Belowground stressors and long-term seagrass declines in a historically degraded seagrass ecosystem after improved water quality
Author:
Publisher
Springer Science and Business Media LLC
Subject
Multidisciplinary
Link
http://www.nature.com/articles/s41598-017-14044-1.pdf
Reference59 articles.
1. Orth, R. et al. A global crisis for seagrass ecosystems. BioScience 56, 987–996 (2006).
2. Cambridge, M. & McComb, A. The loss of seagrasses in Cockburn Sound, Western Australia. I. The time course and magnitude of seagrass decline in relation to industrial development. Aquatic Botany 20, 229–243 (1984).
3. Kendrick, G. A. et al. Changes in seagrass coverage in Cockburn Sound, Western Australia between 1967 and 1999. Aquatic Botany 73, 75–87 (2002).
4. Brodersen, K. E., Nielsen, D. A., Ralph, P. J. & Kühl, M. Oxic microshield and local pH enhancement protects Zostera muellerifrom sediment derived hydrogen sulphide. New Phytologist 205, 1264–1276 (2014).
5. Pagès, A., Welsh, D. T., Robertson, D. & Panther, J. G. Diurnal shifts in co-distributions of sulfide and iron(II) and profiles of phosphate and ammonium in the rhizosphere of Zostera capricorni. Estuarine, Coastal and Shelf Science (2012).
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