The SNF1-type serine-threonine protein kinase SAPK4 regulates stress-responsive gene expression in rice

Diedhiou CJ, Popova OV, Dietz K-J, Golldack D (2008)
BMC PLANT BIOLOGY 8(1): 49.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
Download
OA
Autor*in
Diedhiou, Calliste J.; Popova, Olga V.; Dietz, Karl-JosefUniBi; Golldack, DortjeUniBi
Abstract / Bemerkung
BACKGROUND: Plants respond to extracellularly perceived abiotic stresses such as low temperature, drought, and salinity by activation of complex intracellular signaling cascades that regulate acclimatory biochemical and physiological changes. Protein kinases are major signal transduction factors that have a central role in mediating acclimation to environmental changes in eukaryotic organisms. In this study, we characterized the function of the sucrose nonfermenting 1-related protein kinase2 (SnRK2) SAPK4 in the salt stress response of rice. RESULTS: Translational fusion of SAPK4 with the green fluorescent protein (GFP) showed subcellular localization in cytoplasm and nucleus. To examine the role of SAPK4 in salt tolerance we generated transgenic rice plants with over-expression of rice SAPK4 under control of the CaMV-35S promoter. Induced expression of SAPK4 resulted in improved germination, growth and development under salt stress both in seedlings and mature plants. In response to salt stress, the SAPK4-overexpressing rice accumulated less Na+ and Cl- and showed improved photosynthesis. SAPK4-regulated genes with functions in ion homeostasis and oxidative stress response were identified: the vacuolar H+-ATPase, the Na+/H+ antiporter NHX1, the Cl- channel OsCLC1 and a catalase. CONCLUSION: Our results show that SAPK4 regulates ion homeostasis and growth and development under salinity and suggest function of SAPK4 as a regulatory factor in plant salt stress acclimation. Identification of signaling elements involved in stress adaptation in plants presents a powerful approach to identify transcriptional activators of adaptive mechanisms to environmental changes that have the potential to improve tolerance in crop plants.
Erscheinungsjahr
2008
Zeitschriftentitel
BMC PLANT BIOLOGY
Band
8
Ausgabe
1
Seite(n)
49
ISSN
1471-2229
Page URI
https://pub.uni-bielefeld.de/record/1587760

Zitieren

Diedhiou CJ, Popova OV, Dietz K-J, Golldack D. The SNF1-type serine-threonine protein kinase SAPK4 regulates stress-responsive gene expression in rice. BMC PLANT BIOLOGY. 2008;8(1):49.
Diedhiou, C. J., Popova, O. V., Dietz, K. - J., & Golldack, D. (2008). The SNF1-type serine-threonine protein kinase SAPK4 regulates stress-responsive gene expression in rice. BMC PLANT BIOLOGY, 8(1), 49. https://doi.org/10.1186/1471-2229-8-49
Diedhiou, Calliste J., Popova, Olga V., Dietz, Karl-Josef, and Golldack, Dortje. 2008. “The SNF1-type serine-threonine protein kinase SAPK4 regulates stress-responsive gene expression in rice”. BMC PLANT BIOLOGY 8 (1): 49.
Diedhiou, C. J., Popova, O. V., Dietz, K. - J., and Golldack, D. (2008). The SNF1-type serine-threonine protein kinase SAPK4 regulates stress-responsive gene expression in rice. BMC PLANT BIOLOGY 8, 49.
Diedhiou, C.J., et al., 2008. The SNF1-type serine-threonine protein kinase SAPK4 regulates stress-responsive gene expression in rice. BMC PLANT BIOLOGY, 8(1), p 49.
C.J. Diedhiou, et al., “The SNF1-type serine-threonine protein kinase SAPK4 regulates stress-responsive gene expression in rice”, BMC PLANT BIOLOGY, vol. 8, 2008, pp. 49.
Diedhiou, C.J., Popova, O.V., Dietz, K.-J., Golldack, D.: The SNF1-type serine-threonine protein kinase SAPK4 regulates stress-responsive gene expression in rice. BMC PLANT BIOLOGY. 8, 49 (2008).
Diedhiou, Calliste J., Popova, Olga V., Dietz, Karl-Josef, and Golldack, Dortje. “The SNF1-type serine-threonine protein kinase SAPK4 regulates stress-responsive gene expression in rice”. BMC PLANT BIOLOGY 8.1 (2008): 49.
Alle Dateien verfügbar unter der/den folgenden Lizenz(en):
Copyright Statement:
Dieses Objekt ist durch das Urheberrecht und/oder verwandte Schutzrechte geschützt. [...]
Volltext(e)
Access Level
OA Open Access
Zuletzt Hochgeladen
2019-09-06T08:48:01Z
MD5 Prüfsumme
36c2923c41a1c21ea4bf5c196a6093fc


