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Illuminating the impact of diel vertical migration on visual gene expression in deep-sea shrimp

机译:照亮DIEL垂直迁移对深海虾类视觉基因表达的影响

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Diel vertical migration (DVM) of marine animals represents one of the largest migrations on our planet. Migrating fauna are subjected to a variety of light fields and environmental conditions that can have notable impacts on sensory mechanisms, including an organism's visual capabilities. Among deep-sea migrators are oplophorid shrimp that vertically migrate hundreds of metres to feed in shallow waters at night. These species also have bioluminescent light organs that emit light during migrations to aid in camouflage. The organs have recently been shown to contain visual proteins (opsins) and genes that infer light sensitivity. Knowledge regarding the impacts of vertical migratory behaviour, and fluctuating environmental conditions, on sensory system evolution is unknown. In this study, the oplophoridSystellaspis debiliswas either collected during the day from deep waters or at night from relatively shallow waters to ensure sampling across the vertical distributional range. De novo transcriptomes of light-sensitive tissues (eyes/photophores) from theday/nightspecimens were sequenced and analysed to characterize opsin diversity and visual/light interaction genes. Gene expression analyses were also conducted to quantify expression differences associated with DVM. Our results revealed an expanded opsin repertoire among the shrimp and differential opsin expression that may be linked to spectral tuning during the migratory process. This study sheds light on the sensory systems of a bioluminescent invertebrate and provides additional evidence for extraocular light sensitivity. Our findings further suggest opsin co-expression and subsequent fluctuations in opsin expression may play an important role in diversifying the visual responses of vertical migrators.
机译:海洋动物的Diel垂直迁移(DVM)代表了我们星球上最大的迁移之一。迁移动物的动物遭受各种光田和环境条件,可以对感官机制具有显着影响,包括有机体的视觉能力。在深海迁移器中,氯镜醛虾是垂直迁移数百米的夜间喂养浅水区。这些物种还具有生物发光光器官,在迁移期间发光以帮助伪装。最近已被证明含有可视蛋白(OPSINS)和试验光敏的基因。关于垂直迁徙行为的影响,以及波动环境条件的影响,对感官系统演化而言是未知的。在这项研究中,Oplophoridsystellaspis Debiliswas可以在深水中或从相对浅水的夜间收集,以确保在垂直分布范围内采样。测序和分析来自肌瘤/夜生活动的光敏感组织(眼睛/光学谱位)的德诺人转录om,并分析表征OPSIN多样性和视觉/光相互作用基因。还进行了基因表达分析以量化与DVM相关的表达差异。我们的结果揭示了虾和差异Opsin表达中的扩展Opsin曲目,其可以与迁移过程中的光谱调谐相关联。这项研究揭示了生物发光无脊椎动物的感觉系统,并为视层提供了额外的索引。我们的研究结果进一步表明OPSIN共表达,随后的OPSIN表达波动可能在多样化垂直迁移器的视觉响应方面发挥重要作用。

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