School of Biological Sciences, University of Bristol, Woodland Road, Bristol BS8 1UG, UK.
Ann Bot. 1995 Jan;75(1):21-9. doi: 10.1016/S0305-7364(05)80005-8.
Two populations of Rhytidiadelphus squarrosus, from metal-contaminated and uncontaminated habitats, differed in their intra- and extracellular Cd contents but had similar cellular levels of Cu. Moss shoots were supplied with a pulse of toxic metal by incubating in Cu or Cd nitrate solutions and effects on respiration, photosynthesis and intracellular K loss were monitored with time after initial exposure. Increasing intracellular Cu levels correlated most closely with a concurrent decline in intracellular K. Photosynthesis also declined in proportion to intracellular Cu; significant Cu-induced stimulation of respiration was observed. The most significant effect of Cd treatment was a decline in photosynthesis in proportion to the intracellular concentration of Cd. Apical segments from both populations showed similar sensitivity to Cu, whereas the metal-contaminated population showed increased resistance to Cd. Sensitivity to Cd increased in the more basal portions of moss gametophores, indicating that apparent resistance of Cd might reflect shoot vitality and age effects. After laboratory growth to eliminate differences in the physiological status of apical segments, it was confirmed that the metal-contaminated population of the moss was photosynthetically more tolerant to Cd at intracellular Cd concentrations found to cause considerable photosynthetic inhibition in the uncontaminated population. The metal-contaminated population of the moss that was tolerant to Cd was not co-tolerant to Cu.
两种皱肋青藓种群,一种来自于金属污染的生境,另一种来自于无污染的生境,它们的细胞内和细胞外 Cd 含量存在差异,但 Cu 的细胞含量相似。通过将苔藓芽体在 Cu 或 Cd 硝酸盐溶液中孵育,为其提供了有毒金属脉冲,然后监测初始暴露后随时间推移对呼吸作用、光合作用和细胞内 K 损失的影响。细胞内 Cu 水平的增加与细胞内 K 的同时下降最密切相关。光合作用也与细胞内 Cu 成比例下降;观察到 Cu 诱导的呼吸作用显著增强。Cd 处理的最显著影响是光合作用与细胞内 Cd 浓度成比例下降。来自两个种群的顶端片段对 Cu 的敏感性相似,而受金属污染的种群对 Cd 的抵抗力增强。苔藓配子体更基部的部分对 Cd 的敏感性增加,表明 Cd 的明显抗性可能反映了芽体活力和年龄效应。在实验室生长以消除顶端片段生理状态的差异后,证实受金属污染的苔藓种群在细胞内 Cd 浓度下对 Cd 具有更高的光合耐受性,而在无污染的种群中,这种浓度会导致相当大的光合作用抑制。对 Cd 具有耐受性的苔藓受金属污染的种群对 Cu 并不具有共耐受性。