Javascript must be enabled to continue!
A Functional Exodermal Suberin is Key for Plant Nutrition and Growth in Potato
View through CrossRef
ABSTRACT
Angiosperm roots, except in Arabidopsis, have both endodermis and exodermis, which regulate radial water and solute movement through lignin and suberin deposition. While endodermal suberin in Arabidopsis acts as a barrier to water and solute uptake and backflow, its implications in other angiosperms with both layers and the role of exodermal suberin remain unclear. We examined potato roots (
Solanum tuberosum
) and found that exodermis lacks the typical Casparian strip but forms an outer lignin cap, and quickly suberizes near the root tip. In contrast, a few endodermal cells, with Casparian strip, start suberizing much later. The continuous early exodermal suberization covering the root underlines its potential role in mineral nutrient radial movement. To demonstrate it, we used plants downregulating the suberin biosynthetic gene
CYP86A33
, which had the root suberin reduced in a 61%. Phenotypic analyses of the suberin-deficient mutant showed altered mineral nutrient concentration, slightly reduced water content and compromised growth. Micro-PIXE analyses identified the distribution of elements within the roots and highlighted anatomical compartments defined by apoplastic barriers. These findings advance our understanding of nutrient radial transport, demonstrate exodermal suberin as a bidirectional and selective barrier to element movement, and underscore its importance in nutrient homeostasis and plant growth.
Title: A Functional Exodermal Suberin is Key for Plant Nutrition and Growth in Potato
Description:
ABSTRACT
Angiosperm roots, except in Arabidopsis, have both endodermis and exodermis, which regulate radial water and solute movement through lignin and suberin deposition.
While endodermal suberin in Arabidopsis acts as a barrier to water and solute uptake and backflow, its implications in other angiosperms with both layers and the role of exodermal suberin remain unclear.
We examined potato roots (
Solanum tuberosum
) and found that exodermis lacks the typical Casparian strip but forms an outer lignin cap, and quickly suberizes near the root tip.
In contrast, a few endodermal cells, with Casparian strip, start suberizing much later.
The continuous early exodermal suberization covering the root underlines its potential role in mineral nutrient radial movement.
To demonstrate it, we used plants downregulating the suberin biosynthetic gene
CYP86A33
, which had the root suberin reduced in a 61%.
Phenotypic analyses of the suberin-deficient mutant showed altered mineral nutrient concentration, slightly reduced water content and compromised growth.
Micro-PIXE analyses identified the distribution of elements within the roots and highlighted anatomical compartments defined by apoplastic barriers.
These findings advance our understanding of nutrient radial transport, demonstrate exodermal suberin as a bidirectional and selective barrier to element movement, and underscore its importance in nutrient homeostasis and plant growth.
Related Results
Linking White‐Tailed Deer Density, Nutrition, and Vegetation in a Stochastic Environment
Linking White‐Tailed Deer Density, Nutrition, and Vegetation in a Stochastic Environment
ABSTRACT
Density‐dependent behavior underpins white‐tailed deer (
Odocoileus virginianus
) theory and...
Cutin and Suberin Polyesters
Cutin and Suberin Polyesters
Abstract
Cutin and suberin are cell wall‐associated glycerolipid polymers that are specific to plants. Cutin forms the framework of the cuticle ...
Extracellular membrane tubules involved in suberin deposition in plant cell walls
Extracellular membrane tubules involved in suberin deposition in plant cell walls
Abstract
Suberin is a fundamental plant biopolymer, found in protective tissues, such as seed coats, exodermis and endodermis of roots, the outer layers of stems an...
Identification of an Arabidopsis Feruloyl-Coenzyme A Transferase Required for Suberin Synthesis
Identification of an Arabidopsis Feruloyl-Coenzyme A Transferase Required for Suberin Synthesis
AbstractAll plants produce suberin, a lipophilic barrier of the cell wall that controls water and solute fluxes and restricts pathogen infection. It is often described as a heterop...
Suberin Biosynthesis, Assembly, and Regulation
Suberin Biosynthesis, Assembly, and Regulation
Suberin is a specialized cell wall modifying polymer comprising both phenolic-derived and fatty acid-derived monomers, which is deposited in below-ground dermal tissues (epidermis,...
Adoption of potato varieties in West and Kellem Wollega Zones, Ethiopia
Adoption of potato varieties in West and Kellem Wollega Zones, Ethiopia
Potato (Solanum tuberosum L.) is one of the possible food security crops which provide high yield and quality product in short period of time. Due to the lack of clearly known best...
Comparison of Functional and Nutritional Properties of Potato Peel Waste as Alternative for Potato Flour
Comparison of Functional and Nutritional Properties of Potato Peel Waste as Alternative for Potato Flour
Abstract
The primary objective of this study was to assess the bio-functional, nutritional, physicochemical, and morphological characteristics of potato peel flour derive...
Seed Potato Quality Assurance in Ethiopia: System Analysis and Considerations on Quality Declared Assurance PracticesSeed Potato Quality Assurance in Ethiopia: System Analysis and Considerations on Quality Declared Assurance Practices
Seed Potato Quality Assurance in Ethiopia: System Analysis and Considerations on Quality Declared Assurance PracticesSeed Potato Quality Assurance in Ethiopia: System Analysis and Considerations on Quality Declared Assurance Practices
Potato is among the strategic food security commodities in Ethiopia, and the country possesses the highest potential for its production across Africa. Smallholder potato farmers in...

