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Artykuły w czasopismach na temat "Seashore biology"

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Zhang, Yong, Jun Liu, Jingjin Yu, Huangwei Zhang, and Zhimin Yang. "Relationship between the Phenylpropanoid Pathway and Dwarfism of Paspalum seashore Based on RNA-Seq and iTRAQ." International Journal of Molecular Sciences 22, no. 17 (September 3, 2021): 9568. http://dx.doi.org/10.3390/ijms22179568.

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Seashore paspalum is a major warm-season turfgrass requiring frequent mowing. The use of dwarf cultivars with slow growth is a promising method to decrease mowing frequency. The present study was conducted to provide an in-depth understanding of the molecular mechanism of T51 dwarfing in the phenylpropane pathway and to screen the key genes related to dwarfing. For this purpose, we obtained transcriptomic information based on RNA-Seq and proteomic information based on iTRAQ for the dwarf mutant T51 of seashore paspalum. The combined results of transcriptomic and proteomic analysis were used to
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Adhikari, Srikar, Wesley Zeger, Michael Wadman, Richard Walker, and Carol Lomneth. "Assessment of a Human Cadaver Model for Training Emergency Medicine Residents in the Ultrasound Diagnosis of Pneumothorax." BioMed Research International 2014 (2014): 1–5. http://dx.doi.org/10.1155/2014/724050.

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Objectives. To assess a human cadaver model for training emergency medicine residents in the ultrasound diagnosis of pneumothorax.Methods. Single-blinded observational study using a human cadaveric model at an academic medical center. