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Global impact of diet and temperature over aquaculture of Octopus vulgaris paralarvae from a transcriptomic approach

机译:饮食和温度对转录组学方法对寻常章鱼幼虫水产养殖的全球影响

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摘要

Common octopus, Octopus vulgaris, is an economically important cephalopod species. However, its rearing under captivity is currently challenged by massive mortalities previous to their juvenile stage due to nutritional and environmental factors. Dissecting the genetic basis and regulatory mechanism behind this mortality requires genomic background knowledge. A transcriptomic sequencing of 10 dph octopus paralarvae from different experimental conditions was constructed via RNA-seq. A total of 613,767,530 raw reads were filtered and de novo assembled into 363,527 contigs of which 82,513 were annotated in UniProt carrying also their GO and KEGG information. Differential gene expression analysis was carried out on paralarvae reared under different diet regimes and temperatures, also including wild paralarvae. Genes related to lipid metabolism exhibited higher transcriptional levels in individuals whose diet includes crustacean zoeas, which had an impact over their development and immune response capability. High temperature induces acclimation processes at the time that increase metabolic demands and oxidative stress. Wild individuals show an expression profile unexpectedly similar to Artemia fed individuals. Proteomic results support the hypothesis revealed by transcriptional analysis. The comparative study of the O. vulgaris transcriptomic profiles allowed the identification of genes that deserve to be further studied as candidates for biomarkers of development and health. The results obtained here on the transcriptional variations of genes caused by diet and temperature will provide new perspectives in understanding the molecular mechanisms behind nutritional and temperature requirements of common octopus that will open new opportunities to deepen in paralarvae rearing requirements.
机译:普通章鱼,八达通,是一种经济上重要的头足类物种。然而,由于营养和环境因素,目前在人工圈养下的繁殖受到幼年之前大量死亡的挑战。剖析这种死亡率背后的遗传基础和调控机制需要基因组背景知识。通过RNA-seq构建了来自不同实验条件的10 dph章鱼副卵幼虫的转录组测序。总共对613,767,530个原始读取进行了过滤,并从头重新组装为363,527个重叠群,其中82,513个在UniProt中进行了注释,同时还包含其GO和KEGG信息。对在不同饮食制度和温度下饲养的副卵进行了差异基因表达分析,其中还包括野生副卵。与脂质代谢相关的基因在饮食中包括甲壳类动物的个体中表现出较高的转录水平,这对其发育和免疫应答能力产生了影响。高温时会引起驯化过程,从而增加新陈代谢需求和氧化应激。野生个体表现出的表达谱出乎意料地类似于卤虫喂养的个体。蛋白质组学结果支持由转录分析揭示的假设。普通农杆菌转录组谱的比较研究使得可以鉴定值得进一步发展为健康和发展生物标志物的基因。此处有关饮食和温度引起的基因转录变异的研究结果将为了解普通章鱼营养和温度需求背后的分子机制提供新的观点,这将为加深幼虫饲养需求提供新的机会。

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