全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

Long-Term Persistence of Propeller and Anchor Damage to Seagrass Canopy and Demersal Biodiversity in Puerto Rico

DOI: 10.4236/oje.2023.1310042, PP. 671-710

Keywords: Benthic Faunal Communities, Community Trajectory, Ecological Disturbance, Fish Assemblages, Recreational Navigation, Seagrass Ecosystems

Full-Text   Cite this paper   Add to My Lib

Abstract:

Seagrass ecosystems support high biodiversity and productivity and constitute critical links to adjacent ecosystems. However, there is a growing concern that increasing recreational navigation may affect its ecological processes and functions, which may affect its recreational and tourism values, compromising local economies and livelihoods. The long-term impacts (1996-2011) of recreational navigation on seagrass benthic community structure were assessed by addressing the question of whether long-term effects of recreational navigation had a significant impact on seagrass community structure and on its benthic faunal assemblages. Findings evidenced: 1) a consistent spatio-temporal gradient in the ecological conditions of seagrasses across the scoured areas, with increased percent seagrass cover, density and canopy height, and seagrass benthic biodiversity with increasing distance from disturbed areas; 2) a decline in percent seagrass cover, and an increased macroalgal and cyanobacterial percent cover through time around the disturbed areas; 3) a significant shift in seagrass assemblage biodiversity as a response to boating that followed the intermediate disturbance hypothesis; 4) an adverse effect on the spatial distribution and survival of multiple benthic invertebrate taxa; and 5) a significant decline in cnidarians, echinoids, ophiuroids, holothurians, and gastropods, and an increase in polychaetes, platyhelminths, and hermit crabs, particularly in areas exposed to boating. Spatio-temporal variation in seagrass community structure explained the observed variation in benthic faunal assemblages. The long-term consequences on ecosystem functions and management needs are discussed to foster the conservation of seagrasses.

References

[1]  Vicente, V.P. (1992) A Summary of Ecological Information on the Seagrass Beds of Puerto Rico. In: Seeliger, U., Ed., Coastal Plant Communities of Latin America, Academic Press, San Diego, 123-133.
https://doi.org/10.1016/B978-0-08-092567-7.50014-3
[2]  De Boer, W.F. (2000) Biomass Dynamics of Seagrasses and the Role of Mangrove and Seagrass Vegetation as Different Nutrient Sources for an Intertidal Ecosystem. Aquatic Botany, 66, 225-239.
https://doi.org/10.1016/S0304-3770(99)00072-8
[3]  Welsh, D.T. (2000) Nitrogen Fixation in Seagrass Meadows: Regulation, Plant-Bacteria Interactions and Significance to Primary Productivity. Ecology Letters, 3, 58-71.
https://doi.org/10.1046/j.1461-0248.2000.00111.x
[4]  Fourqurean, J.W., Duarte, C.M., Kennedy, H., Marbà, N., Holmer, M., Mateo, M.A. and Serrano, O. (2012) Seagrass Ecosystems as a Globally Significant Carbon Stock. Nature Geoscience, 5, 505-509.
https://doi.org/10.1038/ngeo1477
[5]  Thayer, G.W., Wolfe, D.A. and Williams, R.B. (1975) The Impact of Man on Seagrass Systems. American Scientist, 63, 288-296.
[6]  Holmquist, J.G. (1989) Decapod and Stomatopod Assemblages on a System of Seagrass-Covered Mud Banks in Florida Bay. Marine Biology, 100, 473-483.
https://doi.org/10.1007/BF00394824
[7]  Duffy, J.E. (2006) Biodiversity and the Functioning of Seagrass Ecosystems. Marine Ecology Progress Series, 311, 233-250.
https://doi.org/10.3354/meps311233
[8]  Lewis III, G.F. and Stoner, A.W. (1983) Distribution of Macrofauna within Seagrass Beds: An Explanation for Patterns of Abundance. Bulletin of Marine Science, 33, 296-304.
[9]  Nordlund, L.M., Unsworth, R.K., Gullström, M. and Cullen-Unsworth, L.C. (2018) Global Significance of Seagrass Fishery Activity. Fish and Fisheries, 19, 399-412.
https://doi.org/10.1111/faf.12259
[10]  Unsworth, R.K., Nordlund, L.M. and Cullen-Unsworth, L.C. (2019) Seagrass Meadows Support Global Fisheries Production. Conservation Letters, 12, e12566.
https://doi.org/10.1111/conl.12566
[11]  Hettler Jr., W.F. (1989) Food Habits of Juveniles of Spotted Seatrout and Gray Snapper in Western Florida Bay. Bulletin of Marine Science, 44, 155-162.
[12]  Nagelkerken, I., Van der Velde, G., Gorissen, M.W., Meijer, G.J., Van’t Hof, T. and Den Hartog, C. (2000) Importance of Mangroves, Seagrass Beds and the Shallow Coral Reef as a Nursery for Important Coral Reef Fishes, Using a Visual Census Technique. Estuarine, Coastal and Shelf Science, 51, 31-44.
https://doi.org/10.1006/ecss.2000.0617
[13]  Nagelkerken, I. and Van der Velde, G. (2004) Relative Importance of Interlinked Mangroves and Seagrass Beds as Feeding Habitats for Juvenile Reef Fish on a Caribbean Island. Marine Ecology Progress Series, 274, 153-159.
https://doi.org/10.3354/meps274153
[14]  Verweij, M.C., Nagelkerken, I., Hans, I., Ruseler, S.M. and Mason, P.R. (2008) Seagrass Nurseries Contribute to Coral Reef Fish Populations. Limnology and Oceanography, 53, 1540-1547.
https://doi.org/10.4319/lo.2008.53.4.1540
[15]  Kochman, H.I., Rathbun, G.B. and Powell, J.A. (1985) Temporal and Spatial Distribution of Manatees in Kings Bay, Crystal River, Florida. The Journal of Wildlife Management, 49, 921-924.
