The role of seedlings and seed bank viability in the recovery of Chesapeake Bay, USA, Zostera marina populations following a large-scale decline

Author:

Jarvis Jessie C.,Moore Kenneth A.

Publisher

Springer Science and Business Media LLC

Subject

Aquatic Science

Reference43 articles.

1. Allison, P. D., 1999. Logistic Regression Using the SAS System: Theory and Application. SAS Institute Inc., Cary, NC.

2. Association of Official Seed Analysts, 1981. Rules for testing seeds. Journal of Seed Technology 6: 1–126.

3. Baker, H. G., 1989. Some aspects of the natural history of seed-banks. In Leck, M. A., V. T. Parker & R. L. Simpson (eds), Ecology of Soil Seed-banks. Academic Press Inc., San Diego: 9–21.

4. Batiuk, R. A., P. Bergstrom, M. Kemp, E. Koch, L. Murray, J. C. Stevenson, R. Bartleson, V. Carter, N. B. Rybicki, C. Gallegos, L. Karrh, M. Naylor, D. Wilcox, K. Moore, S. Ailstock & M. Teichberg, 2000. Chesapeake Bay submerged aquatic vegetation water quality and habitat-based requirements and restoration targets: A second technical synthesis. Chesapeake Bay Program, U.S. Environmental Protection Agency, Annapolis, MD.

5. Bintz, J. C. & S. W. Nixon, 2001. Responses of Zostera marina seedlings to reduced light. Marine Ecology Progress Series 223: 133–141.

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