58 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

SNF1-Related Protein Kinases SnRK2.4 and SnRK2.10 Modulate ROS Homeostasis in Plant Response to Salt Stress.
Szymańska KP, Polkowska-Kowalczyk L, Lichocka M, Maszkowska J, Dobrowolska G., Int J Mol Sci 20(1), 2019
PMID: 30609769
Comprehensive Analysis of SnRK Gene Family and their Responses to Salt Stress in Eucalyptus grandis.
Wang Y, Yan H, Qiu Z, Hu B, Zeng B, Zhong C, Fan C., Int J Mol Sci 20(11), 2019
PMID: 31174407
GBS Mapping and Analysis of Genes Conserved between Gossypium tomentosum and Gossypium hirsutum Cotton Cultivars that Respond to Drought Stress at the Seedling Stage of the BC₂F₂ Generation.
Magwanga RO, Lu P, Kirungu JN, Diouf L, Dong Q, Hu Y, Cai X, Xu Y, Hou Y, Zhou Z, Wang X, Wang K, Liu F., Int J Mol Sci 19(6), 2018
PMID: 29848989
Global analysis of threonine metabolism genes unravel key players in rice to improve the abiotic stress tolerance.
Muthuramalingam P, Krishnan SR, Pandian S, Mareeswaran N, Aruni W, Pandian SK, Ramesh M., Sci Rep 8(1), 2018
PMID: 29915249
A Comprehensive Proteomic Survey of ABA-Induced Protein Phosphorylation in Rice (Oryza sativa L.).
Qiu J, Hou Y, Wang Y, Li Z, Zhao J, Tong X, Lin H, Wei X, Ao H, Zhang J., Int J Mol Sci 18(1), 2017
PMID: 28054942
A Quantitative Proteomic Analysis of Brassinosteroid-induced Protein Phosphorylation in Rice (Oryza sativa L.).
Hou Y, Qiu J, Wang Y, Li Z, Zhao J, Tong X, Lin H, Zhang J., Front Plant Sci 8(), 2017
PMID: 28439285
Identification of the abiotic stress-related transcription in little Neptune grass Cymodocea nodosa with RNA-seq.
Malandrakis E, Dadali O, Kavouras M, Danis T, Panagiotaki P, Miliou H, Tsioli S, Orfanidis S, Küpper FC, Exadactylos A., Mar Genomics 34(), 2017
PMID: 28389176
Salinity-Induced Palmella Formation Mechanism in Halotolerant Algae Dunaliella salina Revealed by Quantitative Proteomics and Phosphoproteomics.
Wei S, Bian Y, Zhao Q, Chen S, Mao J, Song C, Cheng K, Xiao Z, Zhang C, Ma W, Zou H, Ye M, Dai S., Front Plant Sci 8(), 2017
PMID: 28588593
Genome-wide identification and characterization of SnRK2 gene family in cotton (Gossypium hirsutum L.).
Liu Z, Ge X, Yang Z, Zhang C, Zhao G, Chen E, Liu J, Zhang X, Li F., BMC Genet 18(1), 2017
PMID: 28606097
OsSAPK2 Confers Abscisic Acid Sensitivity and Tolerance to Drought Stress in Rice.
Lou D, Wang H, Liang G, Yu D., Front Plant Sci 8(), 2017
PMID: 28659944
Crop-model assisted phenomics and genome-wide association study for climate adaptation of indica rice. 2. Thermal stress and spikelet sterility.
Dingkuhn M, Pasco R, Pasuquin JM, Damo J, Soulié JC, Raboin LM, Dusserre J, Sow A, Manneh B, Shrestha S, Kretzschmar T., J Exp Bot 68(15), 2017
