水深对中营养湖中沉水大型藻类的影响大于草食性螺类

Wenjing Ren, Yiqian Yao, Xiaoyu Gao, Hao Wang, Zihao Wen, L. Ni, Xiaolin Zhang, T. Cao, Qingchuan Chou
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引用次数: 0

摘要

水深(WD)和螺类丰度(SA)是影响淡水湖生态系统中沉水植物生长的两个关键因素。水深(WD)和螺类丰度(SA)的变化会驱动营养物质和其他初级生产者的变化,从而对沉水植物的生长产生直接或间接的影响、结果表明,三种优势植物的生物量以马齿苋(P.maackianus)最高,马齿苋(P.lucens)次之,马齿苋(V.natans)最低。同时,附着在 P.maackianus 上的浮游生物和蜗牛的生物量也最高。此外,WD 对冠层型 P.maackianus 和 P.lucens 这两种沉水大型底栖生物的生物量有积极影响,而对莲座型 V.natans 则有消极影响。确定了影响洱海大型底栖动物生物量的主导因子,以及WD和螺类对优势底栖动物生物量的直接和间接影响机制。了解主导水生植物变化的机制将对湖泊管理和修复产生影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Water depth affects submersed macrophyte more than herbivorous snail in mesotrophic lakes
Water depth (WD) and snail abundance (SA) are two key factors affecting the growth of submersed aquatic plants in freshwater lake ecosystems. Changes in WD and SA drive changes in nutrients and other primary producers that may have direct or indirect effects on submersed plant growth, but which factor dominates the impact of both on aquatic plants has not been fully studied.To investigate the dominant factors that influence aquatic plant growth in plateau lakes, a one-year field study was conducted to study the growth of three dominant submersed macrophyte (i.e., Vallisneria natans, Potamogeton maackianus, and Potamogeton lucens) in Erhai Lake.The results show that, the biomass of the three dominant plants, P.maackianus, is the highest, followed by P.lucens, and V.natans is the lowest. Meanwhile, periphyton and snails attached to P.maackianus are also the highest. Furthermore, WD had a positive effect on the biomass of two submersed macrophyte species of canopy-type P.maackianus and P.lucens, while it had a negative effect on rosette-type V.natans. Snail directly inhibited periphyton attached on V.natans and thereby increasing the biomass of aquatic plants, but the effect of snails on the biomass of the other two aquatic plants is not through inhibition of periphyton attached to their plants.The dominant factors affecting the biomass of submersed macrophyte in Erhai Lake were determined, as well as the direct and indirect mechanisms of WD and snails on the biomass of dominant submersed macrophyte. Understanding the mechanisms that dominate aquatic plant change will have implications for lake management and restoration.
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