铜和营养缺失对海州香薷两个种群生长、耐性及矿质营养吸收的差异影响
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湖北大学生命科学学院,中国科学院地球测量与物理研究所,武汉大学资源与环境科学学院,湖北大学生命科学学院,湖北大学生命科学学院

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国家自然科学基金资助(30570322);中国科学院知识创新工程重大项目(KZCX1-YW-08-01-02)


Cu and nutrient deficiency on different effects of growth, tolerance and mineral elements accumulation between two Elsholtzia haichouensis populations
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School of Life Science of Hubei University,,,,

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    摘要:

    以来自铜矿区(CS)和非矿区(UCS)两个海州香薷种群为对象,通过室内水培实验,分析了两种群幼苗在铜及营养缺失胁迫下植物生长、铜富集及矿质营养含量的差异。结果显示,铜、低营养胁迫及其相互作用对非矿区种群生长具有明显的抑制作用,而对矿区种群的影响则远比非矿区种群小,且较低铜浓度(25μmol/L Cu)明显促进了矿区种群的生长;从耐性指数结果看,矿区种群铜耐性指数和营养胁迫耐性指数均高于非矿区种群。这表明矿区种群不仅进化为铜耐受种群,同时也进化成营养胁迫耐受种群。低营养胁迫明显促进了植物对铜的吸收和运转,如在低营养胁迫和25μmol/L Cu复合处理下,矿区种群根铜含量约为单一铜处理的25倍,非矿区种群是单一铜处理5倍多。低营养胁迫和过量铜显著减少了非矿区种群矿质营养元素如P, Mg, K和Mn的吸收积累,而矿区种群则仍然能保持相对稳定;在铜和营养缺失复合作用下,两个种群矿质营养除Ca 和部分Fe外,均显著减少,但矿区种群减少程度明显比非矿区种群小。这些结果表明,矿区种群在胁迫条件下具有保持营养相对稳定和平衡的能力,这种能力使其能在高铜污染和营养缺乏的土壤中正常生长和定居。

    Abstract:

    Two Elsholtzia haichowensis populations, one from a copper mine (CS) and the other from an uncontaminated site (UCS), were studied in hydroponic experiments for the plant growth, copper accumulation and mineral nutrients content under excess copper, nutrient deficiency and their interaction. The growth of UCS population was significantly inhibited by excessive Cu, nutrient deficiency and their interaction. But the growth of CS population was less affected by these factors, and 25μmol/L Cu stimulated significantly the growth of CS population. The tolerance indices of root length to Cu and biomass to mineral nutrient deficiency in the CS population were significantly higher than that in the UCS population. The results indicated that the CS population had evolved not only Cu tolerance but also tolerance to low nutrient supply. Nutrient deficiency increased significantly Cu uptake and transport in two populations. For example, at 25μmol/L Cu mixed with nutrient deficiency, root-Cu content of CS population was about 25 times that of CS population at 25μmol/L Cu treatment; root-Cu content of UCS population at interaction of 25μmol/L Cu and nutrient deficiency was more than 5 times that of CS population at 25μmol/L Cu treatment. Shoot-Cu contents in two populations also increased, but that in UCS population increased much more than in CS population. Excessive Cu reduced significantly uptake and transport of mineral nutrient including P, Mg, K and Mn. But contents of these mineral elements in CS population was less affected by excessive Cu. At interaction of nutrient deficiency and Cu (25μmol/L ), mineral element contents except Ca and some Fe decreased significantly. But the reduction in CS population is less than that in UCS population. The results indicated that the mineral composition homeostasis under the stresses was important in metal tolerance and colonizing normally in the Cu-enriched soils for the Cu-tolerant population.

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柯文山,陈世俭,熊治廷,吴明煜,李亚东.铜和营养缺失对海州香薷两个种群生长、耐性及矿质营养吸收的差异影响.生态学报,2013,33(15):4737~4743

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