College of Landscape Architecture, Sichuan Agricultural University, Chengdu, Sichuan, 611130, China.
Chemosphere. 2021 Nov;282:131089. doi: 10.1016/j.chemosphere.2021.131089. Epub 2021 Jun 7.
Dwarf bamboo is a woody plant with potential for use in the remediation of Pb-contaminated soil. Due to its clonal growth habit, there are two keys to its application for continuous soil Pb remediation: 1) its ability to form shoots and grow into new bamboo normally under Pb stress and 2) the Pb tolerance and accumulation characteristics of this new bamboo. Here, 5 species of dwarf bamboo were treated with 2 levels of soil Pb stress (0 and 1500 mg kg). In the roots of 3 of the species (Sasa argenteostriata, Sasaella glabra, and Indocalamus decorus), Pb tended to be distributed along the cell wall and transported to vacuoles. In the other 2 species (Sasa auricoma and Sasa fortunei), Pb was arranged linearly along the cell wall. Under Pb treatment, the new bamboo of all species showed gradual physiological adaptation to Pb stress. Correlations of the net photosynthetic rate, superoxide dismutase activity, and free proline levels with Pb content in new leaves in November were all higher than those in July, though that of malondialdehyde content decreased, suggesting that new dwarf bamboo exhibits good soil Pb stress tolerance. Sasa argenteostriata and Indocalamus decorus consistently maintained higher antioxidant enzyme activities and free proline levels than the other species under Pb treatment, and the total biomass per pot of the new bamboo decreased the least compared to that in the Pb-free treatment for these two species. Therefore, these bamboo species may be used in the long-term continuous remediation of Pb-contaminated soil.
dwarf 丛生竹是一种具有应用于 Pb 污染土壤修复潜力的木本植物。由于其克隆生长习性,其在连续土壤 Pb 修复中的应用有两个关键:1)在 Pb 胁迫下形成竹笋并正常生长成新竹的能力,2)这种新竹对 Pb 的耐受和积累特性。在这里,对 5 种矮竹进行了 2 个土壤 Pb 胁迫水平(0 和 1500 mg kg)的处理。在 3 种植物(银边黄槽竹、矢竹和金毛竹)的根中,Pb 倾向于沿细胞壁分布,并被运输到液泡中。在另外 2 种植物(金镶玉竹和刚竹)中,Pb 沿细胞壁线性排列。在 Pb 处理下,所有种的新竹均表现出对 Pb 胁迫的逐渐生理适应。11 月新叶中净光合速率、超氧化物歧化酶活性和游离脯氨酸水平与 Pb 含量的相关性均高于 7 月,而丙二醛含量降低,表明新的矮竹具有良好的土壤 Pb 胁迫耐受性。在 Pb 处理下,银边黄槽竹和金毛竹始终保持比其他种更高的抗氧化酶活性和游离脯氨酸水平,且与无 Pb 处理相比,这两个种的新竹每盆总生物量下降最少。因此,这些竹种可能用于长期连续修复 Pb 污染土壤。