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低溶解性磷矿使蜈蚣蕨在三种污染土壤中显著生长并吸收砷。

Sparingly-soluble phosphate rock induced significant plant growth and arsenic uptake by Pteris vittata from three contaminated soils.

机构信息

Soil and Water Science Department, University of Florida, Gainesville, Florida 32611, United States.

出版信息

Environ Sci Technol. 2013 May 21;47(10):5311-8. doi: 10.1021/es400892a. Epub 2013 May 13.

Abstract

We evaluated the ability of As-hyperaccumulator Pteris vittata (PV) to remove As from As-contaminated soils over five harvests in 2.5 years in raised beds (162 kg soil/bed). We tested the hypothesis that a P-limiting environment would enhance PV growth and As uptake owing its unique ability to uptake P under As-rich environment. In Dec. 2009, PV was transplanted to three As-contaminated soils (pH of 5.5-7.2) containing 25-129 mg kg(-1) As, which was amended with sparingly-soluble phosphate rock (PR-soil) or soluble P fertilizer (P-soil). During the 2.5-year, PV obtained sufficient P (1882 vs 2225 mg kg(-1)) from PR-soils, with increased root biomass (33%) and root exudation (53%) compared to P-soils. In addition, its frond biomass increased by 20% consecutively with each harvest (six month interval) from 18 to 36 g plant(-1). Its frond biomass in PR-soils (52.2 g plant(-1) year(-1) or ∼12 mt ha(-1) year(-1)) averaged 39% more than that in P-soils. To our knowledge, this represented the largest PV frond biomass reported, demonstrating the unique ability of PV in using insoluble P from PR in alkaline soils. In addition to biomass increase, PV from PR-soils had ∼1.5 times more As in fronds (2540, 780, and 920 mg kg(-1)) than those from P-soils (1740, 570, and 400 mg kg(-1)), with soils containing 129, 25, and 30 mg kg(-1) As, respectively. The low available P in PR-soils induced substantial plant growth and As uptake by PV. This translated into significantly more As removal from soil, averaging 48% reduction in PR-soils and 36% in P-soils in 2.5 years. With multiple harvests and PR amendments, our results showed As removal by PV from contaminated soils was ∼7 times faster than published studies.

摘要

我们评估了凤尾蕨(As-超积累植物)在 2.5 年内从受 As 污染的土壤中去除 As 的能力,共进行了五次收获,每个床(162 公斤土壤/床)。我们测试了一个假设,即在 P 限制环境下,凤尾蕨会因为其在富 As 环境下吸收 P 的独特能力而促进生长和吸收 As。2009 年 12 月,凤尾蕨被移植到三种 As 污染土壤(pH 值为 5.5-7.2)中,土壤中含有 25-129 mg kg(-1) 的 As,并用难溶性磷矿(PR 土壤)或可溶性磷肥(P 土壤)进行了改良。在 2.5 年的时间里,凤尾蕨从 PR 土壤中吸收了足够的 P(1882 与 2225 mg kg(-1)),其根系生物量(33%)和根系分泌物(53%)均高于 P 土壤。此外,它的叶片生物量连续五次收获(六个月间隔)增加了 20%,从 18 增加到 36 g 植物(-1)。PR 土壤中的叶片生物量(52.2 g 植物(-1)年(-1)或约 12 mt ha(-1)年(-1))平均比 P 土壤高 39%。据我们所知,这代表了报道的最大的凤尾蕨叶片生物量,证明了凤尾蕨在碱性土壤中利用 PR 中的难溶性 P 的独特能力。除了生物量增加外,PR 土壤中的凤尾蕨叶片中的 As 含量(2540、780 和 920 mg kg(-1))比 P 土壤中的凤尾蕨叶片中的 As 含量(1740、570 和 400 mg kg(-1))高 1.5 倍,这三种土壤中的 As 含量分别为 129、25 和 30 mg kg(-1)。PR 土壤中低含量的有效 P 诱导了凤尾蕨的大量生长和 As 吸收。这转化为从土壤中去除更多的 As,PR 土壤中减少了 48%,P 土壤中减少了 36%,在 2.5 年内。通过多次收获和 PR 改良,我们的结果表明,凤尾蕨从污染土壤中去除 As 的速度比已发表的研究快约 7 倍。

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