短期气象扰动对巴西南部帕托斯泻湖河口水下植被及相关动物群的影响

Dairana Misturini, Marianna Lanari, V. Lemos, Leonir A Colling
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引用次数: 0

摘要

闭塞锋是由于全球变暖而加剧的自然环流区。对浅水河口地区水下植被(SAV)及其相关动物群遮挡锋影响的评估研究,可能为气候变化引起的极端天气事件对沿海生态系统功能的影响提供见解。本数据集描述了巴西南部帕托斯泻湖河口(PLE)底栖动物和植物群的数据,这些数据是在强烈的闭塞锋期间季节性获得的。使用分层样本设计,基于Beyond BACI协议(前/后和控制/影响),在2019年全年四个被遮挡的前沿通过前后对动植物群进行了采样。三种生境分别为:SAV草甸、SAV边缘和邻近的沙滩。大型底栖动物标本432份(地层标本216份);216个地下和地上生物量、植被覆盖度、冠层高度和海洋大型植物形态样本;沉积学和有机质样品144份;72水柱深度测量;在研究期间收集了8次温度和盐度测量数据。这些数据可在全球生物多样性信息设施(GBIF)获得,采用达尔文核心标准格式(DwC),根据OBIS-ENV-DATA模型进行组织,并获得CC-BY-NC-4-0许可使用。本数据集有助于理解亚热带系统河口底栖生物群落的时间变化,以及气候变化背景下短期气象过程如何影响动物园和底栖生物群落。
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effect of short-term meteorological disturbances on the submerged aquatic vegetation and associated fauna in the Patos Lagoon estuary, southern Brazil
Occluded fronts are naturally cyclogenic areas that have been intensified by global warming. Studies evaluating the effects of occluded fronts in the submerged aquatic vegetation (SAV) and its associated fauna in shallow estuarine areas may provide insights on the impacts of climate change-induced extreme weather events on coastal ecosystems functioning. The present dataset describes data on benthic fauna and flora in the Patos Lagoon Estuary (PLE), in southern Brazil, seasonally obtained during intense occluded fronts. Using a hierarchical sample design, based on Beyond BACI protocols (Before/After and Control/Impact), fauna and flora were sampled before and after four occluded fronts passage throughout 2019.Three habitats were sampled: SAV Meadow, SAV Edge and adjacent Sandflat. A total of 432 macrozoobenthic samples (216 samples for stratum); 216 samples for bellow and aboveground biomass, vegetation coverage, canopy height and marine macrophytes morphology; 144 samples by sedimentology and organic matter; 72 water column depth measurements; and 8 temperature and salinity measurements were collected during the study period. The data is available at the Global Biodiversity Information Facility (GBIF), in Darwin Core standard format (DwC), organized according to the OBIS-ENV-DATA model, with CC-BY-NC-4-0 license for use. The present dataset adds to the comprehension of the temporal variability of estuarine benthic communities in subtropical systems, and how short-term meteorological process can affect zoo and fitobenthic communities in the context of climate changes.
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