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Regulation of L-proline biosynthesis, signal transduction, transport,  accumulation and its vital role in plants during variable environmental  conditions - ScienceDirect
Regulation of L-proline biosynthesis, signal transduction, transport, accumulation and its vital role in plants during variable environmental conditions - ScienceDirect

Acclimation of liverwort Marchantia polymorpha to physiological drought  reveals important roles of antioxidant enzymes, proline and abscisic acid  in land plant adaptation to osmotic stress [PeerJ]
Acclimation of liverwort Marchantia polymorpha to physiological drought reveals important roles of antioxidant enzymes, proline and abscisic acid in land plant adaptation to osmotic stress [PeerJ]

Regulation of L-proline biosynthesis, signal transduction, transport,  accumulation and its vital role in plants during variable environmental  conditions - ScienceDirect
Regulation of L-proline biosynthesis, signal transduction, transport, accumulation and its vital role in plants during variable environmental conditions - ScienceDirect

Regulation of L-proline biosynthesis, signal transduction, transport,  accumulation and its vital role in plants during variable environmental  conditions - ScienceDirect
Regulation of L-proline biosynthesis, signal transduction, transport, accumulation and its vital role in plants during variable environmental conditions - ScienceDirect

IJMS | Free Full-Text | Contribution of Exogenous Proline to Abiotic  Stresses Tolerance in Plants: A Review
IJMS | Free Full-Text | Contribution of Exogenous Proline to Abiotic Stresses Tolerance in Plants: A Review

Effect of Foliar Application of Proline on Morphological and Physiological  Traits of Calendula officinalis L. under
Effect of Foliar Application of Proline on Morphological and Physiological Traits of Calendula officinalis L. under

Proline metabolism as regulatory hub: Trends in Plant Science
Proline metabolism as regulatory hub: Trends in Plant Science

Multifaceted role of Proline in the responses of plants to stress.... |  Download Scientific Diagram
Multifaceted role of Proline in the responses of plants to stress.... | Download Scientific Diagram

Exogenous Proline-Mediated Abiotic Stress Tolerance in Plants: Possible  Mechanisms | SpringerLink
Exogenous Proline-Mediated Abiotic Stress Tolerance in Plants: Possible Mechanisms | SpringerLink

Proline Protects Plants Against Abiotic Oxidative Stress: Biochemical and  Molecular Mechanisms - ScienceDirect
Proline Protects Plants Against Abiotic Oxidative Stress: Biochemical and Molecular Mechanisms - ScienceDirect

AG Funck - Projects
AG Funck - Projects

Proline, A Peculiar Amino Acid with Astucious Functions in Development and  Salt Tolerance Process in Plants | Journal of Food Nutrition and Metabolism  | Science Repository | Open Access
Proline, A Peculiar Amino Acid with Astucious Functions in Development and Salt Tolerance Process in Plants | Journal of Food Nutrition and Metabolism | Science Repository | Open Access

Regulation of L-proline biosynthesis, signal transduction, transport,  accumulation and its vital role in plants during variable environmental  conditions - ScienceDirect
Regulation of L-proline biosynthesis, signal transduction, transport, accumulation and its vital role in plants during variable environmental conditions - ScienceDirect

Characterization of LhSorP5CS, a gene catalyzing proline synthesis in  Oriental hybrid lily Sorbonne: molecular modelling and expression analysis  | Botanical Studies | Full Text
Characterization of LhSorP5CS, a gene catalyzing proline synthesis in Oriental hybrid lily Sorbonne: molecular modelling and expression analysis | Botanical Studies | Full Text

Frontiers | Proline Accumulation in Pollen Grains as Potential Target for  Improved Yield Stability Under Salt Stress
Frontiers | Proline Accumulation in Pollen Grains as Potential Target for Improved Yield Stability Under Salt Stress

Proline Metabolism and Its Implications for Plant-Environment Interaction
Proline Metabolism and Its Implications for Plant-Environment Interaction

Plants | Free Full-Text | Abiotic Stress in Crop Species: Improving  Tolerance by Applying Plant Metabolites
Plants | Free Full-Text | Abiotic Stress in Crop Species: Improving Tolerance by Applying Plant Metabolites

Frontiers | Role of proline and pyrroline-5-carboxylate metabolism in plant  defense against invading pathogens
Frontiers | Role of proline and pyrroline-5-carboxylate metabolism in plant defense against invading pathogens

Cells | Free Full-Text | Enhancing Salt Tolerance of Plants: From Metabolic  Reprogramming to Exogenous Chemical Treatments and Molecular Approaches
Cells | Free Full-Text | Enhancing Salt Tolerance of Plants: From Metabolic Reprogramming to Exogenous Chemical Treatments and Molecular Approaches

Proline, A Peculiar Amino Acid with Astucious Functions in Development and  Salt Tolerance Process in Plants | Journal of Food Nutrition and Metabolism  | Science Repository | Open Access
Proline, A Peculiar Amino Acid with Astucious Functions in Development and Salt Tolerance Process in Plants | Journal of Food Nutrition and Metabolism | Science Repository | Open Access

1. Multifunctional roles of proline in plants to mitigate deleterious... |  Download Scientific Diagram
1. Multifunctional roles of proline in plants to mitigate deleterious... | Download Scientific Diagram

Frontiers | Proline Accumulation Influenced by Osmotic Stress in Arbuscular  Mycorrhizal Symbiotic Plants
Frontiers | Proline Accumulation Influenced by Osmotic Stress in Arbuscular Mycorrhizal Symbiotic Plants

Regulation of L-proline biosynthesis, signal transduction, transport,  accumulation and its vital role in plants during variable environmental  conditions | Semantic Scholar
Regulation of L-proline biosynthesis, signal transduction, transport, accumulation and its vital role in plants during variable environmental conditions | Semantic Scholar

Exogenous Proline-Mediated Abiotic Stress Tolerance in Plants: Possible  Mechanisms | SpringerLink
Exogenous Proline-Mediated Abiotic Stress Tolerance in Plants: Possible Mechanisms | SpringerLink