[16]  Alves-Stanley, C.D., Worthy, G.A. and Bonde, R.K. (2010) Feeding Preferences of West Indian Manatees in Florida, Belize, and Puerto Rico as Indicated by Stable Isotope Analysis. Marine Ecology Progress Series, 402, 255-267.
https://doi.org/10.3354/meps08450
[17]  Bjorndal, K.A. and Bolten, A.B. (2010) Hawksbill Sea Turtles in Seagrass Pastures: Success in a Peripheral Habitat. Marine Biology, 157, 135-145.
https://doi.org/10.1007/s00227-009-1304-0
[18]  Lal, A., Arthur, R., Marbà, N., Lill, A.W. and Alcoverro, T. (2010) Implications of Conserving an Ecosystem Modifier: Increasing Green Turtle (Chelonia mydas) Densities Substantially Alters Seagrass Meadows. Biological Conservation, 143, 2730-2738.
https://doi.org/10.1016/j.biocon.2010.07.020
[19]  Mumby, P.J. (2006) Connectivity of Reef Fish between Mangroves and Coral Reefs: Algorithms for the Design of Marine Reserves at Seascape Scales. Biological Conservation, 128, 215-222.
https://doi.org/10.1016/j.biocon.2005.09.042
[20]  Nagelkerken, I. (2009) Ecological Connectivity among Tropical Coastal Ecosystems. Springer, Dordrecht.
[21]  Guannel, G., Arkema, K., Ruggiero, P. and Verutes, G. (2016) The Power of Three: Coral Reefs, Seagrasses and Mangroves Protect Coastal Regions and Increase Their Resilience. PLOS ONE, 11, e0158094.
https://doi.org/10.1371/journal.pone.0158094
[22]  Serrano, O., Lavery, P.S., Bongiovanni, J. and Duarte, C.M. (2020) Impact of Seagrass Establishment, Industrialization and Coastal Infrastructure on Seagrass Biogeochemical Sinks. Marine Environmental Research, 160, Article ID: 104990.
https://doi.org/10.1016/j.marenvres.2020.104990
[23]  Russell, B.D., Connell, S.D., Uthicke, S., Muehllehner, N., Fabricius, K.E. and Hall-Spencer, J.M. (2013) Future Seagrass Beds: Can Increased Productivity Lead to Increased Carbon Storage? Marine Pollution Bulletin, 73, 463-469.
https://doi.org/10.1016/j.marpolbul.2013.01.031
[24]  Marbà, N., Arias-Ortiz, A., Masqué, P., Kendrick, G.A., Mazarrasa, I., Bastyan, G.R. and Duarte, C.M. (2015) Impact of Seagrass Loss and Subsequent Revegetation on Carbon Sequestration and Stocks. Journal of Ecology, 103, 296-302.
https://doi.org/10.1111/1365-2745.12370
[25]  Fonseca, M.S. and Callahan, J.A. (1992) A Preliminary Evaluation of Wave Attenuation for Four Species of Seagrasses. Estuarine Coastal Shelf Science, 35, 565-576.
https://doi.org/10.1016/S0272-7714(05)80039-3
[26]  Manca, E., Cáceres, I.J.V.I., Alsina, J.M., Stratigaki, V., Townend, I. and Amos, C.L. (2012) Wave Energy and Wave-Induced Flow Reduction by Full-Scale Model Posidonia oceanica Seagrass. Continental Shelf Research, 50, 100-116.
https://doi.org/10.1016/j.csr.2012.10.008
[27]  Donatelli, C., Ganju, N.K., Kalra, T.S., Fagherazzi, S. and Leonardi, N. (2019) Changes in Hydrodynamics and Wave Energy as a Result of Seagrass Decline along the Shoreline of a Microtidal Back-Barrier Estuary. Advances in Water Resources, 128, 183-192.
https://doi.org/10.1016/j.advwatres.2019.04.017
[28]  Christianen, M.J., van Belzen, J., Herman, P.M., van Katwijk, M.M., Lamers, L.P., van Leent, P.J. and Bouma, T.J. (2013) Low-Canopy Seagrass Beds Still Provide Important Coastal Protection Services. PLOS ONE, 8, e62413.
https://doi.org/10.1371/journal.pone.0062413
[29]  Ondiviela, B., Losada, I.J., Lara, J.L., Maza, M., Galván, C., Bouma, T.J. and van Belzen, J. (2014) The Role of Seagrasses in Coastal Protection in a Changing Climate. Coastal Engineering, 87, 158-168.
https://doi.org/10.1016/j.coastaleng.2013.11.005
[30]  Paul, M. (2018) The Protection of Sandy Shores—Can We Afford to Ignore the Contribution of Seagrass? Marine Pollution Bulletin, 134, 152-159.
