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首页> 外文期刊>Journal of Applied Phycology >Toxicity, transformation and accumulation of inorganic arsenic species in a microalga Scenedesmus sp isolated from soil
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Toxicity, transformation and accumulation of inorganic arsenic species in a microalga Scenedesmus sp isolated from soil

机译:从土壤中分离出的微藻场景藻中的无机砷物质的毒性,转化和积累

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摘要

Arsenic speciation and cycling in the natural environment are highly impacted via biological processes. Since arsenic is ubiquitous in the environment, microorganisms have developed resistance mechanisms and detoxification pathways to overcome the arsenic toxicity. This study has evaluated the toxicity, transformation and accumulation of arsenic in a soil microalga Scenedesmus sp. The alga showed high tolerance to arsenite. The 72-h 50 % growth inhibitory concentrations (IC50 values) of the alga exposed to arsenite and arsenate in low-phosphate growth medium were 196.5 and 20.6 mg L-1, respectively. When treated with up to 7.5 mg L-1 arsenite, Scenedesmus sp. oxidised all arsenite to arsenate in solution. However, only 50 % of the total arsenic remained in the solution while the rest was accumulated in the cells. Thus, this alga has accumulated arsenic as much as 606 and 761 mu g g(-1) dry weight when exposed to 750 mu g L-1 arsenite and arsenate, respectively, for 8 days. To our knowledge, this is the first report of biotransformation of arsenic by a soil alga. The ability of this alga to oxidise arsenite and accumulate arsenic could be used in bioremediation of arsenic from contaminated water and soil.CT 8th Asia-Pacific Conference on Algal Biotechnology (APCAB)CY 2012CL Adelaide, AUSTRALIA
机译:自然环境中的砷形态和循环受生物过程的影响很大。由于砷在环境中无处不在,因此微生物已经开发出抗药性机制和排毒途径来克服砷的毒性。本研究评估了土壤微藻Scenedesmus sp。中砷的毒性,转化和积累。藻类显示出对亚砷酸盐的高度耐受性。在低磷酸盐生长培养基中,暴露于亚砷酸盐和砷酸盐的藻类的72小时50%生长抑制浓度(IC50值)分别为196.5和20.6 mg L-1。当用最多7.5 mg L-1亚砷酸盐处理时,Scenesedus sp.。将所有砷氧化成溶液中的砷。但是,总砷中只有50%残留在溶液中,其余的则残留在细胞中。因此,当分别暴露于750μgL-1亚砷酸盐和砷酸盐8天后,该藻类积累的砷干重高达606和761μg g-1。据我们所知,这是土壤藻类对砷进行生物转化的首次报道。这种藻类氧化砷和积累砷的能力可用于从受污染的水和土壤中进行砷的生物修复。CT第八届亚太藻类生物技术会议(APCAB)CY 2012CL阿德莱德,澳大利亚

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