长江科学院院报 ›› 2015, Vol. 32 ›› Issue (6): 94-99.DOI: 10.3969/j.issn.1001-5485.2015.06.017

• 水生态保护 • 上一篇    下一篇

长江中下游干流浮游藻类空间分布特征初探

李欢a,b,赵伟华a,b,林莉a,b   

  1. 长江科学院 a.流域水环境研究所;b.流域水资源与生态环境科学湖北省重点实验室,武汉 430010
  • 收稿日期:2015-04-02 出版日期:2015-06-20 发布日期:2015-06-04
  • 作者简介:李欢(1988-),女,四川成都人,助理工程师,硕士,主要从事浮游植物鉴定与流域水环境生态修复,(电话)15271854296(电子信箱)lihuan-0228@163.com。
  • 基金资助:
    水利部公益性行业专项经费(201401020);中国清洁发展机制基金赠款项目(2012044);中央级公益性科研院所基本科研业务费资助(CKSF2014030/SH)

Spatial Distribution Features of Phytoplankton Community in Middle-Low Reaches of Mainstream Yangtze River

LI Huan1,2, ZHAO Wei-hua1,2, LIN Li1,2   

  1. 1.Basin Water Environmental Research Department, Yangtze River Scientific Research Institute, Wuhan 430010, China;
    2.Key Lab of Basin Water Resource and Eco-environmental Science in Hubei Province, Yangtze River Scientific Research Institute, Wuhan 430010, China
  • Received:2015-04-02 Online:2015-06-20 Published:2015-06-04

摘要: 为更全面了解长江中下游干流浮游藻类资源现状,于2014年夏季对长江中下游武汉—河口江段的浮游藻类空间分布特征进行调查,共设置了19个调查断面。本次调查共检出浮游藻类6门66种,其中硅藻24种,绿藻23种,优势种属共检出3门6种;浮游藻类平均细胞丰度为(13.43±5.34)×104 cell/L,其中武汉上游最高,为23.18×104 cell/L,上海河口最低,为5.19×104 cell/L;浮游藻类多样性指数均值为3.37±0.35,其中南京下游最高,为4.1,上海上游最低,为2.7;调查样点根据浮游藻类细胞丰度大致可聚为3类:芜湖—南通段、武汉下游—大通段、武汉上游和上海上游。调查结果表明,长江中下游干流浮游藻类数量与空间分布可能受到水文条件的影响,而非受到营养盐的限制。

Abstract: To know better the current situation of phytoplankton resources in middle-low reaches of the mainstream Yangtze River, we investigated the spatial distribution characteristics of phytoplankton in Wuhan-Estuary reach of the Yangtze River in the summer of 2014. Samples were collected from 19 sections. Investigation results show that there were 6 classes of phytoplankton detected, including 66 species been recorded, among which species of Bacillariophyta and Chlorophyta were recorded 24 and 23, respectively. Predominant species were recorded 3 classes, 6 species. The average phytoplankton cell abundance in Wuhan-estuary reach was (13.43±5.34)×104 cell/L, with the maximum (23.18×104 cell/L) recorded in upstream Wuhan and the minimum (5.19×104 cell/L) recorded in the estuary at Shanghai. The average of Shannon’s diversity index was 3.37±0.35, the maximum was 4.1 recorded in downstream Nanjing and minimum 2.7 recorded in upstream Shanghai. Results of similarity clustering indicated that the phytoplankton communities at Wuhu-Nantong reach were similar, downstream Wuhan-Datong reach were similar and the phytoplankton community at upstream Wuhan was similar to that at upstream Shanghai. The study results suggest that the quantity and spatial distribution of phytoplankton in Wuhan-estuary reach of Yangtze River are probably affected by the hydrological conditions rather than the nutrition.

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