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在两种亚栉孔扇贝种群中,HSP mRNA序列及其在不同热振荡模式和热应激下的表达。

HSP mRNA sequences and their expression under different thermal oscillation patterns and heat stress in two populations of Nodipecten subnodosus.

作者信息

Bonesteve Axel, Lluch-Cota Salvador E, Sicard Maria Teresa, Racotta Ilie S, Tripp-Valdez Miguel A, Rojo-Arreola Liliana

机构信息

Université de Bretagne Occidentale, Plouzané, France.

Centro de Investigaciones Biológicas del Noroeste, La Paz, Mexico.

出版信息

Cell Stress Chaperones. 2025 Feb;30(1):33-47. doi: 10.1016/j.cstres.2024.12.002. Epub 2024 Dec 18.

Abstract

Understanding the molecular mechanisms underlying thermal acclimation and heat shock responses in marine ectotherms is critical for assessing their adaptive capacity in the context of climate change and climate extremes. This study examines the expression dynamics of heat shock proteins (HSPs) in the scallop Nodipecten subnodosus, shedding light on their role in thermal adaptation. Our analysis revealed the presence of several conserved functional signatures in N. subnodosus HSPs deduced amino acid sequences. Comparative gene expression profiling between two populations of N. subnodosus, maintained for 15 days under constant and oscillatory thermal regimes and then exposed to acute heat stress, revealed conserved adaptive traits. The heat-inducible nature of N. subnodosus HSP70 (HSPA8) gene expression highlights its potential as a stress marker, in contrast to its human homolog, which is constitutively expressed. Furthermore, the identification of HSP90 (HSPC3) and its overexpression during acute heat stress underscores its critical role in initiating a protective stress response. Population-specific responses in the magnitude of gene expression were observed; however, both populations exhibited similar overall patterns of HSP induction, suggesting a shared adaptive response mechanism. This study also elucidated the diversity and expansion of members of the HSP70 family members, specifically the HSPA12 subfamily, in N. subnodosus. This characteristic, previously observed in other bivalves, underscores the role of HSPA12 in environmental adaptation, providing molecular plasticity to withstand varying environmental pressures. These findings offer valuable insights into the molecular basis of thermal adaptation in N. subnodosus, highlighting the importance of HSPs in coping with environmental stochasticity under climate change scenarios.

摘要

了解海洋变温动物热适应和热休克反应背后的分子机制,对于评估它们在气候变化和极端气候背景下的适应能力至关重要。本研究考察了栉孔扇贝热休克蛋白(HSPs)的表达动态,揭示了它们在热适应中的作用。我们的分析显示,在栉孔扇贝热休克蛋白推导的氨基酸序列中存在几个保守的功能特征。对在恒定和振荡热环境下维持15天,然后暴露于急性热应激的两个栉孔扇贝种群进行比较基因表达谱分析,揭示了保守的适应性状。栉孔扇贝热休克蛋白70(HSPA8)基因表达的热诱导特性突出了其作为应激标志物的潜力,这与其在人类中的同源物组成性表达形成对比。此外,热休克蛋白90(HSPC3)的鉴定及其在急性热应激期间的过表达强调了其在启动保护性应激反应中的关键作用。观察到基因表达幅度存在种群特异性反应;然而,两个种群都表现出相似的热休克蛋白诱导总体模式,表明存在共同的适应性反应机制。本研究还阐明了栉孔扇贝热休克蛋白70家族成员,特别是HSPA12亚家族成员的多样性和扩张。这一特征先前在其他双壳类动物中也有观察到,强调了HSPA12在环境适应中的作用,为抵御不同环境压力提供了分子可塑性。这些发现为栉孔扇贝热适应的分子基础提供了有价值的见解,突出了热休克蛋白在应对气候变化情景下环境随机性方面的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce0e/11750468/6dbb7005a229/ga1.jpg

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