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广州管圆线虫中间宿主——入侵性非洲大蜗牛(褐云玛瑙螺)的生理学与免疫

Physiology and immunity of the invasive giant African snail, Achatina (Lissachatina) fulica, intermediate host of Angiostrongylus cantonensis.

作者信息

Lima Mariana G, Augusto Ronaldo de C, Pinheiro Jairo, Thiengo Silvana C

机构信息

Laboratório de Referência Nacional para Esquistossomose - Malacologia, Instituto Oswaldo Cruz/FIOCRUZ, Rio de Janeiro, Brazil; Área de Biofísica, Departamento de Ciências Fisiológicas, Instituto de Biologia, Universidade Federal, Rural do Rio de Janeiro, Seropédica, RJ, Brazil.

UMR 5244 Univ Perpignan via Domitia-CNRS-IFREMER-Univ Montpellier, Interactions Hôtes-Pathògenes-Environnements (IHPE), Université de Perpignan via Domitia, France.

出版信息

Dev Comp Immunol. 2020 Apr;105:103579. doi: 10.1016/j.dci.2019.103579. Epub 2019 Dec 23.

Abstract

As one of the most successful invasive land snail species, Achatina (Lissachatina) fulica Bowdich, 1822 has achieved wide global distribution, particularly in (sub)tropical regions, with further dispersal likely due to climate change. This species of giant African snails (up to 17 cm shell length) is a pest that has extensive negative impact on agriculture and can serve as vector for several parasites, including Angiostrongylus cantonensis, a nematode parasite that causes (human) eosinophilic meningitis, an emergent disease. Investigation showed that A. cantonensis infection negatively impacts the metabolism of A. fulica by depleting polysaccharide stores of the intermediate host, compromising the energy balance of the snail. A review of the literature indicates that A. fulica possesses potent innate type immune defenses to counter infection, including phagocytic hemocytes capable of deploying reactive oxygen species and lectins for non-self recognition, a serine protease-dependent coagulation response (not observed in other taxa of gastropods), as well as antimicrobial proteins including achacin, an antimicrobial protein. A recent chromosome level genome assembly will facilitate progressively detailed characterization of these immune features of A. fulica. We strongly encourage further immunological studies of A. fulica, ranging from organismal level to molecular biology to gain better understanding of the A. fulica internal defense response to nematode pathogens like A. cantonensis and the contribution of immune function to the invasiveness of (snail) species. Characterization of immunity of A. fulica, representing the understudied Stylommatophora (panpulmonate landsnails) will also broaden the comparative immunology of Gastropoda.

摘要

作为最成功的入侵陆生蜗牛物种之一,褐云玛瑙螺(Achatina (Lissachatina) fulica Bowdich,1822)已在全球广泛分布,尤其是在(亚)热带地区,并且由于气候变化其分布可能会进一步扩散。这种非洲大蜗牛(壳长可达17厘米)是一种害虫,对农业有广泛的负面影响,并且可以作为多种寄生虫的传播媒介,包括广州管圆线虫,一种可导致(人类)嗜酸性粒细胞性脑膜炎这一新兴疾病的线虫寄生虫。调查显示,广州管圆线虫感染会消耗中间宿主的多糖储备,损害蜗牛的能量平衡,从而对褐云玛瑙螺的新陈代谢产生负面影响。文献综述表明,褐云玛瑙螺拥有强大的先天性免疫防御来对抗感染,包括能够产生活性氧的吞噬血细胞和用于非自我识别的凝集素、丝氨酸蛋白酶依赖性凝血反应(在其他腹足纲分类群中未观察到),以及包括玛瑙螺抗菌蛋白在内的抗菌蛋白。最近的染色体水平基因组组装将有助于逐步详细表征褐云玛瑙螺的这些免疫特征。我们强烈鼓励对褐云玛瑙螺进行进一步的免疫学研究,范围从生物体水平到分子生物学,以更好地了解褐云玛瑙螺对广州管圆线虫等线虫病原体的内部防御反应以及免疫功能对(蜗牛)物种入侵性的贡献。对褐云玛瑙螺免疫的表征,代表了研究较少的柄眼目(泛肺类陆生蜗牛),也将拓宽腹足纲的比较免疫学研究。

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