https://doi.org/10.1016/j.marpolbul.2017.08.012
[31]  Adger, W.N., Hughes, T.P., Folke, C., Carpenter, S.R. and Rockstrom, J. (2005) Social-Ecological Resilience to Coastal Disasters. Science, 309, 1036-1039.
https://doi.org/10.1126/science.1112122
[32]  Navarrete-Fernández, T., Bermejo, R., Hernández, I., Deidun, A., Andreu-Cazenave, M. and Cózar, A. (2022) The Role of Seagrass Meadows in the Coastal Trapping of Litter. Marine Pollution Bulletin, 174, Article ID: 113299.
https://doi.org/10.1016/j.marpolbul.2021.113299
[33]  Duarte, C.M., Kennedy, H., Marbà, N. and Hendriks, I. (2013) Assessing the Capacity of Seagrass Meadows for Carbon Burial: Current Limitations and Future Strategies. Ocean and Coastal Management, 83, 32-38.
https://doi.org/10.1016/j.ocecoaman.2011.09.001
[34]  Duarte, C.M. and Krause-Jensen, D. (2017) Export from Seagrass Meadows Contributes to Marine Carbon Sequestration. Frontiers in Marine Science, 4, Article 13.
https://doi.org/10.3389/fmars.2017.00013
[35]  Stankovic, M., Hayashizaki, K.I., Tuntiprapas, P., Rattanachot, E. and Prathep, A. (2021) Two Decades of Seagrass Area Change: Organic Carbon Sources and Stock. Marine Pollution Bulletin, 163, Article ID: 111913.
https://doi.org/10.1016/j.marpolbul.2020.111913
[36]  Duarte, C.M. (2002) The Future of Seagrass Meadows. Environmental Conservation, 29, 192-206.
https://doi.org/10.1017/S0376892902000127
[37]  Unsworth, R.K., Collier, C.J., Waycott, M., Mckenzie, L.J. and Cullen-Unsworth, L.C. (2015) A Framework for the Resilience of Seagrass Ecosystems. Marine Pollution Bulletin, 100, 34-46.
https://doi.org/10.1016/j.marpolbul.2015.08.016
[38]  Cullen-Unsworth, L.C. and Unsworth, R. (2018) A Call for Seagrass Protection. Science, 361, 446-448.
https://doi.org/10.1126/science.aat7318
[39]  Unsworth, R.K., McKenzie, L.J., Nordlund, L.M. and Cullen-Unsworth, L.C. (2018) A Changing Climate for Seagrass Conservation? Current Biology, 28, R1229-R1232.
https://doi.org/10.1016/j.cub.2018.09.027
[40]  Unsworth, R.K., McKenzie, L.J., Collier, C.J., Cullen-Unsworth, L.C., Duarte, C.M., Eklöf, J.S. and Nordlund, L.M. (2019) Global Challenges for Seagrass Conservation. Ambio, 48, 801-815.
https://doi.org/10.1007/s13280-018-1115-y
[41]  Dahl, M., Bergman, S., Björk, M., Diaz-Almela, E., Granberg, M., Gullström, M. and Mateo, M.á. (2021) A Temporal Record of Microplastic Pollution in Mediterranean Seagrass Soils. Environmental Pollution, 273, Article ID: 116451.
https://doi.org/10.1016/j.envpol.2021.116451
[42]  Jeong, H., Choi, J.Y., Choi, D.H., Noh, J.H. and Ra, K. (2021) Heavy Metal Pollution Assessment in Coastal Sediments and Bioaccumulation on Seagrass (Enhalus acoroides) of Palau. Marine Pollution Bulletin, 163, Article ID: 111912.
https://doi.org/10.1016/j.marpolbul.2020.111912
[43]  Lapointe, B.E., Barile, P.J. and Matzie, W.R. (2004) Anthropogenic Nutrient Enrichment of Seagrass and Coral Reef Communities in the Lower Florida Keys: Discrimination of Local versus Regional Nitrogen Sources. Journal of Experimental Marine Biology and Ecology, 308, 23-58.
https://doi.org/10.1016/j.jembe.2004.01.019
[44]  Jones, B.L., Cullen-Unsworth, L.C. and Unsworth, R.K. (2018) Tracking Nitrogen Source Using δ15N Reveals Human and Agricultural Drivers of Seagrass Degradation across the British Isles. Frontiers in Plant Science, 9, Article 133.
https://doi.org/10.3389/fpls.2018.00133
[45]  Qin, L.Z., Suonan, Z., Kim, S.H. and Lee, K.S. (2021) Growth and Reproductive Responses of the Seagrass Zostera Marina to Sediment Nutrient Enrichment. ICES Journal of Marine Science, 78, 1160-1173.
https://doi.org/10.1093/icesjms/fsab031
[46]  Jones, A.B., O’donohue, M.J., Udy, J. and Dennison, W.C. (2001) Assessing Ecological Impacts of Shrimp and Sewage Effluent: Biological Indicators with Standard Water Quality Analyses. Estuarine, Coastal and Shelf Science, 52, 91-109.
https://doi.org/10.1006/ecss.2000.0729
[47]  Thorhaug, A. (1985) Large-Scale Seagrass Restoration in a Damaged Estuary. Marine Pollution Bulletin, 16, 55-62.
https://doi.org/10.1016/0025-326X(85)90124-9
[48]  Duke, N.C. and Wolanski, E. (2000) Muddy Coastal Waters and Depleted Mangrove Coastlines—Depleted Seagrass and Coral Reefs. In: Oceanographic Processes of Coral Reefs, CRC Press, Boca Raton, 97-112.
