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Arabidopsis HEAT SHOCK TRANSCRIPTION FACTORA1b overexpression enhances water productivity, resistance to drought, and infection

Bechtold, U.; Albihlal, W.S.; Lawson, T.; Fryer, M.J.; Sparrow, P.A.C.; Richard, F.; Persad, R.; Bowden, L.; Hickman, R.; Martin, C.; Beynon, J.L.; Buchanan-Wollaston, V.; Baker, N.R.; Morison, J.L.; Schöffl, F.; Ott, S.; Mullineaux, P.M.

Authors

W.S. Albihlal

T. Lawson

M.J. Fryer

P.A.C. Sparrow

F. Richard

R. Persad

L. Bowden

R. Hickman

C. Martin

J.L. Beynon

V. Buchanan-Wollaston

N.R. Baker

J.L. Morison

F. Schöffl

S. Ott

P.M. Mullineaux



Citation

Bechtold, U., Albihlal, W., Lawson, T., Fryer, M., Sparrow, P., Richard, F., Persad, R., Bowden, L., Hickman, R., Martin, C., Beynon, J., Buchanan-Wollaston, V., Baker, N., Morison, J., Schöffl, F., Ott, S., & Mullineaux, P. (2013). Arabidopsis HEAT SHOCK TRANSCRIPTION FACTORA1b overexpression enhances water productivity, resistance to drought, and infection. Journal of Experimental Botany, 64(11), 3467-3481. https://doi.org/10.1093/jxb/ert185

Journal Article Type Article
Publication Date 2013
Deposit Date Aug 1, 2022
Journal Journal of Experimental Botany
Print ISSN 0022-0957
Publisher Oxford University Press
Volume 64
Issue 11
Pages 3467-3481
DOI https://doi.org/10.1093/jxb/ert185
Public URL https://durham-repository.worktribe.com/output/1196253