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生态学杂志 ›› 2026, Vol. 45 ›› Issue (6): 1966-1973.doi: 10.13292/j.1000-4890.202606.011

• 研究报告 • 上一篇    下一篇

氮、磷输入对湖泊沉水植物及附着蓝藻生长的影响

贾晓悦,薛立阳,夏爽,裴国凤*   

  1. (中南民族大学生命科学学院,武汉 430074)

  • 出版日期:2026-06-10 发布日期:2026-12-01

Effects of nitrogen and phosphorus inputs on the growth of submerged macrophytes and epiphytic cyanobacteria in lakes.

JIA Xiaoyue, XUE Liyang, XIA Shuang, PEI Guofeng*   

  1. (College of Life Science, SouthCentral Minzu University, Wuhan 430074, China).

  • Online:2026-06-10 Published:2026-12-01

摘要: 为探究外源氮、磷输入对富营养湖泊沉水植物和附着蓝藻的影响,本研究以密刺苦草(Vallisneria denseserrulata)和细鞘丝藻(Leptolyngbya sp.)为对象,测定了低(4.00 mg·L-1)、中(8.00和12.00 mg·L-1)、高(16.00 mg·L-1)氮负荷和低(0.05 mg·L-1)、中(0.15和1.50 mg·L-1)、高(7.00 mg·L-1)磷负荷下水体理化因子,密刺苦草和细鞘丝藻生长指标,水体和沉积物中磷总量的变化。结果表明:(1)密刺苦草通过调节植株的生长策略来适应氮、磷的变化,在低氮负荷下植株高度比对照组增加了3.47%,而在中、高氮负荷下植株的分蘖数目显著增加,较对照组分别增加了16.44%、34.25%和82.19%。在高氮负荷下,植株高度与总分蘖数呈负相关(r=-0.285,P<0.05);在高磷负荷下密刺苦草植株的株高被抑制,磷负荷下密刺苦草Chl a含量显著高于氮负荷(P<0.05)。(2)氮负荷下细鞘丝藻生物量无显著性差异,低、中磷负荷下细鞘丝藻附着生物膜生物量在实验前30 d显著高于对照(P<0.05),而在高磷负荷下,细鞘丝藻在实验前20 d由附着生态型转变为浮游生态型,形成藻华。由此推测,磷负荷可能是影响密刺苦草和附着蓝藻生长优势发生变化的重要环境因素。


关键词: 氮, 磷, 沉积物, 沉水植物, 附着蓝藻

Abstract: We investigated the effects of external nitrogen and phosphorus inputs on submerged macrophytes and epiphytic cyanobacteria in eutrophic lakes, with Vallisneria denseserrulata and Leptolyngbya sp. as model species. We measured changes in water physicochemical parameters, growth responses of the two species, and total phosphorus in water and sediments under low (4.00 mg·L-1), medium (8.00 and 12.00 mg·L-1), and high (16.00 mg·L-1) nitrogen loads, as well as low (0.05 mg·L-1), medium (0.15 and 1.50 mg·L-1), and high (7.00 mg·L-1) phosphorus loads. The results showed that V. denseserrulata adapted to nitrogen and phosphorus variations by adjusting growth strategy. Under low nitrogen load, plant height increased by 3.47%, while the number of ramets increased significantly by 16.44%, 34.25%, and 82.19% under medium and high nitrogen loading, respectively. Plant height was negatively correlated with total ramet number under high nitrogen load (r=-0.285, P<0.05). However, plant height was suppressed under high phosphorus loading. Chlorophyll a content of V. denseserrulata under phosphorus loading was significantly higher than that under nitrogen loading (P<0.05). The biomass of Leptolyngbya sp. did not vary under different nitrogen loading levels. Under low and medium phosphorus loads, the periphytic biofilm biomass of Leptolyngbya sp. was significantly higher than that of the control during the first 30 days (P<0.05). Under high phosphorus load, Leptolyngbya sp. was transformed from periphytic biofilm to planktonic hormogonia within the first 20 days of the experiment, resulting in algal bloom formation. These results suggest that phosphorus loading may be a key environmental factor driving shifts in growth dominance between V. denseserrulata and epiphytic cyanobacteria.


Key words: nitrogen, phosphorus,  sediment, submerged macrophyte, epiphytic cyanobacteria