Suberin is a cell-wall-associated hetero-polymer deposited in specific plant tissues. The precise role of its composition and lamellae structure in protecting plants against abiotic stresses is unclear. In Arabidopsis thaliana, we tested the biochemical and physiological responses to water deficiency and NaCl treatment in mutants that are differentially affected in suberin composition and lamellae structure. Chronic drought stress increased suberin and suberin-associated waxes in wild-type plants. Suberin-deficient mutants were not more susceptible than the wild-type to the chronic drought stress imposed in this study. Nonetheless, the cyp86a1-1 cyp86b1-1 mutant, which had a severely altered suberin composition and lamellae structure, exhib...
Plant roots acquire nutrients and water while managing interactions with the soil microbiota. The ro...
C4 grasses often outperform C3 species under hot, arid conditions due to superior water and nitrog...
Drought is one of the most stressful environments limiting crop growth and yield throughout the worl...
Suberin is a cell-wall-associated hetero-polymer deposited in specific plant tissues. The precise ro...
Background and aims: Uncontrolled uptake of Na+ is the reason that many species are sensitive to sal...
Though central to our understanding of how roots perform their vital function of scavenging water an...
Effective regulation of water balance in plants requires localized extracellular barriers that contr...
The simultaneous occurrence of heat stress and drought is becoming more regular as a consequence of ...
The apoplastic polyester suberin forms a barrier in root endodermal and peridermal tissue. Transmiss...
Suberin, a polymer composed of both aliphatic and aromatic domains is deposited as a rough matrix up...
Effective regulation of water balance in plants requires localized extracellular barriers that contr...
All in-text references underlined in blue are linked to publications on ResearchGate, letting you ac...
Higher plants in terrestrial environments face to numerous unpredictable environmental challenges, w...
Plant roots acquire nutrients and water while managing interactions with the soil microbiota. The ro...
In plants, suberin is a complex biopolymer made of aliphatic and aromatic compounds.It is deposited ...
Plant roots acquire nutrients and water while managing interactions with the soil microbiota. The ro...
C4 grasses often outperform C3 species under hot, arid conditions due to superior water and nitrog...
Drought is one of the most stressful environments limiting crop growth and yield throughout the worl...
Suberin is a cell-wall-associated hetero-polymer deposited in specific plant tissues. The precise ro...
Background and aims: Uncontrolled uptake of Na+ is the reason that many species are sensitive to sal...
Though central to our understanding of how roots perform their vital function of scavenging water an...
Effective regulation of water balance in plants requires localized extracellular barriers that contr...
The simultaneous occurrence of heat stress and drought is becoming more regular as a consequence of ...
The apoplastic polyester suberin forms a barrier in root endodermal and peridermal tissue. Transmiss...
Suberin, a polymer composed of both aliphatic and aromatic domains is deposited as a rough matrix up...
Effective regulation of water balance in plants requires localized extracellular barriers that contr...
All in-text references underlined in blue are linked to publications on ResearchGate, letting you ac...
Higher plants in terrestrial environments face to numerous unpredictable environmental challenges, w...
Plant roots acquire nutrients and water while managing interactions with the soil microbiota. The ro...
In plants, suberin is a complex biopolymer made of aliphatic and aromatic compounds.It is deposited ...
Plant roots acquire nutrients and water while managing interactions with the soil microbiota. The ro...
C4 grasses often outperform C3 species under hot, arid conditions due to superior water and nitrog...
Drought is one of the most stressful environments limiting crop growth and yield throughout the worl...