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Excess seawater nutrients, enlarged algal symbiont densities and bleaching sensitive reef locations: 2. A regional-scale predictive model for the Great Barrier Reef, Australia

机译:过多的海水养分,藻类共生体密度增加和漂白敏感的礁石位置:2.澳大利亚大堡礁的区域规模预测模型

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A spatial risk assessment model is developed for the Great Barrier Reef (GBR, Australia) that helps identify reef locations at higher or lower risk of coral bleaching in summer heat-wave conditions. The model confirms the considerable benefit of discriminating nutrient-enriched areas that contain corals with enlarged (suboptimal) symbiont densities for the purpose of identifying bleaching-sensitive reef locations. The benefit of the new system level understanding is showcased in terms of: (i) improving early-warning forecasts of summer bleaching risk, (ii) explaining historical bleaching patterns, (iii) testing the bleaching-resistant quality of the current marine protected area (MPA) network (iv) identifying routinely monitored coral health attributes, such as the tissue energy reserves and skeletal growth characteristics (viz. density and extension rates) that correlate with bleaching resistant reef locations, and (v) targeting region-specific water quality improvement strategies that may increase reef-scale coral health and bleaching resistance. Crown Copyright (C) 2016 Published by Elsevier Ltd. All rights reserved.
机译:为大堡礁(澳大利亚,GBR)开发了一种空间风险评估模型,该模型可帮助确定在夏季热浪条件下珊瑚变白风险较高或较低的礁石位置。该模型证实了鉴别具有丰富(次优)共生体密度的珊瑚的营养丰富区域的巨大好处,目的是确定对漂白敏感的珊瑚礁位置。通过以下方式展示了对新系统级别的了解的益处:(i)改进夏季漂白风险的预警预测,(ii)解释历史漂白模式,(iii)测试当前海洋保护区的抗漂白质量(MPA)网络(iv)确定常规监测的珊瑚健康属性,例如与抗漂白珊瑚礁位置相关的组织能量储备和骨骼生长特征(即密度和伸展率),以及(v)针对特定地区的水质可能增加珊瑚礁规模的珊瑚健康和抗漂白性的改进策略。 Crown版权所有(C)2016,由Elsevier Ltd.发行。保留所有权利。

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