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盐度对根际红树林土壤中外源化合物降解的影响。

Influence of salinity on the degradation of xenobiotic compounds in rhizospheric mangrove soil.

机构信息

Universidad Antonio Nariño, Sede Circunvalar, Cra 3 Este No. 47 A 15, Bogotá, Colombia.

Universidad Nacional de Colombia, Carrera 45 No. 26-85, Bogotá, Colombia.

出版信息

Environ Pollut. 2019 Jun;249:750-757. doi: 10.1016/j.envpol.2019.03.056. Epub 2019 Mar 20.

DOI:10.1016/j.envpol.2019.03.056
PMID:30933772
Abstract

Mangroves are highly productive tropical ecosystems influenced by seasonal and daily salinity changes, often exposed to sewage contamination, oil spills and heavy metals, among others. There is limited knowledge of the influence of salinity on the ability of microorganisms to degrade xenobiotic compounds. The aim of this study were to determine the salinity influence on the degradation of xenobiotic compounds in a semi-arid mangrove in La Guajira-Colombia and establish the more abundant genes and degradation pathways. In this study, rhizospheric soil of Avicennia germinans was collected in three points with contrasting salinity (4H, 2 M and 3 L). Total DNA extraction was performed and shotgun sequenced using the Illumina HiSeq technology. We annotated 507,343 reads associated with 21 pathways and detected 193 genes associated with the degradation of xenobiotics using orthologous genes from the KEGG Orthology (KO) database, of which 16 pathways and 113 genes were influenced by salinity. The highest abundances were found in high salinity. The degradation of benzoate showed the highest abundance, followed by the metabolism of the drugs and the degradation of chloroalkane and chloroalkene. The majority of genes were associated with phase I degradation of xenobiotics. The most abundant genes were acetyl-CoA C-acetyltransferase (atoB), catalase-peroxidase (katG) and GMP synthase (glutamine-hydrolysing) (guaA). In conclusion, the metagenomic analysis detected all the degradation pathways of xenobiotics of KEGG and 59% of the genes associated with these pathways were influenced by salinity.

摘要

红树林是生产力很高的热带生态系统,受到季节性和每日盐度变化的影响,经常受到污水污染、溢油和重金属等的影响。关于盐度对微生物降解外来化合物能力的影响,人们知之甚少。本研究旨在确定盐度对半干旱红树林中外来化合物降解的影响,并确定更丰富的基因和降解途径。本研究在哥伦比亚拉瓜希拉的三个具有不同盐度(4H、2M 和 3L)的地点采集了海桑的根际土壤。采用 Illumina HiSeq 技术进行总 DNA 提取和鸟枪法测序。我们共注释了 507343 条与 21 条途径相关的reads,并利用 KO 数据库中的同源基因检测到 193 个与外来化合物降解相关的基因,其中 16 条途径和 113 个基因受到盐度的影响。在高盐度下,这些基因的丰度最高。苯甲酸的降解表现出最高的丰度,其次是药物代谢和氯烷烃及氯烯烃的降解。大多数基因与外来化合物的 I 相降解有关。最丰富的基因是乙酰辅酶 A C-乙酰基转移酶(atoB)、过氧化氢酶过氧化物酶(katG)和 GMP 合酶(谷氨酰胺水解)(guaA)。总之,宏基因组分析检测到了 KEGG 中所有外来化合物的降解途径,与这些途径相关的 59%的基因受到盐度的影响。

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