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Monitoring of functional gene responses to biostimulation from a TCE-contaminated site


ABSTRACT: A functional microarray targeting 24 genes involved in chlorinated solvent biodegradation pathways has been developed and used to monitor the gene expression in a contaminated site (site B) under ERD (enhanced reductive dechlorination) treatment. The microarray format provided by NimbleGen and used in this study is 12x135K. 4 M-BM-5g of labelled antisense mRNA from 3 groundwater samples were hybridized on the microarray. A 3-chip study was performed, each corresponding to hybridization with 4 M-BM-5g of labelled antisense mRNA retrieved from a monitoring well of a contaminated site (site B). Each probe (760nt) on the microarray was synthesized in eight replicates, and a total of 5,707 random probes was used to determine the background noise. Groundwater samples were collected from a contaminated site (site B) from three monitoring wells (P1, P2 and P3). P1: well located upstream to the contamination source. P2: well in the contamination source. P3 : well located downstream to the contamination source.

ORGANISM(S): groundwater metagenome

SUBMITTER: Peyret Pierre 

PROVIDER: E-GEOD-28608 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Publications

In situ TCE degradation mediated by complex dehalorespiring communities during biostimulation processes.

Dugat-Bony Eric E   Biderre-Petit Corinne C   Jaziri Faouzi F   David Maude M MM   Denonfoux Jérémie J   Lyon Delina Y DY   Richard Jean-Yves JY   Curvers Cyrille C   Boucher Delphine D   Vogel Timothy M TM   Peyretaillade Eric E   Peyret Pierre P  

Microbial biotechnology 20120321 5


The bioremediation of chloroethene contaminants in groundwater polluted systems is still a serious environmental challenge. Many previous studies have shown that cooperation of several dechlorinators is crucial for complete dechlorination of trichloroethene to ethene. In the present study, we used an explorative functional DNA microarray (DechloArray) to examine the composition of specific functional genes in groundwater samples in which chloroethene bioremediation was enhanced by delivery of hy  ...[more]

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