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OtherGENE REGULATION AND MOLECULAR GENETICS
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Identification of a Receptor-Like Protein Kinase Gene Rapidly Induced by Abscisic Acid, Dehydration, High Salt, and Cold Treatments in Arabidopsis thaliana

S. W. Hong, J. H. Jon, J. M. Kwak, H. G. Nam
S. W. Hong
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J. H. Jon
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J. M. Kwak
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H. G. Nam
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Published April 1997. DOI: https://doi.org/10.1104/pp.113.4.1203

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Abstract

A cDNA clone for a receptor-like protein kinase gene (RPK1) was isolated from Arabidopsis thaliana. The clone is 1952 bp long with 1623 bp of an open reading frame encoding a peptide of 540 amino acids. The deduced peptide (RPK1) contains four distinctive domains characteristic of receptor kinases: (a) a putative amino-terminal signal sequence domain; (b) a domain with five extracellular leucine-rich repeat sequences; (c) a membrane-spanning domain; and (d) a cytoplasmic protein kinase domain that contains all of the 11 subdomains conserved among protein kinases. The RPK1 gene is expressed in flowers, stems, leaves, and roots. Expression of the RPK1 gene is induced within 1 h after treatment with abscisic acid (ABA). The gene is also rapidly induced by several environmental stresses such as dehydration, high salt, and low temperature, suggesting that the gene is involved in a general stress response. The dehydration-induced expression is not impaired in aba-1, abi1–1, abi2–1, and abi3–1 mutants, suggesting that the dehydration-induced expression of the RPK1 gene is ABA-independent. A possible role of this gene in the signal transduction pathway of ABA and the environmental stresses is discussed.

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Identification of a Receptor-Like Protein Kinase Gene Rapidly Induced by Abscisic Acid, Dehydration, High Salt, and Cold Treatments in Arabidopsis thaliana
S. W. Hong, J. H. Jon, J. M. Kwak, H. G. Nam
Plant Physiology Apr 1997, 113 (4) 1203-1212; DOI: 10.1104/pp.113.4.1203

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Identification of a Receptor-Like Protein Kinase Gene Rapidly Induced by Abscisic Acid, Dehydration, High Salt, and Cold Treatments in Arabidopsis thaliana
S. W. Hong, J. H. Jon, J. M. Kwak, H. G. Nam
Plant Physiology Apr 1997, 113 (4) 1203-1212; DOI: 10.1104/pp.113.4.1203
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Plant Physiology
Vol. 113, Issue 4
Apr 1997
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  • RNA Polymerase Subunits Encoded by the Plastid rpoGenes Are Not Shared with the Nucleus-Encoded Plastid Enzyme
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  • Developmental and Light Regulation of Desacetoxyvindoline 4-Hydroxylase in Catharanthus roseus (L.) G. Don.
Show more GENE REGULATION AND MOLECULAR GENETICS

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