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A role for HKT1 in sodium uptake by wheat roots
Author(s) -
Laurie Sophie,
Feeney Kevin A.,
Maathuis Frans J. M.,
Heard Peter J.,
Brown Sherralyn J.,
Leigh Roger A.
Publication year - 2002
Publication title -
the plant journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.058
H-Index - 269
eISSN - 1365-313X
pISSN - 0960-7412
DOI - 10.1046/j.1365-313x.2002.01410.x
Subject(s) - sodium , chemistry , potassium , depolarization , transgene , salt (chemistry) , ion transporter , ion , biophysics , biochemistry , membrane , biology , gene , organic chemistry
Summary The high affinity potassium transporter, HKT1 from wheat was introduced into Florida wheat in sense and antisense orientation under control of a ubiquitin promoter. Ten transgenic lines expressing the transgene were identified and two of these showed strong down‐regulation of the native HKT1 transcript. One line (271) was expressing the antisense construct and the other (223) was expressing a truncated sense construct. The two lines were examined further for phenotype relating to cation transport. Membrane depolarisations were measured in low (0.1 m m ) K + and high (100 m m ) NaCl. Under these conditions there was no difference between line 271 and the control at low K + , but at high Na + there was a rapid depolarisation that was significantly larger in control plants. 22 Na uptake was measured in this line and there was a significant decrease in uptake at 100 m m NaCl in the transgenic line when compared with the control. The two transgenic lines were grown at high NaCl (200 m m ) and analysed for growth and root sodium content. Lines 271 and 223 showed enhanced growth under salinity when compared with the control and had lower sodium in the root. Secondary ion mass spectrometry (SIMS) analysis of transverse sections of the root showed that Na + and K + were strongly localised to stelar regions when compared with other ions, and that the Na + : K + ratios were reduced in salt‐stressed transgenic tissue when compared with the control.