中国科学引文数据库(CSCD)来源期刊
中国科技核心期刊
环境科学领域高质量科技期刊分级目录T2级期刊
RCCSE中国核心学术期刊
美国化学文摘社(CAS)数据库 收录期刊
日本JST China 收录期刊
世界期刊影响力指数(WJCI)报告 收录期刊

留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

三峡水库香溪河沉积物微生物群落结构对磷赋存形态的影响

唐朝晖 宋林旭 罗丽娜 刘淑涵 鲍城成 朱鑫鑫

唐朝晖, 宋林旭, 罗丽娜, 刘淑涵, 鲍城成, 朱鑫鑫. 三峡水库香溪河沉积物微生物群落结构对磷赋存形态的影响[J]. 环境工程, 2025, 43(2): 138-147. doi: 10.13205/j.hjgc.202502014
引用本文: 唐朝晖, 宋林旭, 罗丽娜, 刘淑涵, 鲍城成, 朱鑫鑫. 三峡水库香溪河沉积物微生物群落结构对磷赋存形态的影响[J]. 环境工程, 2025, 43(2): 138-147. doi: 10.13205/j.hjgc.202502014
TANG Zhaohui, SONG Linxu, LUO Lina, LIU Shuhan, BAO Chengcheng, ZHU Xinxin. Impact of microbial community structures in sediments of Xiangxi River, Three Gorges Reservoir on phosphorus speciation[J]. ENVIRONMENTAL ENGINEERING , 2025, 43(2): 138-147. doi: 10.13205/j.hjgc.202502014
Citation: TANG Zhaohui, SONG Linxu, LUO Lina, LIU Shuhan, BAO Chengcheng, ZHU Xinxin. Impact of microbial community structures in sediments of Xiangxi River, Three Gorges Reservoir on phosphorus speciation[J]. ENVIRONMENTAL ENGINEERING , 2025, 43(2): 138-147. doi: 10.13205/j.hjgc.202502014

三峡水库香溪河沉积物微生物群落结构对磷赋存形态的影响

doi: 10.13205/j.hjgc.202502014
基金项目: 

国家自然科学基金青年项目“分层异重流背景下三峡水库典型支流沉积物磷迁移转化机理研究”(51909135)

详细信息
    作者简介:

    唐朝晖(2000-),男,硕士研究生,主要研究方向为河湖生态修复。2558292521@qq.com

    通讯作者:

    宋林旭(1980-),女,副教授,主要研究方向为生态水利。280825327@qq.com

Impact of microbial community structures in sediments of Xiangxi River, Three Gorges Reservoir on phosphorus speciation

  • 摘要: 以三峡库区支流香溪河为研究对象,在香溪河库湾布设5个样点,采集不同时期香溪河沉积物样品,分析沉积物中磷形态,并结合沉积物理化因子和微生物群落结构,探究沉积物微生物群落结构的变化与磷赋存形态的关系。结果表明:香溪河沉积物总磷含量为324.21~1385.05 mg/kg,平均值为869.56 mg/kg,其中HCI-P是沉积物中主要磷形态;沉积物中主要优势菌群为Proteobacteria、Cyanobacteria和Bacteroidota;Proteobacteria相对丰度与OP和HCI-P呈显著负相关,Proteobacteria中优势解磷菌属可促进HCI-P和OP的溶解释放;Cyanobacteria相对丰度与OP和NaOH-P呈显著负相关,Cyanobacteria通过正反馈作用促进沉积物中OP以及NaOH-P的释放;Desulfobacterota相对丰度与NaOH-P呈显著负相关,Desulfobacterota中的Geothermobacter可通过Fe还原促使NaOH-P的释放。
  • [1] 罗丽娜,宋林旭,崔玉洁,等.三峡水库香溪河库湾沉积物粒度空间分布特征[J].环境工程,2023,41(增刊1):102-106. LUO L N, SONG L X, CUI Y J, et al. Spatial distribution characteristics of sediment grain size in Xiangxi Bay of the Three Gorges Reservoir[J].Environmental Engineering, 2023,41

    (S1):102-106.
    [2] 龙良红,黄宇擘,徐慧,等.近20年来三峡水库水动力特性及其水环境效应研究:回顾与展望[J].湖泊科学,2023,35(2):383-399.

    LONG L H, HUANG Y B, XU H, et al. Research on hydrodynamic characteristics and its water eco-environment effects in Three Gorges Reservoir in recent 20 years: review and prospect[J]. Journal of Lake Sciences,2023,35(2):383-399.
    [3] YANG Z, XU P, LIU D, et al. Hydrodynamic mechanisms underlying periodic algal blooms in the tributary bay of a subtropical reservoir[J]. Ecological Engineering, 2018, 120: 6-13.
    [4] 韩超南.三峡水库磷的输移转化特征及其影响机制研究[D].北京:清华大学,2018. HAN C N. Characteristics of phosphorus transport and transformation and its influence mechanism in the Three Gorges Reservoir[D]. Beijing: Tsinghua University,2018.
    [5] 蒋娟,龙云川,姚小琴,等.贵州草海沉积物磷形态分布及释放风险分析[J].环境科学学报,2022,42(7):347-358.

