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鉴定和半定量分析龙虱消化道微生物群中的原生动物(昆虫纲:蜚蠊目)。

Identification and Semi-quantification of Protozoa from the Digestive System Microbiota of the Lobster Cockroach Nauphoeta cinerea Oliver, 1789 (Insecta:Blattaria).

机构信息

Laboratory of Biology and Toxicology (BIOTOX), Department of Biology, Center for Biological and Health Sciences, Regional University of Cariri-URCA, CNPJ-06.740.864/0001-26, CEL. Antônio Luiz Street, 1161-Pimenta, Crato, CE, CEP: 63105-000, Brazil.

Laboratory of Plant Ecophysiology (LECOV), Department of Biology, Center for Biological and Health Sciences, Regional University of Cariri-URCA, CNPJ-06.740.864/0001-26, CEL. Antônio Luiz Street, 1161-Pimenta, Crato, CE, CEP: 63105-000, Brazil.

出版信息

Acta Parasitol. 2022 Sep;67(3):1186-1198. doi: 10.1007/s11686-022-00570-0. Epub 2022 May 19.

Abstract

INTRODUCTION

The lobster cockroach Nauphoeta cinerea (N. cinerea) is indicated as a promising non-mammalian model, because it presents behavioral and biochemical alterations also observed in conventional models. In this research, we identified and characterized the distribution of protozoa that inhabit the digestive system (DS) of N. cinerea cockroaches.

METHODS

The adult specimens of N. cinerea used in this study (n = 32) were obtained at the Federal University of Santa Maria, dissected and had their visceral contents observed in bright-field microscopy without staining and after application of lugol, Ziehl-Neelsen staining, EA36 trichrome and simulated dark-field microscopy with application of nankin ink. The presence of protozoa in different portions of the DS was semi-quantified by a system of crosses (+).

RESULTS

The main taxa observed were: amoebas (Archaemebae:Entamoebida), gregarins (Apicomplexa:Eugregarinide), coccidia (Apicomplexa:Eucoccidiorida), kinetoplastids (Kinetoplastea:Kinetoplastida) and oxymonads (Preaxostyla:Oxymonadida). The highest prevalence of amoebas and gregarines was observed in the medial portion of the DS, while for the other groups, this was seen in the final portion, and in the case of coccidia, such prevalence was specially evidenced by the alcohol-acid coloration. In the present work, the great biological diversity that exists in the microbiota of the digestive system of Nauphoeta cinerea was demonstrated, being possible to find several pathogenic species for humans such as Entamoeba histolytica/dispar/moshkovskii, Cryptosporidium sp. and Cyclospora cayetanensis. There is still a lot to know about the interactions between endocommensal protozoa and their respective invertebrate hosts, so the best way to clarify such relationships is through molecular and genetic test.

摘要

简介

龙虱 Nauphoeta cinerea(N. cinerea)被认为是一种很有前途的非哺乳动物模型,因为它表现出了在传统模型中也观察到的行为和生化改变。在这项研究中,我们鉴定并描述了栖息在 N. cinerea 蟑螂消化系统(DS)中的原生动物的分布。

方法

本研究中使用的成年 N. cinerea 标本(n=32)是从圣玛丽亚联邦大学获得的,在未经染色和应用卢戈氏液、齐氏染色、EA36 三色和应用南锦墨水的模拟暗场显微镜下对其内脏内容物进行了明场显微镜观察。通过十字交叉(+)系统对 DS 不同部位原生动物的存在情况进行了半定量。

结果

主要观察到的类群有:阿米巴(古生菌:内阿米巴目)、疟原虫(孢子虫门:真球虫亚目)、球虫(孢子虫门:真球虫目)、动基体目(动基体目:动基体目)和纤毛亚门(前肠亚门:纤毛亚门)。在 DS 的中部观察到阿米巴和疟原虫的最高流行率,而对于其他群体,则在末端观察到,对于球虫,这种流行率特别是通过酒精-酸染色得到证实。在本工作中,证明了 Nauphoeta cinerea 消化系统微生物群中存在的巨大生物多样性,有可能发现几种对人类致病的物种,如溶组织内阿米巴/迪斯帕/莫斯科维希、隐孢子虫和环孢子虫。关于内共生原生动物与其各自的无脊椎动物宿主之间的相互作用,我们还有很多需要了解,因此澄清这种关系的最佳方法是通过分子和遗传测试。

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