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对暴露于慢性温度变化的新西兰拟鲷()应激和免疫基因表达的评估。

Assessment of Stress and Immune Gene Expression in Australasian Snapper () Exposed to Chronic Temperature Change.

作者信息

Bentley-Hewitt Kerry, Flammensbeck Christina K, Hedderley Duncan I, Wellenreuther Maren

机构信息

The New Zealand Institute for Plant and Food Research Limited, Private Bag 11600, Palmerston North 4442, New Zealand.

The New Zealand Institute for Plant and Food Research Limited, Nelson Research, Centre Box 5114, Port Nelson, Nelson 7043, New Zealand.

出版信息

Genes (Basel). 2025 Mar 28;16(4):385. doi: 10.3390/genes16040385.

Abstract

Snapper is a significant commercial, recreational, and cultural teleost species in New Zealand, with aquaculture potential. The impact of long-term (chronic) temperature changes on immune and stress responses have not been studied in snapper, yet they have a critical importance to the health status of the fish. We investigated a set of genes in 30 individual snapper including fin, head kidney, and liver tissue, fish (10 per group) were exposed to either warm (22 °C), cold (14 °C), or ambient temperatures (10.5-18.6 °C) for 3 months. Analyses of experimental fish using NanoString technologies to assess stress- and immune-related genes in the three tissue types showed that 22 out of 25 genes changed significantly in the experiment, indicating the significant impacts of chronic temperature changes on stress and immune responses. Furthermore, using a combined dataset based on this study and a previous one testing the impact of acute temperature changes in snapper, we identified five genes in the non-lethal fin-clip samples that can predict internal organ health status. Taken together, our experiments demonstrate the potential of the NanoString gene expression assessment tool for the rapid monitoring of stress responses in snapper, which can aid in the selection of stress-resilient wild stocks, monitor species in aquaculture environments, and inform the selection of locations for aquaculture.

摘要

笛鲷是新西兰一种重要的商业、休闲和文化硬骨鱼类,具有水产养殖潜力。长期(慢性)温度变化对笛鲷免疫和应激反应的影响尚未得到研究,但它们对鱼类的健康状况至关重要。我们对30条笛鲷个体的鳍、头肾和肝脏组织中的一组基因进行了研究,将鱼(每组10条)分别置于温暖(22℃)、寒冷(14℃)或环境温度(10.5 - 18.6℃)下3个月。使用NanoString技术对实验鱼进行分析,以评估三种组织类型中与应激和免疫相关的基因,结果显示25个基因中有22个在实验中发生了显著变化,表明慢性温度变化对应激和免疫反应有显著影响。此外,基于本研究和之前一项测试笛鲷急性温度变化影响的研究的合并数据集,我们在非致死性鳍剪样本中鉴定出五个可以预测内部器官健康状况的基因。综上所述,我们的实验证明了NanoString基因表达评估工具在快速监测笛鲷应激反应方面的潜力,这有助于选择抗应激的野生种群、监测水产养殖环境中的物种,并为水产养殖地点的选择提供参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6fb0/12027476/31cec43a2c5b/genes-16-00385-g001.jpg

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