    JIANG J, LONG Y C, YAO X Q, et al. Fraction distribution and release risk analysis of phosphorus in sediments from Caohai, Guizhou[J]. Acta Scientiae Circumstantiae,2022,42(7):347-358.
    [6] 范成新,刘敏,王圣瑞,等.近20年来我国沉积物环境与污染控制研究进展与展望[J].地球科学进展,2021,36(4):346-374.

    FAN C X, LIU M, WANG S R, et al. Research progress and prospect of sediment environment and pollution control in China in recent 20 years[J]. Advances in Earth Science, 2021,36(4):346-374.
    [7] ZHOU J, LAO Y M, SONG J T, et al. Temporal heterogeneity of microbial communities and metabolic activities during a natural algal bloom[J]. Water Research, 2020: 116020.
    [8] 龙云川,蒋娟,胡菁,等.草海湖滨带沉积物微生物群落对磷形态的影响[J].中国环境科学,2022,42(4):1869-1876.

    LONG Y C, JIANG J, HU J, et al. Effects of microbial communities on phosphorus speciation in lakeside sediments of Caohai Lake[J]. China Environmental Science,2022,42(4):1869-1876.
    [9] 潘婵娟,黎睿,汤显强,等.三峡水库蓄水至175 m后干流沉积物理化性质与磷形态分布特征[J].环境科学,2018,39(6):2615-2623.

    PAN C J, LI R, TANG X Q, et al. Assessment of physico-chemical properties and phosphorus fraction distribution characteristics in sediments after impounding of the Three Gorges Reservoir to 175 m[J].Environmental Science, 2018, 39(6):2615-2623.
    [10] 刘心愿,宋林旭,纪道斌,等.蓄水前后三峡库区香溪河沉积物磷形态分布特征及释放通量估算[J].环境科学,2018,39(9):4169-4178.

    LIU X Y, SONG L X, JI D B, et al. Distribution characteristics and release fluxes of phosphorus forms in Xiangxi Bay sediments in the Three Gorges Reservoir before and after impoundment[J]. Environmental Science, 2018,39(9):4169-4178.
    [11] 国家环境保护总局.水和废水监测分析方法[M]. 4版.北京:中国环境科学出版社,2002. State Environmental Protection Administration. Water and Wastewater Monitoring and Analysis Methods[M]. 4th Ed. Beijing: China Environmental Science Press, 2002.
    [12] 杨剑虹,王成林,代亨林.土壤农化分析与环境监测[M]. 北京:中国大地出版社, 2008. YANG J H, WANG C L, DAI H L. Soil Agrochemistry Analysis and Environmental Monitoring[M]. Beijing: China Land Publishing House, 2008.
    [13] 王圣瑞.湖泊沉积物-水界面过程:基本理论与常用测定方法[M]. 北京:科学出版社,2014. WANG S R. Sediment-water Interface Process of Lakes[M]. Beijing: Science Press,2014.
    [14] 李勇.三岔湖微生物群落结构及其在磷素迁移转化中的作用[D].成都:西南交通大学,2020. LI Y. The microbial community structure in the Sancha Lake and its functions in phosphorus migration and transformation[D].Chengdu: Southwest Jiaotong University,2020.
    [15] 郑飞燕,谭路,陈星,等.三峡水库香溪河库湾氮磷分布状况及沉积物污染评价[J].生态毒理学报,2018,13(4):49-59.

    ZHENG F Y, TAN L, CHENG X, et al. Spatial distribution of nitrogen and phosphorus, and pollution evaluation for sediment in Xiangxi Bay, Three Gorges Reservoir[J]. Asian Journal of Ecotoxicology,2018,13(4):49-59.
    [16] 孙猛,包宇飞,王雨春,等.澜沧江梯级水库沉积物磷形态特征及释放风险[J].中国环境科学,2023,43(7):3634-3643.

    SUN M, BAO Y F, WANG C Y, et al. Characteristics of phosphorus fractions distribution and release risk of sediment in the cascade reservoirs in the middle and lower reaches of Lancang River[J]. China Environmental Science,2023,43(7):3634-3643.
    [17] 张帅,李晓康,刘祯祚,等.基于高通量测序技术分析青岛市典型海滩沉积物的微生物多样性[J].海洋环境科学,2021,40(3):417-424

    ,456. ZHANG S, LI X K, LIU Z Z, et al. Analysis of microbial community of typical beach sediments in Qingdao city using high throughput sequencing[J]. Marine Environmental Science,2021,40(3):417-424,456.
    [18] 张义,刘子森,张垚磊,等.环境因子对杭州西湖沉积物各形态磷释放的影响[J].水生生物学报,2017,41(6):1354-1361.

    ZHANG Y, LIU Z S, ZHANG Y L, et al. Effects of varying environmental conditions on release of sediment phosphorus in West Lake, Hang Zhou, China.
    [19] JIN X, HE Y, KIRUMBA G, et al. Phosphorus fractions and phosphate sorption-release characteristics of the sediment in the Yangtze River estuary reservoir[J]. Ecological Engineering, 2013, 55: 62-66.
    [20] 陈超,申秋实,钟继承,等.太湖聚藻区水华易发季节沉积物磷的分布特征[J].长江流域资源与环境,2014,23(9):1258-1264.

