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伊氏齿爪鳃金龟(鞘翅目:象甲科)的细菌及其生物防治潜力。

Bacteria from Ips sexdentatus (Coleoptera: Curculionidae) and their biocontrol potential.

机构信息

Department of Biology, Rize University, Rize, Turkey.

出版信息

J Basic Microbiol. 2012 Dec;52(6):695-704. doi: 10.1002/jobm.201100564. Epub 2012 May 14.

Abstract

Ips sexdentatus (Coleoptera: Curculionidae) is one of the most destructive pests of the spruce trees in Europe. In this study, we have isolated and characterized culturable bacteria from I. sexdentatus and tested their insecticidal activity against the last instar larvae of the pest as a possible biocontrol agent. A total of eight bacterial isolates was determined and four of them were identified at species level, and the others were identified at genus level. Isolates were identified as Stenotrophomonas maltophilia (Is1), Rahnella sp. (Is2), Pseudomonas sp. (Is3), Bacillus sp. (Is4), Alcaligenes faecalis (Is5), Panteoea agglomerans (Is6), Pseudomonas fluorescens (Is7) and Serratia sp. (Is8) based on their morphological, biochemical and molecular characteristics. Insecticidal effects of bacterial isolates were performed on the last instar larvae of the pest. The highest insecticidal activity was obtained from P. fluorescens (Is7) with 73% mortality within 10 days after inoculation (p < 0.05). Mortality values of the other isolates ranged from 20 to 53%. This study suggests that Pseudomonas fluorescens (Is7) seems to be a good candidate as a possible biocontrol agent against I. sexdentatus, and provides suitable strains that can be modified to express insecticidal toxins and/or other detrimental substances to develop new control methods for I. sexdentatus.

摘要

锯齿伊氏锹甲(鞘翅目:象甲科)是欧洲云杉树的最具破坏性害虫之一。在本研究中,我们从锯齿伊氏锹甲中分离并鉴定了可培养细菌,并测试了它们对害虫末龄幼虫的杀虫活性,以期将其作为一种生物防治剂。共确定了 8 个细菌分离株,其中 4 个在种水平上得到鉴定,其余在属水平上得到鉴定。分离株被鉴定为嗜麦芽寡养单胞菌(Is1)、产碱杆菌(Is5)、聚球藻(Is6)、荧光假单胞菌(Is7)和沙雷氏菌(Is8),基于它们的形态学、生化和分子特征。在害虫末龄幼虫上进行了细菌分离物的杀虫效果测试。接种后 10 天内,荧光假单胞菌(Is7)的杀虫活性最高,死亡率为 73%(p < 0.05)。其他分离株的死亡率范围为 20%至 53%。本研究表明,荧光假单胞菌(Is7)似乎是一种有前途的生物防治剂,可以针对锯齿伊氏锹甲进行开发,为表达杀虫毒素和/或其他有害物质的改良提供了合适的菌株,以开发针对锯齿伊氏锹甲的新控制方法。

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