Home LiteratureArticle Details
PMID: 25887221 Published · epublish English Journal Article Research Support, Non-U.S. Gov't

Genome-wide evolutionary characterization and analysis of bZIP transcription factors and their expression profiles in response to multiple abiotic stresses in Brachypodium distachyon.

BMC genomics ·Vol. 16 ·2015-03-22 ·Pages 227

Liu X, Chu Z

Abstract

Plant basic leucine zipper (bZIP) transcription factors are one of the largest and most diverse gene families and play key roles in regulating diverse stress processes. Brachypodium distachyon is emerging as a widely recognized model plant for the temperate grass family and the herbaceous energy crops, however there is no comprehensive analysis of bZIPs in B. distachyon, especially those involved in stress tolerances. In this study, 96 bZIP genes (BdbZIPs) were identified distributing unevenly on each chromosome of B. distachyon, and most of them were scattered in the low CpG content regions. Gene duplications were widespread throughout B. distachyon genome. Evolutionary comparisons suggested B. distachyon and rice's bZIPs had the similar evolutionary patterns. The exon splicing in BdbZIP motifs were more complex and diverse than those in other plant species. We further revealed the potential close relationships between BdbZIP gene expressions and items including gene structure, exon splicing pattern and dimerization features. In addition, multiple stresses expression profile demonstrated that BdbZIPs exhibited significant expression patterns responding to 14 stresses, and those responding to heavy metal treatments showed opposite expression pattern comparing to the treatments of environmental factors and phytohormones. We also screened certain up- and down-regulated BdbZIP genes with fold changes ≥2, which were more sensitive to abiotic stress conditions. BdbZIP genes behaved diverse functional characters and showed discrepant and some regular expression patterns in response to abiotic stresses. Comprehensive analysis indicated these BdbZIPs' expressions were associated not only with gene structure, exon splicing pattern and dimerization feature, but also with abiotic stress treatments. It is possible that our findings are crucial for revealing the potentialities of utilizing these candidate BdbZIPs to improve productivity of grass plants and cereal crops.

MeSH Terms
Basic-Leucine Zipper Transcription Factors/chemistry,genetics,metabolism Brachypodium/genetics,metabolism Environment Evolution, Molecular Exons Gene Expression Profiling Genome, Plant Metals, Heavy/metabolism Organ Specificity Phylogeny Plant Growth Regulators/metabolism Protein Multimerization Stress, Physiological
Chemicals
Basic-Leucine Zipper Transcription Factors Metals, Heavy Plant Growth Regulators
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Liu Xiang
Shanghai Chenshan Plant Science Research Center, Shanghai Chenshan Botanical Garden, Shanghai Key Laboratory of Plant Functional Genomics and Resources, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, 3888 Chenhua Road, 201602, Shanghai, Songjiang, China. xiang_liu@hotmail.com.
Chu Zhaoqing
Shanghai Chenshan Plant Science Research Center, Shanghai Chenshan Botanical Garden, Shanghai Key Laboratory of Plant Functional Genomics and Resources, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, 3888 Chenhua Road, 201602, Shanghai, Songjiang, China. zqchu@sibs.ac.cn.
References (68)
68 references, click to expand
  1. [MapDraw: a microsoft excel macro for drawing genetic linkage maps based on given genetic linkage data].
    Yi Chuan. 2003 May;25(3):317-21 PMID: 15639879
  2. Identification of QTLs for arsenic accumulation in maize (Zea mays L.) using a RIL population.
    PLoS One. 2011;6(10):e25646 PMID: 22028786
  3. Cold, salinity and drought stresses: an overview.
    Arch Biochem Biophys. 2005 Dec 15;444(2):139-58 PMID: 16309626
  4. Dimerization specificity of all 67 B-ZIP motifs in Arabidopsis thaliana: a comparison to Homo sapiens B-ZIP motifs.
    Nucleic Acids Res. 2004;32(11):3435-45 PMID: 15226410
  5. Scissors-grip model for DNA recognition by a family of leucine zipper proteins.
    Science. 1989 Nov 17;246(4932):911-6 PMID: 2683088
  6. The bZIP protein from Tamarix hispida, ThbZIP1, is ACGT elements binding factor that enhances abiotic stress signaling in transgenic Arabidopsis.
