The yellow sea green tides were dominated by one species, Ulva (Enteromorpha) prolifera, from 2007 to 2011
Author:
Publisher
Springer Science and Business Media LLC
Subject
Multidisciplinary
Link
http://link.springer.com/content/pdf/10.1007/s11434-012-5441-3
Reference41 articles.
1. Fletcher R L. The occurrence of “green tides”: A review. In: Schramm W, Nienhuis P H, eds. Marine Benthic Vegetation: Recent Changes and the Effects of Eutrophication. Berlin: Springer, 1996. 7–43
2. Blomster J, Back S, Fewer D P, et al. Novel morphology in Enteromorpha (Ulvophyceae) forming green tides. Am J Bot, 2002, 89: 1756–1763
3. Yabe T, Ishii Y, Amano Y, et al. Green tide formed by free-floating Ulva spp. at Yatsu tidal flat. Jpn Limnol, 2009, 10: 239–245
4. Kostamo K, Blomster J, Korpelainen H, et al. New microsatellite markers for Ulva intestinalis (Chlorophyta) and the transferability of markers across species of Ulvaceae. Phycologia, 2008, 47: 580–587
5. Shimada S, Hiraoka M, Nabata S, et al. Molecular phylogenetic analyses of the Japanese Ulva and Enteromorpha (Ulvales, Ulvophyceae), with special reference to the free-floating Ulva. Phycol Res, 2003, 5: 99–108
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