scispace - formally typeset
Journal ArticleDOI

Toxicity of heavy metals to microorganisms and microbial processes in agricultural soils: a review.

Reads0
Chats0
TLDR
In this article, a hypothesis is formulated to explain how microorganisms may become affected by gradually increasing soil metal concentrations and this is discussed in relation to defining safe or critical soil metal loadings for soil protection.
Abstract
An increasing body of evidence suggests that microorganisms are far more sensitive to heavy metal stress than soil animals or plants growing on the same soils. Not surprisingly, most studies of heavy metal toxicity to soil microorganisms have concentrated on effects where loss of microbial function can be observed and yet such studies may mask underlying effects on biodiversity within microbial populations and communities. The types of evidence which are available for determining critical metal concentrations or loadings for microbial processes and populations in agricultural soil are assessed, particularly in relation to the agricultural use of sewage sludge. Much of the confusion in deriving critical toxic concentrations of heavy metals in soils arises from comparison of experimental results based on short-term laboratory ecotoxicological studies with results from monitoring of long-term exposures of microbial populations to heavy metals in field experiments. The laboratory studies in effect measure responses to immediate, acute toxicity (disturbance) whereas the monitoring of field experiments measures responses to long-term chronic toxicity (stress) which accumulates gradually. Laboratory ecotoxicological studies are the most easily conducted and by far the most numerous, but are difficult to extrapolate meaningfully to toxic effects likely to occur in the field. Using evidence primarily derived from long-term field experiments, a hypothesis is formulated to explain how microorganisms may become affected by gradually increasing soil metal concentrations and this is discussed in relation to defining “safe” or “critical” soil metal loadings for soil protection.

read more

Citations
More filters
Journal ArticleDOI

Chromium fractionation in semi-arid soils amended with chromium and tannery sludge

TL;DR: It is suggested that even in a sparingly available Cr fraction in semi-arid soils has effect on microbial activities.
Journal ArticleDOI

The spatial distribution, contamination, and ecological risk assessment of heavy metals of farmland soils in Karashahar–Baghrash oasis, northwest China

TL;DR: In this paper, farmland soil samples from 79 sampling sites were collected in Karashahar-Baghrash oasis, northwest China, and the contents of eight heavy metal elements (As, Cd, Cr, Ni, Pb, and Zn) were determined by standard methods.
Journal ArticleDOI

Effects of bacteria on metal bioavailability, speciation, and mobility in different metal mine soils: a column study

TL;DR: In this article, the authors evaluated the effects of metal tolerant bacterial inoculation (Burkholderia cepacia, accession number: AB051408) on metal release, monitor the migration of metals in the rhizospheric horizon (0-20 cm), and investigate metal speciation and sequential fractions in soil.
Journal ArticleDOI

The complicated substrates enhance the microbial diversity and zinc leaching efficiency in sphalerite bioleaching system

TL;DR: The results showed that the complicated substrates could significantly enhance microbial diversity and activity of function and that leaching efficiency showed a positive and significant relationship with microbial diversity.
Journal ArticleDOI

Contaminant driven genetic erosion: a case study with Daphnia longispina.

TL;DR: This case study suggests the possibility of a further loss of genotypes due to some negative linkages between the sensitivity to potential ulterior toxicants and the use of selectable markers and neutral markers to evaluate a contaminant‐driven loss of genetic diversity and possible implications of genetic erosion on populations' viability.
References
More filters
Journal ArticleDOI

An extraction method for measuring soil microbial biomass c

TL;DR: In this paper, the effects of fumigation on organic C extractable by 0.5 m K2SO4 were examined in a contrasting range of soils and it was shown that both ATP and organic C rendered decomposable by CHCl3 came from the soil microbial biomass.
Journal ArticleDOI

Phylogenetic identification and in situ detection of individual microbial cells without cultivation.

TL;DR: Phylogenetic analysis of the retrieved rRNA sequence of an uncultured microorganism reveals its closest culturable relatives and may, together with information on the physicochemical conditions of its natural habitat, facilitate more directed cultivation attempts.
Journal ArticleDOI

Diversity in tropical rain forests and coral reefs.

TL;DR: The commonly observed high diversity of trees in tropical rain forests and corals on tropical reefs is a nonequilibrium state which, if not disturbed further, will progress toward a low-diversity equilibrium community as mentioned in this paper.
Book

Plant Strategies and Vegetation Processes

TL;DR: In this paper, the authors present plant strategies in the established phase and the regenerative phase in the emerging phase, respectively, and discuss the relationship between the two phases: primary strategies and secondary strategies.
Journal ArticleDOI

Evidence for the existence of three primary strategies in plants and its relevance to ecological and evolutionary theory

TL;DR: A triangular model based upon the three strategies of evolution in plants may be reconciled with the theory of r- and K-selection, provides an insight into the processes of vegetation succession and dominance, and appears to be capable of extension to fungi and to animals.
Related Papers (5)