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象鼻虫免疫基因的鉴定及其在菌瘤组织中的表达。

Identification of the weevil immune genes and their expression in the bacteriome tissue.

作者信息

Anselme Caroline, Pérez-Brocal Vicente, Vallier Agnès, Vincent-Monegat Carole, Charif Delphine, Latorre Amparo, Moya Andrés, Heddi Abdelaziz

机构信息

Université de Lyon, INRA, INSA-Lyon, IFR-41, UMR203 BF2I, Biologie Fonctionnelle Insectes et Interactions, F-69621 Villeurbanne, France.

出版信息

BMC Biol. 2008 Oct 16;6:43. doi: 10.1186/1741-7007-6-43.

Abstract

BACKGROUND

Persistent infections with mutualistic intracellular bacteria (endosymbionts) are well represented in insects and are considered to be a driving force in evolution. However, while pathogenic relationships have been well studied over the last decades very little is known about the recognition of the endosymbionts by the host immune system and the mechanism that limits their infection to the bacteria-bearing host tissue (the bacteriome).

RESULTS

To study bacteriome immune specificity, we first identified immune-relevant genes of the weevil Sitophilus zeamais by using suppressive subtractive hybridization (SSH) and then analyzed their full-length coding sequences obtained by RACE-PCR experiments. We then measured immune gene expression in the bacteriome, and in the aposymbiotic larvae following S. zeamais primary endosymbiont (SZPE) injection into the hemolymph, in order to consider the questions of bacteriome immune specificity and the insect humoral response to symbionts. We show that larval challenge with the endosymbiont results in a significant induction of antibacterial peptide genes, providing evidence that, outside the bacteriome, SZPE are recognized as microbial intruders by the host. In the bacteriome, gene expression analysis shows the overexpression of one antibacterial peptide from the coleoptericin family and, intriguingly, homologs to genes described as immune modulators (that is, PGRP-LB, Tollip) were also shown to be highly expressed in the bacteriome.

CONCLUSION

The current data provide the first description of immune gene expression in the insect bacteriome. Compared with the insect humoral response to SZPE, the bacteriome expresses few genes among those investigated in this work. This local immune gene expression may help to maintain the endosymbiont in the bacteriome and prevent its invasion into insect tissues. Further investigations of the coleoptericin, the PGRP and the Tollip genes should elucidate the role of the host immune system in the maintenance and regulation of endosymbiosis.

摘要

背景

昆虫体内存在着与互利共生的胞内细菌(内共生菌)的持续感染,这种感染在昆虫中很常见,并被认为是进化的驱动力。然而,尽管在过去几十年中对致病关系进行了深入研究,但对于宿主免疫系统如何识别内共生菌以及将其感染限制在携带细菌的宿主组织(菌瘤)中的机制却知之甚少。

结果

为了研究菌瘤的免疫特异性,我们首先利用抑制性消减杂交(SSH)鉴定了玉米象 Sitophilus zeamais 的免疫相关基因,然后分析了通过RACE-PCR实验获得的它们的全长编码序列。接着,我们测量了菌瘤以及在将玉米象主要内共生菌(SZPE)注射到血淋巴后的无共生菌幼虫中的免疫基因表达,以探讨菌瘤免疫特异性以及昆虫对共生菌的体液反应问题。我们发现,用内共生菌对幼虫进行攻击会显著诱导抗菌肽基因的表达,这表明在菌瘤之外,SZPE被宿主识别为微生物入侵者。在菌瘤中,基因表达分析显示鞘翅菌素家族的一种抗菌肽过度表达,有趣的是,与被描述为免疫调节剂的基因(即PGRP-LB、Tollip)同源的基因在菌瘤中也高度表达。

结论

目前的数据首次描述了昆虫菌瘤中的免疫基因表达。与昆虫对SZPE的体液反应相比,菌瘤在本研究中所检测的基因中表达较少。这种局部免疫基因表达可能有助于将内共生菌维持在菌瘤中,并防止其侵入昆虫组织。对鞘翅菌素、PGRP和Tollip基因的进一步研究应能阐明宿主免疫系统在维持和调节内共生关系中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c56/2590597/1819de695440/1741-7007-6-43-1.jpg

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