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Bioremediation of adverse impact of cadmium toxicity on Cassia italica Mill by arbuscular mycorrhizal fungi

机译:丛枝菌根真菌生物修复镉毒性对意大利决明子的不良影响

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摘要

Cassia italica Mill is an important medicinal plant within the family Fabaceae. Pot experiment was conducted to evaluate cadmium stress induced changes in physiological and biochemical attributes in C. italica with and without arbuscular mycorrhizal fungi (AMF). Cadmium stressed plant showed reduced chlorophyll pigment and protein content while AMF inoculation enhanced the chlorophyll and protein content considerably. AMF also ameliorated the cadmium stress induced reduction in total chlorophyll and protein contents by 19.30% and 38.29%, respectively. Cadmium stress enhanced lipid peroxidation while AMF inoculation reduced lipid peroxidation considerably. Increase in proline and phenol content was observed due to cadmium stress and AMF inoculation caused a further increase in proline and phenol content ensuring better growth under stressed conditions. AMF alone also enhanced proline and phenol content. Activity of antioxidant enzymes enhanced under cadmium treatment and AMF inoculation further enhanced their activity thereby strengthening the antioxidant system. Enhanced activities of antioxidants and increased accumulation of osmolytes help plants to avoid damaging impact of oxidative damage. The research has shown that AMF inoculation mitigated the negative impact of stress by reducing the lipid peroxidation and enhancing the antioxidant activity. The present study strongly supports employing AMF as the biological mean for enhancing the cadmium stress tolerance of C. italica.
机译:决明子决明子是豆科中的重要药用植物。进行盆栽试验以评估镉胁迫诱导的有和没有丛枝菌根真菌(AMF)的意大利轮虫的生理和生化特性的变化。镉胁迫的植物显示出减少的叶绿素色素和蛋白质含量,而接种AMF则显着提高了叶绿素和蛋白质含量。 AMF还改善了镉胁迫导致的总叶绿素和蛋白质含量分别降低了19.30%和38.29%。镉胁迫可增强脂质过氧化作用,而AMF接种可大大降低脂质过氧化作用。观察到由于镉胁迫,脯氨酸和苯酚含量增加,AMF接种导致脯氨酸和苯酚含量进一步增加,从而确保了在胁迫条件下的更好生长。单独使用AMF也可以提高脯氨酸和苯酚的含量。镉处理下抗氧化酶的活性增强,接种AMF进一步增强了其活性,从而增强了抗氧化系统。抗氧化剂的活性增强和渗透压物质的积累增加,有助于植物避免氧化损伤的破坏性影响。研究表明,接种AMF可减少脂质过氧化作用并增强抗氧化活性,从而减轻了压力的负面影响。本研究强烈支持采用AMF作为增强意大利弯孢对镉胁迫耐受性的生物学手段。

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