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Stk2,a Mitogen-Activated Protein Kinase from Setosphaeria turcica,Specifically Complements the Functions of the Fus3 and Kss1 of Saccharomyces cerevisiae in Filamentation,Invasive Growth,and Mating Behavior 被引量:3

Stk2,a Mitogen-Activated Protein Kinase from Setosphaeria turcica,Specifically Complements the Functions of the Fus3 and Kss1 of Saccharomyces cerevisiae in Filamentation,Invasive Growth,and Mating Behavior
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摘要 Setosphaeria turcica,an essential phytopathogenic fungus,is the primary cause of serious yield losses in corn; however,its pathogenic mechanism is poorly understood.We cloned STK2,a newly discovered mitogen-activated protein kinase gene with a deduced amino acid sequence that is 96% identical to MAK2 from Phaeosphaeria nodorum,56% identical to KSS1 and 57% identical to FUS3 from Saccharomyces cerevisiae.To deduce Stk2 function in S.turcica and to identify the genetic relationship between STK2 and KSS1/FUS3 from S.cerevisiae,a restructured vector containing the open reading frame of STK2 was transformed into a fus3/kss1 double deletion mutant of S.cerevisiae.The results show that the STK2 complementary strain clearly formed pseudohyphae and ascospores,and the strain grew on the surface of the medium after rinsing with sterile water and the characteristics of the complementary strain was the same as the wild-type strain.Moreover,STK2 complemented the function of KSS1 in filamentation and invasive growth,as well as the mating behavior of FUS3 in S.cerevisiae,however,its exact functions in S.turcica will be studied in the future research. Setosphaeria turcica,an essential phytopathogenic fungus,is the primary cause of serious yield losses in corn; however,its pathogenic mechanism is poorly understood.We cloned STK2,a newly discovered mitogen-activated protein kinase gene with a deduced amino acid sequence that is 96% identical to MAK2 from Phaeosphaeria nodorum,56% identical to KSS1 and 57% identical to FUS3 from Saccharomyces cerevisiae.To deduce Stk2 function in S.turcica and to identify the genetic relationship between STK2 and KSS1/FUS3 from S.cerevisiae,a restructured vector containing the open reading frame of STK2 was transformed into a fus3/kss1 double deletion mutant of S.cerevisiae.The results show that the STK2 complementary strain clearly formed pseudohyphae and ascospores,and the strain grew on the surface of the medium after rinsing with sterile water and the characteristics of the complementary strain was the same as the wild-type strain.Moreover,STK2 complemented the function of KSS1 in filamentation and invasive growth,as well as the mating behavior of FUS3 in S.cerevisiae,however,its exact functions in S.turcica will be studied in the future research.
出处 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2013年第12期2209-2216,共8页 农业科学学报(英文版)
基金 supported by the National Natural Science Foundation of China(30471126 and 31171805)
关键词 Setosphaeria turcica MAPK FILAMENTATION invasive growth mating behavior Setosphaeria turcica MAPK filamentation invasive growth mating behavior
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  • 1Borchardt D S,Welz H G,Geiger H H. Genetic structure of setosphaeria turcica populations in tropical and temperate climates[J].Phytopathology,1998.322-329.
  • 2Breitkreutz A,Boucher L,Tyers M. MAPK speciifcity in the yeast pheromone response independent of transcriptional activation[J].Current Biology,2001.1266-1271.
  • 3Cheetham J,Smith D A,da Silva Dantas A,Doris K S Patterson M J Bruce C R Quinn J. A single MAPKKK regulates the Hog1 MAPK pathway in the pathogenic fungus Candida albicans[J].Molecular Biology of the Cell,2007,(11):4603-4614.doi:10.1091/mbc.E07-06-0581.
  • 4Chen J,Wang Q,Chen J Y. CEK2,a novel MAPK from Candida albicans complement the mating defect of fus3/kss1 mutant[J].Acta Biochimica Et Biophysica Sinica,2000.299-304.
  • 5Chen R E,Thorner J. Function and regulation in MAPK signaling pathways:lessons learned from the yeast Saccharomyces cerevisiae[J].Biochimica Et Biophysica Acta,2007.1311-1340.
  • 6Cook J G,Bardwell L,Thorner J. Inhibitory and activating functions for MAPK Kss1 in theS.cerevisiae iflamentous-growth signalling pathway[J].Nature,1997.85-88.
  • 7Eliahu N,Igbaria A,Rose M S,Horwitz B A Lev S. Melanin biosynthesis in the maize pathogen Cochliobolus heterostrophus depends on two mitogen-activated protein kinases,Chk1 and Mps1,and the transcription factor Cmr1[J].Eukaryotic Cell,2007,(3):421-429.doi:10.1128/EC.00264-06.
  • 8Flandez M,Cosano I C,Nombela C,Martin H Molina M. Reciprocal regulation between Slt2 MAPK and isoforms of Msg5 dual-specificity protein phosphatase modulates the yeast cell integrity pathway[J].Journal of Biological Chemistry,2004.11027-11034.
  • 9Garrido E,Voss U,Muller P,Castillo-Lluva S Kahmann R Perez-Martin J. The induction of sexual development and virulence in the smut fungusUstilago maydis depends on Crk1,a novel MAPK protein[J].Genes and Development,2004.3117-3130.
  • 10Gartner A,Nasmyth K,Ammerer G. Signal transduction inSaccharomyces cerevisiae requires tyrosine and threonine phosphorylation ofFUS3 and KSS1[J].Genes and Development,1992.1280-1292.

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