2007Unpublished venueRequires access

Mobile Gene Elements in Environmental Microbial Communities

Diana R. Nemergut, Tamar Barkay, Jonna M. Coombs

Open publisher page 2 citations

Abstract

This chapter concentrates on characteristics of the different types of mobile elements that facilitate horizontal gene transfer (HGT) in bacteria. It begins with a discussion of the HGT; then describes the tremendous variation both within and between different classes of mobile gene transfer elements; and ends with a brief description of the techniques for studying HGT in environmental microbial communities. HGT is facilitated through some combination of the activity of mobile gene elements (MGEs) and/or host and recipient cellular enzyme systems. The chapter primarily focuses on the characteristics of the MGEs themselves. There are five basic classes of MGEs: phages, plasmids, transposons, integrons, and integrative conjugative elements (ICEs). Metagenomic techniques have revealed support for long-distance HGT in a number of bacteria and archaea. Metagenomic approaches have also been used to obtain phage genomes from environmental microbial communities. Many researchers have also taken a prospective approach to examine the frequency and factors influencing gene transfer in environmental microbial communities. Traditionally, prospective approaches have included the seeding of microcosms or environments with bacteria containing marker genes or naked DNA or plasmids and the selection of transformants.

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What this paper is about

This chapter concentrates on characteristics of the different types of mobile elements that facilitate horizontal gene transfer (HGT) in bacteria. It begins with a discussion of the HGT; then describes the tremendous variation both within and between different classes of mobile gene transfer elements; and ends with a brief description of the techniques for studying HGT in environmental microbial communities. HGT is facilitated through some combination of the activity of mobile gene elements (MGEs) and/or host and recipient cellular enzyme systems. The chapter primarily focuses on the characteristics of the MGEs themselves. There are five basic classes of MGEs: phages, plasmids, transposons, integrons, and integrative conjugative elements (ICEs). Metagenomic techniques have revealed support for long-distance HGT in a number of bacteria and archaea. Metagenomic approaches have also been used to obtain phage genomes from environmental microbial communities. Many researchers have also taken a prospective approach to examine the frequency and factors influencing gene transfer in environmental microbial communities. Traditionally, prospective approaches have included the seeding of microcosms or environments with bacteria containing marker genes or naked DNA or plasmids and the selection of transformants.

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Available abstract

This chapter concentrates on characteristics of the different types of mobile elements that facilitate horizontal gene transfer (HGT) in bacteria. It begins with a discussion of the HGT; then describes the tremendous variation both within and between different classes of mobile gene transfer elements; and ends with a brief description of the techniques for studying HGT in environmental microbial communities. HGT is facilitated through some combination of the activity of mobile gene elements (MGEs) and/or host and recipient cellular enzyme systems. The chapter primarily focuses on the characteristics of the MGEs themselves. There are five basic classes of MGEs: phages, plasmids, transposons, integrons, and integrative conjugative elements (ICEs). Metagenomic techniques have revealed support for long-distance HGT in a number of bacteria and archaea. Metagenomic approaches have also been used to obtain phage genomes from environmental microbial communities. Many researchers have also taken a prospective approach to examine the frequency and factors influencing gene transfer in environmental microbial communities. Traditionally, prospective approaches have included the seeding of microcosms or environments with bacteria containing marker genes or naked DNA or plasmids and the selection of transformants.

Key concepts: Mobile genetic elements, Horizontal gene transfer, Metagenomics, Plasmid, Biology, Transposable element, Gene, Archaea

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