Polyamines are small aliphatic polycations which have been involved in key stress and developmental processes in plants. In the recent years, compelling genetic and molecular evidences point to polyamines as essential metabolites required for resistance to drought, freezing, salinity, oxidative stress among other type of abiotic and biotic stresses. In addition to their role as stress-protective compounds, polyamines participate in key developmental processes mediated by specific signaling pathways or in cross-regulation with other plant hormones. Our Research Topic aims to integrate the multiple stress and developmental regulatory functions of polyamines in plants under a genetic, molecular and evolutionary perspective with special focus o...
Polyamines (PAs) are low-molecular-mass organic polycations derived from amino acids. Structurally, ...
Drought is one of the most common environmental stresses that affect growth, development and in turn...
The physiological relationship between abiotic stress in plants and polyamines was reported more tha...
Compelling evidence indicates the participation of polyamines in abiotic and biotic stress responses...
Compelling evidence indicates the participation of polyamines in abiotic and biotic stress responses...
This article belongs to the Special Issue Feature Papers.Polyamines are essential compounds for cell...
Environmental stresses including climate change, especially global warming, are severely affecting p...
Polyamines are ubiquitous polycationic aliphatic compounds known to be essential in physiological re...
Polyamines are essential compounds for cell survival and have key roles in plant stress protection. ...
Polyamines (PAs) are small polycationic compounds present in all living organisms. Compelling eviden...
Global warming is an alarming problem in agriculture and its effect on yield loss has been estimated...
Compelling evidence indicates that free polyamines (PAs) (mainly putrescine, spermidine, spermine, a...
Polyamines (PAs) are linear alkali nitrogenous with two, three or more amino groups that have a low ...
Polyamines (PAs) are low molecular weight aliphatic nitrogenous bases containing two or more amino g...
Environmental stress is increasingly wearing down crop productivity. Nowadays, one of the main aims ...
Polyamines (PAs) are low-molecular-mass organic polycations derived from amino acids. Structurally, ...
Drought is one of the most common environmental stresses that affect growth, development and in turn...
The physiological relationship between abiotic stress in plants and polyamines was reported more tha...
Compelling evidence indicates the participation of polyamines in abiotic and biotic stress responses...
Compelling evidence indicates the participation of polyamines in abiotic and biotic stress responses...
This article belongs to the Special Issue Feature Papers.Polyamines are essential compounds for cell...
Environmental stresses including climate change, especially global warming, are severely affecting p...
Polyamines are ubiquitous polycationic aliphatic compounds known to be essential in physiological re...
Polyamines are essential compounds for cell survival and have key roles in plant stress protection. ...
Polyamines (PAs) are small polycationic compounds present in all living organisms. Compelling eviden...
Global warming is an alarming problem in agriculture and its effect on yield loss has been estimated...
Compelling evidence indicates that free polyamines (PAs) (mainly putrescine, spermidine, spermine, a...
Polyamines (PAs) are linear alkali nitrogenous with two, three or more amino groups that have a low ...
Polyamines (PAs) are low molecular weight aliphatic nitrogenous bases containing two or more amino g...
Environmental stress is increasingly wearing down crop productivity. Nowadays, one of the main aims ...
Polyamines (PAs) are low-molecular-mass organic polycations derived from amino acids. Structurally, ...
Drought is one of the most common environmental stresses that affect growth, development and in turn...
The physiological relationship between abiotic stress in plants and polyamines was reported more tha...