The internal transcribed spacer (ITS) region of nuclear ribosomal DNA is a common marker not only for the molecular identification of different taxa and strains, but also for the analysis of population structure of wild microparasite communities. Importantly, the multicopy nature of this region allows the amplification of low-quantity samples of the target DNA, a common problem in studies on unicellular, unculturable microparasites. We analysed ITS sequences from the protozoan parasite Caullerya mesnili (class Ichthyosporea) infecting waterflea (Daphnia) hosts, across several host population samples. We showed that analysing representative ITS-types [as identified by statistical parsimony network analysis (SPN)] is a suitable method to addr...
Background: Detailed knowledge of spatial and temporal variation in the genetic population structure...
Background: Detailed knowledge of spatial and temporal variation in the genetic population structure...
Background: Detailed knowledge of spatial and temporal variation in the genetic population structure...
The internal transcribed spacer (ITS) region of nuclear ribosomal DNA is a common marker not only fo...
The internal transcribed spacer (ITS) region of nuclear ribosomal DNA is a common marker not only fo...
The internal transcribed spacer (ITS) region of nuclear ribosomal DNA is a common marker not only fo...
Background: Detailed knowledge of spatial and temporal variation in the genetic population structure...
Background: Detailed knowledge of spatial and temporal variation in the genetic population structure...
Background: Detailed knowledge of spatial and temporal variation in the genetic population structure...
Background: Detailed knowledge of spatial and temporal variation in the genetic population structure...
BACKGROUND: Detailed knowledge of spatial and temporal variation in the genetic population structure...
Next generation sequencing (NGS) platforms are replacing traditional molecular biology protocols lik...
Next generation sequencing (NGS) platforms are replacing traditional molecular biology protocols lik...
Next generation sequencing (NGS) platforms are replacing traditional molecular biology protocols lik...
Background: Detailed knowledge of spatial and temporal variation in the genetic population structure...
Background: Detailed knowledge of spatial and temporal variation in the genetic population structure...
Background: Detailed knowledge of spatial and temporal variation in the genetic population structure...
Background: Detailed knowledge of spatial and temporal variation in the genetic population structure...
The internal transcribed spacer (ITS) region of nuclear ribosomal DNA is a common marker not only fo...
The internal transcribed spacer (ITS) region of nuclear ribosomal DNA is a common marker not only fo...
The internal transcribed spacer (ITS) region of nuclear ribosomal DNA is a common marker not only fo...
Background: Detailed knowledge of spatial and temporal variation in the genetic population structure...
Background: Detailed knowledge of spatial and temporal variation in the genetic population structure...
Background: Detailed knowledge of spatial and temporal variation in the genetic population structure...
Background: Detailed knowledge of spatial and temporal variation in the genetic population structure...
BACKGROUND: Detailed knowledge of spatial and temporal variation in the genetic population structure...
Next generation sequencing (NGS) platforms are replacing traditional molecular biology protocols lik...
Next generation sequencing (NGS) platforms are replacing traditional molecular biology protocols lik...
Next generation sequencing (NGS) platforms are replacing traditional molecular biology protocols lik...
Background: Detailed knowledge of spatial and temporal variation in the genetic population structure...
Background: Detailed knowledge of spatial and temporal variation in the genetic population structure...
Background: Detailed knowledge of spatial and temporal variation in the genetic population structure...
Background: Detailed knowledge of spatial and temporal variation in the genetic population structure...