Suppr超能文献

基于环境DNA技术的棘头梅童鱼生物量实验评估

Experimental assessment of Acanthopagrus schlegelii biomass based on environmental DNA technology.

作者信息

Liu Yan, Zhang Mengyi, Wang Liangming, Yang Changping, Yang Yukai, Xie Qijian, Liu Manting, Chen Cheng, Jia Chunbin, Shan Binbin

机构信息

South China Sea Fisheries Research Institute, Chinese Academy of Fisheries Sciences, Guangzhou, 510300, China.

Key Laboratory of Marine Ranching, Ministry of Agriculture Rural Affairs, Guangzhou, 510300, China.

出版信息

Sci Rep. 2024 Dec 30;14(1):32029. doi: 10.1038/s41598-024-83590-2.

Abstract

The Environmental DNA (eDNA) technology has attracted significant attention due to its convenience and high sensitivity. However, the variations of eDNA across diverse environments and biological species remain complex. Therefore, a detailed exploration of the release patterns of eDNA for specific species under different environments is crucial for the scientific utilization of eDNA detection techniques. This study conducted an experiment involving the aquaculture of Acanthopagrus schlegelii to explore the release and degradation mechanisms of eDNA. It also analyzed the influence of salinity and biomass on the concentration of eDNA in water. Through model simulations, the variation patterns of A. schlegelii eDNA were revealed. The study achieved three key findings: (1) The research on the release and degradation mechanisms of A. schlegelii eDNA indicated that the Generalized Additive Model (GAM) effectively fits the variation patterns of eDNA concentration. The peak concentration of eDNA released by A. schlegelii was observed at 42 h, and the degradation process exhibited two stages: rapid and slow degradation, with a negative correlation between eDNA concentration and time. (2) By investigating the relationship between the concentration of A. schlegelii eDNA and biomass, it was demonstrated that Linear Models (LM) effectively captured this relationship, indicating a correlation between eDNA concentration and biomass. (3) The detection of A. schlegelii eDNA concentration under different salinity conditions revealed that the GAM model better reflected the relationship between eDNA and salinity, exhibiting a negative correlation. As salinity increased, the concentration of eDNA decreased. This study lays a foundation for future assessments of the A. schlegelii biomass in natural waters using eDNA quantitative detection techniques, and provides relevant references for quantitative eDNA detection techniques in other marine fish species.

摘要

环境DNA(eDNA)技术因其便捷性和高灵敏度而备受关注。然而,eDNA在不同环境和生物物种中的变化仍然复杂。因此,详细探究特定物种在不同环境下eDNA的释放模式对于eDNA检测技术的科学利用至关重要。本研究开展了一项关于黑鲷养殖的实验,以探究eDNA的释放和降解机制。同时分析了盐度和生物量对水中eDNA浓度的影响。通过模型模拟,揭示了黑鲷eDNA的变化模式。该研究取得了三个关键发现:(1)对黑鲷eDNA释放和降解机制的研究表明,广义相加模型(GAM)能有效拟合eDNA浓度的变化模式。黑鲷释放的eDNA浓度峰值出现在42小时,降解过程呈现快速降解和缓慢降解两个阶段,eDNA浓度与时间呈负相关。(2)通过研究黑鲷eDNA浓度与生物量之间的关系,证明线性模型(LM)能有效捕捉这种关系,表明eDNA浓度与生物量之间存在相关性。(3)在不同盐度条件下对黑鲷eDNA浓度的检测表明,GAM模型能更好地反映eDNA与盐度之间的关系,呈负相关。随着盐度增加,eDNA浓度降低。本研究为未来利用eDNA定量检测技术评估自然水域中黑鲷生物量奠定了基础,并为其他海洋鱼类物种的eDNA定量检测技术提供了相关参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/029e/11686245/858318d1cb25/41598_2024_83590_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验