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不仅是一种制剂:皮克林乳液对……昆虫病原作用的影响

Not Only a Formulation: The Effects of Pickering Emulsion on the Entomopathogenic Action of .

作者信息

Birnbaum Nitsan, Reingold Victoria, Matveev Sabina, Kottakota Chandrasekhar, Davidovitz Michael, Mani Karthik Ananth, Feldbaum Reut, Yaakov Noga, Mechrez Guy, Ment Dana

机构信息

Department of Plant Pathology and Weed Research, Agricultural Research Organization (ARO), Volcani Center, Rishon LeZion 7505101, Israel.

The Robert H. Smith Faculty of Agriculture, Food & Environment the Hebrew University of Jerusalem, Re-hovot 7610001, Israel.

出版信息

J Fungi (Basel). 2021 Jun 23;7(7):499. doi: 10.3390/jof7070499.

Abstract

Growing global population and environmental concerns necessitate the transition from chemical to eco-friendly pest management. Entomopathogenic fungi (EPF) are rising candidates for this task due to their ease of growing, broad host range and unique disease process, allowing EPF to infect hosts directly through its cuticle. However, EPF's requirement for high humidity negates their integration into conventional agriculture. To mitigate this problem, we formulated conidia in an oil-in-water Pickering emulsion. Conidia in aqueous and emulsion formulations were sprayed on leaves, and larvae were introduced under low or high humidity. The following were examined: conidial dispersion on leaf, larval mortality, conidial acquisition by larvae, effects on larval growth and feeding, and dynamic of disease progression. Emulsion was found to disperse conidia more efficiently and caused two-fold more adhesion of conidia to host cuticle. Mortality from conidia in emulsion was significantly higher than other treatments reaching 86.5% under high humidity. Emulsion was also found to significantly reduce larval growth and feeding, while conferring faster fungal growth in-host. Results suggest that a Pickering emulsion is able to improve physical interactions between the conidia and their surroundings, while weakening the host through a plethora of mechanisms, increasing the chance of an acute infection.

摘要

全球人口增长和环境问题促使人们从化学害虫管理向生态友好型害虫管理转变。昆虫病原真菌(EPF)因其易于培养、宿主范围广和独特的致病过程,成为这项任务的有力候选者,使EPF能够直接通过其角质层感染宿主。然而,EPF对高湿度的要求使其无法融入传统农业。为了缓解这一问题,我们将分生孢子制成水包油型Pickering乳液。将水性制剂和乳液制剂中的分生孢子喷洒在叶片上,并在低湿度或高湿度条件下引入幼虫。检测了以下内容:分生孢子在叶片上的分散情况、幼虫死亡率、幼虫获取分生孢子的情况、对幼虫生长和取食的影响以及疾病进展动态。发现乳液能更有效地分散分生孢子,使分生孢子与宿主角质层的附着力增加两倍。乳液中分生孢子导致的死亡率显著高于其他处理,在高湿度条件下达到86.5%。还发现乳液能显著降低幼虫的生长和取食,同时使真菌在宿主体内生长更快。结果表明,Pickering乳液能够改善分生孢子与其周围环境之间的物理相互作用,同时通过多种机制削弱宿主,增加急性感染的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/29a9/8307842/7776864c7d19/jof-07-00499-g001.jpg

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