BackgroundMost of our knowledge about the remarkable microbial diversity on Earth comes from sequencing the 16S rRNA gene. The use of next-generation sequencing methods has increased sample number and sequencing depth, but the read length of the most widely used sequencing platforms today is quite short, requiring the researcher to choose a subset of the gene to sequence (typically 16-33% of the total length). Thus, many bacteria may share the same amplified region, and the resolution of profiling is inherently limited. Platforms that offer ultra-long read lengths, whole genome shotgun sequencing approaches, and computational frameworks formerly suggested by us and by others all allow different ways to circumvent this problem yet suffer var...
The 16S rRNA gene has been a mainstay of sequence-based bacterial analysis for decades. However, hig...
Abstract Background Microorganisms comprise the majority of living organisms on our planet. For many...
High-throughput molecular technologies can profile microbial communities at high resolution even in ...
BackgroundMost of our knowledge about the remarkable microbial diversity on Earth comes from sequenc...
Abstract Background Most of our knowledge about the remarkable microbial diversity on Earth comes fr...
Background: 16S rRNA genes have been widely used for phylogenetic reconstruction and the quantificat...
The high throughput and cost-effectiveness afforded by short-read sequencing technologies, in princi...
The high throughput and cost-effectiveness afforded by short-read sequencing technologies, in princi...
The emergence of massively parallel sequencing technology has revolutionized microbial profiling, al...
<div><p>The high throughput and cost-effectiveness afforded by short-read sequencing technologies, i...
The high throughput and cost-effectiveness afforded by short-read sequencing technologies, in princi...
International audienceBackground: Microorganisms comprise the majority of living organisms on our pl...
International audienceBackground: Microorganisms comprise the majority of living organisms on our pl...
Background: Profiling the microbiome of low-biomass samples is challenging for metagenomics since th...
Background: Microorganisms comprise the majority of living organisms on our planet For many years, e...
The 16S rRNA gene has been a mainstay of sequence-based bacterial analysis for decades. However, hig...
Abstract Background Microorganisms comprise the majority of living organisms on our planet. For many...
High-throughput molecular technologies can profile microbial communities at high resolution even in ...
BackgroundMost of our knowledge about the remarkable microbial diversity on Earth comes from sequenc...
Abstract Background Most of our knowledge about the remarkable microbial diversity on Earth comes fr...
Background: 16S rRNA genes have been widely used for phylogenetic reconstruction and the quantificat...
The high throughput and cost-effectiveness afforded by short-read sequencing technologies, in princi...
The high throughput and cost-effectiveness afforded by short-read sequencing technologies, in princi...
The emergence of massively parallel sequencing technology has revolutionized microbial profiling, al...
<div><p>The high throughput and cost-effectiveness afforded by short-read sequencing technologies, i...
The high throughput and cost-effectiveness afforded by short-read sequencing technologies, in princi...
International audienceBackground: Microorganisms comprise the majority of living organisms on our pl...
International audienceBackground: Microorganisms comprise the majority of living organisms on our pl...
Background: Profiling the microbiome of low-biomass samples is challenging for metagenomics since th...
Background: Microorganisms comprise the majority of living organisms on our planet For many years, e...
The 16S rRNA gene has been a mainstay of sequence-based bacterial analysis for decades. However, hig...
Abstract Background Microorganisms comprise the majority of living organisms on our planet. For many...
High-throughput molecular technologies can profile microbial communities at high resolution even in ...