    BMC Plant Biol. 2013;13:151 PMID: 24093718
  7. Identification of new ABA- and MEJA-activated sugarcane bZIP genes by data mining in the SUCEST database.
    Plant Cell Rep. 2008 Feb;27(2):335-45 PMID: 17968554
  8. Phytoremediation of Cd, Cr, Cu, Mn, Fe, Ni, Pb and Zn from aqueous solution using Phragmites cummunis, Typha angustifolia and Cyperus esculentus.
    Int J Phytoremediation. 2011 Jul;13(6):580-91 PMID: 21972504
  9. Phytoremediation of chromium using Salix species: cloning ESTs and candidate genes involved in the Cr response.
    Gene. 2007 Nov 1;402(1-2):68-80 PMID: 17765407
  10. Genome-wide expansion and expression divergence of the basic leucine zipper transcription factors in higher plants with an emphasis on sorghum.
    J Integr Plant Biol. 2011 Mar;53(3):212-31 PMID: 21205183
  11. Quantitative changes in protein expression of cadmium-exposed poplar plants.
    Proteomics. 2008 Jun;8(12):2514-30 PMID: 18563750
  12. Cadmium- and iron-stress-inducible gene expression in the green alga Chlamydomonas reinhardtii: evidence for H43 protein function in iron assimilation.
    Planta. 2002 May;215(1):1-13 PMID: 12012236
  13. Effect of thallium fractions in the soil and pollution origins on Tl uptake by hyperaccumulator plants: a key factor for the assessment of phytoextraction.
    Int J Phytoremediation. 2005;7(1):55-67 PMID: 15943244
  14. Grain development in Brachypodium and other grasses: possible interactions between cell expansion, starch deposition, and cell-wall synthesis.
    J Exp Bot. 2013 Nov;64(16):5033-47 PMID: 24052531
  15. Stress-induced expression of an activated form of AtbZIP17 provides protection from salt stress in Arabidopsis.
    Plant Cell Environ. 2008 Dec;31(12):1735-43 PMID: 18721266
  16. Genomic survey and gene expression analysis of the basic leucine zipper transcription factor family in rice.
    Plant Physiol. 2008 Feb;146(2):333-50 PMID: 18065552
  17. Plant salt tolerance.
    Trends Plant Sci. 2001 Feb;6(2):66-71 PMID: 11173290
  18. MEGA5: molecular evolutionary genetics analysis using maximum likelihood, evolutionary distance, and maximum parsimony methods.
    Mol Biol Evol. 2011 Oct;28(10):2731-9 PMID: 21546353
  19. Genome-wide landscape of alternative splicing events in Brachypodium distachyon.
    DNA Res. 2013 Apr;20(2):163-71 PMID: 23297300
  20. The Arabidopsis basic leucine zipper transcription factor AtbZIP24 regulates complex transcriptional networks involved in abiotic stress resistance.
    Gene. 2009 May 1;436(1-2):45-55 PMID: 19248824
  21. The role of bZIP transcription factors in green plant evolution: adaptive features emerging from four founder genes.
    PLoS One. 2008;3(8):e2944 PMID: 18698409
  22. Long-distance transport, vacuolar sequestration, tolerance, and transcriptional responses induced by cadmium and arsenic.
