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首页> 外文期刊>Fish & Shellfish Immunology >Transcriptome-wide analysis of wild Asari (= Manila) clams affected by the Brown Muscle Disease: Etiology and impacts of the disease
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Transcriptome-wide analysis of wild Asari (= Manila) clams affected by the Brown Muscle Disease: Etiology and impacts of the disease

机译:受棕色肌肉疾病影响的野生asari(= manila)蛤蜊的转录组分析:病因和疾病的影响

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摘要

Recently, we reported an emerging pathology named Brown Muscle Disease (BMD) affecting Asari clams inhabiting the most productive area for this species in France, the Arcachon Bay. The main macroscopic feature of the pathology relies on the atrophy of the posterior adductor muscle, affecting the ability of clams to burry. The research of the etiological agent of BMD privileged a viral infection. Contrary to healthy clams, infected animals are always found at the surface of the sediment and exhibit 30 nm virus-like particles in muscle, granulocytic and rectal cells. In order to get more insights on the etiology and impacts of the BMD on clams, we took advantage in the present study of next generation sequencing technologies. An RNA-Seq approach was used (i) to test whether viral RNA sequences can be specifically found in the transcriptome of diseased animals and (ii) to identify the genes that are differentially regulated between diseased and healthy clams. Contrary to healthy buried animals, in diseased clams one sequence showing extensive homologies with retroviridae-related genes was detected. Among the biological processes that were affected in diseased clams, the synaptic transmission process was the most represented. To deepen this result, a new sampling was carried out and the transcription level of genes involved in synaptic transmission was determined in healthy and diseased clams but also in clams with no visible sign of pathology but located at the surface of the sediment. Our findings suggest that muscle atrophy is a latter sign of the pathology and that nervous system could be instead a primary target of the BMD agent.
机译:最近,我们报告了一个名为棕色肌肉疾病(BMD)的新兴病理学,影响了Asari Clams居住在法国的这个物种中最富有成效的地区,Arcachon Bay。病理学的主要宏观特征依赖于后衰落肌肉的萎缩,影响蛤蜊腐蚀的能力。 BMD特权的病因感染病因感染的研究。与健康的蛤蜊相反,感染动物总是在沉淀物的表面上发现,并在肌肉,粒细胞和直肠细胞中表现出30nm的病毒样颗粒。为了获得更多关于BMD对蛤蜊的病因和影响的见解,我们在目前的下一代测序技术研究中利用了。使用RNA-SEQ方法(I)以测试病毒RNA序列是否可以在患病动物的转录组中具体地发现(II)以鉴定患病和健康蛤之间差异调节的基因。与健康埋藏的动物相反,在患病的蛤蜊中,检测到患有逆转录和相关基因的广泛同源物的一种序列。在患病蛤蜊中受影响的生物过程中,突触传递过程最为代表。为了深化这种结果,进行了一种新的取样,并且在健康和患病蛤中确定了突触透射的基因的转录水平,而且在蛤蜊中,没有病理学的可见迹象,但位于沉积物的表面。我们的研究结果表明,肌肉萎缩是病理学的后一种迹象,并且神经系统可以是BMD代理的主要靶标。

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