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水温与鱼类生物量对环境DNA释放、降解及大小分布的影响

Effect of water temperature and fish biomass on environmental DNA shedding, degradation, and size distribution.

作者信息

Jo Toshiaki, Murakami Hiroaki, Yamamoto Satoshi, Masuda Reiji, Minamoto Toshifumi

机构信息

Graduate School of Human Development and Environment Kobe University Kobe City Japan.

Maizuru Fisheries Research Station Kyoto University Kyoto Japan.

出版信息

Ecol Evol. 2019 Jan 21;9(3):1135-1146. doi: 10.1002/ece3.4802. eCollection 2019 Feb.

Abstract

Environmental DNA (eDNA) analysis has successfully detected organisms in various aquatic environments. However, there is little basic information on eDNA, including the eDNA shedding and degradation processes. This study focused on water temperature and fish biomass and showed that eDNA shedding, degradation, and size distribution varied depending on water temperature and fish biomass. The tank experiments consisted of four temperature levels and three fish biomass levels. The total eDNA and size-fractioned eDNA from Japanese Jack Mackerels () were quantified before and after removing the fish. The results showed that the eDNA shedding rate increased at higher water temperature and larger fish biomass, and the eDNA decay rate also increased at higher temperature and fish biomass. In addition, the small-sized eDNA fractions were proportionally larger at higher temperatures, and these proportions varied among fish biomass. After removing the fish from the tanks, the percentage of eDNA temporally decreased when the eDNA size fraction was >10 µm, while the smaller size fractions increased. These results have the potential to make the use of eDNA analysis more widespread in the future.

摘要

环境DNA(eDNA)分析已成功在各种水生环境中检测到生物。然而,关于eDNA的基础信息很少,包括eDNA的释放和降解过程。本研究聚焦于水温与鱼类生物量,结果表明,eDNA的释放、降解及大小分布随水温与鱼类生物量的变化而不同。水族箱实验设置了四个温度水平和三个鱼类生物量水平。在移除日本竹荚鱼前后,对其总eDNA及按大小分级的eDNA进行了定量分析。结果显示,较高水温及较大鱼类生物量下,eDNA的释放速率增加,较高温度及鱼类生物量下,eDNA的衰变速率也增加。此外,较高温度下小尺寸eDNA组分比例更大,且这些比例在不同鱼类生物量间存在差异。从水族箱中移除鱼类后,当eDNA大小组分>10 µm时,eDNA的百分比随时间下降,而较小尺寸组分增加。这些结果有可能使eDNA分析在未来得到更广泛的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a747/6374661/f5ac7706f27d/ECE3-9-1135-g001.jpg

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