Reactive oxygen species (ROS) are important molecules in the plant, which are involved in many biological processes, including fiber development and adaptation to abiotic stress in cotton. We carried out transcription analysis to determine the evolution of the ROS genes and analyzed their expression levels in various tissues of cotton plant under abiotic stress conditions. There were 515, 260, and 261 genes of ROS network that were identified in Gossypium hirsutum (AD1 genome), G. arboreum (A genome), and G. raimondii (D genome), respectively. The ROS network genes were found to be distributed in all the cotton chromosomes, but with a tendency of aggregating on either the lower or upper arms of the chromosomes. Moreover, all the cotton ROS ...
Catalases (CATs), which were coded by the catalase gene family, were a type notably distinguished RO...
<div><p>Background</p><p>Plants often face multiple stresses including drought, extreme temperature,...
This article studies the evolution of oxidative stress related genes in a single plant cell by condu...
Abstract Background Reactive oxygen species (ROS) play a prominent role in signal transduction and c...
Abstract Background Superoxide dismutases (SODs) are a key antioxidant enzyme family, which have bee...
Drought is one of the most important abiotic stresses that seriously affects cotton growth, developm...
Abstract Background The Raffinose synthetase (RAFS) genes superfamily is critical for the synthesis ...
<div><p>Nitric oxide (NO) is an important signaling molecule with diverse physiological functions in...
Uncovering the underlying mechanism of salt tolerance is important to breed cotton varieties with im...
Uncovering the underlying mechanism of salt tolerance is important to breed cotton varieties with im...
Uncovering the underlying mechanism of salt tolerance is important to breed cotton varieties with im...
Uncovering the underlying mechanism of salt tolerance is important to breed cotton varieties with im...
Abiotic stress is a major environmental factor that limits cotton growth and yield, moreover, this p...
AbstractSuperoxide dismutases (SODs) convert highly reactive superoxide radicals to hydrogen peroxid...
Nitric oxide (NO) is an important signaling molecule with diverse physiological functions in plants....
Catalases (CATs), which were coded by the catalase gene family, were a type notably distinguished RO...
<div><p>Background</p><p>Plants often face multiple stresses including drought, extreme temperature,...
This article studies the evolution of oxidative stress related genes in a single plant cell by condu...
Abstract Background Reactive oxygen species (ROS) play a prominent role in signal transduction and c...
Abstract Background Superoxide dismutases (SODs) are a key antioxidant enzyme family, which have bee...
Drought is one of the most important abiotic stresses that seriously affects cotton growth, developm...
Abstract Background The Raffinose synthetase (RAFS) genes superfamily is critical for the synthesis ...
<div><p>Nitric oxide (NO) is an important signaling molecule with diverse physiological functions in...
Uncovering the underlying mechanism of salt tolerance is important to breed cotton varieties with im...
Uncovering the underlying mechanism of salt tolerance is important to breed cotton varieties with im...
Uncovering the underlying mechanism of salt tolerance is important to breed cotton varieties with im...
Uncovering the underlying mechanism of salt tolerance is important to breed cotton varieties with im...
Abiotic stress is a major environmental factor that limits cotton growth and yield, moreover, this p...
AbstractSuperoxide dismutases (SODs) convert highly reactive superoxide radicals to hydrogen peroxid...
Nitric oxide (NO) is an important signaling molecule with diverse physiological functions in plants....
Catalases (CATs), which were coded by the catalase gene family, were a type notably distinguished RO...
<div><p>Background</p><p>Plants often face multiple stresses including drought, extreme temperature,...
This article studies the evolution of oxidative stress related genes in a single plant cell by condu...