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The copper tolerance mechanisms of Elsholtzia haichowensis, a plant from copper-enriched soils

机译:富含铜的土壤植物海带Elsholtzia haichowensis的铜耐性机制

摘要

Hydroponic cultures were conducted to investigate the effect of excessive Cu on the seed germination and growth of Elsholtzia haichowensis Sun, a Cu tolerant plant from the Tongling Cu mining sites in eastern China. Experiments were also carried out to study Cu accumulation and tolerance mechanisms of E. haichowensis seedlings. A significant decrease of seed germination was only found in the treatments with more than 750μmoll-1 Cu and E. haichowensis seedlings were able to tolerate 250μmoll-1 Cu in solution without growth reduction in comparison with the control group during the seed germination period. Ten micromol per litre Cu did not affect the root elongation. Higher concentrations of Cu caused the decreases of root and hypocotyl elongation, germination, and chlorophyll and carotenoids concentrations of E. haichowensis. The effect of Cu on plant growth was more pronounced in the roots than in the shoots. Up to 160μgg-1 of Cu (DM) was found in the shoots of E. haichowensis treated with 500μmoll -1 Cu. In all treatments, Cu concentrations were higher in the roots than that in the shoots. The results also showed that most Cu was bound on cell walls in the roots, accounting for more than 60% of the total concentration. Exposing E. haichowensis in high Cu solution elicits a large level of proteins. Through a gel filtration chromatography on Sephadex G-50, three Cu peaks were eluted out with three protein peaks.
机译:进行了水培研究,研究了过量的铜对中国东部铜陵铜矿区的耐铜植物Elsholtzia haichowensis Sun的种子发芽和生长的影响。还进行了实验研究海藻E. haichowensis幼苗的Cu积累和耐性机制。种子发芽期间,仅在超过750μmol-1Cu的处理中发现了种子发芽的显着减少,并且与对照组相比,haichowensis幼苗能够耐受溶液中250μmol-1Cu的生长而没有生长减少。每升铜十微摩尔不影响根伸长。高浓度的铜导致海豚大肠杆菌的根和下胚轴伸长,发芽以及叶绿素和类胡萝卜素浓度降低。 Cu对植物生长的影响在根部比在芽中更为明显。用500μmol-1 Cu处理的海南芽菜中可发现高达160μgg-1的Cu(DM)。在所有处理中,根部的铜浓度均高于芽中的浓度。结果还表明,大多数Cu结合在根的细胞壁上,占总浓度的60%以上。在高铜溶液中暴露海豚大肠杆菌会引发大量蛋白质。通过Sephadex G-50的凝胶过滤色谱,洗脱出三个Cu峰和三个蛋白峰。

著录项

  • 作者

    Lou LQ; Shen ZG; Li XD;

  • 作者单位
  • 年度 2004
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  • 原文格式 PDF
  • 正文语种 eng
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