Department of Entomology and Nematology, University of Florida, Gainesville, Florida 32611, and Mycology Unit, Institut Pasteur, 28, Rue du Dr. Roux, 75724 Paris Cedex 15, France.
Appl Environ Microbiol. 1988 Jul;54(7):1795-805. doi: 10.1128/aem.54.7.1795-1805.1988.
The attachment of the conidia of the insect-pathogenic fungi Nomuraea rileyi, Beauveria bassiana, and Metarrhizium anisopliae to insect cuticle was mediated by strong binding forces. The attachment was passive and nonspecific in that the conidia adhered readily to both host and nonhost cuticle preparations. The hydrophobicity of the conidial wall and the insect epicuticle appeared to mediate the adhesion process. Detergents, solvents, and high-molecular-weight proteins known to neutralize hydrophobicity reduced conidial binding when added to conidium-cuticle preparations. However, these chemicals did not remove the hydrophobic components from the epicuticle or from conidial preparations. The outer surface of the conidium consists of a resilient layer of well-organized fascicles of rodlets. Intact rodlets extracted from B. bassiana conidia bound to insect cuticle and exhibited the hydrophobicity expressed by intact conidia. Both electrostatic charges and various hemagglutinin activities were also present on the conidial surface. However, competitive-inhibition studies indicated that these forces played little, if any, role in the adhesion process.
昆虫病原真菌球孢白僵菌、金龟子绿僵菌和绿僵菌的分生孢子附着在昆虫表皮上是通过强大的结合力介导的。这种附着是被动的和非特异性的,因为分生孢子很容易附着在宿主和非宿主的表皮准备物上。分生孢子壁的疏水性和昆虫表皮似乎介导了附着过程。当添加到分生孢子-表皮制剂中时,已知能够中和疏水性的去污剂、溶剂和高分子量蛋白质会降低分生孢子的结合。然而,这些化学物质并没有从表皮或分生孢子制剂中去除疏水性成分。分生孢子的外表面由一层弹性的、组织良好的棒状纤维束层组成。从金龟子绿僵菌分生孢子中提取的完整棒状纤维与昆虫表皮结合,并表现出完整分生孢子所表达的疏水性。在分生孢子表面还存在静电荷和各种血凝素活性。然而,竞争性抑制研究表明,这些力在附着过程中几乎没有起到任何作用。