PMID: 28922773
The core regulatory network of the abscisic acid pathway in banana: genome-wide identification and expression analyses during development, ripening, and abiotic stress.
Hu W, Yan Y, Shi H, Liu J, Miao H, Tie W, Ding Z, Ding X, Wu C, Liu Y, Wang J, Xu B, Jin Z., BMC Plant Biol 17(1), 2017
PMID: 28851274
Molecular Characterization and Co-expression Analysis of the SnRK2 Gene Family in Sugarcane (Saccharum officinarum L.).
Li C, Nong Q, Xie J, Wang Z, Liang Q, Solanki MK, Malviya MK, Liu X, Li Y, Htun R, Wei J, Li Y., Sci Rep 7(1), 2017
PMID: 29247208
Heterologous Overexpression of Poplar SnRK2 Genes Enhanced Salt Stress Tolerance in Arabidopsis thaliana.
Song X, Yu X, Hori C, Demura T, Ohtani M, Zhuge Q., Front Plant Sci 7(), 2016
PMID: 27242819
Overexpression of sugarcane gene SoSnRK2.1 confers drought tolerance in transgenic tobacco.
Phan TT, Sun B, Niu JQ, Tan QL, Li J, Yang LT, Li YR., Plant Cell Rep 35(9), 2016
PMID: 27316630
Transcriptomic comparison between two Vitis vinifera L. varieties (Trincadeira and Touriga Nacional) in abiotic stress conditions.
Rocheta M, Coito JL, Ramos MJ, Carvalho L, Becker JD, Carbonell-Bejerano P, Amâncio S., BMC Plant Biol 16(1), 2016
PMID: 27733112
Genome-wide analysis of SnRK gene family in Brachypodium distachyon and functional characterization of BdSnRK2.9.
Wang L, Hu W, Sun J, Liang X, Yang X, Wei S, Wang X, Zhou Y, Xiao Q, Yang G, He G., Plant Sci 237(), 2015
PMID: 26089150
Overexpression of PtSOS2 Enhances Salt Tolerance in Transgenic Poplars.
Zhou J, Wang J, Bi Y, Wang L, Tang L, Yu X, Ohtani M, Demura T, Zhuge Q., Plant Mol Biol Report 32(), 2014
PMID: 24465084
Tolerance to drought and salt stress in plants: Unraveling the signaling networks.
Golldack D, Li C, Mohan H, Probst N., Front Plant Sci 5(), 2014
PMID: 24795738
Cloning and characterization of SnRK2 subfamily II genes from Nicotiana tabacum.
Zhang H, Jia H, Liu G, Yang S, Zhang S, Yang Y, Yang P, Cui H., Mol Biol Rep 41(9), 2014
PMID: 24919756
Expression profile of maize microRNAs corresponding to their target genes under drought stress.
Wang YG, An M, Zhou SF, She YH, Li WC, Fu FL., Biochem Genet 52(11-12), 2014
PMID: 25027834
Transcriptome sequencing of rhizome tissue of Sinopodophyllum hexandrum at two temperatures.
Kumari A, Singh HR, Jha A, Swarnkar MK, Shankar R, Kumar S., BMC Genomics 15(), 2014
PMID: 25287271
Cloning and characterization of TaSnRK2.3, a novel SnRK2 gene in common wheat.
Tian S, Mao X, Zhang H, Chen S, Zhai C, Yang S, Jing R., J Exp Bot 64(7), 2013
PMID: 23630328
Bioengineering for salinity tolerance in plants: state of the art.
Agarwal PK, Shukla PS, Gupta K, Jha B., Mol Biotechnol 54(1), 2013
