کد مقاله کد نشریه سال انتشار مقاله انگلیسی نسخه تمام متن
5748075 1618927 2017 7 صفحه PDF دانلود رایگان
عنوان انگلیسی مقاله ISI
Influence of triethyl phosphate on phosphatase activity in shooting range soil: Isolation of a zinc-resistant bacterium with an acid phosphatase
ترجمه فارسی عنوان
تأثیر تری اتلی فسفات بر فعالیت فسفاتاز در خاک تیراندازی: جداسازی باکتری مقاوم به روی با اسید فسفاتاز
کلمات کلیدی
تری اتلی فسفات، اسید فسفاتاز، آلودگی خاک فلزات سنگین،
موضوعات مرتبط
علوم زیستی و بیوفناوری علوم محیط زیست شیمی زیست محیطی
چکیده انگلیسی


- Phosphatase-mediated hydrolysis of organic phosphate may stabilize soil heavy metals.
- Triethyl phosphate stimulated soil microbial-phosphatase activity in a metal contaminated soil.
- These results supporting the use of triethyl phosphate for bioremediation of metals.
- First use of triethyl phosphate for bioremediation of metal-contaminated soils.

Phosphatase-mediated hydrolysis of organic phosphate may be a viable means of stabilizing heavy metals via precipitation as a metal phosphate in bioremediation applications. We investigated the effect of triethyl phosphate (TEP) on soil microbial-phosphatase activity in a heavy-metal contaminated soil. Gaseous TEP has been used at subsurface sites for bioremediation of organic contaminants but not applied in heavy-metal contaminated areas. Little is known about how TEP affects microbial activity in soils and it is postulated that TEP can serve as a phosphate source in nutrient-poor groundwater and soil/sediments. Over a 3-week period, TEP amendment to microcosms containing heavy-metal contaminated soil resulted in increased activity of soil acid-phosphatase and repression of alkaline phosphatase, indicating a stimulatory effect on the microbial population. A soil-free enrichment of microorganisms adapted to heavy-metal and acidic conditions was derived from the TEP-amended soil microcosms using TEP as the sole phosphate source and the selected microbial consortium maintained a high acid-phosphatase activity with repression of alkaline phosphatase. Addition of 5 mM zinc to soil-free microcosms had little effect on acid phosphatase but inhibited alkaline phosphatase. One bacterial member from the consortium, identified as Burkholderia cepacia sp., expressed an acid-phosphatase activity uninhibited by high concentrations of zinc and produced a soluble, indigo pigment under phosphate limitation. The pigment was produced in a phosphate-free medium and was not produced in the presence of TEP or phosphate ion, indicative of purple acid-phosphatase types that are pressed by bioavailable phosphate. These results demonstrate that TEP amendment was bioavailable and increased overall phosphatase activity in both soil and soil-free microcosms supporting the possibility of positive outcomes in bioremediation applications.

ناشر
Database: Elsevier - ScienceDirect (ساینس دایرکت)
Journal: Ecotoxicology and Environmental Safety - Volume 137, March 2017, Pages 165-171
نویسندگان
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