Cd-tolerance markers of Pfaffia glomerata (Spreng.) Pedersen plants: anatomical and physiological features

M. P. Gomes, T. Marques, G. Martins, M. M. L. C. Carneiro, Â. Soares
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引用次数: 16

Abstract

Physiological and anatomical features of Cd-tolerance in Pfaffia glomerata were examined by exposing plantlets to nutrient solutions with increasing Cd concentrations (0, 15, 45, and 90 µmol Cd L-1), and possible Cd-tolerance markers were established. Cd contents were found to be higher in roots than in shoots. According to the bio-concentration factor data, this species is effectively a Cd-hyperaccumulator, as previously attested. Cd induced the appearance of xeromorphic characteristics in leaves (decreased water potential, increased numbers and decreased stomata size) and increased root endodermis thickness. The enzymatic antioxidant systems of roots and leaves were differently affected by Cd. The coordinated activities of antioxidant enzymes were effective in reducing Cd-induced reactive oxygen species in plants, mainly in leaves. Root endodermis thickness, stomatal size and numbers, root superoxide dismutase, and guaiacol peroxidase, as well as leaf guaiacol peroxidase and catalase activities can all be considered Cd-tolerance markers in Pfaffia glomerata. Due to its high root Cd accumulation, Pfaffia glomerata may be useful in Cd-phytoextraction programs, however the pharmacological use of plants grown in the presence of Cd must be avoided.
春茯苓cd耐受性标志物的研究柏生植物:解剖和生理特征
通过将雏菊暴露于Cd浓度分别为0、15、45和90µmol Cd- 1的营养液中,研究了雏菊耐Cd的生理和解剖学特征,并建立了可能的Cd耐受性标记。根中Cd含量高于茎中Cd含量。根据生物浓度因子数据,该物种实际上是一个cd超蓄积体,正如之前所证明的那样。Cd诱导叶片出现旱胚特征(水势降低、气孔数量增加、气孔大小减小),增加根内胚层厚度。Cd对植物根系和叶片的酶促抗氧化系统有不同的影响。抗氧化酶的协同活性对Cd诱导的活性氧有效,主要是在叶片中。根内胚层厚度、气孔大小和数量、根超氧化物歧化酶和愈创木酚过氧化物酶,以及叶片愈创木酚过氧化物酶和过氧化氢酶活性都可以被认为是番麻耐cd的标志。由于其高的根Cd积累,番麻可能在Cd-植物提取计划中有用,但是在Cd存在下生长的植物的药理用途必须避免。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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