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In Vitro Lead Tolerance Testing in White Poplar Genotypes on Acidic Medium

机译:在酸性介质上白杨基基因型中的体外铅耐受性测试

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This study evaluates in vitro tolerance of white poplar genotypes to the presence of lead in an acidic rooting medium. Lead was supplemented in form of Pb(NO3)2, in the following concentrations: 0 M (Control), 10-6 M, 10-5 M, 10-4 M and 10-3 M. After four weeks of cultivation, the following characters were measured: number of roots, the length of the longest root, the shoot height, dry root mass and dry shoot mass, and parameters related to photosynthetic pigments: content of chlorophyll a, b, a b, and of carotenoids in fresh mass, as well as chlorophyll a/b ratio. For further statistical analysis, tolerance indices by Turner and Marshal (TI) were calculated for each measured character. The strongest inhibitory effect was achieved on the medium with 10-4 M Pb(NO3)2, but the best differentiation between genotypes was achieved on the medium with 10-5 M Pb(NO3)2. The highest tolerance indices for the length of the longest root and shoot height had genotypes L-12 and LBM, and for root and shoot dry mass genotypes LCM and L-12. There were no significant differences between genotypes in tolerance indices by any of the examined photosynthetic parameters. The obtained results suggest that both low pH and the presence of citric acid as chelating agent improved evaluation of lead tolerance in comparison with the results obtained on media with standard pH and without citric acid in similar studies. In vitro tests on acidic medium with citric acid can efficiently differentiate examined genotypes for lead tolerance, which could be important for their use in phytoextraction projects, especially on acidic soils.
机译:本研究评估白杨基因型的体外耐受性在酸性生根培养基中的铅存在下。铅以Pb(NO 3)2的形式补充,在以下浓度:0m(对照),10-6m,10-5m,10-4m和10-3米。在培养四周后,测量了以下字符:根部数量,最长根,枝条高度,干根质量和干芽质量,以及与光合颜料相关的参数:叶绿素A,B,AB和类胡萝卜素的含量,以及叶绿素A / B比。为了进一步统计分析,针对每个测量的特征计算转击和元帅(TI)的公差指数。在培养基上实现最强的抑制效果(NO 3)2,但在10-5M Pb(NO 3)2的培养基上实现了基因型之间的最佳分化。最长根和芽高度的最高公差指数具有基因型L-12和LBM,以及根和芽干块基因型LCM和L-12。通过任何检查的光合作用参数,耐受性指数的基因型之间没有显着差异。所得结果表明,低pH和柠檬酸的存在作为螯合剂,改善了铅公差的评价,与标准pH的培养基和类似研究中没有柠檬酸的结果相比,铅耐受的评价。用柠檬酸的酸性介质对酸性介质的体外测试可以有效地分化检查的铅耐受性的基因型,这对于它们在植物申请项目中使用可能是重要的,特别是酸性土壤。

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