Plant Biology Department, Federal University of Viçosa, Peter Henry Rolfs Avenue, 36570-900, Viçosa, Minas Gerais, Brazil.
Environ Sci Pollut Res Int. 2014 Apr;21(8):5586-96. doi: 10.1007/s11356-013-2444-9. Epub 2014 Jan 12.
We have identified new arsenic-tolerant plant species Borreria verticillata (Rubiaceae) that has mine and non-mine populations at a highly contaminated site (CS) and an uncontaminated site (UCS), respectively, in Brazil. Plants of B. verticillata from both sites were cultivated at different As and P concentrations. At low P concentration, CS plants showed reduced As uptake, higher P translocation to shoots, higher constitutive levels of phenolic compounds in roots, and higher tolerance to this metalloid. At the lowest P and highest As concentration, CS plants showed higher biomass. In addition, CS plants showed higher P uptake in the absence of As, suggesting that more efficient P translocation could contribute more to tolerance than decreased As uptake. In contrast, at low P concentration, UCS plants showed higher As content in shoot and root, increase in phenol levels in roots, reduction in dry biomass, and decrease of the effective efficiency of photochemical reactions and the electron transport rate. Under higher P concentrations, the decrease in As uptake was similar in both populations. The differences between the two populations with respect to As and P uptake suggest that altered kinetic properties or expression of P transporters contribute to higher As tolerance in B. verticillata from CS. As a ruderal and As-tolerant plant, B. verticillata could be successfully used for the revegetation of contaminated soils.
我们已经鉴定出了新的砷耐受植物种,即旋花科的 Borreria verticillata。该植物在巴西的一个高度污染地区(CS)和一个未污染地区(UCS)分别存在矿区和非矿区种群。从这两个地点采集的 B. verticillata 植物在不同的 As 和 P 浓度下进行了培养。在低 P 浓度下,CS 植物表现出减少的 As 吸收、更高的 P 向地上部分的转运、根部组成性酚类化合物水平的升高,以及对这种类金属元素更高的耐受性。在最低的 P 和最高的 As 浓度下,CS 植物表现出更高的生物量。此外,CS 植物在没有 As 的情况下表现出更高的 P 吸收,这表明更有效的 P 转运可能比减少 As 吸收更有助于耐受。相比之下,在低 P 浓度下,UCS 植物表现出更高的地上部和根部的 As 含量,根部酚类化合物水平升高,干生物量减少,以及光化学反应的有效效率和电子传递速率降低。在较高的 P 浓度下,两个种群的 As 吸收减少情况相似。这两个种群在 As 和 P 吸收方面的差异表明,P 转运体的动力学特性或表达的改变可能有助于 CS 来源的 B. verticillata 对 As 的更高耐受性。作为一种耐贫瘠和耐 As 的植物,B. verticillata 可以成功地用于污染土壤的植被恢复。