Mutations are the source of both genetic diversity and mutational load. However, the effects of increasing environmental temperature on plant mutation rates and relative impact on specific mutational classes (e.g., insertion/deletion [indel] vs. single nucleotide variant [SNV]) are unknown. This topic is important because of the poorly defined effects of anthropogenic global temperature rise on biological systems. Here, we show the impact of temperature increase on Arabidopsis thaliana mutation, studying whole genome profiles of mutation accumulation (MA) lineages grown for 11 successive generations at 29°C. Whereas growth of A. thaliana at standard temperature (ST; 23°C) is associated with a mutation rate of 7 × 10−9 base substitutions per...
<div><p>For most eukaryotes, sexual reproduction is a fundamental process that requires meiosis. In ...
Heat stress adversely affects an array of molecular and cellular events in plant cells, such as dena...
Plants are highly sensitive to environmental changes and even small variations in ambient temperatur...
<div><p>Plants are highly sensitive to environmental changes and even small variations in ambient te...
Plants are highly sensitive to environmental changes and even small variations in ambient temperatur...
Climate change will dramatically alter temperature around the world. This research aims to identify ...
Plants are highly sensitive to environmental changes and even small variations in ambient temperatur...
Abstract Background Plants exposed to environmental stresses draw upon many genetic and epigenetic s...
The environment is constantly affecting all organisms in many different ways during their entire lif...
Plants can acclimate rapidly to environmental conditions, including high temperatures. To identify m...
Eukaryotic genomes contain a vast diversity of transposable elements (TEs). Formerly often described...
Triplet repeat expansions underlie several human genetic diseases such as Huntington's disease and F...
Triplet repeat expansions underlie several human genetic diseases such as Huntington's disease and F...
Triplet repeat expansions underlie several human genetic diseases such as Huntington's disease and F...
For most eukaryotes, sexual reproduction is a fundamental process that requires meiosis. In turn, me...
<div><p>For most eukaryotes, sexual reproduction is a fundamental process that requires meiosis. In ...
Heat stress adversely affects an array of molecular and cellular events in plant cells, such as dena...
Plants are highly sensitive to environmental changes and even small variations in ambient temperatur...
<div><p>Plants are highly sensitive to environmental changes and even small variations in ambient te...
Plants are highly sensitive to environmental changes and even small variations in ambient temperatur...
Climate change will dramatically alter temperature around the world. This research aims to identify ...
Plants are highly sensitive to environmental changes and even small variations in ambient temperatur...
Abstract Background Plants exposed to environmental stresses draw upon many genetic and epigenetic s...
The environment is constantly affecting all organisms in many different ways during their entire lif...
Plants can acclimate rapidly to environmental conditions, including high temperatures. To identify m...
Eukaryotic genomes contain a vast diversity of transposable elements (TEs). Formerly often described...
Triplet repeat expansions underlie several human genetic diseases such as Huntington's disease and F...
Triplet repeat expansions underlie several human genetic diseases such as Huntington's disease and F...
Triplet repeat expansions underlie several human genetic diseases such as Huntington's disease and F...
For most eukaryotes, sexual reproduction is a fundamental process that requires meiosis. In turn, me...
<div><p>For most eukaryotes, sexual reproduction is a fundamental process that requires meiosis. In ...
Heat stress adversely affects an array of molecular and cellular events in plant cells, such as dena...
Plants are highly sensitive to environmental changes and even small variations in ambient temperatur...