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用链烷烃对球孢白僵菌菌株进行预处理,以提高其对红带蝽和阔胫犀蝽的生物防治效果。

Alkane-priming of Beauveria bassiana strains to improve biocontrol of the redbanded stink bug Piezodorus guildinii and the bronze bug Thaumastocoris peregrinus.

机构信息

Laboratorio de Bioproducción, Plataforma de Bioinsumos, Instituto Nacional de Investigación Agropecuaria, estación experimental Wilson Ferreira Aldunate, Ruta 48, km 10, Canelones, Uruguay.

Instituto de Investigaciones Bioquímicas de La Plata (INIBIOLP), CCT La Plata Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET) - Universidad Nacional de La Plata (UNLP), calles 60 y 120, 1900 La Plata, Argentina.

出版信息

J Invertebr Pathol. 2022 Jan;187:107700. doi: 10.1016/j.jip.2021.107700. Epub 2021 Nov 26.

DOI:10.1016/j.jip.2021.107700
PMID:34838792
Abstract

Insect epicuticle hydrocarbons (CHC) are known to be important determinants in the susceptibility degree of insects to fungal entomopathogens. Five Beauveria bassiana (Balsamo) Vuillemin (Hypocreales; Clavicipitaceae) strains were phenotypically analyzed regarding their response to CHC nutrition and their pathogenicity and virulence towards high fungal-susceptible Thaumastocoris peregrinus (Carpintero and Dellapé) (Heteroptera: Thaumastocoridae) and low fungal-susceptible Piezodorus guildinii (Westwood) (Hemiptera: Pentatomidae), which are important hemipteran pests in eucalyptus and soybean plantations, respectively. Two of these strains, which were the most (ILB308) and the least (ILB299) virulent to P. guildinii, were also evaluated at gene expression level after growth on n-pentadecane, a P. guildinii epicuticular hydrocarbon. Beauveria bassiana hypervirulent strain ILB308 showed the lowest growth on most evaluated CHC media. However, this strain distinctively induced most of the analyzed genes involved in CHC assimilation, cuticle degradation and stress tolerance. Virulence towards low susceptibility P. guildinii was enhanced in both hypervirulent ILB308 and hypovirulent ILB299 strains after growth on n-pentadecane as the sole carbon source, whereas virulence enhancement towards high susceptibility T. peregrinus was only observed in the hypervirulent strain. Virulence enhancement towards P. guildinii could be mostly explained by a priming effect produced by CHC on the induction of some genes related to hydrocarbon assimilation in ILB299 and ILB308, such as cytochrome P450 genes (BbCyp52g11 and BbCyp52x1), together with adhesion and stress tolerance genes, such as hydrophobin (Bbhyd2) and catalase (Bbcatc) and glutathione peroxidase (Bbgpx), respectively.

摘要

昆虫表皮碳氢化合物 (CHC) 已知是昆虫对真菌昆虫病原物易感性的重要决定因素。对 5 株球孢白僵菌 (Balsamo) Vuillemin(Hypocreales;Clavicipitaceae)菌株进行表型分析,研究其对 CHC 营养的反应以及对高真菌易感性的异翅目昆虫长尾肖蛸 (Carpintero 和 Dellapé)(半翅目:肖蛸科)和低真菌易感性的黑肩绿盲蝽 (Westwood)(半翅目:盲蝽科)的致病性和毒力,它们分别是桉树和大豆种植园中重要的半翅目害虫。其中 2 株菌株,即对 P. guildinii 最具毒力(ILB308)和最不具毒力(ILB299)的菌株,也在生长于 P. guildinii 表皮碳氢化合物 n-十五烷时进行了基因表达水平的评估。球孢白僵菌超毒力菌株 ILB308 在大多数评估的 CHC 培养基上的生长速度最慢。然而,该菌株独特地诱导了大多数参与 CHC 吸收、角质层降解和应激耐受的分析基因。在 n-十五烷作为唯一碳源生长后,低易感性 P. guildinii 的毒力在超毒力 ILB308 和弱毒力 ILB299 菌株中均得到增强,而高易感性 T. peregrinus 的毒力增强仅在超毒力菌株中观察到。在 ILB299 和 ILB308 中,CHC 对某些与碳氢化合物吸收相关基因的诱导产生了启动作用,这可以在很大程度上解释对低易感性 P. guildinii 的毒力增强,这些基因包括细胞色素 P450 基因 (BbCyp52g11 和 BbCyp52x1),以及粘附和应激耐受基因,如疏水蛋白 (Bbhyd2)、过氧化氢酶 (Bbcatc) 和谷胱甘肽过氧化物酶 (Bbgpx)。

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引用本文的文献

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