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在双足甲壳类动物中假定生物钟转录本的鉴定及时间表达

Identification and temporal expression of putative circadian clock transcripts in the amphipod crustacean .

作者信息

O'Grady Joseph F, Hoelters Laura S, Swain Martin T, Wilcockson David C

机构信息

Institute of Biological, Environmental and Rural Sciences, University of Wales , Aberystwyth , Ceredigion , United Kingdom.

出版信息

PeerJ. 2016 Oct 5;4:e2555. doi: 10.7717/peerj.2555. eCollection 2016.

Abstract

BACKGROUND

is an amphipod crustacean that inhabits the supralittoral zone on sandy beaches in the Northeast Atlantic and Mediterranean. exhibits endogenous locomotor activity rhythms and time-compensated sun and moon orientation, both of which necessitate at least one chronometric mechanism. Whilst their behaviour is well studied, currently there are no descriptions of the underlying molecular components of a biological clock in this animal, and very few in other crustacean species.

METHODS

We harvested brain tissue from animals expressing robust circadian activity rhythms and used homology cloning and Illumina RNAseq approaches to sequence and identify the core circadian clock and clock-related genes in these samples. We assessed the temporal expression of these genes in time-course samples from rhythmic animals using RNAseq.

RESULTS

We identified a comprehensive suite of circadian clock gene homologues in including the 'core' clock genes (), (), (), (), and (). In addition we describe the sequence and putative structures of 23 clock-associated genes including two unusual, extended isoforms of pigment dispersing hormone (). We examined time-course RNAseq expression data, derived from tissues harvested from behaviourally rhythmic animals, to reveal rhythmic expression of these genes with approximately circadian period in and . Of the clock-related genes, (, (), (), (), (), (), (), sirt7 () and supernumerary limbs () show temporal changes in expression.

DISCUSSION

We report the sequences of principle genes that comprise the circadian clock of and highlight the conserved structural and functional domains of their deduced cognate proteins. Our sequencing data contribute to the growing inventory of described comparative clocks. Expression profiling of the identified clock genes illuminates tantalising targets for experimental manipulation to elucidate the molecular and cellular control of clock-driven phenotypes in this crustacean.

摘要

背景

[具体生物名称]是一种栖息在东北大西洋和地中海沙滩潮上带的双甲目甲壳动物。它表现出内源性运动活动节律以及时间补偿的太阳和月亮定向,这两者都需要至少一种计时机制。虽然对其行为已有充分研究,但目前尚无关于该动物生物钟潜在分子成分的描述,在其他甲壳类物种中也很少见。

方法

我们从表现出强烈昼夜节律活动的动物中采集脑组织,并使用同源克隆和Illumina RNA测序方法对这些样本中的核心生物钟和生物钟相关基因进行测序和鉴定。我们使用RNA测序评估了这些基因在有节律动物的时间进程样本中的表达。

结果

我们在[具体生物名称]中鉴定出一套完整的生物钟基因同源物,包括“核心”生物钟基因[具体基因名称1]、[具体基因名称2]、[具体基因名称3]、[具体基因名称4]和[具体基因名称5]。此外,我们描述了23个生物钟相关基因的序列和推测结构,包括色素分散激素的两种不寻常的、延长的异构体。我们检查了来自行为有节律动物组织的时间进程RNA测序表达数据,以揭示这些基因在[具体生物名称]和[另一具体生物名称]中大约以昼夜周期的节律表达。在生物钟相关基因中,[具体基因名称6]、[具体基因名称7]、[具体基因名称8]、[具体基因名称9]、[具体基因名称10]、[具体基因名称11]、[具体基因名称12]、[具体基因名称13]、沉默调节蛋白7([具体英文名称])和多肢([具体英文名称])显示出表达的时间变化。

讨论

我们报告了构成[具体生物名称]生物钟的主要基因序列,并突出了其推导的同源蛋白的保守结构和功能域。我们的测序数据有助于增加已描述的比较生物钟的清单。对已鉴定的生物钟基因进行表达谱分析,为实验操作提供了诱人的靶点,以阐明该甲壳类动物中生物钟驱动表型的分子和细胞控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09ff/5068443/7deddd5f30cd/peerj-04-2555-g001.jpg

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