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首页> 外文期刊>Soil Biology & Biochemistry >Arbuscular mycorrhizal colonisation increases copper binding capacity of root cell walls of Oryza sativa L. and reduces copper uptake
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Arbuscular mycorrhizal colonisation increases copper binding capacity of root cell walls of Oryza sativa L. and reduces copper uptake

机译:丛枝菌根定植提高了水稻根系细胞壁的铜结合能力并减少了铜的吸收

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摘要

There is evidence that colonisation by mycorrhizal fungi can protect host plants from toxic concentrations of heavy metals. The mechanism by which protection is provided by the fungus for any particular metal is poorly understood. Rice (Oryza sativa L) plants were inoculated with Glomus mosseae and grown for 4 weeks to ensure strong colonisation. The plants were then exposed to low to toxic concentrations of copper (Cu) and the uptake and distribution were examined. The effect of mycorrhizal colonisation on the cell wall composition and Cu binding capacity of roots was also investigated. Mycorrhizal plants showed moderate reductions in Cu concentrations in roots but large reductions in shoots. In roots, mycorrhizal plants accumulated more Cu in cell walls but much less in the symplasm compared to non-mycorrhizal plants. The differences in cell wall binding of Cu could be partly explained by changes in the composition of the cell wall. The mechanistic basis for the reduced Cu accumulation and the potential beneficial consequences of mycorrhizal associations on plant growth in Cu toxic soil are discussed.
机译:有证据表明,菌根真菌的定殖可以保护寄主植物免受重金属毒性浓度的影响。真菌对任何特定金属提供保护的机制了解甚少。水稻(Oryza sativa L)植物用Glomus mosseae接种并生长4周以确保强力定居。然后将植物暴露于低浓度的毒性铜(Cu)中,并检查其吸收和分布。还研究了菌根定植对根细胞壁组成和铜结合能力的影响。菌根植物的根中铜含量略有降低,但芽中的铜含量却大大降低。与非菌根植物相比,在根部,菌根植物在细胞壁中积累的铜更多,但在同质物中的铜少得多。 Cu的细胞壁结合的差异可以部分由细胞壁组成的变化来解释。讨论了减少铜积累的机理基础,以及菌根协会对铜毒土壤中植物生长的潜在有益影响。

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