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采用 16S rDNA 焦磷酸测序技术对黑蝇(双翅目:Stratiomyidae)连续生活阶段的细菌多样性进行调查。

A survey of bacterial diversity from successive life stages of black soldier fly (Diptera: Stratiomyidae) by using 16S rDNA pyrosequencing.

机构信息

State Key Laboratory of Agricultural Microbiology, National Engineering Research Center of Microbial Pesticide, Huazhong Agricultural University, China.

出版信息

J Med Entomol. 2013 May;50(3):647-58. doi: 10.1603/me12199.

Abstract

Sustainable methods for managing waste associated with people and animals have been proposed in the past. Black soldier fly, Hermetia illucens (L.), larvae represent one of the more promising methods. Larvae reduce dry matter, bacteria, offensive odor, and house fly populations. Prepupae can be used as feedstuff for livestock. However, it is not known if such a method results in the proliferation of potential pathogens. Although some bacterial species have been cultured and identified from black soldier fly, a true appreciation of fly associated bacterial diversity is not known. Such information is needed to understand pathogen colonization on decomposing animal and plant waste in the presence of black soldier fly larvae as well as develop research strategies for maximizing the use of this fly to reduce waste without risking environmental harm. Using 454 sequencing, we surveyed bacterial diversity associated with successive life stages of the black soldier fly reared on plant material. Bacteria diversity classified (99.8%) across all life stages spanned six bacterial phyla with > or = 80% bootstrap support. Bacteroidetes and Proteobacteria were the most dominant phyla associated with the black soldier fly accounting for two-thirds of the fauna identified. Many of these bacteria would go undetected because of their inability to be cultured.

摘要

过去已经提出了可持续的方法来管理与人和动物相关的废物。黑蝇幼虫(Hermetia illucens(L.))代表了一种更有前途的方法。幼虫可以减少干物质、细菌、恶臭和家蝇的数量。预蛹可以用作牲畜的饲料。然而,目前尚不清楚这种方法是否会导致潜在病原体的增殖。虽然已经从黑蝇幼虫中培养和鉴定了一些细菌种类,但对苍蝇相关细菌多样性的真正了解还不得而知。为了了解在黑蝇幼虫存在的情况下,腐烂的动植物废物上病原体的定植情况,并制定最大限度地利用这种蝇类减少废物而不危及环境的研究策略,需要了解这些信息。使用 454 测序,我们调查了在植物材料上饲养的黑蝇幼虫的连续生活阶段相关的细菌多样性。在所有生活阶段,细菌多样性分类(99.8%)跨越了六个细菌门,具有≥80%的自举支持率。拟杆菌门和变形菌门是与黑蝇幼虫最相关的两个优势门,占鉴定出的动物区系的三分之二。由于这些细菌无法培养,许多细菌将无法被检测到。

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