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红禽螨种群(Dermanyssus gallinae)之间微生物组的比较:巴尔通体样细菌占优势。

Comparison of Microbiomes between Red Poultry Mite Populations (Dermanyssus gallinae): Predominance of Bartonella-like Bacteria.

机构信息

Crop Research Institute, Drnovska 507/73, Prague 6-Ruzyne, 161 06, Czechia.

Department of Medical Chemistry and Clinical Biochemistry, 2nd Faculty of Medicine, Charles University and Motol University Hospital, V Uvalu 84/1, Prague, 5150 06, Czechia.

出版信息

Microb Ecol. 2017 Nov;74(4):947-960. doi: 10.1007/s00248-017-0993-z. Epub 2017 May 22.

Abstract

Blood feeding red poultry mites (RPM) serve as vectors of pathogenic bacteria and viruses among vertebrate hosts including wild birds, poultry hens, mammals, and humans. The microbiome of RPM has not yet been studied by high-throughput sequencing. RPM eggs, larvae, and engorged adult/nymph samples obtained in four poultry houses in Czechia were used for microbiome analyses by Illumina amplicon sequencing of the 16S ribosomal RNA (rRNA) gene V4 region. A laboratory RPM population was used as positive control for transcriptome analysis by pyrosequencing with identification of sequences originating from bacteria. The samples of engorged adult/nymph stages had 100-fold more copies of 16S rRNA gene copies than the samples of eggs and larvae. The microbiome composition showed differences among the four poultry houses and among observed developmental stadia. In the adults' microbiome 10 OTUs comprised 90 to 99% of all sequences. Bartonella-like bacteria covered between 30 and 70% of sequences in RPM microbiome and 25% bacterial sequences in transcriptome. The phylogenetic analyses of 16S rRNA gene sequences revealed two distinct groups of Bartonella-like bacteria forming sister groups: (i) symbionts of ants; (ii) Bartonella genus. Cardinium, Wolbachia, and Rickettsiella sp. were found in the microbiomes of all tested stadia, while Spiroplasma eriocheiris and Wolbachia were identified in the laboratory RPM transcriptome. The microbiomes from eggs, larvae, and engorged adults/nymphs differed. Bartonella-like symbionts were found in all stadia and sampling sites. Bartonella-like bacteria was the most diversified group within the RPM microbiome. The presence of identified putative pathogenic bacteria is relevant with respect to human and animal health issues while the identification of symbiontic bacteria can lead to new control methods targeting them to destabilize the arthropod host.

摘要

吸血的红色家禽螨(RPM)作为脊椎动物宿主(包括野生鸟类、家禽母鸡、哺乳动物和人类)之间的致病性细菌和病毒的载体。RPM 的微生物组尚未通过高通量测序进行研究。使用 Illumina 扩增子测序对 16S 核糖体 RNA(rRNA)基因 V4 区进行微生物组分析,对从捷克的四个家禽养殖场获得的 RPM 卵、幼虫和饱食的成虫/若虫样本进行了分析。实验室 RPM 种群被用作通过焦磷酸测序进行转录组分析的阳性对照,以鉴定源自细菌的序列。饱食的成虫/若虫期样本的 16S rRNA 基因拷贝数比卵和幼虫样本多 100 倍。微生物组组成显示了四个家禽养殖场之间以及观察到的发育阶段之间的差异。在成虫的微生物组中,有 10 个 OTU 包含 90%至 99%的所有序列。巴尔通体样细菌覆盖了 RPM 微生物组中 30%至 70%的序列和转录组中 25%的细菌序列。16S rRNA 基因序列的系统发育分析显示,两组巴尔通体样细菌形成姐妹群:(i)蚂蚁共生菌;(ii)巴尔通体属。在所有测试阶段的微生物组中均发现了卡多氏体、沃尔巴克氏体和 Rickettsiella sp.,而在实验室 RPM 转录组中鉴定出了螺旋体和沃尔巴克氏体。卵、幼虫和饱食的成虫/若虫的微生物组不同。在所有阶段和采样地点均发现了巴尔通体样共生菌。巴尔通体样细菌是 RPM 微生物组中最多样化的群体。鉴定出的潜在致病性细菌的存在与人类和动物健康问题有关,而共生菌的鉴定可以导致针对它们的新控制方法,以破坏节肢动物宿主。

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