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细胞外 DNA 与芳香化生物炭的相互作用及对 DNA 酶 I 降解的保护作用。

Interactions of extracellular DNA with aromatized biochar and protection against degradation by DNase I.

机构信息

Key Laboratory of Recycling and Eco-treatment of Waste Biomass of Zhejiang Province, Zhejiang University of Science and Technology, Hangzhou 310023, China; School of Environmental Science and Engineering, Zhejiang Gongshang University, Hangzhou 310012, China.

Department of Environmental Science, Zhejiang University, Hangzhou 310058, China; School of Environmental Science and Engineering, Zhejiang Gongshang University, Hangzhou 310012, China.

出版信息

J Environ Sci (China). 2021 Mar;101:205-216. doi: 10.1016/j.jes.2020.08.017. Epub 2020 Sep 2.

Abstract

With increasing environmental application, biochar (BC) will inevitably interact with and impact environmental behaviors of widely distributed extracellular DNA (eDNA), which however still remains to be studied. Herein, the adsorption/desorption and the degradation by nucleases of eDNA on three aromatized BCs pyrolyzed at 700 °C were firstly investigated. The results show that the eDNA was irreversibly adsorbed by aromatized BCs and the pseudo-second-order and Freundlich models accurately described the adsorption process. Increasing solution ionic strength or decreasing pH below 5.0 significantly increased the eDNA adsorption on BCs. However, increasing pH from 5.0 to 10.0 faintly decreased eDNA adsorption. Electrostatic interaction, Ca ion bridge interaction, and π-π interaction between eDNA and BC could dominate the eDNA adsorption, while ligand exchange and hydrophobic interactions were minor contributors. The presence of BCs provided a certain protection to eDNA against degradation by DNase I. BC-bound eDNA could be partly degraded by nuclease, while BC-bound nuclease completely lost its degradability. These findings are of fundamental significance for the potential application of biochar in eDNA dissemination management and evaluating the environmental fate of eDNA.

摘要

随着生物炭(BC)在环境中的应用不断增加,它不可避免地会与广泛分布的细胞外 DNA(eDNA)相互作用并影响其环境行为,但这方面的研究仍有待开展。本研究首次考察了在 700°C 热解得到的 3 种芳构化 BC 上 eDNA 的吸附/解吸和核酸酶降解行为。结果表明,eDNA 被芳构化 BC 不可逆地吸附,准二级动力学模型和 Freundlich 模型能较好地描述吸附过程。增加溶液离子强度或降低 pH 值低于 5.0 会显著增加 eDNA 在 BC 上的吸附。然而,将 pH 值从 5.0 增加到 10.0 会轻微降低 eDNA 的吸附。eDNA 与 BC 之间的静电相互作用、Ca 离子桥相互作用和π-π 相互作用可能主导 eDNA 的吸附,而配体交换和疏水相互作用的贡献较小。BC 的存在为 eDNA 免受 DNase I 降解提供了一定的保护。BC 结合的 eDNA 可以被部分降解,而结合在 BC 上的核酸酶完全失去了降解能力。这些发现对生物炭在 eDNA 传播管理中的潜在应用以及评估 eDNA 的环境命运具有重要意义。

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