期刊文献+

Nitrogen Sources Affect Streptolydigin Production and Related Secondary Metabolites Distribution of Streptomyces lydicus AS 4.2501 被引量:2

Nitrogen Sources Affect Streptolydigin Production and Related Secondary Metabolites Distribution of Streptomyces lydicus AS 4.2501
下载PDF
导出
摘要 The effects of nitrogen sources on streptolydigin production and distribution of secondary metabolites were investigated for flask cultured S.lydicus AS 4.2501.When peptone,asparamide,and glutamic acid were ex- amined as the nitrogen source,respectively,liquid chromatography-mass spectrometry(LC-MS)and photodiode array(PDA)analyses revealed the formation of two analogues of streptolydigin in the fermentation broth.When soybean meal was used as the source of nitrogen,three analogues of streptolydigin were detected.The use of am- monium sulfate as a source of nitrogen resulted in a lower pH value of the fermentation system,thus inhibiting streptolydigin biosynthesis and changing the metabolic profiling.Among the nitrogen sources that were made use of,glutamic acid was most favorable to the formation of streptolydigin.Simultaneously,this study also showed that the changing nitrogen sources resulted in altering the production and relative ratios of streptolydigin and its analogues. The effects of nitrogen sources on streptolydigin production and distribution of secondary metabolites were investigated for flask cultured S.lydicus AS 4.2501.When peptone,asparamide,and glutamic acid were ex- amined as the nitrogen source,respectively,liquid chromatography-mass spectrometry(LC-MS)and photodiode array(PDA)analyses revealed the formation of two analogues of streptolydigin in the fermentation broth.When soybean meal was used as the source of nitrogen,three analogues of streptolydigin were detected.The use of am- monium sulfate as a source of nitrogen resulted in a lower pH value of the fermentation system,thus inhibiting streptolydigin biosynthesis and changing the metabolic profiling.Among the nitrogen sources that were made use of,glutamic acid was most favorable to the formation of streptolydigin.Simultaneously,this study also showed that the changing nitrogen sources resulted in altering the production and relative ratios of streptolydigin and its analogues.
出处 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2007年第3期403-410,共8页 中国化学工程学报(英文版)
基金 Supported by the Natjonal Natural Science Foundation of China (No.20425620) and the Program for Changjiang Scholars and Innovative Research Team in University from the Ministry of Education of China.
关键词 Streptomyces lydicus nitrogensource ANALOGUE secondary metabolite streptolydigin 氮源 利迪链菌素 生产 次级代谢物 分布
  • 相关文献

参考文献20

  • 1Challis,G.L.,Hopwood,D.A.,"Synergy and contingency as driving forces for the evolution of multiple secondary metabolite production by Streptomyces species",Proc.New YorkAcad.Sci.,100(11),14555-14561(2003).
  • 2Mura,S.O.,Dceda,H.,Ishikawa,J.,Hanamoto,A.,Takahashi,C.,Shinose,M.,Takahashi,Y.,Horikawa,H.,Nakazawa,H.,Osonoe,T.,Kikuchi,H.,Shibai,T.,Sakaki,Y.,Hattori,M.,“Genome sequence of an industrial microorganism Streptomyces avermitilis:Deducing the ability of producing secondary metabolites”,Proc.New YorkAcad.Sci,98(21),12215-12220(2001).
  • 3Torino,J.R.,Garcia,J.B.,DeAntonio,M.,Feliz,J.,Mira,A.,Dfez,M.T.,Hernandez,P.,Pelaez,R,"A method for the selection of production media for actinomycete strains based on their metabolite HPLC profiles",J.Ind.Microbiol.BiotechnoL,30(10),582-588(2003).
  • 4Schimana,J.,Walker,M.,Zeeck,A.,Fiedler,P.,“Simocyclinones:Diversity of metabolites is dependent on fermentation conditions”,J.Ind.Microbiol.BiotechnoL,27(3),144-148(2001).
  • 5Bringmann,G.,Kraus,J.,Schmitt,U.,Puder,C.,Zeeck,A.,“Nondynamic kinetic resolution of configurationally stable biaryl lactones by reduction with oxazaborolidine-activated borane:AMI studies and experimental verification”,Eur.J.Org.Chem.,65(8),2729-2734(2000).
  • 6Deboer,C.,Dietz,A.,Savage,G.M.,Silver,W.S.,"Streptolydigin,a new antimicrobial antibiotic.I.Biologic studies of streptolydigin",Antibiot.Ann.,3,886-892(1955/1956).
  • 7Cassani,G,Burgess,R.R.,Goodman,H.M.,Gold,L.,"Inhibition of RNA polymerase by streptolydigin",Nat.NewBioL,230(15),197-200(1971).
  • 8Temiakov,D.,Zenkin,N.,Vassylyeva,M.N.,Perederina,A.,Tahirov,T.H.,Kashkina,E.,Savkina,M.,Zorov,S.,Nikiforov,V.,Igarashi,N.,Matsugaki,N.,Wakatsuki,S.,Severinov,K.,Vassylyev,D.G.,"Structural basis of tran scription inhibition by antibiotic streptolydigin",Mol.Cell,19(5),655-666(2005).
  • 9Tuske,S.,Sarafianos,S.,Wang,X.,Hudson,B.,Sineva,E.,Mukhopadhyay,J.,Birktoft,J.,Leroy,O.,Ismail,S.,Clark,A.Jr.,“Inhibition of bacterial RNA polymerase by streptolydigin:Stabilization of a straight-bridge-helix active-center conformation”,Cell,122(4),541-552(2005).
  • 10Sanchez,S.,Demain,A.L.,"Metabolic regulation of fermentation processes",Enzyme Microb.Tech.,31(7),895-906(2002).

同被引文献22

引证文献2

二级引证文献8

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部