The Ability to Regulate Transmembrane Potassium Transport in Root Is Critical for Drought Tolerance in Barley.
Ontology highlight
ABSTRACT: In this work, the effect of drought on K+ uptake in root and its translocation from root to shoot was investigated using six barley genotypes contrasting in drought tolerance. Results showed that drought conditions caused significant changes in K+ uptake and translocation in a time- and genotype-specific manner, which consequently resulted in a significant difference in tissue K+ contents and drought tolerance levels between the contrasting barley genotypes. The role of K+ transporters and channels and plasma membrane (PM) H+-ATPase in barley's adaptive response to drought stress was further investigated at the transcript level. The expression of genes conferring K+ uptake (HvHAK1, HvHAK5, HvKUP1, HvKUP2 and HvAKT1) and xylem loading (HvSKOR) in roots were all affected by drought stress in
SUBMITTER: Cai K
PROVIDER: S-EPMC6747136 | biostudies-literature | 2019 Aug
REPOSITORIES: biostudies-literature
ACCESS DATA