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Linking environmental variables with regional-scale variability in ecological structure and standing stock of carbon within UK kelp forests

机译:将环境变量与英国海带森林中生态结构和碳储量的区域尺度变化联系起来

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Kelp forests represent some of the most productive and diverse habitats on Earth. Understanding drivers of ecological patterns at large spatial scales is critical for effective management and conservation of marine habitats. We surveyed kelp forests dominated by Laminaria hyperborea (Gunnerus) Foslie 1884 across 9 degrees latitude and >1000 km of coastline and measured a number of physical parameters at multiple scales to link ecological structure and standing stock of carbon with environmental variables. Kelp density, biomass, morphology and age were generally greater in exposed sites within regions, highlighting the importance of wave exposure in structuring L. hyperborea populations. At the regional scale, wave-exposed kelp canopies in the cooler regions (the north and west of Scotland) were greater in biomass, height and age than in warmer regions (southwest Wales and England). The range and maximal values of estimated standing stock of carbon contained within kelp forests was greater than in historical studies, suggesting that this ecosystem property may have been previously undervalued. Kelp canopy density was positively correlated with large-scale wave fetch and fine-scale water motion, whereas kelp canopy biomass and the standing stock of carbon were positively correlated with large-scale wave fetch and light levels and negatively correlated with temperature. As light availability and summer temperature were important drivers of kelp forest biomass, effective management of human activities that may affect coastal water quality is necessary to maintain ecosystem functioning, while increased temperatures related to anthropogenic climate change may impact the structure of kelp forests and the ecosystem services they provide.
机译:海带森林是地球上一些生产力最高,种类最丰富的栖息地。了解大空间尺度上生态格局的驱动因素对于有效管理和保护海洋生境至关重要。我们调查了9个纬度和> 1000 km海岸线上以海带(Laminaria hyperborea(Gunnerus)Foslie 1884)为主的海带森林,并在多个尺度上测量了许多物理参数,以将生态结构和碳储量与环境变量联系起来。在区域内暴露部位的海带密度,生物量,形态和年龄通常更大,突显了波浪暴露在构造高产乳杆菌种群中的重要性。在区域范围内,较凉爽地区(苏格兰北部和西部)海浪暴露的海带冠层的生物量,高度和年龄大于较温暖地区(西南威尔士和英格兰)。海带森林中所含碳的估计存量范围和最大值比历史研究要大,这表明这种生态系统特性以前可能被低估了。海带冠层密度与大规模海浪获取和精细尺度的水运动呈正相关,而海带冠层生物量和碳的存量与大规模海浪获取和光照水平呈正相关,与温度呈负相关。由于光的可用性和夏季温度是海带森林生物量的重要驱动力,因此必须有效管理可能影响沿海水质的人类活动来维持生态系统功能,而与人为气候变化相关的温度升高可能会影响海带森林和生态系统的结构。他们提供的服务。

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