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Whole Transcriptome Profiling of Successful Immune Response to Vibrio Infections in the Oyster Crassostrea gigas by Digital Gene Expression Analysis

机译:通过基因表达分析对牡蛎牡蛎对弧菌感染的成功免疫应答的全转录组分析

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摘要

The cultivated Pacific oyster Crassostrea gigas has suffered for decades large scale summer mortality phenomenon resulting from the interaction between the environment parameters, the oyster physiological and/or genetic status and the presence of pathogenic microorganisms including Vibrio species. To obtain a general picture of the molecular mechanisms implicated in C. gigas immune responsiveness to circumvent Vibrio infections, we have developed the first deep sequencing study of the transcriptome of hemocytes, the immunocompetent cells. Using Digital Gene Expression (DGE), we generated a transcript catalog of up-regulated genes from oysters surviving infection with virulent Vibrio strains (Vibrio splendidus LGP32 and V. aestuarianus LPi 02/41) compared to an avirulent one, V. tasmaniensis LMG 20012T. For that an original experimental infection protocol was developed in which only animals that were able to survive infections were considered for the DGE approach. We report the identification of cellular and immune functions that characterize the oyster capability to survive pathogenic Vibrio infections. Functional annotations highlight genes related to signal transduction of immune response, cell adhesion and communication as well as cellular processes and defence mechanisms of phagocytosis, actin cytosqueleton reorganization, cell trafficking and autophagy, but also antioxidant and anti-apoptotic reactions. In addition, quantitative PCR analysis reveals the first identification of pathogen-specific signatures in oyster gene regulation, which opens the way for in depth molecular studies of oyster-pathogen interaction and pathogenesis. This work is a prerequisite for the identification of those physiological traits controlling oyster capacity to survive a Vibrio infection and, subsequently, for a better understanding of the phenomenon of summer mortality.
机译:几十年来,由于环境参数,牡蛎的生理和/或遗传状况以及包括弧菌在内的病原微生物的相互作用,养殖的太平洋牡蛎Crassostrea gigas遭受了大规模的夏季死亡现象。为了获得与C. gigas对规避弧菌感染的免疫反应有关的分子机制的一般概况,我们已经开发了血细胞(免疫功能细胞)转录组的第一个深度测序研究。使用数字基因表达(DGE),我们从存活的牡蛎中产生了上调基因的转录本目录,而牡蛎感染了强毒弧菌菌株(Splendidus LGP32和A. vest aarianuus LPi 02/41),而无毒的塔斯马尼亚弧菌LMG 20012T 。为此,开发了原始的实验性感染方案,其中仅将能够存活感染的动物用于DGE方法。我们报告了表征牡蛎生存病原性弧菌感染的细胞和免疫功能的鉴定。功能注释突出显示了与免疫应答信号转导,细胞黏附和通讯以及吞噬作用的细胞过程和防御机制,肌动蛋白细胞鞘重组,细胞运输和自噬以及抗氧化剂和抗凋亡反应有关的基因。此外,定量PCR分析揭示了牡蛎基因调控中病原体特异性特征的首次鉴定,这为牡蛎-病原体相互作用和发病机理的深入分子研究开辟了道路。这项工作是确定控制牡蛎在弧菌感染中存活的生理特征的先决条件,随后,是为了更好地了解夏季死亡率的现象。

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