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Heavy metal tolerance and accumulation of Triarrhena sacchariflora, a large amphibious ornamental grass

机译:大型两栖观赏草——Triarrhena sacchariflora的重金属耐受性和积累

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In this study, we report the tolerance and accumulation of Triarrhena sacchariflora to copper (Cu) and cadmium (Cd). The results show that T. sacchariflora had strong tolerance to Cu and Cd stress. The tolerance indexes (TI) were greater than 0.5 for all treatments. The bioconcentration factors (BCFs) to Cu and Cd were both above 1.0. The accumulation ability of roots was stronger than that of shoots, and ranges of BCF to Cu and Cd in roots were 37.89-79.08 and 83.96-300.57, respectively. However, the translocation ability to Cu and Cd was weak, with more than 86% of Cu or Cd accumulated in roots, suggesting an exclusion strategy for heavy metal tolerance. The uptake efficiency (UE) and translocation efficiency (TE) to Cu and Cd increased linearly as the Cu and Cd concentration in the substrate increased. UE was higher than TE, with a maximum of 2,118.90 μg g~(-1) root dry weight (DW) (50 mg L~(-1) Cu) and 1,847.51 μg g~(-1) root DW (20 mg L~(-1) Cd), respectively. The results indicate that T. sacchariflora is a Cu- and Cd-tolerant non-hyperaccumulator plant, suggesting that T. sacchariflora could play an important role in phytoremediation in areas contaminated with Cu and Cd.
机译:在这项研究中,我们报告了Tri藜对铜(Cu)和镉(Cd)的耐受性和积累。结果表明,蔗糖对铜和镉具有较强的耐受性。所有治疗的耐受指数(TI)均大于0.5。 Cu和Cd的生物富集因子(BCFs)均大于1.0。根部的蓄积能力强于芽,根部的BCF到Cu和Cd的范围分别为37.89-79.08和83.96-300.57。然而,Cu和Cd的易位性较弱,根部积累了超过86%的Cu或Cd,这表明对重金属耐受性的排除策略。随着基质中Cu和Cd浓度的增加,对Cu和Cd的吸收效率(UE)和转运效率(TE)线性增加。 UE高于TE,最大根干重(DW)(2,118.90μgg〜(-1)(50 mg L〜(-1)Cu))和1,847.51μgg〜(-1)根DW(20 mg L) 〜(-1)Cd)。结果表明,糖衣藻是一种耐铜和镉的非高蓄积植物,表明糖衣藻可能在受铜和镉污染的地区的植物修复中发挥重要作用。

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