[49]  Vermaat, J.E., Agawin, N.S.R., Fortes, M.D., Uri, J., Duarte, C.M., Marba, N. and Van Vierssen, W. (1997) The Capacity of Seagrasses to Survive Increased Turbidity and Siltation: The Significance of Growth Form and Light Use. Ambio, 26, 499-504.
[50]  Erftemeijer, P.L. and Lewis III, R.R.R. (2006) Environmental Impacts of Dredging on Seagrasses: A Review. Marine Pollution Bulletin, 52, 1553-1572.
https://doi.org/10.1016/j.marpolbul.2006.09.006
[51]  Longstaff, B.J. and Dennison, W.C. (1999) Seagrass Survival during Pulsed Turbidity Events: The Effects of Light Deprivation on the Seagrasses Halodule pinifolia and Halophila ovalis. Aquatic Botany, 65, 105-121.
https://doi.org/10.1016/S0304-3770(99)00035-2
[52]  Bulmer, R.H., Townsend, M., Drylie, T. and Lohrer, A.M. (2018) Elevated Turbidity and the Nutrient Removal Capacity of Seagrass. Frontiers in Marine Science, 5, Article 462.
[53]  Yaakub, S.M., McKenzie, L.J., Erftemeijer, P.L., Bouma, T. and Todd, P.A. (2014) Courage under Fire: Seagrass Persistence Adjacent to a Highly Urbanised City-State. Marine Pollution Bulletin, 83, 417-424.
https://doi.org/10.3389/fmars.2018.00462
[54]  Meyer, D.L., Fonseca, M.S., Murphey, P.L., McMichael Jr., R.H., LaCroix, M.W., Whitfield, P.E. and Thayer, G.W. (1999) Effects of Live-Bait Shrimp Trawling on Seagrass Beds and Fish Bycatch in Tampa Bay, Florida. Fishery Bulletin, 97, 193-199.
http://hdl.handle.net/1834/18338
[55]  Grabowski, J.H., Bachman, M., Demarest, C., Eayrs, S., Harris, B.P., Malkoski, V. and Stevenson, D. (2014) Assessing the Vulnerability of Marine Benthos to Fishing Gear Impacts. Reviews in Fisheries Science and Aquaculture, 22, 142-155.
https://doi.org/10.1080/10641262.2013.846292
[56]  Fonseca, M.S., Thayer, G.W., Chester, A.J. and Foltz, C. (1984) Impact of Scallop Harvesting on Eelgrass (Zostera marina) Meadows: Implications for Management. North American Journal of Fisheries Management, 4, 286-293.
https://doi.org/10.1577/1548-8659(1984)4 < 286:IOSHOE>2.0.CO;2
[57]  Koch, E.W. (2002) Impact of Boat-Generated Waves on a Seagrass Habitat. Journal of Coastal Research, No. 37, 66-74.
https://www.jstor.org/stable/25736343
[58]  Milazzo, M., Chemello, R., Badalamenti, F., Camarda, R. and Riggio, S. (2002) The Impact of Human Recreational Activities in Marine Protected Areas: What Lessons Should Be Learnt in the Mediterranean Sea? Marine Ecology, 23, 280-290.
https://doi.org/10.1111/j.1439-0485.2002.tb00026.x
[59]  Milazzo, M., Badalamenti, F., Ceccherelli, G. and Chemello, R. (2004) Boat Anchoring on Posidonia oceanica Beds in a Marine Protected Area (Italy, Western Mediterranean): Effect of Anchor Types in Different Anchoring Stages. Journal of Experimental Marine Biology and Ecology, 299, 51-62.
https://doi.org/10.1016/j.jembe.2003.09.003
[60]  Short, F.T. and Neckles, H.A. (1999) The Effects of Global Climate Change on Seagrasses. Aquatic Botany, 63, 169-196.
https://doi.org/10.1016/S0304-3770(98)00117-X
[61]  Björk, M., Short, F., Mcleod, E. and Beer, S. (2008) Managing Seagrasses for Resilience to Climate Change. IUCN Resilience Science Group Working Paper Series No 3, International Union for the Conservation of Nature.
https://scholars.unh.edu/cgi/viewcontent.cgi?article=1474&context=jel
[62]  Sunny, A.R. (2017) A Review on Effect of Global Climate Change on Seaweed and Seagrass. International Journal of Fisheries and Aquatic Studies, 5, 19-22.
https://www.fisheriesjournal.com/archives/2017/vol5issue6/PartA/5-5-49-118.pdf
[63]  Chefaoui, R.M., Duarte, C.M. and Serrão, E.A. (2018) Dramatic Loss of Seagrass Habitat under Projected Climate Change in the Mediterranean Sea. Global Change Biology, 24, 4919-4928.
https://doi.org/10.1111/gcb.14401
[64]  Duarte, B., Martins, I., Rosa, R., Matos, A.R., Roleda, M.Y., Reusch, T.B. and Jueterbock, A. (2018) Climate Change Impacts on Seagrass Meadows and Macroalgal Forests: An Integrative Perspective on Acclimation and Adaptation Potential. Frontiers in Marine Science, 5, Article 190.
