Institute of Microbiology, College of Life Sciences, Zhejiang University, 310058, Hangzhou, People's Republic of China.
Mycopathologia. 2010 Jun;169(6):483-94. doi: 10.1007/s11046-010-9283-8. Epub 2010 Feb 14.
To clarify the potential use of hydrophobicity-related traits of aerial conidia in formulation design of fungal biocontrol agents, hydrophobicity rates (H (r)) and surface areas (S (a)) of aerial conidia were assessed with 48 strains of Beauveria bassiana, Isaria fumosorosea and Metarhizium spp. Inter- or intra-specific variation was large in H (r) (59.7-92.2%) and S (a) (7.9-25.3 microm(2) conidium(-1)) measurements, which were significantly correlated (r (2) = 0.55). Six isolates of the three fungi with distinguished H (r) and S (a) were further studied. Conidial wall proteins of these isolates were sequentially extracted with sodium dodecyl sulfate (SDS), formic acid (FA) and trifluoroacetic acid (TFA). Their H (r) values were significantly correlated to the contents (P (c)) of TFA-soluble, but FA-insoluble, proteins (2.7-44.8 microg per 10(7) conidia; r (2) = 0.79) and reduced drastically by the FA/TFA treatments, which eliminated the hydrophobin-based rodlet layers of conidial surfaces. However, the SDS treatments had no effect on either H (r) or rodlet layers. The dispersancy of a tested emulsifier to oil formulations of the six isolates in water was adversely correlated to their H (r) (r (2) = 0.94). The results indicate that both P (c) and S (a) are inherent hydrophobicity-related traits and can be utilized to select fungal biocontrol candidates for improved formulation and application.
为了阐明气生孢子疏水性相关特性在真菌生防制剂配方设计中的潜在用途,用 48 株球孢白僵菌、玫烟色棒束孢和金龟子绿僵菌评估了气生孢子的疏水性率(H(r))和比表面积(S(a))。H(r)(59.7-92.2%)和 S(a)(7.9-25.3 µm(2)孢子(-1))测量值在种间或种内变异很大,且呈显著正相关(r(2)=0.55)。对这三种真菌的 6 个具有明显 H(r)和 S(a)的分离株进行了进一步研究。用十二烷基硫酸钠(SDS)、甲酸(FA)和三氟乙酸(TFA)依次提取这些分离株的孢子壁蛋白。它们的 H(r)值与 TFA 可溶、FA 不可溶的蛋白质含量(2.7-44.8 µg/10(7)孢子;r(2)=0.79)显著相关,且经 FA/TFA 处理后急剧降低,这消除了孢子表面的基于疏水蛋白的小杆层。然而,FA/TFA 处理对 H(r)或小杆层没有影响。在水中,乳化剂对 6 个分离株的油制剂的分散性与它们的 H(r)呈显著负相关(r(2)=0.94)。结果表明,P(c)和 S(a)均为固有的疏水性相关特性,可用于选择真菌生防候选物,以改善制剂和应用。