过渡金属离子促进DNA在微塑料上的吸附

Lyuyuan Wu, Kshiti Patel, Mohamad Zandieh, Juewen Liu
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引用次数: 2

摘要

微塑料可以吸附和扩散生态系统中的多种污染物,对人类健康构成威胁。金属离子是环境水体的常见污染源之一,金属离子不仅吸附在微塑料上,还能促进环境DNA等其他入侵物种的吸附。最近,我们发现环境丰富的金属离子(Na+, Mg2+和Ca2+)可以促进单链DNA (ssDNA)在微塑料上的吸附。本文研究了过渡金属离子Zn2+和Mn2+对DNA吸附的促进作用,并与Mg2+进行了比较。为了更好地模拟环境DNA,我们还使用了鲑鱼精子双链DNA (dsDNA) (~2000 bp)。对于ssDNA和dsDNA,与Mg2+相比,过渡金属诱导了更高的吸附能力,这与过渡金属对DNA的更高结合亲和力有关。虽然金属介导的相互作用对ssDNA的吸附至关重要,但即使在没有金属离子的情况下,dsDNA也会吸附在微塑料上,这可能是由于100倍长的dsDNA的结合位点丰富。最后,解吸研究表明,疏水相互作用是在没有金属离子的情况下dsDNA吸附的原因。
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Promotion of DNA Adsorption onto Microplastics by Transition Metal Ions
Microplastics can adsorb and spread a variety of pollutants in the ecosystem posing a threat to human health. One of the common pollution sources of environmental waters is metal ions, which not only adsorb on microplastics but can also promote the adsorption of other invasive species such as environmental DNA. Recently, we showed that environmentally abundant metal ions (Na+, Mg2+ and Ca2+) can promote the adsorption of single-stranded DNA (ssDNA) onto microplastics. Herein, we investigated the effect of transition metal ions including Zn2+ and Mn2+ and compared them with Mg2+ for promoting DNA adsorption. To better mimic environmental DNA, we also used a salmon sperm double-stranded DNA (dsDNA) (~2000 bp). For both ssDNA and dsDNA, the transition metals induced a higher adsorption capacity compared to Mg2+, and that correlated with the higher binding affinity of transition metals to DNA. Although metal-mediated interactions were vital for ssDNA adsorption, the dsDNA adsorbed on the microplastics even in the absence of metal ions, likely due to the abundance of binding sites of the 100-times longer dsDNA. Finally, desorption studies revealed that hydrophobic interactions were responsible for dsDNA adsorption in the absence of metal ions.
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