Occurrence of entomopathogenic fungi in coconut soils, identification, physiological characterisation and pathogenicity towards Rhynchophorus palmarum (Coleoptera: Dryophthoridae)

IF 1.5 4区 农林科学 Q4 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Biocontrol Science and Technology Pub Date : 2023-09-27 DOI:10.1080/09583157.2023.2259638
Augusto Javier Peña-Peña, Carlos Fredy Ortiz Garcia, Jhony Navat Enriquez Vara, Carlos Mariano Oropeza Salín
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Abstract

ABSTRACTRhynchophorus palmarum is a significant pest of Cocos nucifera on the American continent. Therefore, this work aimed to search and characterise entomopathogenic fungi isolates to control R. palmarum under laboratory conditions. Sixty-three isolates of Metarhizium spp. were obtained from soil samples from different coconut plantations in four regions in Tabasco, México. The sites were edaphically characterised, and the presence of Metarhizium was almost null in the sites with 90% sand. The ITS region of the DNA of eleven isolates was analysed, and M. robertsii and M. anisopliae s.l. were identified. The mycelial growth (MG) of 38 isolates was evaluated, which were incubated at 25°C, 30°C, and ·35°C on Potato Dextrose Agar with Yeast for 14 d. The optimal growth for some strains was at 25°C and 30°C; for others, at 35°C. The MG colonies were small (< 1 cm) and irregular. The pathogenicity of the strains was evaluated in Tenebrio molitor larvae for 14 d with a conidia suspension 108 (conidia/mL). All the strains were pathogenic to T. molitor. However, only two strains (PAL 231.1, PAL 733.1) identified as M. robertsii reached cumulative mortality of over 60%. Then, these two strains were tested in adults of R. palmarum for 21 d with three conidia concentrations (107, 108, 109 conidia/mL). The suspension 109 conidia/mL of PAL 733.1 was the most pathogenic, with cumulative mortality of 60% and LT50 at 17 d. Therefore, the strain PAL 733.1 is proposed as a potential biological control agent against R. palmarum.KEYWORDS: BiocontrolMetarhizium robertsiiMetarhizium anisopliaeSouth American palm weevilintegrated pest management AcknowledgementsThe authors thank Consejo Nacional de Humanidades, Ciencia y Tecnología (CONAHCYT, México) for the scholarship granted to A. J. Peña-Peña; FORDECYT-CONAHCYT (grant number 296195) for partially financing the research; CP-Campus Tabasco and CICY for allowing A.J. Peña-Peña conduct research activities at their premises; and Davira Palma-Cancino, Pablo Palma-Cancino, and María Narvaez-Cab for technical support.Disclosure statementNo potential conflict of interest was reported by the author(s).Additional informationFundingThis work was supported by Consejo Nacional de Ciencia y Tecnología [grant number ]; FORDECYT-CONACYT [grant number: 296195].
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椰子土壤中昆虫病原真菌的发生、鉴定、生理特性及对棕榈林蛾的致病性
摘要棕榈螟是美洲大陆主要害虫之一。因此,本工作旨在寻找和鉴定分离的昆虫病原真菌,以在实验室条件下控制棕榈赤霉。在墨西哥塔巴斯科省4个地区的不同椰子种植园土壤样品中分离到63株绿僵菌。这些地点具有地理特征,在90%的沙子中几乎没有绿僵菌的存在。对11株菌株的DNA ITS区进行了分析,鉴定出robertsii和m.s。将38株菌株分别在25℃、30℃和·35℃的马铃薯葡萄糖琼脂酵母培养基上培养14 d,对其菌丝生长进行了评价,其中部分菌株在25℃和30℃条件下生长最佳;另一些则在35°C。MG菌落小(< 1 cm)且不规则。用分生孢子悬浮液108(分生孢子/mL)对黄粉拟黄虫幼虫进行14 d的致病性评价。所有菌株均对T. molitor具有致病性。然而,只有2株(PAL 231.1和PAL 733.1)被鉴定为罗伯特氏杆菌,其累积死亡率超过60%。然后,以三种分生孢子浓度(107、108、109个分生孢子/mL)分别对这两种菌株进行21 d的实验。菌株PAL 733.1以109个分生孢子/mL的悬液致病性最强,累积死亡率为60%,17 d时的致死率为50。因此,PAL 733.1菌株被认为是一种潜在的生物防治剂。关键词:生物防治罗伯特绿僵菌绿僵菌南美棕榈象甲病虫害综合治理作者感谢国家人道主义委员会,Ciencia Tecnología (CONAHCYT, m xico)授予A. J. Peña-Peña奖学金;FORDECYT-CONAHCYT(资助号296195)为研究提供部分资金;cp校园Tabasco和CICY允许A.J. Peña-Peña在他们的场所进行研究活动;Davira Palma-Cancino、Pablo Palma-Cancino和María Narvaez-Cab提供技术支持。披露声明作者未报告潜在的利益冲突。本研究由国家科学委员会通过Tecnología[资助号]支持;FORDECYT-CONACYT[授权号:296195]。
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来源期刊
CiteScore
3.20
自引率
7.10%
发文量
64
审稿时长
4-8 weeks
期刊介绍: Biocontrol Science and Technology presents original research and reviews in the fields of biological pest, disease and weed control. The journal covers the following areas: Animal pest control by natural enemies Biocontrol of plant diseases Weed biocontrol ''Classical'' biocontrol Augmentative releases of natural enemies Quality control of beneficial organisms Microbial pesticides Properties of biocontrol agents, modes of actions and methods of application Physiology and behaviour of biocontrol agents and their interaction with hosts Pest and natural enemy dynamics, and simulation modelling Genetic improvement of natural enemies including genetic manipulation Natural enemy production, formulation, distribution and release methods Environmental impact studies Releases of selected and/or genetically manipulated organisms Safety testing The role of biocontrol methods in integrated crop protection Conservation and enhancement of natural enemy populations Effects of pesticides on biocontrol organisms Biocontrol legislation and policy, registration and commercialization.
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