https://doi.org/10.3389/fmars.2018.00190
[65]  Zunino, S., Canu, D.M., Zupo, V. and Solidoro, C. (2019) Direct and Indirect Impacts of Marine Acidification on the Ecosystem Services Provided by Coralligenous Reefs and Seagrass Systems. Global Ecology and Conservation, 18, e00625.
https://doi.org/10.1016/j.gecco.2019.e00625
[66]  Fourqurean, J.W. and Rutten, L.M. (2004) The Impact of Hurricane Georges on Soft-Bottom, Back Reef Communities: Site-and Species-Specific Effects in South Florida Seagrass Beds. Bulletin of Marine Science, 75, 239-257.
https://www.ingentaconnect.com/content/umrsmas/bullmar/2004/00000075/00000002/art00007#
[67]  Hernández-Delgado, E.A., Toledo-Hernández, C., Ruíz-Díaz, C.P., Gómez-Andújar, N., Medina-Muñiz, J.L., Canals-Silander, M.F. and Suleimán-Ramos, S.E. (2020) Hurricane Impacts and the Resilience of the Invasive Sea Vine, Halophila stipulacea: A Case Study from Puerto Rico. Estuaries and Coasts, 43, 1263-1283.
https://doi.org/10.1007/s12237-019-00673-4
[68]  Wilson, S.S., Furman, B.T., Hall, M.O. and Fourqurean, J.W. (2020) Assessment of Hurricane Irma Impacts on South Florida Seagrass Communities Using Long-Term Monitoring Programs. Estuaries and Coasts, 43, 1119-1132.
https://doi.org/10.1007/s12237-019-00623-0
[69]  Willette, D.A. and Ambrose, R.F. (2012) Effects of the Invasive Seagrass Halophila stipulacea on the Native Seagrass, Syringodium filiforme, and Associated Fish and Epibiota Communities in the Eastern Caribbean. Aquatic Botany, 103, 74-82.
https://doi.org/10.1016/j.aquabot.2012.06.007
[70]  Maréchal, J.P., Meesters, E.H., Vedie, F. and Hellio, C. (2013) Occurrence of the Alien Seagrass Halophila stipulacea in Martinique (French West Indies). Marine Biodiversity Records, 6, e127.
https://doi.org/10.1017/S1755267213000961
[71]  Ruiz, H., Ballantine, D.L. and Sabater, J. (2017) Continued Spread of the Seagrass Halophila stipulacea in the Caribbean: Documentation in Puerto Rico and the British Virgin Islands. Gulf and Caribbean Research, 28, SC5-SC7.
https://doi.org/10.18785/gcr.2801.05
[72]  Birchenough, S.N. (2017) Impacts of Climate Change on Biodiversity in the Coastal and Marine Environments of Caribbean Small Island Developing States (SIDS). Caribbean Marine Climate Change Report Card: Science Review, 2017, 40-51.
https://www.researchgate.net/profile/Silvana-Birchenough/publication/320834156_Climate_change_impacts_on_biodiversity_in_coastal_and_marine_environments_of_Caribbean_Small_Island_Developing_States_SIDs/links/59fc928f0f7e9b9968bdfa39/Climate-change-impacts-on-biodiversity-in-coastal-and-marine-environments-of-Caribbean-Small-Island-Developing-States-SIDs.pdf
[73]  Costanza, R., d’Arge, R., De Groot, R., Farber, S., Grasso, M., Hannon, B. and Van Den Belt, M. (1997) The Value of the World’s Ecosystem Services and Natural Capital. Nature, 387, 253-260.
https://doi.org/10.1038/387253a0
[74]  Montefalcone, M., Chiantore, M., Lanzone, A., Morri, C., Albertelli, G. and Bianchi, C.N. (2008) BACI Design Reveals the Decline of the Seagrass Posidonia oceanica Induced by Anchoring. Marine Pollution Bulletin, 56, 1637-1645.
https://doi.org/10.1016/j.marpolbul.2008.05.013
[75]  Collins, K.J., Suonpää, A.M. and Mallinson, J.J. (2010) The Impacts of Anchoring and Mooring in Seagrass, Studland Bay, Dorset, UK. Underwater Technology, 29, 117-123.
https://doi.org/10.3723/ut.29.117
[76]  Hallac, D.E., Sadle, J., Pearlstine, L., Herling, F. and Shinde, D. (2012) Boating Impacts to Seagrass in Florida Bay, Everglades National Park, Florida, USA: Links with Physical and Visitor-Use Factors and Implications for Management. Marine and Freshwater Research, 63, 1117-1128.
https://doi.org/10.1071/MF12025
[77]  West, R. (2012) Impacts of Recreational Boating Activities on the Seagrass Posidonia in SE Australia. Wetlands Australia Journal, 26, 3-13.
