Physiological response of Metarhizium rileyi with linoleic acid supplementation

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Leidy Esther Sánchez-Rey , Nubia Moreno-Sarmiento , Erika Paola Grijalba-Bernal , Ginna Quiroga-Cubides
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Abstract

Metarhizium rileyi has a broad biocontrol spectrum but is highly sensitive to abiotic factors. A Colombian isolate M. rileyi Nm017 has shown notorious potential against Helicoverpa zea. However, it has a loss of up to 22 % of its conidial germination after drying, which limits its potential as a biocontrol agent and further commercialization. Conidial desiccation resistance can be enhanced by nutritional supplements, which promotes field adaptability and facilitates technological development as a biopesticide. In this study, the effect of culture medium supplemented with linoleic acid on desiccation tolerance in Nm017 conidia was evaluated. Results showed that using a 2 % linoleic acid-supplemented medium increased the relative germination after drying by 41 % compared to the control treatment, without affecting insecticidal activity on H. zea. Also, the fungus increased the synthesis of trehalose, glucose, and erythritol during drying, independently of linoleic acid use. Ultrastructural analyses of the cell wall-membrane showed a loss of thickness by 22 % and 25 %, in samples obtained from 2 % linoleic acid supplementation and the control, respectively. Regarding its morphological characteristics, conidia inner area from both treatments did not change after drying. However, conidia from the control had a 24 % decrease in length/width ratio, whereas there was no alteration in conidia from acid linoleic. The average value of dry conidia elasticity coefficient from linoleic acid treatment was 200 % above the control. Medium supplementation with linoleic acid is a promising fermentation strategy for obtaining more tolerant conidia without affecting production and biocontrol parameters, compatible solutes synthesis, or modifying its cell configuration.

补充亚油酸对米塔利虫的生理反应
Metarhizium rileyi 具有广泛的生物控制谱,但对非生物因素高度敏感。哥伦比亚分离的 M. rileyi Nm017 对 Helicoverpa zea 具有显著的防治潜力。然而,它的分生孢子发芽率在干燥后损失高达 22%,这限制了它作为生物控制剂的潜力和进一步的商业化。分生孢子的抗干燥性可以通过营养补充剂来增强,从而提高田间适应性,促进作为生物农药的技术开发。本研究评估了添加亚油酸的培养基对 Nm017 分生孢子干燥耐受性的影响。结果表明,与对照处理相比,添加 2% 亚油酸的培养基可使干燥后的相对发芽率提高 41%,但不会影响对玉米螟的杀虫活性。此外,真菌在干燥过程中增加了三卤糖糖、葡萄糖和赤藓糖醇的合成,与亚油酸的使用无关。细胞壁膜的超微结构分析表明,添加 2% 亚油酸的样本和对照样本的细胞壁膜厚度分别减少了 22% 和 25%。在形态特征方面,两种处理的分生孢子在干燥后内部面积均无变化。不过,对照组的分生孢子长宽比下降了 24%,而亚油酸处理的分生孢子则没有变化。亚油酸处理的干燥分生孢子弹性系数平均值比对照组高 200%。在培养基中添加亚油酸是一种很有前途的发酵策略,可以在不影响生产和生物防治参数、相容性溶质合成或改变细胞结构的情况下获得耐受性更强的分生孢子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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