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PMID: 24682461 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

A novel NAC transcription factor from Suaeda liaotungensis K. enhanced transgenic Arabidopsis drought, salt, and cold stress tolerance.

Plant cell reports ·Vol. 33 ·No. 5 ·2014-05-00 ·Pages 767-78

Li XL, Yang X, Hu YX, Yu XD, Li QL

Abstract

Sl NAC1 functions as a stress-responsive NAC protein involved in the abscisic acid-dependent signaling pathway and enhances transgenic Arabidopsis drought, salt, and cold stress tolerance. NAC (NAM, ATAF1, 2, CUC2) transcription factors constitute the largest families of plant-specific transcription factors, known to be involved in various growth or developmental processes and in regulation of response to environmental stresses. However, only little information regarding stress-related NAC genes is available in Suaeda liaotungensis K. In this study, we cloned a full-length NAC gene (1,011 bp) named SlNAC1 using polymerase chain reaction from Suaeda liaotungensis K. and investigated its function by overexpression in transgenic Arabidopsis. SlNAC1 contains an NAC-conserved domain. Its expression in S. liaotungensis was induced by drought, high-salt, and cold (4 °C) stresses and by abscisic acid. Subcellular localization experiments in onion epidermal cells indicated that SlNAC1 is localized in the nucleus. Yeast one-hybrid assays showed that SlNAC1 functions as a transcriptional activator. SlNAC1 transgenic Arabidopsis displayed a higher survival ratio and lower rate of water loss under drought stress; a higher germination ratio, higher survival ratio, and lower root inhibition rate under salt stress; a higher survival ratio under cold stress; and a lower germination ratio and root inhibition rate under abscisic acid treatment, compared with wild-type Arabidopsis. These results suggested that SlNAC1 functions as a stress-responsive NAC protein involved in the abscisic acid-dependent signaling pathway and may have potential applications in transgenic breeding to enhance crops' abiotic stress tolerances.

MeSH Terms
Abscisic Acid/pharmacology Amino Acid Sequence Arabidopsis/genetics,physiology Cell Nucleus/metabolism Chenopodiaceae/genetics Cold Temperature Droughts Gene Expression Gene Expression Regulation, Plant Molecular Sequence Data Phylogeny Plant Growth Regulators/pharmacology Plant Leaves/genetics,physiology Plant Proteins/genetics,metabolism Plants, Genetically Modified Protein Structure, Tertiary Salts Seedlings/genetics,physiology Sequence Alignment Stress, Physiological Transcription Factors/genetics,metabolism
Chemicals
Plant Growth Regulators Plant Proteins Salts Transcription Factors Abscisic Acid
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Li Xiao-lan
College of Life Sciences, Liaoning Normal University; Key Laboratory of Plant Biotechnology in Liaoning Province, 1 South Liushu Street, Ganjingzi District, Dalian, 116081, Liaoning, China, [email protected].
Yang Xing
Hu Yu-xin
Yu Xiao-dong
Li Qiu-li
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Article Info
Journal
Plant cell reports
Abbr.
Plant Cell Rep
ISSN
1432-203X
Published
2014-05-00
Epub
2014-00-29
Pages
767-78
Language
English
Region
Germany
NLM ID
9880970
Subset
IM
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