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水体镉浓度和水位对三蕊柳插条生长性能的影响。

Effect of water cadmium concentration and water level on the growth performance of Salix triandroides cuttings.

机构信息

College of Bioscience and Biotechnology, Hunan Agricultural University, Changsha, 410128, China.

Hunan Academy of Forestry, Changsha, 410004, China.

出版信息

Environ Sci Pollut Res Int. 2018 Mar;25(8):8002-8011. doi: 10.1007/s11356-017-1158-9. Epub 2018 Jan 5.

Abstract

The growth performance of Salix triandroides cuttings at three water cadmium (Cd) concentrations (0, 20, and 40 mg L) and three water levels (- 40 cm, water level 40 cm below the soil surface; 0 cm, water level even with the soil surface; and 40 cm, water level 40 cm above soil surface) was investigated to evaluate its potential in phytoextraction strategies. Compared to cuttings in the - 40 or 0 cm water levels, cuttings in the 40 cm water level showed significantly lower biomass, height, and adventitious root length and significantly fewer leaves and adventitious roots. However, these growth and morphological parameters were not different among the three water Cd concentrations. Water level decreased stomatal conduction and transpiration rate but showed no significant effects on chlorophyll concentration or photosynthetic rate. Chlorophyll concentration and stomatal conductance were higher at 40 mg L Cd treatment than at 0 or 20 mg L Cd treatment; yet, photosynthetic rate and transpiration rate were not different. Cd concentration in the leaves and stems increased as the water level increased, but the highest Cd concentration in the roots occurred in the 0 cm water level. As water Cd concentration increased, Cd concentration in the leaves, stems, and roots increased in all three water levels, except in stems in the - 40 cm water level. Under Cd stress, cuttings in the - 40 or 0 cm water levels were characterized by a higher bioaccumulation coefficient, but a lower translocation factor, than those in the 40 cm water level. However, the bioaccumulation coefficient increased with increasing water Cd concentration in all three water levels, as did the translocation factor in the 40 cm water level. The tolerance index for the cuttings was the same among all water levels and water Cd concentrations. The results clearly indicated that the low water level increased plant growth and Cd accumulation in underground parts, while the high water level decreased plant growth but increased Cd accumulation in aboveground parts.

摘要

在三种水镉(Cd)浓度(0、20 和 40 mg L)和三种水位(-40 cm,水位低于土壤表面 40 cm;0 cm,水位与土壤表面齐平;和 40 cm,水位高于土壤表面 40 cm)下,研究了三柳扦插的生长性能,以评估其在植物提取策略中的潜力。与处于-40 或 0 cm 水位的插条相比,处于 40 cm 水位的插条的生物量、高度和不定根长度显著较低,叶片和不定根数量也显著较少。然而,这些生长和形态参数在三种水 Cd 浓度之间没有差异。水位降低了气孔传导和蒸腾速率,但对叶绿素浓度或光合速率没有显著影响。与 0 或 20 mg L Cd 处理相比,40 mg L Cd 处理的叶绿素浓度和气孔导度较高,但光合速率和蒸腾速率没有差异。叶片和茎中的 Cd 浓度随着水位的升高而增加,但根中的最高 Cd 浓度出现在 0 cm 水位。随着水 Cd 浓度的增加,除-40 cm 水位的茎外,所有三个水位的叶片、茎和根中的 Cd 浓度都有所增加。在 Cd 胁迫下,与 40 cm 水位相比,-40 或 0 cm 水位下的插条具有更高的生物积累系数,但较低的转运系数。然而,在所有三个水位下,生物积累系数随着水 Cd 浓度的增加而增加,而在 40 cm 水位下,转运系数也增加了。所有水位和水 Cd 浓度下的插条的耐受指数相同。结果清楚地表明,低水位增加了地下部分的植物生长和 Cd 积累,而高水位降低了植物生长,但增加了地上部分的 Cd 积累。

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