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表达蝎毒素(AaIT)基因的绿僵菌对咖啡果小蠹(Hypothenemus hampei,鞘翅目:象甲科)致病性增强。

Increased pathogenicity against coffee berry borer, Hypothenemus hampei (Coleoptera: Curculionidae) by Metarhizium anisopliae expressing the scorpion toxin (AaIT) gene.

作者信息

Pava-Ripoll Monica, Posada Francisco J, Momen Bahram, Wang Chengshu, St Leger Raymond

机构信息

Department of Entomology, University of Maryland, College Park, MD 20742, USA.

出版信息

J Invertebr Pathol. 2008 Oct;99(2):220-6. doi: 10.1016/j.jip.2008.05.004. Epub 2008 May 25.

Abstract

Coffee berry borer (CBB) is the Worlds most devastating coffee pest causing an estimated US$500 million worth of losses annually through damage and control costs. Beauveria bassiana and Metarhizium anisopliae have been employed to control this pest but their low virulence (slow kill and large inoculums) is an important factor constraining their use. M. anisopliae (AaIT-Ma549) has been modified to express the scorpion toxin (AaIT) in insect hemolymph and this greatly increased pathogenicity against Manduca sexta and Aedes aegypti. Here, we demonstrate that AaIT-Ma549 was also dramatically more virulent against CBB, and we provide a much more comprehensive analysis of infection processes and post-mortality development than in the previous research. We evaluated several spore concentrations (10(1) through 10(7)spores/ml) of both the wild type and recombinant strain. At concentrations of 10(1), 10(2) and 10(3)spores/ml, the recombinant strain significantly increased mortality of CBB by 32.2%, 56.6% and 24.6%, respectively. The medial lethal concentration (LC(50)) was reduced 15.7-fold and the average survival time (AST) was reduced by 20.1% to 2.98+/-0.1 days with 10(7)spores/ml. This is the first occasion that an entomopathogenic fungus has been found to kill CBB in less than 3 days. However, AaIT-Ma549 produces significantly fewer spores on cadavers than the parental strain.

摘要

咖啡果小蠹(CBB)是世界上最具破坏性的咖啡害虫,通过造成损害和控制成本,每年估计造成价值5亿美元的损失。球孢白僵菌和绿僵菌已被用于控制这种害虫,但其低毒力(致死缓慢且接种量大)是限制其使用的一个重要因素。绿僵菌(AaIT-Ma549)已被改造,可在昆虫血淋巴中表达蝎毒素(AaIT),这大大提高了对烟草天蛾和埃及伊蚊的致病性。在此,我们证明AaIT-Ma549对咖啡果小蠹的毒力也显著更强,并且我们对感染过程和死亡后发育的分析比之前的研究更加全面。我们评估了野生型和重组菌株的几种孢子浓度(10¹至10⁷个孢子/毫升)。在10¹、10²和10³个孢子/毫升的浓度下,重组菌株分别使咖啡果小蠹的死亡率显著提高了32.2%、56.6%和24.6%。在10⁷个孢子/毫升的浓度下,半数致死浓度(LC₅₀)降低了15.7倍,平均存活时间(AST)缩短了20.1%,至2.98±0.1天。这是首次发现一种昆虫病原真菌能在不到3天的时间内杀死咖啡果小蠹。然而,AaIT-Ma549在虫体上产生的孢子明显少于亲本菌株。

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