Marine Science Department, University of Hawai'i at Hilo, Hilo, HI, 96720, USA.
Joint Institute for Marine and Atmospheric Research, University of Hawai'i aat Manoa, Honolulu, HI, 96822, USA.
Sci Rep. 2021 Jun 8;11(1):12050. doi: 10.1038/s41598-021-91509-4.
Extreme disturbances such as hurricanes can cause reductions in coral cover and three-dimensional (3D) structural complexity of coral reefs. We examined changes in structural complexity utilizing 3D reconstruction of a coral-reef site before and after Hurricane Walaka passed through Lalo of the Northwestern Hawaiian Islands. This event resulted in complete destruction of the coral-reef habitat, with dramatic changes in benthic cover from pre-hurricane tabulate coral to post-hurricane rubble. Rugosity and mean slope decreased after the hurricane, while structural complexity, captured by vector ruggedness measure (VRM), showed resolution-specific responses. This metric captured the structural complexity of rubble at a high raster resolution of 1 cm and that of tabulate coral at lower resolutions, resulting in decreases in mean VRM values at 2- and 4-cm resolutions but an increase at 1-cm resolution. Variability in profile and planform curvature was reduced after the hurricane due to a disappearance of extreme curvature values created by the tabulate coral after the hurricane. This study highlights the varying responses of habitat complexity metrics to the complete destruction of a coral reef and provides us with insights into how choices of habitat complexity metrics can affect quantitative assessments of 3D habitat structure.
极端干扰如飓风会导致珊瑚覆盖和珊瑚礁三维(3D)结构复杂性减少。我们利用飓风瓦拉卡经过西北夏威夷群岛的拉罗之前和之后的珊瑚礁地点的 3D 重建,检查了结构复杂性的变化。这次事件导致珊瑚礁栖息地完全被破坏,从飓风前的平板珊瑚到飓风后的碎石,底栖生物覆盖有了显著的变化。飓风后粗糙度和平均坡度降低,而结构复杂性,由向量粗糙度度量(VRM)捕获,表现出特定分辨率的响应。该指标在 1 厘米的高光栅分辨率下捕获碎石的结构复杂性,在较低分辨率下捕获平板珊瑚的结构复杂性,导致 2 厘米和 4 厘米分辨率下平均 VRM 值降低,但 1 厘米分辨率下增加。由于飓风后平板珊瑚产生的极端曲率值消失,飓风后剖面和平面图曲率的可变性降低。这项研究强调了生境复杂性指标对珊瑚礁完全破坏的不同反应,并为我们提供了如何选择生境复杂性指标影响 3D 生境结构定量评估的见解。