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空间综合指标揭示了微潮盐沼的隐藏脆弱性。

Spatially integrative metrics reveal hidden vulnerability of microtidal salt marshes.

机构信息

U.S. Geological Survey, Woods Hole Coastal and Marine Science Center, 384 Woods Hole Road, Woods Hole, Massachusetts 02543, USA.

Virginia Institute of Marine Science, Department of Physical Sciences, 1375 Greate Road, Gloucester Point, Virginia 23062, USA.

出版信息

Nat Commun. 2017 Jan 23;8:14156. doi: 10.1038/ncomms14156.

Abstract

Salt marshes are valued for their ecosystem services, and their vulnerability is typically assessed through biotic and abiotic measurements at individual points on the landscape. However, lateral erosion can lead to rapid marsh loss as marshes build vertically. Marsh sediment budgets represent a spatially integrated measure of competing constructive and destructive forces: a sediment surplus may result in vertical growth and/or lateral expansion, while a sediment deficit may result in drowning and/or lateral contraction. Here we show that sediment budgets of eight microtidal marsh complexes consistently scale with areal unvegetated/vegetated marsh ratios (UVVR) suggesting these metrics are broadly applicable indicators of microtidal marsh vulnerability. All sites are exhibiting a sediment deficit, with half the sites having projected lifespans of less than 350 years at current rates of sea-level rise and sediment availability. These results demonstrate that open-water conversion and sediment deficits are holistic and sensitive indicators of salt marsh vulnerability.

摘要

盐沼因其生态系统服务而具有价值,其脆弱性通常通过景观上各个点的生物和非生物测量来评估。然而,侧向侵蚀会导致沼泽随着垂直生长而迅速流失。沼泽沉积物预算是竞争的建设性和破坏性力量的空间综合衡量标准:沉积物过剩可能导致垂直生长和/或侧向扩展,而沉积物不足可能导致淹没和/或侧向收缩。在这里,我们表明,八个微潮汐沼泽复合体的沉积物预算与无植被/植被沼泽比例(UVVR)一致,这表明这些指标是微潮汐沼泽脆弱性的广泛适用指标。所有地点都表现出沉积物不足,其中一半的地点按照目前海平面上升和沉积物供应的速度,预计寿命不到 350 年。这些结果表明,开阔水域的转化和沉积物不足是盐沼脆弱性的整体和敏感指标。

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