The potassium transporter group of the HAK/KUP/KT (high-affinity K+)/KUP (K+ uptake)/KT (K+ transporter) family plays a crucial role in plant growth and development as well as in environmental adaptation such as tolerance to salt stress. HAK/KUP/KT genes and their functions have been characterized for a number of plant species, but they remain unknown for Casuarina equisetifolia, an important tree species for coastal protection in southern China and many other countries. In this study, 25 HAK genes were identified in the C. equisetifolia genome. Their gene structure, conserved motif, phylogeny, and expression were comprehensively and systematically analyzed to understand their functions. All HAK genes were relatively conserved and could be ...
International audienceBackground: Soil salinization is a worldwide problem that is intensifying beca...
In plants, the HAK (high-affinity K+)/KUP (K+ uptake)/KT (K+ transporter) family represents a large ...
The homeodomain-leucine zipper (HD-Zip) family participates in plant growth, development, and stress...
The potassium transporter group of the HAK/KUP/KT (high-affinity K+)/KUP (K+ uptake)/KT (K+ transpor...
The high-affinity potassium transporter (HKT) genes are essential for plant salt stress tolerance. H...
Salt stress is an ever-increasing stressor that affects both plants and humans. Therefore, developin...
The high-affinity potassium transporter (HKT) genes are essential for plant salt stress tolerance. H...
<p>To survive salt stress, plants must maintain a balance between sodium and potassium ions. High-af...
The high-affinity potassium transporter (HKT) genes are key ions transporters, regulating the plant ...
High-affinity K+ (HKT) gene family is regulated the transport of Na + and maintain the balance betwe...
Plants are exposed to various environmental stresses during their life cycle such as salt, drought a...
Abstract The high-affinity K+ transporter (HAK) family plays a vital role in K+ uptake and transport...
High-affinity Potassium Transporters (HKTs) belong to an important class of integral membrane protei...
Cation antiporters of NHX family have been shown to increase the salt tolerance of various plants sp...
Su H, Golldack D, Zhao C, Bohnert HJ. The expression of HAK-type K+ transporters is regulated in res...
International audienceBackground: Soil salinization is a worldwide problem that is intensifying beca...
In plants, the HAK (high-affinity K+)/KUP (K+ uptake)/KT (K+ transporter) family represents a large ...
The homeodomain-leucine zipper (HD-Zip) family participates in plant growth, development, and stress...
The potassium transporter group of the HAK/KUP/KT (high-affinity K+)/KUP (K+ uptake)/KT (K+ transpor...
The high-affinity potassium transporter (HKT) genes are essential for plant salt stress tolerance. H...
Salt stress is an ever-increasing stressor that affects both plants and humans. Therefore, developin...
The high-affinity potassium transporter (HKT) genes are essential for plant salt stress tolerance. H...
<p>To survive salt stress, plants must maintain a balance between sodium and potassium ions. High-af...
The high-affinity potassium transporter (HKT) genes are key ions transporters, regulating the plant ...
High-affinity K+ (HKT) gene family is regulated the transport of Na + and maintain the balance betwe...
Plants are exposed to various environmental stresses during their life cycle such as salt, drought a...
Abstract The high-affinity K+ transporter (HAK) family plays a vital role in K+ uptake and transport...
High-affinity Potassium Transporters (HKTs) belong to an important class of integral membrane protei...
Cation antiporters of NHX family have been shown to increase the salt tolerance of various plants sp...
Su H, Golldack D, Zhao C, Bohnert HJ. The expression of HAK-type K+ transporters is regulated in res...
International audienceBackground: Soil salinization is a worldwide problem that is intensifying beca...
In plants, the HAK (high-affinity K+)/KUP (K+ uptake)/KT (K+ transporter) family represents a large ...
The homeodomain-leucine zipper (HD-Zip) family participates in plant growth, development, and stress...