    Curr Opin Plant Biol. 2011 Oct;14(5):554-62 PMID: 21820943
  23. The evolution of plant regulatory networks: what Arabidopsis cannot say for itself.
    Curr Opin Plant Biol. 2007 Dec;10(6):653-9 PMID: 17720614
  24. PlantTFDB 2.0: update and improvement of the comprehensive plant transcription factor database.
    Nucleic Acids Res. 2011 Jan;39(Database issue):D1114-7 PMID: 21097470
  25. PLANT COLD ACCLIMATION: Freezing Tolerance Genes and Regulatory Mechanisms.
    Annu Rev Plant Physiol Plant Mol Biol. 1999 Jun;50:571-599 PMID: 15012220
  26. Genome-wide temporal-spatial gene expression profiling of drought responsiveness in rice.
    BMC Genomics. 2011;12:149 PMID: 21406116
  27. Survival of the flexible: hormonal growth control and adaptation in plant development.
    Nat Rev Genet. 2009 May;10(5):305-17 PMID: 19360022
  28. PGDD: a database of gene and genome duplication in plants.
    Nucleic Acids Res. 2013 Jan;41(Database issue):D1152-8 PMID: 23180799
  29. Comprehensive identification of human bZIP interactions with coiled-coil arrays.
    Science. 2003 Jun 27;300(5628):2097-101 PMID: 12805554
  30. OsbZIP71, a bZIP transcription factor, confers salinity and drought tolerance in rice.
    Plant Mol Biol. 2014 Jan;84(1-2):19-36 PMID: 23918260
  31. Classification of human B-ZIP proteins based on dimerization properties.
    Mol Cell Biol. 2002 Sep;22(18):6321-35 PMID: 12192032
  32. The GCN4 basic region leucine zipper binds DNA as a dimer of uninterrupted alpha helices: crystal structure of the protein-DNA complex.
    Cell. 1992 Dec 24;71(7):1223-37 PMID: 1473154
  33. Networks of bZIP protein-protein interactions diversified over a billion years of evolution.
    Science. 2013 May 10;340(6133):730-4 PMID: 23661758
  34. A heterodimerizing leucine zipper coiled coil system for examining the specificity of a position interactions: amino acids I, V, L, N, A, and K.
    Biochemistry. 2002 Dec 3;41(48):14122-31 PMID: 12450375
  35. Intron-dependent evolution: preferred types of exons and introns.
    FEBS Lett. 1987 Apr 6;214(1):1-7 PMID: 3552723
  36. PlantTFDB 3.0: a portal for the functional and evolutionary study of plant transcription factors.
    Nucleic Acids Res. 2014 Jan;42(Database issue):D1182-7 PMID: 24174544
  37. Functional characterization of cinnamyl alcohol dehydrogenase and caffeic acid O-methyltransferase in Brachypodium distachyon.
    BMC Biotechnol. 2013;13:61 PMID: 23902793
  38. Substantial regional variation in substitution rates in the human genome: importance of GC content, gene density, and telomere-specific effects.
    J Mol Evol. 2005 Jun;60(6):748-63 PMID: 15959677
  39. Maize membrane-bound transcription factor Zmbzip17 is a key regulator in the cross-talk of ER quality control and ABA signaling.
    Plant Cell Physiol. 2013 Dec;54(12):2020-33 PMID: 24092882
  40. Functional analysis of GbAGL1, a D-lineage gene from cotton (Gossypium barbadense).
    J Exp Bot. 2010 Feb;61(4):1193-203 PMID: 20054032
  41. Genome-wide analysis and expression profile of the bZIP transcription factor gene family in grapevine (Vitis vinifera).
    BMC Genomics. 2014;15:281 PMID: 24725365
  42. bZIP transcription factors in Arabidopsis.
    Trends Plant Sci. 2002 Mar;7(3):106-11 PMID: 11906833
  43. 'Omics' analyses of regulatory networks in plant abiotic stress responses.
    Curr Opin Plant Biol. 2010 Apr;13(2):132-8 PMID: 20080055
  44. Transcription factors. 1: bZIP proteins.
    Protein Profile. 1994;1(2):123-68 PMID: 8528902
  45. Phytoremediation of mercury and organomercurials in chloroplast transgenic plants: enhanced root uptake, translocation to shoots, and volatilization.
