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首页> 外文期刊>Journal of Environmental Management >Consumer control and abiotic stresses constrain coastal saltmarsh restoration
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Consumer control and abiotic stresses constrain coastal saltmarsh restoration

机译:消费者控制和非生物胁迫限制沿海盐沼恢复

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摘要

Die-off of coastal wetlands has been reported worldwide. Planting habitat-forming species is an important strategy to reverse the decline of coastal wetlands. However, how abiotic environmental stresses and consumers affect the establishment of the planted vegetation species is unclear. We reported a large-scale restoration project in the Liaohe estuary, China, where native pioneer plant Suaeda salsa was planted. We evaluated the growth performance of the planted S. salsa, and identified the constraints on the establishment of planted S. salsa. Results showed that the growth performance (density, coverage and survival rate) of planted S. salsa was better in the low restored marsh than that in the high restored marsh. The death of planted S. salsa was primarily driven by crab herbivory, followed by abiotic stresses (low soil moisture and high salinity) in the high restored marsh, whereas plant death was only driven by crab herbivory in the low restored marsh. Herbivory strength in the high marsh was significantly higher than that in the low marsh. Our findings challenge the bottom-up paradigm used as the foundation for coastal restoration, and highlight the overlooked role of consumers. Therefore, protection measures against consumer pressure, especially in physically harsh conditions, should be considered to enhance the success of coastal wetland restoration.
机译:沿海湿地摧毁了全球。种植栖息地的物种是逆转沿海湿地衰落的重要策略。然而,非生物环境压力和消费者如何影响种植植被物种的建立尚不清楚。我们报告了中国辽河河口的大规模恢复项目,在那里种植了天然先锋植物Suaeda Salsa。我们评估了种植萨尔萨的增长表现,并确定了对成立植物S. Salsa的制约因素。结果表明,在低恢复的沼泽中,种植S. Salsa的生长性能(密度,密度,覆盖率和生存率)比高恢复沼泽更好。种植的S. Salsa的死亡主要由螃蟹草食管驱动,其次是高恢复的沼泽中的非生物胁迫(低土壤水分和高盐度),而植物死亡仅由螃蟹草食病在低恢复的沼泽中驱动。高沼泽中的草食实物明显高于低沼泽。我们的研究结果挑战了作为沿海恢复基础的自下而上的范式,并突出了消费者的忽视作用。因此,应考虑防止消费压力,特别是在物理恶劣条件下的保护措施,以提高沿海湿地修复的成功。

著录项

  • 来源
    《Journal of Environmental Management》 |2020年第15期|111110.1-111110.9|共9页
  • 作者单位

    State Key Laboratory of Water Environmental Simulation School of Environment Beijing Normal University Beijing 100875 China Department of Earth and Environment Boston University 685 Commonwealth Avenue Boston Massachusetts 02215 USA Yellow River Estuary Wetland Ecosystem Observation and Research Station Ministry of Education Shandong 257500 China;

    Department of Earth and Environment Boston University 685 Commonwealth Avenue Boston Massachusetts 02215 USA;

    State Key Laboratory of Water Environmental Simulation School of Environment Beijing Normal University Beijing 100875 China Yellow River Estuary Wetland Ecosystem Observation and Research Station Ministry of Education Shandong 257500 China;

    State Key Laboratory of Water Environmental Simulation School of Environment Beijing Normal University Beijing 100875 China Yellow River Estuary Wetland Ecosystem Observation and Research Station Ministry of Education Shandong 257500 China;

    Yuanyanggou National Ocean Park Panjin Liaoning 124010 China;

    State Key Laboratory of Water Environmental Simulation School of Environment Beijing Normal University Beijing 100875 China Yellow River Estuary Wetland Ecosystem Observation and Research Station Ministry of Education Shandong 257500 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Liaohe estuary; Suaeda salsa; Coastal restoration; Bottom-up paradigm; Top-down control; Herbivory;

    机译:辽河河口;Suaeda Salsa;沿海恢复;自下而上的范式;自上而下的控制;草本;

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