期刊文献+

微生物与线虫互作分子机制研究进展 被引量:3

Advances in the molecular mechanisms of the microbe-nematode interaction
原文传递
导出
摘要 植物寄生线虫严重危害全球农业生产,以天敌微生物为主的线虫生物防治方法由于其安全性和环境兼容性好等优点,成为农业绿色发展的重要保障.微生物与线虫相互作用机制的研究为开发高效的线虫生防制剂提供理论基础.本文从杀线虫微生物的资源、微生物寄生生活阶段的转换调控、微生物侵染的关键酶以及线虫对天敌微生物的免疫防御等方面综述线虫-微生物互作机制的最新进展,为构建线虫生物防治的新方法新策略提供借鉴. Plant parasitic nematodes seriously endanger global agricultural production.Biological control of nematodes,mainly using their natural enemy microorganisms,has become an important guarantee for the green agriculture development due to its advantages of safety and environmental compatibility.The study on the interaction mechanism between microorganisms and nematodes provides theoretical basis for the development of efficient biocontrol agents for nematodes.In this review,we elaborate on the infection of microorganisms to nematodes and the immune defense of nematodes to their natural enemies,providing a reference for the construction of new methods and strategies for biological control of nematodes.
作者 梁连铭 邹成钢 张克勤 LIANG LianMing;ZOU ChengGang;ZHANG KeQin(State Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan and the Key Laboratory for Southwest Microbial Diversity of the Ministry of Education,Yunnan University,Kunming 650091,China)
出处 《中国科学:生命科学》 CSCD 北大核心 2019年第11期1508-1519,共12页 Scientia Sinica(Vitae)
基金 国家自然科学基金(批准号:31572063,31770064,31860016) 云南省科技厅—云南大学“双一流”建设联合基金(批准号:2018FY001(-004))资助
关键词 植物寄生线虫 生物防治 食线虫真菌 天然免疫 基因调控 plant-parasitic nematodes bio-control nematophagous fungi innate immunity gene regulation
  • 相关文献

参考文献3

二级参考文献32

  • 1林超,孙辉,王瑞宾,杨金奎,黄晓玮,张克勤.菌寄生真菌的研究进展[J].菌物研究,2005,3(1):46-52. 被引量:7
  • 2Stadler M, Sterner O, Anke H. New nematicidal and antimicrobial metabolites from the basidiomycete Cheimonophyllum candidissimum (Berk & Curt.) Sing. I. Producing organism. Fermentation. Isolation of active compounds and biological activities[J].J Antibiot, 1994, 47: 1284-1289.
  • 3Mayer A, Anke H, Stemer O. Omphalotin, a new cycle peptide with potent nematicidal activity from Omphalotus olearius. I. Fermentation and Biological activity[J]. Nat Prod Lett, 1997,10: 25-32.
  • 4张克勤,刘杏忠,李天飞.食线虫真菌生物学[M].北京:中国科学技术出版社,2001:1-213.
  • 5Changsong Zou, Junpei Zhou, Yingqi Gu, et al. Possible contributions of volatile-producing bacteria to soil fungistasis[ J ]. Soil Biol Bioch, 2007, 39 : 2371-2379.
  • 6ZhiFang Li,ChangSong Zou,YueQiu He, et al. Phylogenetic analysis on the bacteria producing non-volatile fungistatic substances[J]. J Microbiol, 2008, 46(3):250-256.
  • 7Xu ChuanKun, Mo MingHe, Zhang KeQin. Soil volatile fungistasis and volatile fungistatic compounds[J]. Soil Biol Bioch,2004, 36:1997-2004.
  • 8Lei Li, Minghe Mo, Qing Qu, et al. Compounds inhibitory to nematophagous fungi produced by Bacillus sp. strain H6 isolated from fungistatic soil[J]. Eur J Plant Pathol, 2007, 117 : 329-340.
  • 9Sasser J N, D W Freekman. A world perspective on nematology: the role of society. In: Veech J A, Dickerson D W. Vistas on Nematology[M]. Society of Nematologists, 1987:7-14.
  • 10Ahman J, E K B, Rask L, et al. Sequence analysis and regulation of a gene encoding a cuticle degrading serine protease from the nematophagous fungus A rthrobotrys oligospora[ J ]. Microbiology, 1996, 142 : 1605-1616.

共引文献41

同被引文献61

引证文献3

二级引证文献4

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