Congo red induces trans-priming to UV-B radiation in Metarhizium robertsii

IF 3 3区 生物学 Q2 MYCOLOGY Fungal biology Pub Date : 2023-12-01 DOI:10.1016/j.funbio.2023.06.005
Karla Cecilia Licona-Juárez , Ana Victória S. Bezerra , Ilkilene T.C. Oliveira , Cleyde Delitos Massingue , Humberto R. Medina , Drauzio E.N. Rangel
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Abstract

Metarhizium spp. is used as a biocontrol agent but is limited because of low tolerance to abiotic stress. Metarhizium robertsii is an excellent study model of fungal pathogenesis in insects, and its tolerance to different stress conditions has been extensively investigated. Priming is the time-limited pre-exposure of an organism to specific stress conditions that increases adaptive response to subsequent exposures. Congo red is a water-soluble azo dye extensively used in stress assays in fungi. It induces morphological changes and weakens the cell wall at sublethal concentrations. Therefore, this chemical agent has been proposed as a stressor to induce priming against other stress conditions in entomopathogenic fungi. This study aimed to evaluate the capacity of Congo red to induce priming in M. robertsii. Conidia were grown on potato dextrose agar with or without Congo red.The tolerance of conidia produced from mycelia grown in these three conditions was evaluated against stress conditions, including osmotic, oxidative, heat, and UV-B radiation. Conidia produced on medium supplemented with Congo red were significantly more tolerant to UV-B radiation but not to the other stress conditions assayed. Our results suggest that Congo red confers trans-priming to UV-B radiation but not for heat, oxidative, or osmotic stress.

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刚果红可诱导罗伯茨梅塔尔黑僵菌对紫外线-B 辐射进行反诱导
Metarhizium spp.被用作生物控制剂,但由于其对非生物胁迫的耐受性较低而受到限制。Metarhizium robertsii 是研究昆虫真菌致病机理的绝佳模型,其对不同胁迫条件的耐受性已得到广泛研究。诱导是指生物体在特定应激条件下的限时预暴露,可增强对后续暴露的适应性反应。刚果红是一种水溶性偶氮染料,广泛用于真菌的应激检测。在亚致死浓度下,它能诱导形态变化并削弱细胞壁。因此,这种化学制剂被认为是诱导昆虫病原真菌在其他应激条件下产生抗逆性的应激源。本研究旨在评估刚果红诱导罗伯茨真菌引诱的能力。在添加或不添加刚果红的马铃薯葡萄糖琼脂上培养分生孢子,评估在这三种条件下生长的菌丝体产生的分生孢子对应激条件(包括渗透、氧化、热和紫外线辐射)的耐受性。在添加了刚果红的培养基上产生的分生孢子对紫外线-B 辐射的耐受性明显更强,但对其他应激条件的耐受性则没有明显提高。我们的研究结果表明,刚果红能赋予分生孢子对紫外线-B 辐射的抗逆性,但不能赋予分生孢子对热、氧化或渗透胁迫的抗逆性。
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来源期刊
Fungal biology
Fungal biology MYCOLOGY-
CiteScore
5.80
自引率
4.00%
发文量
80
审稿时长
49 days
期刊介绍: Fungal Biology publishes original contributions in all fields of basic and applied research involving fungi and fungus-like organisms (including oomycetes and slime moulds). Areas of investigation include biodeterioration, biotechnology, cell and developmental biology, ecology, evolution, genetics, geomycology, medical mycology, mutualistic interactions (including lichens and mycorrhizas), physiology, plant pathology, secondary metabolites, and taxonomy and systematics. Submissions on experimental methods are also welcomed. Priority is given to contributions likely to be of interest to a wide international audience.
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