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Identification of HSF1 Target Genes Involved in Thermal Stress in the Pacific Oyster Crassostrea gigas by ChIP-seq

机译:芯片-SEQ鉴定涉及太平洋牡蛎鲫鱼的热应力的HSF1靶基因

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摘要

The Pacific oyster Crassostrea gigas, a commercially important species inhabiting the intertidal zone, facing enormous temperature fluctuations. Therefore, it is important to identify candidate genes and key regulatory relationships associated with thermal tolerance, which can aid the molecular breeding of oysters. Heat shock transcription factor 1 (HSF1) plays an important role in the thermal stress resistance. However, the regulatory relationship between the expansion of heat shock protein (HSP) HSP 70 and HSF1 is not yet clear in C. gigas. In this study, we analyzed genes regulated by HSF1 in response to heat shock by chromatin immunoprecipitation followed by sequencing (ChIP-seq), determined the expression patterns of target genes by qRT-PCR, and validated the regulatory relationship between one HSP70 and HSF1. We found 916 peaks corresponding to HSF1 binding sites, and these peaks were annotated to the nearest genes. In Gene Ontology analysis, HSF1 target genes were related to signal transduction, energy production, and response to biotic stimulus. Four HSP70 genes, two HSP40 genes, and one small HSP gene exhibited binding to HSF1. One HSP70 with a binding site in the promoter region was validated to be regulated by HSF1 under heat shock. These results provide a basis for future studies aimed at determining the mechanisms underlying thermal tolerance and provide insights into gene regulation in the Pacific oyster.
机译:太平洋牡蛎鲫鱼,一种居住在潮间区的商业上重要的物种,面向巨大的温度波动。因此,重要的是鉴定候选基因和与热耐受的关键调节关系,这可以帮助牡蛎的分子育种。热冲击转录因子1(HSF1)在热应力阻力中起重要作用。然而,热休克蛋白(HSP)HSP 70和HSF1的膨胀之间的调节关系尚不清楚C. Gigas。在该研究中,我们通过染色质免疫沉淀的热休克,然后通过测序(芯片-SEQ)来分析由HSF1调节的基因,通过QRT-PCR确定靶基因的表达模式,并验证了一个HSP70和HSF1之间的调节关系。我们发现916峰对应于HSF1结合位点,并且这些峰被向最近的基因进行注释。在基因本体分析中,HSF1靶基因与信号转导,能量产生和对生物刺激的反应有关。四个HSP70基因,两种HSP40基因和一个小型HSP基因表现出与HSF1的结合。验证具有启动子区域中的末端位点的一个HSP70被验证在热冲击下通过HSF1调节。这些结果为未来的研究提供了旨在确定潜在耐受性的机制的基础,并在太平洋牡蛎中提供对基因调节的见解。

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