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Interactions of cadmium and aluminum toxicity in their effect on growth and physiological parameters in soybean

机译:镉和铝的相互作用对大豆生长和生理参数的影响

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摘要

The effect of Al and Cd on the growth, photosynthesis, and accumulation of Al, Cd and plant nutrients in two soybean genotypes were determined using hydroponic culture. There were six treatments: pH 6.5; pH 4.0; pH 6.5+1.0 μmol/L Cd; pH 4.0+1.0 μmol/L Cd; pH 4.0+150 μmol/L Al; pH 4.0+1.0 μmol/L Cd+150 μmol/L Al. The low pH (4.0) and Al treatments caused marked reduction in root length, shoot height, dry weight, chlorophyll content (SPAD value) and photosynthetic rate. Al-sensitive cv. Zhechun 2 accumulated comparatively more Al and Cd in plants than Al-tolerant cv. Liao 1. Compared with pH 6.5, pH 4.0 resulted in significant increase in Cd and Al concentration in plants. Combined application of Cd and Al enhanced their accumulation in roots, but caused a reduction in shoots. The concentrations of all 10 nutrients (P, K, Ca, Mg, Fe, Mn, Cu, Zn and B), except Mo were also increased when plants were exposed to pH lower than pH 6.5. Al addition caused a reduction in the concentration of most nutrients in plant roots and shoots; but K, Mn and Zn in roots were increased. Treatments with Cd alone or together with Al reduced the concentrations of all the plant nutrients in plants. Al-sensitive genotype Zhechun 2 has lower nutrient concentration than Al-tolerant genotype Liao 1. The current findings imply that Al and Cd are synergistic in their effect on plant growth, physiological traits and nutrient uptake.
机译:利用水培法测定了铝和镉对两种基因型大豆生长,光合作用和铝,镉和植物养分积累的影响。有六种处理:pH 6.5; pH 6.5。 pH值4.0; pH 6.5 + 1.0μmol/ L镉; pH 4.0 + 1.0μmol/ L镉; pH 4.0 + 150μmol/ L铝; pH 4.0 + 1.0μmol/ L镉+150μmol/ L Al低pH(4.0)和Al处理导致根部长度,枝条高度,干重,叶绿素含量(SPAD值)和光合速率显着降低。铝敏感简历与耐铝简历相比,浙春2号在植物中积累的铝和镉含量相对较高。辽1.与pH 6.5相比,pH 4.0导致植物中Cd和Al浓度显着增加。镉和铝的联合施用增加了它们在根中的积累,但引起了芽的减少。当植物暴露于pH值低于6.5时,除Mo以外的所有10种养分(P,K,Ca,Mg,Fe,Mn,Cu,Zn和B)的浓度也均增加。铝的添加减少了植物根和芽中大多数营养素的浓度;但根中的钾,锰和锌增加。单独使用Cd或与Al一起处理可降低植物中所有植物养分的浓度。铝敏感基因型浙春2的耐性比耐铝基因型廖1低。目前的发现表明,铝和镉对植物生长,生理性状和养分吸收具有协同作用。

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