Transposable elements (TEs) represent the single largest component of numerous eukaryotic genomes, and their activity and dispersal constitute an important force fostering evolutionary innovation. The horizontal transfer of TEs (HTT) between eukaryotic species is a common and widespread phenomenon that has had a profound impact on TE dynamics and, consequently, on the evolutionary trajectory of many species' lineages. However, the mechanisms promoting HTT remain largely unknown. In this article, we argue that network theory combined with functional ecology provides a robust conceptual framework and tools to delineate how complex interactions between diverse organisms may act in synergy to promote HTTs
With the advent of whole genome sequencing, it became apparent that horizontal transfer gene (HGT) i...
Horizontal gene transfer (HGT; also known as lateral gene transfer, LGT) refers to the movement of g...
Horizontal gene transfer (HGT) plays a significant role in microbial evolution. It can accelerate th...
Transposable elements (TEs) represent the single largest component of numerous eukaryotic genomes, a...
Transposable elements (TEs) are mobile DNA sequences, colloquially known as ‘jumping genes’ because ...
AbstractTransposable elements (TEs) are the major components of eukaryotic genomes. Their propensity...
Horizontal gene transfer (HGT) is a major source of phenotypic innovation and a mechanism of niche a...
Genetic exchanges among prokaryotes, formerly considered only a marginal phenomenon, increasingly ar...
Horizontal gene transfer is central to microbial evolution, because it enables genetic regions to sp...
Horizontal gene transfer is central to microbial evolution, because it enables genetic regions to sp...
Eukaryotes and prokaryotes have distinct genome architectures, withmarked differences in genome size...
Horizontal Gene Transfer (HGT) is an essential force in microbial evolution. Despite detailed studie...
Horizontal gene transfer (HGT), a mechanism that facilitates exchange of genetic material between or...
Horizontal gene transfer (HGT) is probably the most important mechanism for functional novelty and a...
Abstract Horizontal transfer (HT) refers to the exchange of genetic material between divergent speci...
With the advent of whole genome sequencing, it became apparent that horizontal transfer gene (HGT) i...
Horizontal gene transfer (HGT; also known as lateral gene transfer, LGT) refers to the movement of g...
Horizontal gene transfer (HGT) plays a significant role in microbial evolution. It can accelerate th...
Transposable elements (TEs) represent the single largest component of numerous eukaryotic genomes, a...
Transposable elements (TEs) are mobile DNA sequences, colloquially known as ‘jumping genes’ because ...
AbstractTransposable elements (TEs) are the major components of eukaryotic genomes. Their propensity...
Horizontal gene transfer (HGT) is a major source of phenotypic innovation and a mechanism of niche a...
Genetic exchanges among prokaryotes, formerly considered only a marginal phenomenon, increasingly ar...
Horizontal gene transfer is central to microbial evolution, because it enables genetic regions to sp...
Horizontal gene transfer is central to microbial evolution, because it enables genetic regions to sp...
Eukaryotes and prokaryotes have distinct genome architectures, withmarked differences in genome size...
Horizontal Gene Transfer (HGT) is an essential force in microbial evolution. Despite detailed studie...
Horizontal gene transfer (HGT), a mechanism that facilitates exchange of genetic material between or...
Horizontal gene transfer (HGT) is probably the most important mechanism for functional novelty and a...
Abstract Horizontal transfer (HT) refers to the exchange of genetic material between divergent speci...
With the advent of whole genome sequencing, it became apparent that horizontal transfer gene (HGT) i...
Horizontal gene transfer (HGT; also known as lateral gene transfer, LGT) refers to the movement of g...
Horizontal gene transfer (HGT) plays a significant role in microbial evolution. It can accelerate th...