首页> 外文期刊>Planta: An International Journal of Plant Biology >Contributions of apoplasmic cadmium accumulation, antioxidative enzymes and induction of phytochelatins in cadmium tolerance of the cadmium-accumulating cultivar of black oat (Avena strigosa Schreb.)
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Contributions of apoplasmic cadmium accumulation, antioxidative enzymes and induction of phytochelatins in cadmium tolerance of the cadmium-accumulating cultivar of black oat (Avena strigosa Schreb.)

机译:黑麦(Avena strigosa Schreb。)的镉积累品种中,无质子态镉积累,抗氧化酶和植物螯合素的诱导对镉耐受性的贡献。

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摘要

The contributions of cadmium (Cd) accumulation in cell walls, antioxidative enzymes and induction of phytochelatins (PCs) to Cd tolerance were investigated in two distinctive genotypes of black oat (Avena strigosa Schreb.). One cultivar of black oat 'New oat' accumulated Cd in the leaves at the highest concentration compared to another black oat cultivar 'Soil saver' and other major graminaceous crops. The shoot:root Cd ratio also demonstrated that 'New oat' was the high Cd-accumulating cultivar, whereas 'Soil saver' was the low Cd-accumulating cultivar. Varied levels of Cd exposure demonstrated the strong Cd tolerance of 'New oat'. By contrast, low Cd-accumulating cultivar 'Soil saver' suffered Cd toxicity such as growth defects and increased lipid peroxidation, even though it accumulated less Cd in shoots than 'New oat'. Higher activities of ascorbate peroxidase (EC 1.11.1.11) and superoxide dismutase (EC 1. 15. 1. 1) were observed in the leaves of 'New oat' than in 'Soil saver'. No advantage of 'New oat' in PCs induction was observed in comparison to Cd-sensitive cultivar 'Soil saver', although Cd exposure increased the concentration of total PCs in both cultivars. Higher and increased Cd accumulation in cell wall fraction was observed in shoots of 'New oat'. On the other hand, in 'Soil saver', apoplasmic Cd accumulation showed saturation under higher Cd exposure. Overall, the present results suggest that cell wall Cd accumulation and antioxidative activities function in the tolerance against Cd stress possibly in combination with vacuolar Cd compartmentation.
机译:在两种独特的黑燕麦基因型(Avena strigosa Schreb。)中研究了镉(Cd)在细胞壁中的积累,抗氧化酶和植物螯合素(PCs)诱导对Cd耐受性的贡献。与另一种黑燕麦品种“节油”和其他主要禾本科作物相比,一种黑燕麦品种“新燕麦”在叶片中的镉含量最高。地上部镉的比例也表明“新燕麦”是高镉积累的品种,而“节油”是低镉积累的品种。镉暴露水平的变化表明“新燕麦”具有很强的镉耐受性。相比之下,低镉积累品种“节油”遭受镉毒性,例如生长缺陷和脂质过氧化增加,尽管其在芽中的镉吸收量比“新燕麦”少。在“新燕麦”的叶片中观察到抗坏血酸过氧化物酶(EC 1.11.1.11)和超氧化物歧化酶(EC 1. 15. 1. 1)的活性高于“节水”。与镉敏感的品种“节油”相比,没有发现“新燕麦”在PCs诱导中的优势,尽管Cd暴露增加了两个品种中总PCs的浓度。在“新燕麦”的芽中观察到镉在细胞壁部分中的积累更高和增加。另一方面,在“节水”措施中,无镉的Cd积累在较高的Cd暴露下显示饱和。总体而言,目前的结果表明,细胞壁Cd的积累和抗氧化活性可能与液泡Cd分隔相结合,对Cd胁迫具有耐受性。

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