Javascript must be enabled to continue!
Adaptive Evolution Compensated for the Plasmid Fitness Costs Brought by Specific Genetic Conflicts
View through CrossRef
New Delhi metallo-β-lactamase (NDM)-carrying IncX3 plasmids is important in the transmission of carbapenem resistance in Escherichia coli. Fitness costs related to plasmid carriage are expected to limit gene exchange; however, the causes of these fitness costs are poorly understood. Compensatory mutations are believed to ameliorate plasmid fitness costs and enable the plasmid’s wide spread, suggesting that such costs are caused by specific plasmid–host genetic conflicts. By combining conjugation tests and experimental evolution with comparative genetic analysis, we showed here that the fitness costs related to ndm/IncX3 plasmids in E. coli C600 are caused by co-mutations of multiple host chromosomal genes related to sugar metabolism and cell membrane function. Adaptive evolution revealed that mutations in genes associated with oxidative stress, nucleotide and short-chain fatty acid metabolism, and cell membranes ameliorated the costs associated with plasmid carriage. Specific genetic conflicts associated with the ndm/IncX3 plasmid in E. coli C600 involve metabolism and cell-membrane-related genes, which could be ameliorated by compensatory mutations. Collectively, our findings could explain the wide spread of IncX3 plasmids in bacterial genomes, despite their potential cost.
Title: Adaptive Evolution Compensated for the Plasmid Fitness Costs Brought by Specific Genetic Conflicts
Description:
New Delhi metallo-β-lactamase (NDM)-carrying IncX3 plasmids is important in the transmission of carbapenem resistance in Escherichia coli.
Fitness costs related to plasmid carriage are expected to limit gene exchange; however, the causes of these fitness costs are poorly understood.
Compensatory mutations are believed to ameliorate plasmid fitness costs and enable the plasmid’s wide spread, suggesting that such costs are caused by specific plasmid–host genetic conflicts.
By combining conjugation tests and experimental evolution with comparative genetic analysis, we showed here that the fitness costs related to ndm/IncX3 plasmids in E.
coli C600 are caused by co-mutations of multiple host chromosomal genes related to sugar metabolism and cell membrane function.
Adaptive evolution revealed that mutations in genes associated with oxidative stress, nucleotide and short-chain fatty acid metabolism, and cell membranes ameliorated the costs associated with plasmid carriage.
Specific genetic conflicts associated with the ndm/IncX3 plasmid in E.
coli C600 involve metabolism and cell-membrane-related genes, which could be ameliorated by compensatory mutations.
Collectively, our findings could explain the wide spread of IncX3 plasmids in bacterial genomes, despite their potential cost.
Related Results
Developing Total Force Fitness and Its Components to Achieve Optimal Military Performance in Iran
Developing Total Force Fitness and Its Components to Achieve Optimal Military Performance in Iran
Abstract
Background Military personnel is the most valuable asset of the armed forces to carry out missions. The Iranian Armed Forces have not provided a comprehensive defi...
Evolution of a Plasmid Regulatory Circuit Ameliorates Plasmid Fitness Cost
Evolution of a Plasmid Regulatory Circuit Ameliorates Plasmid Fitness Cost
ABSTRACTPlasmids play a major role in rapid adaptation of bacteria by facilitating horizontal transfer of diverse genes, most notably those conferring antibiotic resistance. While ...
Are Cervical Ribs Indicators of Childhood Cancer? A Narrative Review
Are Cervical Ribs Indicators of Childhood Cancer? A Narrative Review
Abstract
A cervical rib (CR), also known as a supernumerary or extra rib, is an additional rib that forms above the first rib, resulting from the overgrowth of the transverse proce...
Evolution of Fitness in Experimental Populations of Vesicular Stomatitis Virus
Evolution of Fitness in Experimental Populations of Vesicular Stomatitis Virus
Abstract
The evolution of fitness in experimental clonal populations of vesicular stomatitis virus (VSV) has been compared under different genetic (fitness of initia...
Coinfection promotes plasmid stability
Coinfection promotes plasmid stability
Bacteria exist in complex communities that include not only many other bacterial species but also diverse mobile genetic elements which accelerate bacterial evolution via horizonta...
Plasmid-encoded regulation of colicin E1 gene expression
Plasmid-encoded regulation of colicin E1 gene expression
A plasmid-encoded factor that regulates the expression of the colicin E1 gene was found in molecular cloning experiments. The 2,294-base-pair AvaII fragment of the colicin E1 plasm...
TRANSFORMASI PLASMID YANG MENGANDUNG GEN merB PADA Escherichia coli BL21(DE3)
TRANSFORMASI PLASMID YANG MENGANDUNG GEN merB PADA Escherichia coli BL21(DE3)
ABSTRACTDNA transformation is one of the methods for inserting DNA into bacterial cells. The current transformation method is widely used to transfer plasmids containing genetic ma...
A new device-mediated miniprep method
A new device-mediated miniprep method
AbstractSmall-scale plasmid DNA preparation or miniprep is a fundamental technique in estimation cloning experiments and is widely used for DNA methylation analysis in epigenetic r...