PMID: 22539206
Arabidopsis enhanced drought tolerance1/HOMEODOMAIN GLABROUS11 confers drought tolerance in transgenic rice without yield penalty.
Yu L, Chen X, Wang Z, Wang S, Wang Y, Zhu Q, Li S, Xiang C., Plant Physiol 162(3), 2013
PMID: 23735506
A suite of new genes defining salinity stress tolerance in seedlings of contrasting rice genotypes.
Soda N, Kushwaha HR, Soni P, Singla-Pareek SL, Pareek A., Funct Integr Genomics 13(3), 2013
PMID: 23813016
Insights into genomics of salt stress response in rice.
Kumar K, Kumar M, Kim SR, Ryu H, Cho YG., Rice (N Y) 6(1), 2013
PMID: 24280112
Phosphatidic acid, a versatile water-stress signal in roots.
McLoughlin F, Testerink C., Front Plant Sci 4(), 2013
PMID: 24391659
Comparative proteomic analysis of early salt stress-responsive proteins in roots of SnRK2 transgenic rice.
Nam MH, Huh SM, Kim KM, Park WJ, Seo JB, Cho K, Kim DY, Kim BG, Yoon IS., Proteome Sci 10(), 2012
PMID: 22462395
Identification of salt treated proteins in sorghum using gene ontology linkage.
Sekhwal MK, Swami AK, Sarin R, Sharma V., Physiol Mol Biol Plants 18(3), 2012
PMID: 23814435
Osmotic stress signaling via protein kinases.
Fujii H, Zhu JK., Cell Mol Life Sci 69(19), 2012
PMID: 22828864
Water stress induces up-regulation of DOF1 and MIF1 transcription factors and down-regulation of proteins involved in secondary metabolism in amaranth roots (Amaranthus hypochondriacus L.).
Huerta-Ocampo JA, León-Galván MF, Ortega-Cruz LB, Barrera-Pacheco A, De León-Rodríguez A, Mendoza-Hernández G, de la Rosa AP., Plant Biol (Stuttg) 13(3), 2011
PMID: 21489098
SNF1-related protein kinases 2 are negatively regulated by a plant-specific calcium sensor.
Bucholc M, Ciesielski A, Goch G, Anielska-Mazur A, Kulik A, Krzywińska E, Dobrowolska G., J Biol Chem 286(5), 2011
PMID: 21098029
Cyclin dependent protein kinases and stress responses in plants.
Kitsios G, Doonan JH., Plant Signal Behav 6(2), 2011
PMID: 21512322
Cloning and characterization of a maize SnRK2 protein kinase gene confers enhanced salt tolerance in transgenic Arabidopsis.
Ying S, Zhang DF, Li HY, Liu YH, Shi YS, Song YC, Wang TY, Li Y., Plant Cell Rep 30(9), 2011
PMID: 21638061
SnRK2 protein kinases--key regulators of plant response to abiotic stresses.
Kulik A, Wawer I, Krzywińska E, Bucholc M, Dobrowolska G., OMICS 15(12), 2011
PMID: 22136638
A rice kinase-protein interaction map.
Ding X, Richter T, Chen M, Fujii H, Seo YS, Xie M, Zheng X, Kanrar S, Stevenson RA, Dardick C, Li Y, Jiang H, Zhang Y, Yu F, Bartley LE, Chern M, Bart R, Chen X, Zhu L, Farmerie WG, Gribskov M, Zhu JK, Fromm ME, Ronald PC, Song WY., Plant Physiol 149(3), 2009
PMID: 19109415

