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首页> 外文期刊>Environmental microbiology >Transcription dynamics of the functional tfdA gene during MCPA herbicide degradation by Cupriavidus necator AEO106 (pRO101) in agricultural soil
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Transcription dynamics of the functional tfdA gene during MCPA herbicide degradation by Cupriavidus necator AEO106 (pRO101) in agricultural soil

机译:铜绿菌AEO106(pRO101)在农业土壤中MCPA除草剂降解过程中功能性tfdA基因的转录动力学

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摘要

A modified protocol for simultaneous extraction of RNA and DNA, followed by real-time polymerase chain reaction quantification, was used to investigate tfdA gene expression during in situ degradation of the herbicide MCPA (4-chloro-2-methylphenoxy-acetic acid) in soil. tfdA encodes an alpha-ketoglutarate-dependent dioxygenase catalysing the first step in the degradation pathway of MCPA and 2,4-D (2,4-dichlorophenoxy-acetic acid). A linear recovery of tfdA mRNA over three orders of magnitude was shown, and the tfdA mRNA level was normalized using the tfdA mRNA/DNA ratio. The density of active cells required for tfdA mRNA detection was 10(5) cells g(-1) soil. Natural soil microcosms inoculated with Cupriavidus necator (formerly Ralstonia eutropha) AEO106 (pRO101) cells were amended with four different MCPA concentrations (2, 20, 50 and 150 mg kg(-1)). Mineralization rates were estimated by quantification of (CO2)-C-14 emission from degradation of C-14-MCPA. tfdA mRNA was detected 1 h after amendment at all four concentrations. In soils amended with 2 and 20 mg kg(-1), the mRNA/DNA ratio for tfdA demonstrated a sharp transient maximum of tfdA expression from no to full expression within 3 and 6 h respectively, followed by a decline and complete loss of expression after 19 and 43 h. A more complex pattern of tfdA expression was observed for the higher 50 and 150 mg kg(-1) amendments; this coincided with growth of C. necator AEO106 (pRO101) in the system. Repeated amendment with MCPA after 2 weeks in the 20 mg kg(-1) scenario revealed a sharp increase of tfdA mRNA, and absence of a mineralization lag phase. For all amendments, tfdA mRNA was detectable only during active mineralization, and thus revealed a direct correlation between tfdA mRNA presence and microbial degrader activity. The present study demonstrates that direct analysis of functional gene expression dynamics by quantification of mRNA can indeed be made in natural soil.
机译:修改后的协议,用于同时提取RNA和DNA,然后进行实时聚合酶链反应定量,用于研究土壤中除草剂MCPA(4-氯-2-甲基苯氧基乙酸)原位降解过程中tfdA基因的表达。 tfdA编码α-酮戊二酸依赖性双加氧酶,催化MCPA和2,4-D(2,4-二氯苯氧基-乙酸)降解途径的第一步。显示了tfdA mRNA的线性恢复超过三个数量级,并且使用tfdA mRNA / DNA比对tfdA mRNA水平进行了标准化。 tfdA mRNA检测所需的活动细胞密度为10(5)细胞g(-1)土壤。用四个不同的MCPA浓度(2、20、50和150 mg kg(-1))修改了接种铜杯菌(前称Ralstonia eutropha)AEO106(pRO101)细胞的天然土壤微观世界。通过量化C-14-MCPA降解产生的(CO2)-C-14排放量来估算矿化速率。在所有四个浓度下修正后1小时检测到tfdA mRNA。在用2和20 mg kg(-1)修正的土壤中,tfdA的mRNA / DNA比值分别显示tfdA在3h和6h内从无表达到完全表达的瞬时最大瞬时峰值,随后表达下降和完全丧失19和43小时后。对于更高的50和150 mg kg(-1)修正值,观察到了更复杂的tfdA表达模式;这与C. necator AEO106(pRO101)在系统中的生长相吻合。在20 mg kg(-1)的情况下2周后,用MCPA反复修正,发现tfdA mRNA急剧增加,并且没有矿化滞后阶段。对于所有修正,tfdA mRNA仅在活跃矿化过程中才可检测到,因此揭示了tfdA mRNA存在与微生物降解活性之间的直接相关性。本研究表明,通过定量mRNA可以直接在天然土壤中进行功能基因表达动力学的直接分析。

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