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揭示了 Hsp70 基因家族在应对纳米塑料胁迫中的作用。

Genome-Wide Identification and Transcriptome Analysis of the Hsp70 Gene Family in Reveals Its Role in Response to Nanoplastics Stress.

机构信息

Fishery College, Zhejiang Ocean University, Zhoushan 316022, China.

College of Plant Protection, Fujian Agriculture and Forestry University, Fuzhou 350002, China.

出版信息

Genes (Basel). 2024 Feb 25;15(3):291. doi: 10.3390/genes15030291.

Abstract

For marine invertebrates, the disruption of organismal physiology and behavior by nanoplastics (NPs) has been extensively reported. Heat shock proteins (Hsps) are important for redundant protein breakdown, environmental changes, and intracellular protein transport. An exhaustive identification of Hsp70 genes and an experiment where different concentrations of NPs were stressed were performed to study how Hsp70 genes respond to NPs stress in . Our results identified 15 members of Hsp70 within the genome of and provided insights into their responses to different concentrations of acute NP stress. Phylogenetic analyses revealed extensive amplification of the Hsp70 genes from the Hsc70 subfamily, with gene duplication events. As a result of NP stress, five of fifteen genes showed significant upregulation or downregulation. Three Hsp70 genes were highly expressed at an NP concentration of 0.1 mg/L, and no genes were downregulated. At 10 mg/L, they showed significant upregulation of two genes and significant downregulation of two genes. At 1 mg/L treatment, three genes were significantly downregulated, and no genes were significantly upregulated. Moreover, a purifying selection was revealed using a selection test conducted on duplicate gene pairs, indicating functional redundancy. This work is the first thorough examination of the Hsp70s in Archaeogastropoda. The findings improve knowledge of Hsp70s in molluscan adaptation to NP stress and intertidal living and offer essential data for the biological study of .

摘要

对于海洋无脊椎动物,纳米塑料(NPs)对生物体生理和行为的破坏已经得到了广泛的报道。热休克蛋白(Hsps)对于冗余蛋白的降解、环境变化和细胞内蛋白运输非常重要。本研究进行了详尽的 Hsp70 基因鉴定和不同浓度 NPs 胁迫实验,以研究 Hsp70 基因如何对 NPs 胁迫做出响应。我们的结果在 基因组中鉴定出 15 个 Hsp70 成员,并深入了解了它们对不同浓度急性 NP 胁迫的响应。系统发育分析显示,Hsc70 亚家族的 Hsp70 基因广泛扩增,存在基因复制事件。由于 NP 胁迫,15 个基因中有 5 个基因表现出明显的上调或下调。在 0.1mg/L 的 NP 浓度下,有 3 个 Hsp70 基因高度表达,没有基因下调。在 10mg/L 时,有 2 个基因显著上调,有 2 个基因显著下调。在 1mg/L 处理时,有 3 个基因显著下调,没有基因显著上调。此外,通过对重复基因对进行选择测试,揭示了纯化选择,表明存在功能冗余。这项工作是首次对古腹足纲的 Hsp70 进行全面研究。研究结果提高了人们对 HSP70 在软体动物适应 NP 胁迫和潮间带生活中的认识,为 的生物学研究提供了重要数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83ca/10969875/c59946952cf7/genes-15-00291-g001.jpg

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