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应用生态学报 ›› 2004, Vol. ›› Issue (12): 2383-2387.

• 研究论文 • 上一篇    下一篇

生防真菌耐旱特性的生理生化基础及其利用

叶素丹, 冯明光   

  1. 浙江大学微生物研究所, 杭州 310029
  • 收稿日期:2004-06-14 修回日期:2004-08-30
  • 通讯作者: 冯明光,E-mail:mgfeng@zju.edu.cn
  • 基金资助:
    国家重点基础研究发展规划项目(2003CB114203);国家自然科学基金项目(30270897);教育部长江学者奖励计划资助项目

Physiological and biochemical bases of xero-tolerance of fungal biocontrol agents and their application

YE Sudan, FENG Mingguang   

  1. Institute of Microbiology, College of Life Sciences, Zhejiang University, Hangzhou 310029, China
  • Received:2004-06-14 Revised:2004-08-30

摘要: 丝孢类生防真菌常需满足高湿度条件才能萌发和侵染害虫,已成为广泛应用真菌杀虫剂控制害虫的重要限制因素.适当的剂型化技术在一定程度上能够降低菌剂对环境湿度的依赖性,但生防真菌侵染体本身的耐旱性对菌剂的环境适应性起决定性作用.文中回顾和评述了近20多年来国际上生防真菌耐旱性研究与利用的主要进展,分析和总结了生防真菌耐旱性的生理生化基础及其水活度调控原理,讨论了提高低分子多元醇及海藻糖等生物学相容溶质在侵染体内积聚而增强菌剂耐旱性的可能途径.认为认识决定耐旱性的胞内相容溶质积累的分子生物学基础及其调控机理,探索建立从生理生化水平上最大限度地增强生防菌剂耐旱性的新工艺,是今后生防真菌基础与应用研究的重要方向.

关键词: 生防真菌, 耐旱生理, 水活度调控, 菌剂改良, 微生物防治

Abstract: Hyphomycetes fungal biocontrol agents usually infect host insects by conidial germination and penetration into insect integument under high humidity condition which is generally the restrictive factor for the application of mycoinsecticides in insect control in the field.It is ideal to produce more xero-tolerant inocula (e.g.conidia) of the agents,although the current formulation technology has helped to some degree to reduce the dependence of fungal formulations on the high humidity.This paper reviewed the advance in basic and applied studies on the physiological and biochemical bases of fungal xero-tolerance and its water activity regulation in the past two decades.Possible approaches to make fungal formulations more xero-tolerant were discussed,with an emphasis on the increased accumulation of biologically compatible solutes such as low-molecular polyols and trehalose to the inocula produced for formulation.More efforts are necessitated to understand the mechanisms involved in molecular biology and in regulating the accumulation of the compatible solutes,and to explore for new technology to enhance the xero- tolerance of the fungal agents through biochemical regulation in mass production.

Key words: Fungal biocontrol agents, Xero-tolerant physiology, Water activity regulation, Formulation enhancement, Microbial control

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