[78]  La Manna, G., Donno, Y., Sarà, G. and Ceccherelli, G. (2015) The Detrimental Consequences for Seagrass of Ineffective Marine Park Management Related to Boat Anchoring. Marine Pollution Bulletin, 90, 160-166.
https://doi.org/10.1016/j.marpolbul.2014.11.001
[79]  Nurdin, N., La Nafie, Y., Umar, M.T., Jamal, M. and Moore, A. (2019) Preliminary Study: Human Trampling Effects on Seagrass Density. IOP Conference Series: Earth and Environmental Science, 370, Article ID: 012050.
https://doi.org/10.1088/1755-1315/370/1/012050
[80]  Hawkins, J.P. and Roberts, C.M. (1992) Effects of Recreational SCUBA Diving on Fore-Reef Slope Communities of Coral Reefs. Biological Conservation, 62, 171-178.
https://doi.org/10.1016/0006-3207(92)91045-T
[81]  Hawkins, J.P. and Roberts, C.M. (1993) Effects of Recreational Scuba Diving on Coral Reefs: Trampling on Reef-Flat Communities. Journal of Applied Ecology, 30, 25-30.
https://doi.org/10.2307/2404267
[82]  Hawkins, J.P., Roberts, C.M., Van’T Hof, T., De Meyer, K., Tratalos, J. and Aldam, C. (1999) Effects of Recreational Scuba Diving on Caribbean Coral and Fish Communities. Conservation Biology, 13, 888-897.
https://doi.org/10.1046/j.1523-1739.1999.97447.x
[83]  Dunton, K.H. and Schonberg, S.V. (2002) Assessment of Propeller Scarring in Seagrass Beds of the South Texas Coast. Journal of Coastal Research, No. 37, 100-110.
https://www.jstor.org/stable/25736346
[84]  Skilleter, G.A., Cameron, B., Zharikov, Y., Boland, D. and McPhee, D.P. (2006) Effects of Physical Disturbance on Infaunal and Epifaunal Assemblages in Subtropical, Intertidal Seagrass Beds. Marine Ecology Progress Series, 308, 61-78.
https://doi.org/10.3354/meps308061
[85]  Eckrich, C.E. and Holmquist, J.G. (2000) Trampling in a Seagrass Assemblage: Direct Effects, Response of Associated Fauna, and the Role of Substrate Characteristics. Marine Ecology Progress Series, 201, 199-209.
https://doi.org/10.3354/meps201199
[86]  Bishop, M.J. (2008) Displacement of Epifauna from Seagrass Blades by Boat Wake. Journal of Experimental Marine Biology and Ecology, 354, 111-118.
https://doi.org/10.1016/j.jembe.2007.10.013
[87]  Gladstone, W. and Courtenay, G. (2014) Impacts of Docks on Seagrass and Effects of Management Practices to Ameliorate These Impacts. Estuarine, Coastal and Shelf Science, 136, 53-60.
https://doi.org/10.1016/j.ecss.2013.10.023
[88]  Hernández-Delgado, E.A. (2023) Climate Change Impacts on Caribbean Coastal Ecosystems: Emergent Ecological and Environmental Geography Challenges. In: Routledge Handbook of Latin America and the Environment, Routledge, London, 36-50.
[89]  Caparrós-Martínez, J.L., Martínez-Vázquez, R.M. and de Pablo Valenciano, J. (2022) Analysis and Global Research Trends on Nautical Tourism and Green Coastal Infrastructures: The Case of Coral Reefs and Seagrass Meadows. Environmental Sciences Europe, 34, Article No. 33.
https://doi.org/10.1186/s12302-022-00614-2
[90]  Anderson, M.J., Gorley, R.N. and Clarke, K.R. (2008) PERMANOVA+ for PRIMER: Guide to Software and Statistical Methods. Massey University, Auckland and PRIMER-e Ltd., Plymouth.
[91]  Clarke, K.R., Gorley, R.N., Somerfield, P.J. and Warwick, R.M. (2014) Change in Marine Communities: An Approach to Statistical Analysis and Interpretation. 3rd Edition, PRIMER-E, Plymouth.
[92]  Anderson, M.J. (2005) Permutational Multivariate Analysis of Variance. Vol. 26, Department of Statistics, University of Auckland, Auckland, 32-46.
[93]  Bray, J.R. and Curtis, J.T. (1957) An Ordination of the Upland Forest Communities of Southern Wisconsin. Ecological Monographs, 27, 325-349.
https://doi.org/10.2307/1942268
[94]  Anderson, M.J., Ellingsen, K.E. and McArdle, B.H. (2006) Multivariate Dispersion as a Measure of Beta Diversity. Ecology Letters, 9, 683-693.
https://doi.org/10.1111/j.1461-0248.2006.00926.x
[95]  Connell, J.H. (1978) Diversity in Tropical Rain Forests and Coral Reefs: High Diversity of Trees and Corals Is Maintained Only in a Nonequilibrium State. Science, 199, 1302-1310.
https://doi.org/10.1126/science.199.4335.1302
[96]  Miloslavich, P., Díaz, J.M., Klein, E., Alvarado, J.J., Díaz, C., Gobin, J. and Ortiz, M. (2010) Marine Biodiversity in the Caribbean: Regional Estimates and Distribution Patterns. PLOS ONE, 5, e11916.
https://doi.org/10.1371/journal.pone.0011916
[97]  Heck Jr, K.L. and Wetstone, G.S. (1977) Habitat Complexity and Invertebrate Species Richness and Abundance in Tropical Seagrass Meadows. Journal of Biogeography, 4, 135-142.
https://doi.org/10.2307/3038158
[98]  Heck, K.L., Carruthers, T.J., Duarte, C.M., Hughes, A.R., Kendrick, G., Orth, R.J. and Williams, S.W. (2008) Trophic Transfers from Seagrass Meadows Subsidize Diverse Marine and Terrestrial Consumers. Ecosystems, 11, 1198-1210.
https://doi.org/10.1007/s10021-008-9155-y
[99]  Sandström, O., Larsson, Å., Andersson, J., Appelberg, M., Bignert, A., Ek, H. and Olsson, M. (2005) Three Decades of Swedish Experience Demonstrates the Need for Integrated Long-Term Monitoring of Fish in Marine Coastal Areas. Water Quality Research Journal, 40, 233-250.
