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首页> 外文期刊>Hydrobiologia >Growth and stress responses of Nuttall's waterweed Elodea nuttallii (Planch) St. John to water movements
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Growth and stress responses of Nuttall's waterweed Elodea nuttallii (Planch) St. John to water movements

机译:Nuttall的水生圣约翰藻(Elodea nuttallii(Planch)St.John)对水分运动的生长和胁迫响应

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摘要

Understanding the interactions between aquatic plants and environmental factors is important to clarify aquatic ecosystem functioning. The mechanisms governing the interactions between water flow and plants are not yet fully understood, and the responses of plants to main flow (without turbulence) compared to turbulence are largely unknown. Here, we compared the growth and stress responses of the aquatic macrophyte Elodea nuttallii to exposure to turbulence and main flow. Turbulence and main flow were generated using a vertically oscillating horizontal grid and a recirculating system, respectively and the experiment lasted for 3 weeks. A decrease in shoot elongation coupled with an increase in radial expansion was observed in plants exposed to water movements. These effects were further accompanied by significant increases in cellulose and lignin. Turbulence reduced total chlorophyll by approximately 40% compared to plants in the control and main flow. Mechanical stress induced by turbulence leads to increased oxidative stress and tissue rigidification. The turbulence triggered stress in E. nuttallii is more severe than that induced by main flow. Our findings can offer insights for explaining the habitat preferences of macrophytes and contribute to a better planning of the criteria that benefit in aquatic ecosystem management.
机译:了解水生植物与环境因素之间的相互作用对于阐明水生生态系统的功能非常重要。控制水流与植物之间相互作用的机理尚未完全了解,与湍流相比,植物对主流水流(无湍流)的响应尚不清楚。在这里,我们比较了水生植物褐藻Elodea nuttallii对湍流和主要水流的生长和胁迫响应。湍流和主流分别使用垂直振荡的水平网格和再循环系统产生,实验持续了3周。在暴露于水分运动的植物中,观察到芽伸长的减少和径向膨胀的增加。这些作用还伴随着纤维素和木质素的显着增加。与对照和主流中的植物相比,湍流使总叶绿素减少了约40%。湍流引起的机械应力导致氧化应力增加和组织硬化。湍流触发的纳豆菌中的压力比主流引起的压力更为严重。我们的发现可以为解释大型植物的栖息地偏好提供见解,并有助于更好地制定有益于水生生态系统管理的标准。

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