期刊文献+

不同碳、氮源组合对小麦全蚀病菌产生胞外β-1,3-葡聚糖酶的影响 被引量:26

Effects of different combinations of carbon and nitrogen sources in MS medium on activities of extracellular β-1,3-glucanase produced by take-all pathogen
在线阅读 下载PDF
导出
摘要 利用改进的MS液体培养基,通过改变碳、氮源组合,分别在振荡培养小麦全蚀病菌7,14,21 d时(26℃,150 r/min),用3,5-二硝基水杨酸(DNS)比色法测定培养滤液中的β-1,3-葡聚糖酶活性。结果表明,培养基中分别以小麦茎秆、叶片,玉米茎秆、叶片和根系为碳源与不同氮源组合,培养滤液中β-1,3-葡聚糖酶活性有明显差异,其中以小麦叶片为碳源时酶活性最高,以玉米根系为碳源时酶活性较低,但两者之间酶活性无明显差异。培养基中加入有机氮时酶活性均明显高于加入无机氮,但两种有机氮培养基中的酶活性变化趋势完全不同。以牛肉膏为氮源时,在小麦全蚀病菌培养7 d时培养滤液中的酶活性最高,且酶活性随病菌培养时间的延长而逐渐下降;以蛋白胨为氮源时酶活性则呈上升趋势,在病菌培养21 d时最高。以上结果表明,供试各组合中以牛肉膏为氮源、小麦叶片为碳源的组合为最佳组合,7 d时有相对较高的酶活性。 The pathogenic fungi Gaeumannomyces graminis var. tritici (Ggt) was cultured in modified MS medium (26℃, 150 r/min) with different combinations of carbon and nitrogen sources. The enzyme activity in the culture filtrate was detected by 3,5-dinitrosalicylic acid (DNS) in 7,14,21 d after culturing the fungus. The results showed the enzyme activities were obviously different in the culture filtrate with wheat stalks, wheat leaves, maize stalks, maize leaves and maize roots as carbon source combined with different nitrogen sources. The highest enzyme activities were detected in the culture filtrate with wheat leaves as the carbon source and the lowest enzyme activities were in the culture filtrate with maize roots as the carbon source. The enzyme activities were not significantly different in the culture filtrate with wheat tissues as compared with that with maize tissues. Comparing 4 nitrogen sources,the enzyme activities were obviously higher in the culture filtrate with organic nitrogen than that with inorganic nitrogen. The highest enzyme activities were detected in the culture filtrate with beef extract as nitrogen source 7 d after culturing the fungus. The enzyme activities detected in the culture filtrate with peptone were low and reached the peak 21 d after culturing the fungus. The enzyme activities in the culture filtrate with beef extract decreased gradually during the culture stage. The best carbon and nitrogen combination in the medium for enzyme ac-tivities was beef exact and wheat leave detected 7 d after culturing the fungus.
出处 《西北农林科技大学学报(自然科学版)》 CSCD 北大核心 2007年第2期110-114,共5页 Journal of Northwest A&F University(Natural Science Edition)
基金 国家自然科学基金项目(30270863) 教育部"长江学者和创新团队"支持计划(PCSIRT200558) 西北农林科技大学创新团队资助项目
关键词 小麦全蚀病菌 禾顶囊壳小麦变种β—1 3-葡聚糖酶 MS培养基 碳源 氮源 take-all pathogen of wheat Gaeumannomyces graminis var. tritici β-1,3-glucanases MS medium carbon source nitrogen source
  • 相关文献

参考文献14

  • 1陈怀谷,王裕中,陈厚德,周训芝,赵素梅.小麦全蚀病药剂防治技术与应用研究[J].江苏农业科学,1997,25(1):38-41. 被引量:2
  • 2王美南,商鸿生.华山新麦草对小麦全蚀病菌的抗病性研究[J].西北农业大学学报,2000,28(6):69-71. 被引量:36
  • 3Garder P A,Angus J F,Pitson G D,et al. A comparison of six motheds to control take-all in wheat[J]. Australian Journal of Agricultural Research, 1998,49 (8) : 1225-1240.
  • 4Cook R J. Problems and progress in the biological control of wheat take-all[J], Plan Path, 1994,43 : 429-437.
  • 5Dori S,Hershenhorn J ,Solel Z,et al. Characterization of an endopolygalacturonase associated with take-all disease of wheat[J]. Physiological and Molecular Plant Pathology, 1992,40(3) :203-210.
  • 6Dori S,Solel Z,Kashman Y,et al. Cell wall-degrading enzymes produced by Gaeumannomyces graminis var. tritici in vitro andin vivo [J]. Physiological and Molecular Plant Pathology,1995,46(3);189-198.
  • 7Weste G. Extra-cellular enzyme production by various isolates of Ophiobolus graminis Sacc [J]. Phytopath Z, 1970a, 52,204-206.
  • 8Westc G. Extra-cellular enzyme production by various isolates of Ophiobolus graminis and O. graminis var. avenae Ⅱ . Enzymes produced within the host tissue [J]. Phytopath Z,1970b,67 :327-336.
  • 9Kang Z S,Huang L L, Buchenauer H. Cytoehemistry of cell wall component alterations in wheat roots infected by Gaeumnnnomyces graminins vat. tritici[J] J Plant Dis Protec,2000,107(4) :337-351.
  • 10Huang L L, Kang Z S,Buchenauer H. Comparison of infection of wheat roots by Phialophora graminicola and Gaeumannomyces graminis vat. tritici by ultrastructural and cytochemical studies[J].J Plan Dis Protec,2001,108(6):593-607.

二级参考文献12

  • 1商鸿生 中国农学会.小麦全蚀病抗病性与相关问题研究.植物保护与植物营养研究进展[M].北京:中国农业出版社,1999.144-148.
  • 2商鸿生,植物保护与植物营养研究进展,1999年,144页
  • 3BradfordMM.Arapidofsensitivemethodforthequantita-tionofmicrogramquantitiesofproteinutilizingtheprincipleofproteindye-binding[].Analytical Biochemistry.1976
  • 4Aist,J.R.Papillae and related wound plugs of plant cells[].Annual Review of Plant Physiology.1976
  • 5Dickerson,A.G.,Mantle,P.G.,Nisbet,L.J.,Shaw,B.I.A role for β-glucanases in the parasitism of cereals byClaviceps purpurea[].Physiol Plant Pathol.1978
  • 6Kang Z,Huang L,Buchenauer H.Cytochemistry of cell wall component alterations in wheat roots infected by Gaeumannomyces graminis var.tritici[].Journal of Plant Diseases and Protection.2000
  • 7PitsonAM,,SeviourRJ,McDougallBM.Noncellulolyticfungalβ glucanases:theirphysiologyandregulation[].EnzymeMicrobTechnol.1993
  • 8van Hoof A,Leykam J,Schaeffer HJ,Walton JD.A single 1,3-β-glucanase secreted by the maize pathogen Cochliobolus carbonum acts by an exolytic mechanism[].Physiological and Molecular Plant Pathology.1991
  • 9Wessels,J.G.H.Wall growth, protein excretion and morphogenesis in fungi[].New Phytologist.1993
  • 10W?sten,HAB,Mouhka,SM,Sietsma,JH,Wessels,JGH.Localization of growth and secretion of proteins inAspergillus niger[].Journal of General Microbiology.1991

共引文献48

同被引文献388

引证文献26

二级引证文献101

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