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抑制斯氏按蚊血红素过氧化物酶HPX15可激活多种免疫途径以调节中肠细菌的生长。

Silencing of Anopheles stephensi Heme Peroxidase HPX15 Activates Diverse Immune Pathways to Regulate the Growth of Midgut Bacteria.

作者信息

Kajla Mithilesh, Choudhury Tania P, Kakani Parik, Gupta Kuldeep, Dhawan Rini, Gupta Lalita, Kumar Sanjeev

机构信息

Molecular Parasitology and Vector Biology Laboratory, Department of Biological Sciences, Birla Institute of Technology and Science Pilani, India.

Molecular Parasitology and Vector Biology Laboratory, Department of Biological Sciences, Birla Institute of Technology and SciencePilani, India; Department of Zoology, Chaudhary Bansi Lal UniversityBhiwani, India.

出版信息

Front Microbiol. 2016 Aug 31;7:1351. doi: 10.3389/fmicb.2016.01351. eCollection 2016.

Abstract

Anopheles mosquito midgut harbors a diverse group of endogenous bacteria that grow extensively after the blood feeding and help in food digestion and nutrition in many ways. Although, the growth of endogenous bacteria is regulated by various factors, however, the robust antibacterial immune reactions are generally suppressed in this body compartment by a heme peroxidase HPX15 crosslinked mucins barrier. This barrier is formed on the luminal side of the midgut and blocks the direct interactions and recognition of bacteria or their elicitors by the immune reactive midgut epithelium. We hypothesized that in the absence of HPX15, an increased load of exogenous bacteria will enormously induce the mosquito midgut immunity and this situation in turn, can easily regulate mosquito-pathogen interactions. In this study, we found that the blood feeding induced AsHPX15 gene in Anopheles stephensi midgut and promoted the growth of endogenous as well as exogenous fed bacteria. In addition, the mosquito midgut also efficiently regulated the number of these bacteria through the induction of classical Toll and Imd immune pathways. In case of AsHPX15 silenced midguts, the growth of midgut bacteria was largely reduced through the induction of nitric oxide synthase (NOS) gene, a downstream effector molecule of the JAK/STAT pathway. Interestingly, no significant induction of the classical immune pathways was observed in these midguts. Importantly, the NOS is a well known negative regulator of Plasmodium development, thus, we proposed that the induction of diverged immune pathways in the absence of HPX15 mediated midgut barrier might be one of the strategies to manipulate the vectorial capacity of Anopheles mosquito.

摘要

按蚊中肠内栖息着多种内源性细菌,这些细菌在吸血后大量繁殖,并在许多方面帮助消化食物和提供营养。尽管内源性细菌的生长受多种因素调节,然而,在这个身体部位,一种血红素过氧化物酶HPX15交联粘蛋白屏障通常会抑制强大的抗菌免疫反应。这种屏障在中肠腔侧形成,阻止免疫反应性中肠上皮细胞直接与细菌或其激发子相互作用和识别。我们假设,在缺乏HPX15的情况下,外源性细菌负荷增加将极大地诱导按蚊中肠免疫,而这种情况反过来又可以轻松调节按蚊与病原体的相互作用。在本研究中,我们发现吸血诱导了斯氏按蚊中肠中的AsHPX15基因,并促进了内源性和外源性摄入细菌的生长。此外,按蚊中肠还通过诱导经典的Toll和Imd免疫途径有效地调节这些细菌的数量。在AsHPX15沉默的中肠中,中肠细菌的生长通过诱导一氧化氮合酶(NOS)基因(JAK/STAT途径的下游效应分子)而大幅减少。有趣的是,在这些中肠中未观察到经典免疫途径的显著诱导。重要的是,NOS是疟原虫发育的著名负调节因子,因此,我们提出在缺乏HPX15介导的中肠屏障的情况下诱导不同的免疫途径可能是操纵按蚊媒介能力的策略之一。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef12/5006007/37a05a173879/fmicb-07-01351-g001.jpg

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