Search PubMed⌕ Search

PubMed · 11253026

Soil solution extraction techniques for microbial ecotoxicity testing: a comparative evaluation.

Abstract

The suitability of two different techniques (centrifugation and Rhizon sampler) for obtaining the interstitial pore water of soil (soil solution), integral to the ecotoxicity assessment of metal contaminated soil, were investigated by combining chemical analyses and a luminescence-based microbial biosensor. Two different techniques, centrifugation and Rhizon sampler, were used to extract the soil solution from Insch (a loamy sand) and Boyndie (a sandy loam) soils, which had been amended with different concentrations of Zn and Cd. The concentrations of dissolved organic carbon (DOC), major anions (F- , CI-, NO3, SO4(2-)) and major cations (K+, Mg2+, Ca2+) in the soil solutions varied depending on the extraction technique used. Overall, the concentrations of Zn and Cd were significantly higher in the soil solution extracted using the centrifugation technique compared with that extracted using the Rhizon sampler technique. Furthermore, the differences observed between the two extraction techniques depended on the type of soil from which the solution was being extracted. The luminescence-based biosensor Escherichia coli HB101 pUCD607 was shown to respond to the free metal concentrations in the soil solutions and showed that different toxicities were associated with each soil, depending on the technique used to extract the soil solution. This study highlights the need to characterise the type of extraction technique used to obtain the soil solution for ecotoxicity testing in order that a representative ecotoxicity assessment can be carried out.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

T Tiensing, S Preston, N Strachan, G I Paton. 2001. Soil solution extraction techniques for microbial ecotoxicity testing: a comparative evaluation.. https://doi.org/10.1039/b007851o

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Evaluation of the phosphorescent palladium(II)-coproporphyrin labels in separation-free hybridization assays.

Palladium(II)-coproporphyrin label and a set of corresponding monofunctional labeling reagents with different linker arms were evaluated for labeling of oligonucleotides and subsequent use in hybridization assays. The properties of resulting oligonucleotide probes including phosphorescence spectra, quantum yields, lifetimes, and labeling yields were examined as functions of the label and oligonucleotide structures. Upon hybridization with complementary sequences bearing dabcyl, QSY-7, and rhodamine green dyes, the probes displayed strong quenching due to close proximity effects. Intensity and lifetime changes of the phosphorescence, distance, and temperature dependences were investigated in detail. The potential of the new label and probes for sensitive and separation-free hybridization assays was discussed.

Biological Assay↗

A specific ceramide kinase assay to measure cellular levels of ceramide.

Human ceramide kinase was recently cloned and characterized. Recombinant ceramide kinase is highly active and ceramide is the only lipid that it phosphorylates, indicating that it should be useful for the measurement of ceramide levels in biological samples by conversion to ceramide-1-phosphate, in a manner analogous to that of the widely used Escherichia coli diacylglycerol kinase method. Using recombinant ceramide kinase, we have now developed a rapid and specific enzymatic method to quantify mass levels of long-chain ceramides in cellular lipid extracts. This new ceramide kinase assay is more specific than the commonly used diacylglycerol kinase method because the ubiquitous lipid diacylglycerol, the preferred substrate for diacyglycerol kinase which is usually present at higher concentrations than ceramide and can interfere with ceramide phosphorylation, is completely inactive with ceramide kinase. Moreover, this high specificity eliminates the need for analysis of the lipid product by thin-layer chromatography since ceramide-1-phosphate is the only radiolabeled lipid in organic solvent extracts of ceramide kinase reactions.

Biological Assay↗