https://doi.org/10.2166/wqrj.2005.030
[100]  Amorim, E., Ramos, S., Elliott, M., Franco, A. and Bordalo, A.A. (2017) Habitat Loss and Gain: Influence on Habitat Attractiveness for Estuarine Fish Communities. Estuarine, Coastal and Shelf Science, 197, 244-257.
https://doi.org/10.1016/j.ecss.2017.08.043
[101]  Lanham, B.S., Vergés, A., Hedge, L.H., Johnston, E.L. and Poore, A.G. (2018) Altered Fish Community and Feeding Behaviour in Close Proximity to Boat Moorings in an Urban Estuary. Marine Pollution Bulletin, 129, 43-51.
https://doi.org/10.1016/j.marpolbul.2018.02.010
[102]  Gannon, D.P., McCabe, E.J.B., Camilleri, S.A., Gannon, J.G., Brueggen, M.K., Barleycorn, A.A. and Wells, R.S. (2009) Effects of Karenia brevis Harmful Algal Blooms on Nearshore Fish Communities in Southwest Florida. Marine Ecology Progress Series, 378, 171-186.
https://doi.org/10.3354/meps07853
[103]  Koch, E.W. (1999) Preliminary Evidence on the Interdependent Effect of Currents and Porewater Geochemistry on Thalassia testudinum Banks ex König Seedlings. Aquatic Botany, 63, 95-102.
https://doi.org/10.1016/S0304-3770(98)00116-8
[104]  Widdows, J., Pope, N.D., Brinsley, M.D., Asmus, H. and Asmus, R.M. (2008) Effects of Seagrass Beds (Zostera noltii and Z. marina) on Near-Bed Hydrodynamics and Sediment Resuspension. Marine Ecology Progress Series, 358, 125-136.
https://doi.org/10.3354/meps07338
[105]  Carr, J., D’odorico, P., McGlathery, K. and Wiberg, P.L. (2010) Stability and Bistability of Seagrass Ecosystems in Shallow Coastal Lagoons: Role of Feedbacks with Sediment Resuspension and Light Attenuation. Journal of Geophysical Research: Biogeosciences, 115, G030111.
https://doi.org/10.1029/2009JG001103
[106]  Adams, M.P., Hovey, R.K., Hipsey, M.R., Bruce, L.C., Ghisalberti, M., Lowe, R.J. and O’Brien, K.R. (2016) Feedback between Sediment and Light for Seagrass: Where Is It Important? Limnology and Oceanography, 61, 1937-1955.
https://doi.org/10.1002/lno.10319
[107]  Brodersen, K.E., Hammer, K.J., Schrameyer, V., Floytrup, A., Rasheed, M.A., Ralph, P.J. and Pedersen, O. (2017) Sediment Resuspension and Deposition on Seagrass Leaves Impedes Internal Plant Aeration and Promotes Phytotoxic H2S Intrusion. Frontiers in Plant Science, 8, Article 657.
https://doi.org/10.3389/fpls.2017.00657
[108]  Okudan, E.S., Demir, V., Kalkan, E. and Karhan, S.ü. (2011) Anchoring Damage on Seagrass Meadows (Posidonia oceanica (L.) Delile) in Fethiye-Göcek Specially Protected Area (Eastern Mediterranean Sea, Turkey). Journal of Coastal Research, 61, 417-420.
https://doi.org/10.2112/S161-001.51
[109]  Allen, W.H. (1992) Increased Dangers to Caribbean Marine Ecosystems. Bioscience, 42, 330-335.
https://doi.org/10.2307/1311778
[110]  Pitanga, M.E., Montes, M.J., Magalhães, K.M. and Reis, T.N. (2012) Quantification and Classification of the Main Environmental Impacts on a Halodule wrightii Seagrass Meadow on a Tropical Island in Northeastern Brazil. Anais da Academia Brasileira de Ciências, 84, 35-42.
https://doi.org/10.1590/S0001-37652012000100005
[111]  Vera, B., Collado-Vides, L., Moreno, C. and van Tussenbroek, B.I. (2014) Halophila stipulacea (Hydrocharitaceae): A Recent Introduction to the Continental Waters of Venezuela. Caribbean Journal of Science, 48, 66-70.
[112]  Viana, I.G., Siriwardane-de Zoysa, R., Willette, D.A. and Gillis, L.G. (2019) Exploring How Non-Native Seagrass Species Could Provide Essential Ecosystems Services: A Perspective on the Highly Invasive Seagrass Halophila stipulacea in the Caribbean Sea. Biological Invasions, 21, 1461-1472.
https://doi.org/10.18475/cjos.v48i1.a11
[113]  Abadie, A., Lejeune, P., Pergent, G. and Gobert, S. (2016) From Mechanical to Chemical Impact of Anchoring in Seagrasses: The Premises of Anthropogenic Patch Generation in Posidonia oceanica Meadows. Marine Pollution Bulletin, 109, 61-71.
https://doi.org/10.1016/j.marpolbul.2016.06.022
[114]  Whitfield, A.K. and Becker, A. (2014) Impacts of Recreational Motorboats on Fishes: A Review. Marine Pollution Bulletin, 83, 24-31.
