<p>Quantification of (A) crude extracted DNA, (B) 16S rRNA genes, (C) 18S rRNA genes, (D) archaeal 16S rRNA genes according to three different extraction procedures (ISO, GnS-GII and ISOm) in five different soils (C, E, F, L, R). Bars correspond to averages of three replicates ± SD (n = 3). Within each soil, bars topped by the same letter are not significantly different at <i>p</i><0.05.</p
International audienceExtracting DNA directly from micro-organisms living in soil is a crucial step ...
Despite recent technological advances in molecular ecology, DNA extraction from soil remains a cruci...
During the last two decades, novel molecular and robust methods were developed that were well-suite...
Currently, characterization of soil microbial communities relies heavily on the use of molecular app...
<div><p>Soil DNA extraction has become a critical step in describing microbial biodiversity. Histori...
Extracting DNA directly from micro-organisms living in soil is a crucial step for the molecular anal...
Soil DNA extraction has become a critical step in describing microbial biodiversity. Historically, a...
Soil DNA extraction has become a critical step in describing microbial biodiversity. Historically, a...
All molecular analyses of soil bacterial diversity are based on the extraction of a representative f...
For the last two decades, soil microbial diversity studies have been dependent upon the extraction a...
International audienceExtracting DNA directly from micro-organisms living in soil is a crucial step ...
International audienceExtracting DNA directly from micro-organisms living in soil is a crucial step ...
Despite recent technological advances in molecular ecology, DNA extraction from soil remains a cruci...
During the last two decades, novel molecular and robust methods were developed that were well-suite...
Currently, characterization of soil microbial communities relies heavily on the use of molecular app...
<div><p>Soil DNA extraction has become a critical step in describing microbial biodiversity. Histori...
Extracting DNA directly from micro-organisms living in soil is a crucial step for the molecular anal...
Soil DNA extraction has become a critical step in describing microbial biodiversity. Historically, a...
Soil DNA extraction has become a critical step in describing microbial biodiversity. Historically, a...
All molecular analyses of soil bacterial diversity are based on the extraction of a representative f...
For the last two decades, soil microbial diversity studies have been dependent upon the extraction a...
International audienceExtracting DNA directly from micro-organisms living in soil is a crucial step ...
International audienceExtracting DNA directly from micro-organisms living in soil is a crucial step ...
Despite recent technological advances in molecular ecology, DNA extraction from soil remains a cruci...
During the last two decades, novel molecular and robust methods were developed that were well-suite...