    CHEN C, SHEN Q S, ZHONG J C, et al. Distribution characteristics of phosphorus in surface sediments during seasons of algae blooms in bloom-accumulation area in the Taihu Lake[J]. Resources and Environment in the Yangtze Basin,2014,23(9):1258-1264.
    [21] MAITRA N, MANNA S K, SAMANTA S, et al. Ecological significance and phosphorus release potential of phosphate solubilizing bacteria in freshwater ecosystems[J]. Hydrobiologia, 2015: 69-83.
    [22] LI Y, ZHANG J, ZHANG J, et al. Characteristics of inorganic phosphate-solubilizing bacteria from the sediments of a eutrophic lake[J]. International Journal of Environmental Research and Public Health, 2019, 16(12): 2141.
    [23] 马凯,王效昌,谢嘉慧,等.沉积物解磷菌的研究进展:分布、解磷能力及功能基因[J].农业资源与环境学报,2023,40(2):280-290.

    MA K, WANG X C, XIE J H, et al. Research progress of phosphate-solubilizing bacteria in sediments: distribution, phosphate-solubilizing ability, and functional genes[J]. Journal of Agricultural Resources and Environment,2023,40(2):280-290.
    [24] WU G F, ZHOU X P.Characterization of phosphorus-releasing bacteria in a small eutrophic shallow lake, Eastern China[J]. Water Research, 2005, 39(19): 4623-4632.
    [25] 龙宏燕.太湖沉积物中磷素分布特征与解磷菌影响机制[D].南京:南京大学,2020. LONG H Y. Distribution characteristics of phosphorus in the sediments of Lake Taihu and the influence mechanism of phosphate solubilizing bacteria[D]. Nanjing:Nanjing University, 2020.
    [26] XIE L Q, XIE P, TANG H J. Enhancement of dissolved phosphorus release from sediment to lake water by microcystis blooms: an enclosure experiment in a hyper-eutrophic, subtropical Chinese lake[J]. Environmental Pollution, 2003: 391-399.
    [27] NI Z, LI Y, WANG S. Cognizing and characterizing the organic phosphorus in lake sediments: advances and challenges[J]. Water Research, 2022, 220: 118663.
    [28] ZHANG J, SU J, MA C, et al. Periphytic microbial response to environmental phosphate (P) bioavailability and its relevance to P management in paddy fields[J]. Applied and Environmental Microbiology, 2021.
    [29] 王梦梦,龚正文,陈成,等.湖泊蓝藻多聚磷酸盐代谢机制及功能[J].湖泊科学,2023,35(3):780-794.

    WANG M M, GONG Z W, CHEN C, et al. Metabolic mechanism and function of Cyanobacterial polyphosphate in lakes[J]. Journal of Lake Sciences,2023,35(3):780-794.
    [30] CAO X, WANG Y, HE J, et al. Phosphorus mobility among sediments, water and Cyanobacteria enhanced by Cyanobacteria blooms in eutrophic Lake Dianchi[J]. Environmental Pollution, 2016, 219: 580-587.
    [31] WANG Z, HUANG S, LI D. Decomposition of Cyanobacterial bloom contributes to the formation and distribution of iron-bound phosphorus (Fe-P): insight for cycling mechanism of internal phosphorus loading[J]. Science of the Total Environment, 2019: 696-708.
    [32] LI X, DING L, LI X, et al. Abundance, diversity, and structure of Geobacteraceae community in paddy soil under long-term fertilization practices[J]. Applied Soil Ecology, 2020: 103577.
    [33] 朱永官,段桂兰,陈保冬,等.土壤-微生物-植物系统中矿物风化与元素循环[J].中国科学:地球科学,2014,44(6):1107-1116.

    ZHU Y G, DUAN G L, CHEN B D, et al. Mineral weathering and element cycling in soil-microorganism-plant system[J]. Scientia Sinica(Terrae),2014,44(6):1107-1116.
    [34] 秦宇,郑望,张曦,等.三峡库区中段水体微生物群落结构与环境因子相关性研究[J].长江流域资源与环境,2021,30(5):1184-1193.

    QIN Y, ZHENG W, ZHANG X, et al. Correlation between microbial community structure and environmental factors in the middle section of the Three Gorges Reservoir area[J]. Resources and Environment in the Yangtze Basin,2021,30(5):1184-1193.
    [35] 王博雯.湖泛对太湖细菌丰度及群落结构的影响[D].南京:南京师范大学,2014. WANG B W. Influence of black water bloom on bacterial abundance and community of Lake Taihu[D].Nanjing, Nanjing Normal University, 2014.
  • 加载中
计量
  • 文章访问数:  80
  • HTML全文浏览量:  18
  • PDF下载量:  0
  • 被引次数: 0
出版历程
  • 收稿日期:  2024-07-01
  • 录用日期:  2025-01-08
  • 修回日期:  2024-12-12

目录

    /

    返回文章
    返回