Li Siyu, Harir Mourad, Schmitt-Kopplin Philippe, Machado-Silva Fausto, Gonsior Michael, Bastviken David, Enrich-Prast Alex, Valle Juliana, Hertkorn Norbert
Research Unit Analytical Biogeochemistry, Helmholtz Munich, Ingolstaedter Landstrasse 1, Neuherberg 85764, Germany.
Chair of Analytical Food Chemistry, Technische Universität München, Alte Akademie 10, Freising-Weihenstephan 85354, Germany.
ACS ES T Water. 2023 Jun 12;3(8):2083-2095. doi: 10.1021/acsestwater.2c00621. eCollection 2023 Aug 11.
Positive and negative electrospray ionization Fourier transform ion cyclotron resonance mass spectrometry and H NMR revealed major compositional and structural changes of dissolved organic matter (DOM) after mixing two sets of river waters in Amazon confluences: the Solimões and Negro Rivers (S + N) and the Amazon and Tapajós Rivers (A + T). We also studied the effects of water mixing ratios and incubation time on the composition and structure of DOM molecules. NMR spectra demonstrated large-scale structural transformations in the case of S + N mixing, with gain of pure and functionalized aliphatic units and loss of all other structures after 1d incubation. A + T mixing resulted in comparatively minor structural alterations, with a major gain of small aliphatic biomolecular binding motifs. Remarkably, structural alterations from mixing to 1d incubation were in essence reversed from 1d to 5d incubation for both S + N and A + T mixing experiments. Heterotrophic bacterial production (HBP) in endmembers S, N, and S + N mixtures remained near 0.03 μgC L h, whereas HBP in A, T, and A + T were about five times higher. High rates of dark carbon fixation took place at S + N mixing in particular. In-depth biogeochemical characterization revealed major distinctions between DOM biogeochemical changes and temporal evolution at these key confluence sites within the Amazon basin.
正、负电喷雾电离傅里叶变换离子回旋共振质谱和氢核磁共振显示,在亚马逊河交汇处混合两组河水后,溶解有机物(DOM)的主要组成和结构发生了变化:索利蒙伊斯河和内格罗河(S + N)以及亚马逊河和塔帕若斯河(A + T)。我们还研究了水混合比例和孵育时间对DOM分子组成和结构的影响。核磁共振光谱表明,在S + N混合的情况下发生了大规模的结构转变,孵育1天后,纯脂肪族单元和官能化脂肪族单元增加,所有其他结构减少。A + T混合导致相对较小的结构改变,主要是小脂肪族生物分子结合基序增加。值得注意的是,对于S + N和A + T混合实验,从混合到孵育1天的结构改变在本质上从孵育1天到5天发生了逆转。端成员S、N和S + N混合物中的异养细菌产量(HBP)保持在0.03 μgC L h左右,而A、T和A + T中的HBP约高五倍。特别是在S + N混合时发生了高速率的暗碳固定。深入的生物地球化学特征揭示了亚马逊河流域这些关键交汇处DOM生物地球化学变化和时间演变之间的主要差异。