57 References

Daten bereitgestellt von Europe PubMed Central.

Identification of SnIP1, a novel protein that interacts with SNF1-related protein kinase (SnRK1).
Slocombe SP, Laurie S, Bertini L, Beaudoin F, Dickinson JR, Halford NG., Plant Mol. Biol. 49(1), 2002
PMID: 12008897
Activation of a mitogen-activated protein kinase pathway is involved in disease resistance in tobacco.
Yang KY, Liu Y, Zhang S., Proc. Natl. Acad. Sci. U.S.A. 98(2), 2001
PMID: 11209069
MAPK cascades in plant defense signaling.
Zhang S, Klessig DF., Trends Plant Sci. 6(11), 2001
PMID: 11701380
Various abiotic stresses rapidly activate Arabidopsis MAP kinases ATMPK4 and ATMPK6.
Ichimura K, Mizoguchi T, Yoshida R, Yuasa T, Shinozaki K., Plant J. 24(5), 2000
PMID: 11123804
Metabolic signalling and carbon partitioning: role of Snf1-related (SnRK1) protein kinase.
Halford NG, Hey S, Jhurreea D, Laurie S, McKibbin RS, Paul M, Zhang Y., J. Exp. Bot. 54(382), 2003
PMID: 12508057
Expression of antisense SnRK1 protein kinase sequence causes abnormal pollen development and male sterility in transgenic barley.
Zhang Y, Shewry PR, Jones H, Barcelo P, Lazzeri PA, Halford NG., Plant J. 28(4), 2001
PMID: 11737780
ABA-activated SnRK2 protein kinase is required for dehydration stress signaling in Arabidopsis.
Yoshida R, Hobo T, Ichimura K, Mizoguchi T, Takahashi F, Aronso J, Ecker JR, Shinozaki K., Plant Cell Physiol. 43(12), 2002
PMID: 12514244
Dissection of abscisic acid signal transduction pathways in barley aleurone layers.
Shen Q, Gomez-Cadenas A, Zhang P, Walker-Simmons MK, Sheen J, Ho TH., Plant Mol. Biol. 47(3), 2001
PMID: 11587514
A calcium sensor and its interacting protein kinase are global regulators of abscisic acid signaling in Arabidopsis.
Guo Y, Xiong L, Song CP, Gong D, Halfter U, Zhu JK., Dev. Cell 3(2), 2002
PMID: 12194854
Biochemical characterization of the Arabidopsis protein kinase SOS2 that functions in salt tolerance.
Gong D, Guo Y, Jagendorf AT, Zhu JK., Plant Physiol. 130(1), 2002
PMID: 12226505
Molecular genetic perspectives on cross-talk and specificity in abiotic stress signalling in plants.
Chinnusamy V, Schumaker K, Zhu JK., J. Exp. Bot. 55(395), 2003
PMID: 14673035
Characterization of a HKT-type transporter in rice as a general alkali cation transporter.
Golldack D, Su H, Quigley F, Kamasani UR, Munoz-Garay C, Balderas E, Popova OV, Bennett J, Bohnert HJ, Pantoja O., Plant J. 31(4), 2002
PMID: 12182709
Salinity stress-tolerant and -sensitive rice (Oryza sativa L.) regulate AKT1-type potassium channel transcripts differently.
Golldack D, Quigley F, Michalowski CB, Kamasani UR, Bohnert HJ., Plant Mol. Biol. 51(1), 2003
PMID: 12602892
OsDREB genes in rice, Oryza sativa L., encode transcription activators that function in drought-, high-salt- and cold-responsive gene expression.
Dubouzet JG, Sakuma Y, Ito Y, Kasuga M, Dubouzet EG, Miura S, Seki M, Shinozaki K, Yamaguchi-Shinozaki K., Plant J. 33(4), 2003
PMID: 12609047
Trehalose accumulation in rice plants confers high tolerance levels to different abiotic stresses.
Garg AK, Kim JK, Owens TG, Ranwala AP, Choi YD, Kochian LV, Wu RJ., Proc. Natl. Acad. Sci. U.S.A. 99(25), 2002
PMID: 12456878
Introduction of a Na+/H+ antiporter gene from Atriplex gmelini confers salt tolerance to rice.
Ohta M, Hayashi Y, Nakashima A, Hamada A, Tanaka A, Nakamura T, Hayakawa T., FEBS Lett. 532(3), 2002
PMID: 12482579
Over-expression of a barley aquaporin increased the shoot/root ratio and raised salt sensitivity in transgenic rice plants.
Katsuhara M, Koshio K, Shibasaka M, Hayashi Y, Hayakawa T, Kasamo K., Plant Cell Physiol. 44(12), 2003
PMID: 14701933
Gene expression profiles during the initial phase of salt stress in rice.