https://doi.org/10.1016/j.marpolbul.2014.03.055
[115]  Venturini, S., Massa, F., Castellano, M., Fanciulli, G. and Povero, P. (2021) Recreational Boating in the Portofino Marine Protected Area (MPA), Italy: Characterization and Analysis in the Last Decade (2006-2016) and Some Considerations on Management. Marine Policy, 127, Article ID: 103178.
https://doi.org/10.1016/j.marpol.2018.06.006
[116]  Pergent-Martini, C., Monnier, B., Lehmann, L., Barralon, E. and Pergent, G. (2022) Major Regression of Posidonia oceanica Meadows in Relation with Recreational Boat Anchoring: A Case Study from Sant’Amanza Bay. Journal of Sea Research, 188, Article ID: 102258.
https://doi.org/10.1016/j.seares.2022.102258
[117]  Waycott, M., Longstaff, B.J. and Mellors, J. (2005) Seagrass Population Dynamics and Water Quality in the Great Barrier Reef Region: A Review and Future Research Directions. Marine Pollution Bulletin, 51, 343-350.
https://doi.org/10.1016/j.marpolbul.2005.01.017
[118]  Schlacher-Hoenlinger, A. and Schlacher, T.A. (1998) Differential Accumulation Patterns of Heavy Metals among the Dominant Macrophytes of a Mediterranean Seagrass Meadow. Chemosphere, 37, 1511-1519.
https://doi.org/10.1016/S0045-6535(98)00146-5
[119]  Carreño, A. and Lloret, J. (2021) Environmental Impacts of Increasing Leisure Boating Activity in Mediterranean Coastal Waters. Ocean and Coastal Management, 209, Article ID: 105693.
https://doi.org/10.1016/j.ocecoaman.2021.105693
[120]  Lefcheck, J.S., Orth, R.J., Dennison, W.C., Wilcox, D.J., Murphy, R.R., Keisman, J. and Batiuk, R.A. (2018) Long-Term Nutrient Reductions Lead to the Unprecedented Recovery of a Temperate Coastal Region. Proceedings of the National Academy of Sciences, 115, 3658-3662.
https://doi.org/10.1073/pnas.1715798115
[121]  Kunc, H.P., McLaughlin, K.E. and Schmidt, R. (2016) Aquatic Noise Pollution: Implications for Individuals, Populations, and Ecosystems. Proceedings of the Royal Society B: Biological Sciences, 283, Article ID: 20160839.
https://doi.org/10.1098/rspb.2016.0839
[122]  Weilgart, L.I. (2018) The Impact of Ocean Noise Pollution on Fish and Invertebrates. Report for OceanCare.
https://thegreentimes.co.za/wp-content/uploads/2022/01/impact-of-ocean-noise-pollution-on-fish-and-invertebrates.pdf
[123]  Ferrier-Pagès, C., Leal, M.C., Calado, R., Schmid, D.W., Bertucci, F., Lecchini, D. and Allemand, D. (2021) Noise Pollution on Coral Reefs?—A Yet Underestimated Threat to Coral Reef Communities. Marine Pollution Bulletin, 165, Article ID: 112129.
https://doi.org/10.1016/j.marpolbul.2021.112129
[124]  Chahouri, A., Elouahmani, N. and Ouchene, H. (2022) Recent Progress in Marine Noise Pollution: A Thorough Review. Chemosphere, 291, Article ID: 132983.
https://doi.org/10.1016/j.chemosphere.2021.132983
[125]  Simpson, S.D., Radford, A.N., Nedelec, S.L., Ferrari, M.C., Chivers, D.P., McCormick, M.I. and Meekan, M.G. (2016) Anthropogenic Noise Increases Fish Mortality by Predation. Nature Communications, 7, Article ID: 10544.
https://doi.org/10.1038/ncomms10544
[126]  Weilgart, L.S. (2008) The Impact of Ocean Noise Pollution on Marine Biodiversity. International Ocean Noise Coalition.
http://www.protectedspeciesobserver.com/uploads/4/8/3/6/48362305/weilgart_biodiversity_2008-1238105851-10133.pdf
[127]  Demers, M.C.A., Davis, A.R. and Knott, N.A. (2013) A Comparison of the Impact of “Seagrass-Friendly” Boat Mooring Systems on Posidonia australis. Marine Environmental Research, 83, 54-62.
https://doi.org/10.1016/j.marenvres.2012.10.010
[128]  Venturini, S., Massa, F., Castellano, M., Costa, S., Lavarello, I., Olivari, E. and Povero, P. (2016) Recreational Boating in Ligurian Marine Protected Areas (Italy): A Quantitative Evaluation for a Sustainable Management. Environmental Management, 57, 163-175.
https://doi.org/10.1007/s00267-015-0593-y
[129]  Hughes, A.R., Williams, S.L., Duarte, C.M., Heck Jr., K.L. and Waycott, M. (2009) Associations of Concern: Declining Seagrasses and Threatened Dependent Species. Frontiers in Ecology and the Environment, 7, 242-246.
https://doi.org/10.1890/080041
[130]  Orth, R.J., Carruthers, T.J., Dennison, W.C., Duarte, C.M., Fourqurean, J.W., Heck, K.L. and Williams, S.L. (2006) A Global Crisis for Seagrass Ecosystems. Bioscience, 56, 987-996.
https://doi.org/10.1641/0006-3568(2006)56[987:AGCFSE]2.0.CO;2

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133