Fungi fulfil a range of important ecological functions, yet current understanding of fungal biodiversity in soil is limited. Direct DNA extraction from soil, coupled with polymerase chain reaction amplification and community profiling techniques, has proved successful in investigations of bacterial ecology and shows great promise for elucidating the taxonomic and functional characteristics of soil fungal communities. These community profiling techniques include denaturing gradient gel electrophoresis (DGGE), temperature gradient gel electrophoresis (TGGE), single-strand conformation polymorphism (SSCP), terminal restriction fragment length polymorphism (T-RFLP), amplified rDNA restriction analysis (ARDRA), amplified ribosomal intergenic spa...
Soil DNA extraction has become a critical step in describing microbial biodiversity. Historically, a...
Advances in microbial ecology are sometimes driven by new...
<div><p>Soil DNA extraction has become a critical step in describing microbial biodiversity. Histori...
Molecular methods based on soil DNA extracts are increasingly being used to study the fungal diversi...
Soil fungal communities were studied using 18S rDNA-based molecular techniques. Soil DNA was analyze...
Fungi play key roles in numerous ecosystem functions, and recent advances in the study of fungal div...
The most biological diversity on this planet is probably harbored in soils. Understanding the divers...
Fungi constitute an important part of the soil ecosystem, playing key roles in decomposition, cyclin...
As part of the restoration of biodiversity on former agricultural land there has been focused on met...
ABSTRACT ganisms increases, which provides a means to determine phylogenetic relationships and to di...
Soil fungi are key component of soil biota having an important role in many ecological processes. As...
Arbuscular mycorrhizal fungi (AMF) are important components of agro-ecosystems and are especially si...
This study was designed to assess the influence of three soil DNA extraction procedures, namely the ...
The soil fungal diversity and community partitioning between the bulk soil and stone compartments wa...
This paper explores the possibility of using molecular techniques to assess fungal diversity in natu...
Soil DNA extraction has become a critical step in describing microbial biodiversity. Historically, a...
Advances in microbial ecology are sometimes driven by new...
<div><p>Soil DNA extraction has become a critical step in describing microbial biodiversity. Histori...
Molecular methods based on soil DNA extracts are increasingly being used to study the fungal diversi...
Soil fungal communities were studied using 18S rDNA-based molecular techniques. Soil DNA was analyze...
Fungi play key roles in numerous ecosystem functions, and recent advances in the study of fungal div...
The most biological diversity on this planet is probably harbored in soils. Understanding the divers...
Fungi constitute an important part of the soil ecosystem, playing key roles in decomposition, cyclin...
As part of the restoration of biodiversity on former agricultural land there has been focused on met...
ABSTRACT ganisms increases, which provides a means to determine phylogenetic relationships and to di...
Soil fungi are key component of soil biota having an important role in many ecological processes. As...
Arbuscular mycorrhizal fungi (AMF) are important components of agro-ecosystems and are especially si...
This study was designed to assess the influence of three soil DNA extraction procedures, namely the ...
The soil fungal diversity and community partitioning between the bulk soil and stone compartments wa...
This paper explores the possibility of using molecular techniques to assess fungal diversity in natu...
Soil DNA extraction has become a critical step in describing microbial biodiversity. Historically, a...
Advances in microbial ecology are sometimes driven by new...
<div><p>Soil DNA extraction has become a critical step in describing microbial biodiversity. Histori...