    Environ Sci Technol. 2007 Dec 15;41(24):8439-46 PMID: 18200876
  46. Genome sequencing and analysis of the model grass Brachypodium distachyon.
    Nature. 2010 Feb 11;463(7282):763-8 PMID: 20148030
  47. Predicting specificity in bZIP coiled-coil protein interactions.
    Genome Biol. 2004;5(2):R11 PMID: 14759261
  48. Constitutive activation of transcription factor OsbZIP46 improves drought tolerance in rice.
    Plant Physiol. 2012 Apr;158(4):1755-68 PMID: 22301130
  49. The roles of segmental and tandem gene duplication in the evolution of large gene families in Arabidopsis thaliana.
    BMC Plant Biol. 2004 Jun 1;4:10 PMID: 15171794
  50. Cell signaling during cold, drought, and salt stress.
    Plant Cell. 2002;14 Suppl:S165-83 PMID: 12045276
  51. Plant tolerance to high temperature in a changing environment: scientific fundamentals and production of heat stress-tolerant crops.
    Front Plant Sci. 2013 Jul 31;4:273 PMID: 23914193
  52. Lead tolerance in plants: strategies for phytoremediation.
    Environ Sci Pollut Res Int. 2013 Apr;20(4):2150-61 PMID: 23338995
  53. bZIP transcription factor OsbZIP52/RISBZ5: a potential negative regulator of cold and drought stress response in rice.
    Planta. 2012 Jun;235(6):1157-69 PMID: 22189955
  54. Ancient polyploidization predating divergence of the cereals, and its consequences for comparative genomics.
    Proc Natl Acad Sci U S A. 2004 Jun 29;101(26):9903-8 PMID: 15161969
  55. Analysis of global gene expression in Brachypodium distachyon reveals extensive network plasticity in response to abiotic stress.
    PLoS One. 2014;9(1):e87499 PMID: 24489928
  56. Genome-wide analysis of bZIP-encoding genes in maize.
    DNA Res. 2012 Dec;19(6):463-76 PMID: 23103471
  57. Natural variation at the FRD3 MATE transporter locus reveals cross-talk between Fe homeostasis and Zn tolerance in Arabidopsis thaliana.
    PLoS Genet. 2012;8(12):e1003120 PMID: 23236296
  58. B-ZIP proteins encoded by the Drosophila genome: evaluation of potential dimerization partners.
    Genome Res. 2002 Aug;12(8):1190-200 PMID: 12176927
  59. Genome expression profile analysis reveals important transcripts in maize roots responding to the stress of heavy metal Pb.
    Physiol Plant. 2013 Mar;147(3):270-82 PMID: 22747913
  60. Arsenic uptake by common marsh fern Thelypteris palustris and its potential for phytoremediation.
    Sci Total Environ. 2007 Jul 1;379(2-3):263-5 PMID: 17113631
  61. Mechanism of auxin-regulated gene expression in plants.
    Annu Rev Genet. 2009;43:265-85 PMID: 19686081
  62. Synergism between RPBF Dof and RISBZ1 bZIP activators in the regulation of rice seed expression genes.
    Plant Physiol. 2006 Aug;141(4):1694-707 PMID: 16798940
  63. Genome-wide analysis of the bZIP transcription factors in cucumber.
    PLoS One. 2014;9(4):e96014 PMID: 24760072
  64. Uptake and translocation of Ti from nanoparticles in crops and wetland plants.
    Int J Phytoremediation. 2013;15(2):142-53 PMID: 23487992
  65. Molecular and physiological analysis of growth-limiting drought stress in Brachypodium distachyon leaves.
    Mol Plant. 2013 Mar;6(2):311-22 PMID: 23015761
  66. Cis-regulatory signatures of orthologous stress-associated bZIP transcription factors from rice, sorghum and Arabidopsis based on phylogenetic footprints.
    BMC Genomics. 2012;13:497 PMID: 22992304
  67. The Arabidopsis abscisic acid response gene ABI5 encodes a basic leucine zipper transcription factor.
    Plant Cell. 2000 Apr;12(4):599-609 PMID: 10760247
  68. A protocol for Agrobacterium-mediated transformation of Brachypodium distachyon community standard line Bd21.
    Nat Protoc. 2009;4(5):638-49 PMID: 19360019
Article Info
Journal
BMC genomics
Abbr.
BMC Genomics
ISSN
1471-2164
Published
2015-03-22
Epub
2015-00-22
Pages
227
Language
English
Region
England
NLM ID
100965258
PMCID
PMC4393604
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com