient uptake and activities of antioxidants, which enables the tolerant cultivar to acclimatize in Cd polluted environment.
机译:我们之前的工作描述了两个水培玉米品种的根部,根据其对Cd的耐受性,通过启动中等pH值的变化来不同地响应镉(Cd)胁迫。目前的研究调查了相同玉米品种(耐Cv。3062和耐Cd.31P41)(Cd敏感)的根系分泌,元素含量和抗氧化行为,并将植物保持在根茎状系统中Cd浓度分别为0、10、20、30、40和50μmol/ kg的土壤中,根和芽中Cd含量增加,而Mg,Ca和Fe含量主要在Cd较高时降低,而在Cd较高时优先。有趣的是,在低镉处理下,cv.3062根系中的钾含量增加; Cd胁迫导致玉米根系分泌物酸中毒,主要在30v.cv.Cd胁迫下,玉米根系分泌物中的各种有机酸浓度显着增加。 cv。3062施加了Cd浓度; Cd。31P41较高的Cd浓度使这种作用减弱; Cd暴露增加了相对膜通透性,花色苷(仅在cv。3062中),脯氨酸含量以及过氧化物酶(POD)和超氧化物的活性ide歧化酶(SOD)。唯一的例外是过氧化氢酶活性,这在两个品种中均降低。根中Cd含量与乙酸,草酸,谷氨酸,柠檬酸和琥珀酸的分泌呈正相关。在镉胁迫下,POD,SOD等抗氧化剂与有机酸呈正相关。幸运的是,二羧酸有机酸的高渗出可以提高养分吸收和抗氧化剂的活性,从而使耐性品种能够在Cd污染的环境中适应环境。

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