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Molecular cloning and protein structure prediction of barley (Hordeum vulgare L.) Dhn6 gene and its ex-pression pattern under dehydration conditions

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  • 1. Department of Cell Biology and Genetics, Zunyi Medical College, Zunyi 563000, China 2. Department of Interventional Radiology, the Affiliated Hospital of Zunyi Medical College, Zunyi 563000, China 3. Laboratory of Plant Physiology, College of Life Science, Northeast Agricultural University, 150030, China

Received date: 2010-07-26

  Revised date: 2010-09-25

  Online published: 2011-02-25

Abstract

Dehydrins (DHNs), proteins with protective functions encoded by the late embryogenesis abundant (LEA), are differentially up-regulated at the transcriptional level under environmental stresses such as water deficit, salinity, and low temperature or in response to ABA. Data involving protein structure and expression of dehydrins could elucidate their functional roles under dehydration conditions in plants. Dhn6 gene of 1 767 bp with an intron (92 bp) in six-rowed barley, a member of LEA D11, was cloned into pMD18-T vector in the present study. It shared 93.18% identity with Hordeum vulgare ssp. vulgare (GenBank accession: AF043091), encoding a protein composed of 523 amino acid residues with the predicted molecular weight of 49.68 kDa and the theoretical isoelectric point of 8.04. Analyses of domain and structure indicated that the protein was dominantly composed of 83% hydrophillic amino acid residues, with numerous imperative curls and three loosed helixes. Three-dimensional measurement revealed that the water-soluble lipid-associating protein was attributed to its twisted cable formed by reverse paralleled chains. Moreover, the putative amphipathic α-helices formed by K-segments might play roles in protecting membrane structure in barley. Significantly, relatively high accumulations of Dhn6 gene were detected after 8 h of water deficit by real-time quantitative RT-PCR. These results possibly suggested that the accumulation of Dhn6 gene could be critical for resistant dehydration in plants.

Cite this article

JIAN Gang, BENG Jun-Jiao, ZHANG Zhen, LUO Su-Yuan, LI Hua-Yang, YANG Meng-Tian, ZHANG Da . Molecular cloning and protein structure prediction of barley (Hordeum vulgare L.) Dhn6 gene and its ex-pression pattern under dehydration conditions[J]. Hereditas(Beijing), 2011 , 33(3) : 270 -277 . DOI: 10.3724/SP.J.1005.2011.00270

References

[1]Dure L III, Crouch M, Harada J, Ho T-HD, Mundy J, Quatrano R, Thomas T, Sung ZR.Common amino acid sequence domains among the LEA proteins of higher plants[J].Plant Mol Biol,1989,12:475-486

[2]Ramanjulu S, Bartels D.Drought- and desiccation-induced modulation of gene expression in plants[J].Plant Cell and Environ,2002,25:141-151

[3]Close TJ.Dehydrins: emergence of a biochemical role of a family of plant dehydration proteins[J].Physiol Plant,1996,97:795-803

[4]Close TJ.Dehydrins: A commonality in the response of plants to dehydration and low temperatures[J].Physiol Plant,1997,100:291-296

[5]Compbell SA, Close TJ.Dehydrins: Genes, proteins, and associated with phenotypic traits[J].New Phytol,1997,137:61-74

[6]Porcel R, Azcón R, Ruiz-Lozano JM.Evaluation of the role of genes encoding for dehydrin proteins (LEA D-11) during drought stress in arbuscular mycorrhizal Glycine max and Lactuca sativa plants[J].J Exp Bot,2005,56:1933-1942

[7]Egerton-Warburton LM, Balsamo RA, Close TJ.Temporal accumulation and ultrastructural localization of dehydrins in Zea mays L[J].Physiol Plantarum,1997,101:545-555

[8]Danyluk J, Perron A, Houde M, Limin A, Fowler B, Benhamou N, Sarhan F.Accumulation of an acidic dehydrin in the vicinity of the plasma membrane during cold acclimation of wheat[J].Plant Cell,1998,10:623-638

[9]Rampino P, Pataleo S, Gerardi C, Mita G, Perrotta C.Drought stress response in wheat: physiological and molecular analysis of resistant and sensitive genotypes[J].Plant, Cell and Environ,2006,29:2143-2152

[10]Guo P, Baum M, Grando S, Ceccarelli S, Bai G, Li R, Korff MV, Varshney RK, Graner A, Valkoun J.Differentially expressed genes between drought-tolerant and drought-sensitive barley genotypes in response to drought stress during the reproductive stage[J].J Exp Bot,2009,60:3531-3544

[11] 顾红雅, 瞿礼嘉.植物分子生物学—实验手册(第一版). 北京, 高等教育出版社, 1998,6-7

[12]Arnold K, Bordoli L, Kopp J, Schwede T.The SWISS-MODEL Workspace: A web-based environment for protein structure homology modelling[J].Bioinformatics,2006,22:195-201

[13]Livak KJ, Schmittgen TD.Analysis of Relative Gene Expression Data Using Real-Time Quantitative PCR and the 2-ΔΔCt Method[J].Methods,2001,25:402-

[14]Ingram J, Bartels D.The molecular basis of dehydration tolerance in plants[J].Ann Rev Plant Physiol Mol Biol,1996,47:377-403

[15] Dure L III.Structural motifs in LEA proteins of higher plants. In: Close TJ, Bray EA, eds. Response of Plants to Cellular Dehydration During Environmental Stress. Rockville, MD, USA: American Society of Plant Physiologists, 1993, 91-103

[16]Garay-Arroyo, Colmenero-Flores JM, Garciarrubio A, Covarrubias AA.Highly hydrophilic proteins in prokaryotes and eukaryotes are common during conditions of water deficit[J].J Biol Chem,2000,275:5668-5674

[17]Talamè, Ozturk NZ, Bohnert HJ, Tuberosa R.Barley transcript profiles under dehydration shock and drought stress treatments: a comparative analysis[J].J Exp Bot,2007,58:229-240

[18]Bartels D, Souer E. .Molecular responses of higher plants to dehydration. In Plant Responses to Abiotic Stress[J].Shinozaki Springer-Verlag,2004,:9-38

[19]Hazen SP, Pathan MS, Sanchez A, Baxter I, Dunn M, Estes B, Chang HS, Zhu T, Kreps JA, Nguyen HT.Expression profiling of rice segregating for drought tolerance QTLs using a rice genome array[J].Funct Integr Genomics,2005,5:104-116

[20]Zhu B, Choi D W, Fenton R, Close TJ.Expression of the barley dehydrin multigene family and the development of freezing tolerance[J].Mol Gen Genet,2000,246:145-

[21]Labhilili M, Jourdier P, Gautier M F.Characterization of cDNAs encoding Triticum durum dehydrins and their expression patterns in cultivars that differ in drought tolerance[J].Plant Sci,1995,112:219-230

[22]Pelah D, Wang W, Altman A, Shoseyov O, Bartles D.Differential accumula
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