Proline takes an exceptional place among the proteinogenic amino acids by its specific accumulation in pollen and in response to multiple types of stress. Despite the more than 50 years of research, the biochemical pathways of proline biosynthesis and degradation still await their complete characterization in plants. Also, the molecular and physiological functions of proline metabolism in plant development and defense against stress are not yet fully understood. This chapter focuses on the current knowledge about the biochemical pathways of proline metabolism in plants, on its tissue-specific regulation and subcellular compartmentation, and on still open questions. Furthermore, we will summarize what is known about the influence of proline ...
Beside its role in protein synthesis, proline plays a special role in plants both under stress and ...
Aspects of proline’s role in the plant resistance to abiotic stressors such as the ability to counte...
Free proline content in Ragi (Eleusine coracana) leaves increased markedly (6 to 85 fold) as the deg...
The accumulation of proline is a conserved response of plants to abiotic stress conditions. Moreover...
Proline is a multifunctional amino acid that is accumulated in high concentrations in plants under v...
Proline fulfils diverse functions in plants. As amino acid it is a structural component of proteins,...
The recent progresses of the research on proline will be described, focusing on plants and covering...
Adverse environmental conditions impose stress in the plant, like heat, cold, salinity, heavy metal...
Proline (Pro) accumulation is a common physiological response in many plants in response to a wide r...
Proline accumulation occurs in a large range of plant species in retaliation to the numerous abiotic...
Plants are subjected to various kinds of abiotic and biotic stresses throughout their life cycles wh...
In addition to its role in protein synthesis and the plant cells' response to environmental stresses...
The amino acid proline has a unique biological role in stress adaptation. Proline metabolism is mani...
Significance: The imino acid proline is utilized by different organisms to offset cellular imbalance...
A high accumulation of proline due to increased synthesis and decreased degradation under a variety ...
Beside its role in protein synthesis, proline plays a special role in plants both under stress and ...
Aspects of proline’s role in the plant resistance to abiotic stressors such as the ability to counte...
Free proline content in Ragi (Eleusine coracana) leaves increased markedly (6 to 85 fold) as the deg...
The accumulation of proline is a conserved response of plants to abiotic stress conditions. Moreover...
Proline is a multifunctional amino acid that is accumulated in high concentrations in plants under v...
Proline fulfils diverse functions in plants. As amino acid it is a structural component of proteins,...
The recent progresses of the research on proline will be described, focusing on plants and covering...
Adverse environmental conditions impose stress in the plant, like heat, cold, salinity, heavy metal...
Proline (Pro) accumulation is a common physiological response in many plants in response to a wide r...
Proline accumulation occurs in a large range of plant species in retaliation to the numerous abiotic...
Plants are subjected to various kinds of abiotic and biotic stresses throughout their life cycles wh...
In addition to its role in protein synthesis and the plant cells' response to environmental stresses...
The amino acid proline has a unique biological role in stress adaptation. Proline metabolism is mani...
Significance: The imino acid proline is utilized by different organisms to offset cellular imbalance...
A high accumulation of proline due to increased synthesis and decreased degradation under a variety ...
Beside its role in protein synthesis, proline plays a special role in plants both under stress and ...
Aspects of proline’s role in the plant resistance to abiotic stressors such as the ability to counte...
Free proline content in Ragi (Eleusine coracana) leaves increased markedly (6 to 85 fold) as the deg...