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Water Hyacinth Eichhornia crassipes (Mart.) Solms-Laubach Dynamics and Succession in the Nyanza Gulf of Lake Victoria (East Africa): Implications for Water Quality and Biodiversity Conservation

机译:水葫芦凤眼凤梨(市场)Solms-Laubach动力学和演替在维多利亚湖的Nyanza海湾(东非):对水质和生物多样性保护的影响

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摘要

This study, conducted in Nyanza Gulf of Lake Victoria, assessed ecological succession and dynamic status of water hyacinth. Results show that water hyacinth is the genesis of macrophyte succession. On establishment, water hyacinth mats are first invaded by native emergent macrophytes, Ipomoea aquatica Forsk., and Enydra fluctuans Lour., during early stages of succession. This is followed by hippo grass Vossia cuspidata (Roxb.) Griff. in mid- and late stages whose population peaks during climax stages of succession with concomitant decrease in water hyacinth biomass. Hippo grass depends on water hyacinth for buoyancy, anchorage, and nutrients. The study concludes that macrophyte succession alters aquatic biodiversity and that, since water hyacinth infestation and attendant succession are a symptom of broader watershed management and pollution problems, aquatic macrophyte control should include reduction of nutrient loads and implementing multifaceted approach that incorporates biological agents, mechanical/manual control with utilization of harvested weed for cottage industry by local communities.
机译:在维多利亚湖的Nyanza海湾进行的这项研究评估了水葫芦的生态演替和动态状况。结果表明,风信子是大型植物演替的起源。建立后,在继承的早期阶段,水生风信子垫首先被原生的大型水生植物入侵植物(Ipomoea aquatica Forsk。)和Enydra波动。其次是河马草Vossia cuspidata(Roxb。)Griff。在中后期,其种群在演替的高潮阶段达到峰值,同时伴随着水葫芦生物量的减少。河马草依赖于水葫芦的浮力,锚固和养分。研究得出结论,大型植物的演替改变了水生生物多样性,并且由于水葫芦的侵染和随之而来的演习是更广泛的流域管理和污染问题的征兆,因此对水生大型植物的控制应包括减少养分负荷并采取多方面的方法,包括生物制剂,机械/手动控制本地社区将收获的杂草用于家庭手工业。

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