Stefanelli Chiara, Colaianni Davide, Mazzotta Gabriella M, Sales Gabriele, Bertolucci Cristiano, Meyer Bettina, Biscontin Alberto, De Pittà Cristiano
Department of Biology, University of Padova, Padova, 35121, Italy.
Department of Life Sciences and Biotechnology, University of Ferrara, Ferrara, 44121, Italy.
BMC Biol. 2024 Dec 23;22(1):298. doi: 10.1186/s12915-024-02099-2.
The Antarctic krill Euphausia superba is a keystone species in the Southern Ocean ecosystem. This crustacean has an ancestral clock whose main components have been identified and characterized in the past few years. However, the second feedback loop, modulating clock gene expression through two transcription factors, VRI and PDP1, has yet to be described. The presence of this second regulatory mechanism is suggested by the identification of its negative component, vrille, at the transcriptional level.
Here, we describe the second feedback loop of krill by identifying the positive component, pdp1, and functionally characterizing both pdp1 and vrille. Starting from the online transcriptome database KrillDB, we identified and cloned three putative pdp1 sequences which were subsequently analyzed for tissue expression and functional activity using luciferase assays, individually and in combination with two vrille isoforms. Among the pdp1 isoforms, Espdp1_3 displayed higher expression levels in relevant circadian districts than the other two. Furthermore, EsPDP1_3 and EsVRI_2 exhibited the expected positive and negative regulation of the V/P-box in our in vitro system. Finally, Espdp1_3 and Esvrille also showed rhythmic expression in light-dark cycles, supporting their involvement in the regulation of the main circadian clock of the Antarctic krill.
This study expands our knowledge about the molecular architecture of the Antarctic krill circadian clock by defining the components that take part in the modulation of clock expression, establishing a second feedback loop.
南极磷虾(Euphausia superba)是南大洋生态系统中的关键物种。这种甲壳类动物拥有一个祖传生物钟,其主要组成部分在过去几年中已被识别和表征。然而,通过两个转录因子VRI和PDP1调节生物钟基因表达的第二个反馈回路尚未被描述。在转录水平上对其负性成分vrille的鉴定表明存在这种第二种调节机制。
在此,我们通过鉴定正性成分pdp1并对pdp1和vrille进行功能表征,描述了磷虾的第二个反馈回路。从在线转录组数据库KrillDB开始,我们鉴定并克隆了三个假定的pdp1序列,随后使用荧光素酶测定法单独以及与两种vrille亚型组合分析它们的组织表达和功能活性。在pdp1亚型中,Espdp1_3在相关昼夜节律区域的表达水平高于其他两个。此外,在我们的体外系统中,EsPDP1_3和EsVRI_2对V/P盒表现出预期的正调控和负调控。最后,Espdp1_3和Esvrille在明暗周期中也表现出节律性表达,支持它们参与南极磷虾主要昼夜节律钟的调节。
本研究通过定义参与调节生物钟表达的成分,建立了第二个反馈回路,扩展了我们对南极磷虾昼夜节律钟分子结构的认识。