Growth substrates change the decomposition process of eelgrass in water bodies

IF 6 3区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Environmental Sciences Europe Pub Date : 2024-12-21 DOI:10.1186/s12302-024-01033-1
Wen Wang, Enqi Liu, Chunzhen Fan, Min Zhao, Zhiquan Wang, Zhan Jin, Ke Bei, Xiangyong Zheng, Suqing Wu, Ye Tang, Chang Yang
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Abstract

Decomposition of submerged plants releases organic matter, nitrogen, and phosphorus into water bodies, generating an important impact on the aquatic ecosystem. This study explored the influence of growth substrate with different compositions on the decomposition process of eelgrass (Vallisneria spinulosa Yan, V. spinulosa Yan). The sediment + iron–carbon fillers system exhibited significantly lower concentrations of total nitrogen (TN) and total phosphorus (TP) in the overlying water than other systems, with the maximum values of 5.68 and 7.05 mg/L, respectively. The addition of ceramic and calcium nitrate promoted the formation of HCl-extracted phosphorus (HCl–P) in the sediment, while the addition of iron–carbon fillers increased the content of NaOH-extracted phosphorus (NaOH–P). Three-dimensional fluorescence spectroscopy of dissolved organic matter (DOM) in overlying water showed that different substrate compositions did not significantly affect the compositions of organic matter released during the decomposition of V. spinulosa Yan. The microbial community and abundance in each experimental group changed significantly before and after the decomposition of V. spinulosa Yan. The sediment + iron–carbon fillers system showed significantly higher abundance of microbial community than other systems, with the enrichment of functional bacteria related to denitrification and sulfate reduction. In contrast, the sediment + calcium nitrate system exhibited a smaller change of microbial community abundance, with the enrichment of aerobic denitrifying bacteria. In this paper, it was found that the sediment + iron–carbon group had a good adsorption effect on nitrogen and phosphorus released during the decomposition process of V. spinulosa Yan, and had a good effect on water purification as the growth substrate of submerged plants.

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生长基质改变了水体中大叶藻的分解过程
沉水植物的分解释放有机物、氮和磷到水体中,对水生生态系统产生重要影响。本研究探讨了不同组成的生长基质对大叶藻(Vallisneria spinulosa Yan, V. spinulosa Yan)分解过程的影响。沉积物+铁碳填料体系的上覆水体总氮(TN)和总磷(TP)浓度显著低于其他体系,最大值分别为5.68和7.05 mg/L。陶瓷和硝酸钙的加入促进了沉积物中HCl-P的形成,铁碳填料的加入增加了NaOH-P的含量。对上覆水体中溶解有机质(DOM)的三维荧光光谱分析表明,不同底物组成对棘藻分解过程中释放的有机质组成没有显著影响。各试验组的微生物群落和丰度在细刺草分解前后发生了显著变化。沉积物+铁碳填料体系微生物群落丰度显著高于其他体系,富集了与反硝化和硫酸盐还原相关的功能菌。沉积物+硝酸钙系统微生物群落丰度变化较小,好氧反硝化菌富集。本文研究发现,沉积物+铁碳基团对刺草分解过程中释放的氮、磷具有良好的吸附效果,作为沉水植物的生长基质,具有良好的净水效果。
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来源期刊
Environmental Sciences Europe
Environmental Sciences Europe Environmental Science-Pollution
CiteScore
11.20
自引率
1.70%
发文量
110
审稿时长
13 weeks
期刊介绍: ESEU is an international journal, focusing primarily on Europe, with a broad scope covering all aspects of environmental sciences, including the main topic regulation. ESEU will discuss the entanglement between environmental sciences and regulation because, in recent years, there have been misunderstandings and even disagreement between stakeholders in these two areas. ESEU will help to improve the comprehension of issues between environmental sciences and regulation. ESEU will be an outlet from the German-speaking (DACH) countries to Europe and an inlet from Europe to the DACH countries regarding environmental sciences and regulation. Moreover, ESEU will facilitate the exchange of ideas and interaction between Europe and the DACH countries regarding environmental regulatory issues. Although Europe is at the center of ESEU, the journal will not exclude the rest of the world, because regulatory issues pertaining to environmental sciences can be fully seen only from a global perspective.
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