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首页> 外文期刊>Microbial Biotechnology >Riding the Trojan horse: combating pest insects with their own symbionts. [Review]
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Riding the Trojan horse: combating pest insects with their own symbionts. [Review]

机译:骑特洛伊木马:与自己的共生生物对抗害虫。 [评论]

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摘要

Insects form an extremely large group of animals and bear a consequently large variety of associated microbes. This microbiota includes very specific and obligate symbionts that provide essential functions to the host, and facultative partners that are not necessarily required for survival. The Tephritidae is a large family that includes many fruit pests such as the Mediterranean fruit fly (the medfly, Ceratitis capitata) and the Olive fly (Bactrocera oleae). Community and functional analyses showed that the microbiota of both flies contribute to their diet, and affect host fitness parameters. The analysis of the microbiota's community structure of mass-reared, sterilized medfly males used in the sterile insect technique revealed a strong reduction in Klebsiella spp. compared with non-sterile and wild flies. Inoculation of sterile males with this gut population affected female mating behaviour as they preferentially mated with inoculated versus non-inoculated males. These studies suggest that control can be significantly improved by manipulating symbionts in pest animals. 2011 The Author. Journal compilation 2011 Society for Applied Microbiology and Blackwell Publishing Ltd.
机译:昆虫构成了非常大的一组动物,因此带有多种相关的微生物。该微生物群包括为宿主提供基本功能的非常特殊和专心的共生体,以及并非生存所必需的兼性伴侣。 eph科是一个大家族,其中包括许多果蝇害虫,例如地中海果蝇(地中海果蝇,角实ceratitis capitata)和橄榄果蝇(Bactrocera oleae)。社区和功能分析表明,两种果蝇的微生物群都有助于其饮食,并影响宿主的适应性参数。通过对不育昆虫技术中使用的大量繁殖,灭菌的地中海果蝇雄性菌群的群落结构进行分析,结果显示克雷伯菌属菌种明显减少。与非无菌和野生蝇相比。接种这种肠道菌群的不育雄性动物会影响雌性交配行为,因为它们优先与未接种的雄性交配。这些研究表明,通过控制害虫动物中的共生体可以大大改善控制。 2011作者。期刊汇编,2011年应用微生物学会和Blackwell PublishingLtd。

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