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池塘水的环境DNA与周围陆地植物生态系统表现出广泛的一致性。

Pond Water eDNA Reflects Broad Consistency with Surrounding Terrestrial Plant Ecosystems.

作者信息

Bozdogan Duygu, Takizawa Shogo, Furukori Norihiro, Homma Kosuke, Abe Harue, Sakio Hitoshi, Harada Naoki, Suzuki Kazuki

机构信息

Graduate School of Science and Technology, Niigata University, Niigata 950-2181, Japan.

Faculty of Agriculture, Niigata University, Niigata 950-2181, Japan.

出版信息

Biology (Basel). 2025 Jan 13;14(1):62. doi: 10.3390/biology14010062.

Abstract

This study evaluates the potential of using pond water eDNA to reflect the surrounding terrestrial plant communities, aiming to develop a sustainable, large-scale, and long-term monitoring method for plant diversity in forest ecosystems. Water samples were collected four times from two ponds with different vegetation types during the late spring to autumn seasons in Japan. eDNA was extracted from dissolved particles fractionated by sequential filtration through pore sizes of 200 µm, 5 µm, and 0.45 µm, followed by high-throughput amplicon sequencing targeting the plant rbcL gene. By comparing field surveys with the eDNA data, we identified 79% and 63% of plant families and genera, respectively, suggesting that pond water eDNA may reflect the surrounding terrestrial plant ecosystem. Additionally, different trends were observed in the seasonal variation of plant taxa and their composition detected in eDNA, based on particle size. This study highlights the potential of pond water eDNA to provide valuable insights into forest plant richness and seasonal dynamics, offering a novel approach for ecological monitoring.

摘要

本研究评估了利用池塘水环境DNA反映周边陆地植物群落的潜力,旨在开发一种可持续、大规模且长期的森林生态系统植物多样性监测方法。在日本的晚春至秋季期间,从两个植被类型不同的池塘中采集了四次水样。通过依次用孔径为200 µm、5 µm和0.45 µm的滤膜对溶解颗粒进行分级过滤来提取环境DNA,随后针对植物rbcL基因进行高通量扩增子测序。通过将实地调查与环境DNA数据进行比较,我们分别识别出了79%的植物科和63%的植物属,这表明池塘水环境DNA可能反映周边陆地植物生态系统。此外,基于粒径,在环境DNA中检测到的植物分类群及其组成的季节变化呈现出不同趋势。本研究突出了池塘水环境DNA在提供有关森林植物丰富度和季节动态的宝贵见解方面的潜力,为生态监测提供了一种新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b074/11762844/419202a5ac5c/biology-14-00062-g001.jpg

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