Bagagnan Sadia, Guérin-Rechdaoui Sabrina, Rocher Vincent, Alphonse Vanessa, Moilleron Régis, Jusselme My Dung
Leesu, Univ Paris Est Creteil, F-94010, Creteil, France.
SIAAP, Direction de l'Innovation, F-92700, Colombes, France.
Heliyon. 2024 May 3;10(9):e30614. doi: 10.1016/j.heliyon.2024.e30614. eCollection 2024 May 15.
Microorganisms play an important role in maintaining the proper functioning of river ecosystems and are promising candidates for environmental indicators. They are also highly sensitive to environmental changes. It is necessary to have basic knowledge about them in order to know the ecological status of river ecosystem. To our knowglege, there is very little information on the status of microorganisms in surface water of the Seine River, although the Seine River is one of the rivers that suffers the greatest impact from humain activities in the world due to a weak dilution effect. It is therefore necessary to carry out a microbial analysis to assess the ecological status of the Seine River and to use it as a reference to compare with the future state when, for instance, new disinfection technologies of wastewater are implemented. To this end, the microbial communities of the Seine surface water were analyzed, taking into account the spatial effect, including the tributaries, and from upstream to downstream of the Paris conurbation and the temporal aspect, with a monitoring over 4 seasons. The results showed that the microbiome of the water is highly diverse and involved a variety of functions. The main phyla making up the surface water microbiome were , , , , while other minor phyla were , , , , , , , , and . Overall, the microbial community did not change spatially (with the exception of some minor differences between upstream and downstream), but did vary seasonally. The main factors influencing this microbiome were temperature, nitrate and orthophosphate concentrations. The main predicted functions were related to cell metabolism, in particular carbohydrates, amino acids, lipids, energy, vitamins and cofactors, and cell mobility. The microbial compositions showed a strong balance between microbial groups and were involved in the degradation of recalcitrant compounds.
微生物在维持河流生态系统的正常功能方面发挥着重要作用,是很有前景的环境指标候选者。它们对环境变化也高度敏感。为了了解河流生态系统的生态状况,有必要掌握关于它们的基本知识。据我们所知,尽管塞纳河是世界上受人类活动影响最大的河流之一,因其稀释作用较弱,但关于塞纳河地表水微生物状况的信息却非常少。因此,有必要进行微生物分析,以评估塞纳河的生态状况,并将其作为参考,与未来的状态进行比较,例如,当实施新的废水消毒技术时。为此,考虑到空间效应(包括支流)以及从巴黎都会区的上游到下游的空间因素,以及时间因素(进行了四季监测),对塞纳河地表水的微生物群落进行了分析。结果表明,水中的微生物群落高度多样化,涉及多种功能。构成地表水微生物群落的主要门类有 、 、 、 ,而其他次要门类有 、 、 、 、 、 、 、 。总体而言,微生物群落没有空间变化(除了上游和下游之间的一些细微差异),但有季节性变化。影响这个微生物群落的主要因素是温度、硝酸盐和正磷酸盐浓度。主要预测功能与细胞代谢有关,特别是碳水化合物、氨基酸、脂质、能量、维生素和辅因子,以及细胞移动性。微生物组成在微生物群体之间表现出很强的平衡,并参与难降解化合物的降解。