Kawasaki S, Borchert C, Deyholos M, Wang H, Brazille S, Kawai K, Galbraith D, Bohnert HJ., Plant Cell 13(4), 2001
PMID: 11283343
SNF1-related protein kinases: global regulators of carbon metabolism in plants?
Halford NG, Hardie DG., Plant Mol. Biol. 37(5), 1998
PMID: 9678569
An abscisic acid-induced protein kinase, PKABA1, mediates abscisic acid-suppressed gene expression in barley aleurone layers.
Gomez-Cadenas A, Verhey SD, Holappa LD, Shen Q, Ho TH, Walker-Simmons MK., Proc. Natl. Acad. Sci. U.S.A. 96(4), 1999
PMID: 9990099
SRK2C, a SNF1-related protein kinase 2, improves drought tolerance by controlling stress-responsive gene expression in Arabidopsis thaliana.
Umezawa T, Yoshida R, Maruyama K, Yamaguchi-Shinozaki K, Shinozaki K., Proc. Natl. Acad. Sci. U.S.A. 101(49), 2004
PMID: 15561775
A regulatory shortcut between the Snf1 protein kinase and RNA polymerase II holoenzyme.
Kuchin S, Treich I, Carlson M., Proc. Natl. Acad. Sci. U.S.A. 97(14), 2000
PMID: 10869433
Structure, function and regulation of the plant vacuolar H(+)-translocating ATPase.
Ratajczak R., Biochim. Biophys. Acta 1465(1-2), 2000
PMID: 10748245
Significance of the V-type ATPase for the adaptation to stressful growth conditions and its regulation on the molecular and biochemical level.
Dietz KJ, Tavakoli N, Kluge C, Mimura T, Sharma SS, Harris GC, Chardonnens AN, Golldack D., J. Exp. Bot. 52(363), 2001
PMID: 11559732
Subunit D of the vacuolar H+-ATPase of Arabidopsis thaliana.
Kluge C, Golldack D, Dietz KJ., Biochim. Biophys. Acta 1419(1), 1999
PMID: 10366676
Transgenic salt-tolerant tomato plants accumulate salt in foliage but not in fruit.
Zhang HX, Blumwald E., Nat. Biotechnol. 19(8), 2001
PMID: 11479571
Function, intracellular localization and the importance in salt tolerance of a vacuolar Na(+)/H(+) antiporter from rice.
Fukuda A, Nakamura A, Tagiri A, Tanaka H, Miyao A, Hirochika H, Tanaka Y., Plant Cell Physiol. 45(2), 2004
PMID: 14988485
A role for HKT1 in sodium uptake by wheat roots.
Laurie S, Feeney KA, Maathuis FJ, Heard PJ, Brown SJ, Leigh RA., Plant J. 32(2), 2002
PMID: 12383080
Anion channels in higher plants: functional characterization, molecular structure and physiological role.
Barbier-Brygoo H, Vinauger M, Colcombet J, Ephritikhine G, Frachisse J, Maurel C., Biochim. Biophys. Acta 1465(1-2), 2000
PMID: 10748255
Salt-dependent regulation of chloride channel transcripts in rice
Diedhiou CJ, Golldack D., Plant Sci. 170(4), 2006
PMID: IND43813823
Signal transduction during oxidative stress.
Vranova E, Inze D, Van Breusegem F., J. Exp. Bot. 53(372), 2002
PMID: 11997371
Oxidative stress, antioxidants and stress tolerance.
Mittler R., Trends Plant Sci. 7(9), 2002
PMID: 12234732
Hydrogen peroxide signalling.
Neill S, Desikan R, Hancock J., Curr. Opin. Plant Biol. 5(5), 2002
PMID: 12183176
Catalase is a sink for H2O2 and is indispensable for stress defence in C3 plants.
Willekens H, Chamnongpol S, Davey M, Schraudner M, Langebartels C, Van Montagu M, Inze D, Van Camp W., EMBO J. 16(16), 1997
PMID: 9305623
Modular cloning in plant cells.
Karimi M, De Meyer B, Hilson P., Trends Plant Sci. 10(3), 2005
PMID: 15749466
Subcellular distribution of the V-ATPase complex in plant cells, and in vivo localisation of the 100 kDa subunit VHA-a within the complex.
Kluge C, Seidel T, Bolte S, Sharma SS, Hanitzsch M, Satiat-Jeunemaitre B, Ross J, Sauer M, Golldack D, Dietz KJ., BMC Cell Biol. 5(), 2004
PMID: 15310389
Export

Markieren/ Markierung löschen
Markierte Publikationen

Open Data PUB

Web of Science

Dieser Datensatz im Web of Science®
Quellen

PMID: 18442365
PubMed | Europe PMC

Suchen in

Google Scholar