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Predicting the cover and richness of intertidal macroalgae in remote areas: a case study in the Antarctic Peninsula

机译:预测偏远地区潮间带大型藻类的覆盖度和丰富度:以南极半岛为例

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Antarctica is an iconic region for scientific explorations as it is remote and a critical component of the global climate system. Recent climate change causes a dramatic retreat of ice in Antarctica with associated impacts to its coastal ecosystem. These anthropogenic impacts have a potential to increase habitat availability for Antarctic intertidal assemblages. Assessing the extent and ecological consequences of these changes requires us to develop accurate biotic baselines and quantitative predictive tools. In this study, we demonstrated that satellite‐based remote sensing, when used jointly with in situ ground‐truthing and machine learning algorithms, provides a powerful tool to predict the cover and richness of intertidal macroalgae. The salient finding was that the Sentinel‐based remote sensing described a significant proportion of variability in the cover and richness of Antarctic macroalgae. The highest performing models were for macroalgal richness and the cover of green algae as opposed to the model of brown and red algal cover. When expanding the geographical range of the ground‐truthing, even involving only a few sample points, it becomes possible to potentially map other Antarctic intertidal macroalgal habitats and monitor their dynamics. This is a significant milestone as logistical constraints are an integral part of the Antarctic expeditions. The method has also a potential in other remote coastal areas where extensive in situ mapping is not feasible.
机译:南极洲偏远,是全球气候系统的重要组成部分,是科学探索的标志性地区。最近的气候变化导致南极洲的冰层急剧退缩,并对其沿海生态系统产生了相关影响。这些人为影响有可能增加南极潮间带组合的栖息地可用性。要评估这些变化的程度和生态后果,就需要我们开发准确的生物基线和定量预测工具。在这项研究中,我们证明了基于卫星的遥感技术与原位地面实地研究和机器学习算法结合使用时,可提供强大的工具来预测潮间带大型藻类的覆盖度和丰富度。一个显着的发现是基于前哨的遥感描述了南极大型藻类覆盖度和丰富度的很大一部分变化。表现最高的模型是大型藻类丰富度和绿藻的覆盖率,而棕色和红色藻类的覆盖率则最高。当扩大地面真相的地理范围时,甚至只涉及几个采样点,就有可能潜在地绘制其他南极潮间带大型藻类栖息地并监测其动态。这是一个重要的里程碑,因为后勤限制是南极探险的组成部分。该方法在其他广泛的原位测绘不可行的偏远沿海地区也具有潜力。

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