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玉米浆在促进长期污染土壤中烃类降解方面的生物刺激潜力。

Biostimulation potentials of corn steep liquor in enhanced hydrocarbon degradation in chronically polluted soil.

作者信息

Salam Lateef B, Ishaq Aisha

机构信息

Department of Biological Sciences, Microbiology Unit Al-Hikmah University, Ilorin, Kwara Nigeria.

出版信息

3 Biotech. 2019 Feb;9(2):46. doi: 10.1007/s13205-019-1580-4. Epub 2019 Jan 23.

Abstract

The effects of corn steep liquor (CSL) on hydrocarbon degradation and microbial community structure and function was evaluated in field-moist soil microcosms. Chronically polluted soil treated with CSL (AB4) and an untreated control (3S) was compared over a period of 6 weeks. Gas chromatographic fingerprints of residual hydrocarbons revealed removal of 95.95% and 94.60% aliphatic and aromatic hydrocarbon fractions in AB4 system with complete disappearance of nC-nC, nC, nC, nC-nC aliphatics and aromatics such as naphthalene, acenaphthylene, fluorene, phenanthrene, pyrene, benzo(a)anthracene, and indeno(123-cd)pyrene in 42 days. In 3S system, there is removal of 61.27% and 66.58% aliphatic and aromatic fractions with complete disappearance of nC and nC aliphatics and naphthalene, acenaphthylene, fluorene, phenanthrene, pyrene, and benzo(a)anthracene aromatics in 42 days. Illumina shotgun sequencing of the DNA extracted from the two systems showed the preponderance of (31.46%) and (38.95%) phyla in 3S and AB4 with the dominance of (22.88%) and (8.16%) in 3S, and (24.23%), (8.93%) and (7.73%) in AB4. Functional characterization of the metagenomic reads revealed diverse metabolic potentials and adaptive traits of the microbial communities in the two systems to various environmental stressors. It also revealed the exclusive detection of catabolic enzymes in AB4 system belonging to the aldehyde dehydrogenase superfamily. The results obtained in this study showed that CSL is a potential resource for bioremediation of hydrocarbon-polluted soils.

摘要

在田间湿润土壤微观世界中评估了玉米浆(CSL)对碳氢化合物降解以及微生物群落结构和功能的影响。在6周的时间里,对用CSL处理的长期污染土壤(AB4)和未处理的对照土壤(3S)进行了比较。残留碳氢化合物的气相色谱指纹图谱显示,AB4系统中脂肪族和芳香族碳氢化合物组分的去除率分别为95.95%和94.60%,在42天内,nC - nC、nC、nC、nC - nC脂肪族以及萘、苊烯、芴、菲、芘、苯并(a)蒽和茚并(1,2,3 - cd)芘等芳香族完全消失。在3S系统中,脂肪族和芳香族组分的去除率分别为61.27%和66.58%,在42天内,nC和nC脂肪族以及萘、苊烯、芴、菲、芘和苯并(a)蒽芳香族完全消失。对从这两个系统中提取的DNA进行的Illumina鸟枪法测序显示,3S和AB4中优势菌门分别为(31.46%)和(38.95%),3S中优势菌属为(22.88%)和(8.16%),AB4中优势菌属为(24.23%)、(8.93%)和(7.73%)。宏基因组读数的功能表征揭示了两个系统中微生物群落对各种环境压力源具有不同的代谢潜能和适应特性。研究还揭示了在AB4系统中独家检测到属于醛脱氢酶超家族的分解代谢酶。本研究获得的结果表明,CSL是碳氢化合物污染土壤生物修复的潜在资源。

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