首页> 外文期刊>Journal of Invertebrate Pathology >Effects of culture media on hydrophobicity and thermotolerance of Bb and Ma conidia, with description of a novel surfactant based hydrophobicity assay.
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Effects of culture media on hydrophobicity and thermotolerance of Bb and Ma conidia, with description of a novel surfactant based hydrophobicity assay.

机译:培养基对 Bb 和 Ma 分生孢子的疏水性和耐热性的影响,并描述了一种新型的基于表面活性剂的疏水性测定方法。

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Hypocrealean entomopathogenic fungal conidia are made up of multi-aged groups given their chronological conidiogenesis. Most thermotolerance assays have been conducted using mixed-age conidia. The present work exploited a polysiloxane polyether copolymer (siloxane) (Silwet L-77Reg.) mediated conidial collection method, validated by a hydrophobicity assay. This was done to divide mixed-age conidia into two groups based on hydrophobicity and test their thermotolerance, relying on the relationship of conidial age with hydrophobicity. Beauveria bassiana GHA and ERL1170 and Metarhizium anisopliae ERL1171 and ERL1540 conidia, produced on millet agar, whey permeate agar, and 1/4SDAY were subjected to hydrophobicity assays that included data on yield of conidia/unit of surface area. Conidia were also collected using 0.01% siloxane, and those remaining with 0.08% siloxane. Hydrophobicity was correlated with percent conidia collected in the two siloxane solutions and yield, suggesting a relationship between percent conidia collected and conidial age (maturation). The conidial suspensions were exposed to 45 degrees C for 45 min, and conidial germination was examined. Overall, conidia which were collected in 0.08% siloxane had lower germination after heat exposure than those collected in the 0.01% solution. Conidia of both fungi produced by incubation on millet or whey permeate for 14 d were more hydrophobic and exhibited greater thermotolerance than those produced on 1/4SDAY. These results suggest that conidia can be divided into two groups with different thermotolerance by using a siloxane-mediated conidial collection method based on hydrophobicity. This depends on the types of substrates used that could influence conidial maturation.Digital Object Identifier http://dx.doi.org/10.1016/j.jip.2010.08.008
机译:降甲虫致病性真菌分生孢子由多年龄组组成,按时间顺序分生。大多数耐热性测定是使用混合年龄分生孢子进行的。本工作开发了一种聚硅氧烷聚醚共聚物(硅氧烷)(Silwet L-77Reg。)介导的分生孢子收集方法,该方法已通过疏水性测定法验证。根据分生孢子年龄与疏水性的关系,根据疏水性将混合年龄的分生孢子分为两组并测试其耐热性。在小米琼脂,乳清渗透琼脂和1 / 4SDAY上生产的球孢白僵菌 GHA和ERL1170以及 Metarhizium anisopliae 分生孢子ERL1171和ERL1540分生孢子进行了疏水性测定,其中包括产量数据分生孢子/表面积单位。分生孢子也使用0.01%的硅氧烷收集,其余分生孢子用0.08%的硅氧烷收集。疏水性与在两种硅氧烷溶液中收集的分生孢子百分比和产率相关,表明收集的分生孢子百分比与分生孢子年龄(成熟)之间存在关系。将分生孢子悬浮液暴露于45℃45分钟,并检查分生孢子的萌发。总体而言,在热暴露后收集在0.08%硅氧烷中的分生孢子的萌发率低于在0.01%溶液中收集的分生孢子。与在1 / 4SDAY上产生的真菌相比,通过在小米或乳清渗透液上孵育14 d产生的两种真菌的分生孢子都更具疏水性,并且表现出更高的耐热性。这些结果表明,通过使用基于疏水性的硅氧烷介导的分生孢子收集方法,可以将分生孢子分为耐热性不同的两组。这取决于所使用的可能影响分生孢子成熟的基质类型。数字对象标识符http://dx.doi.org/10.1016/j.jip.2010.08.008

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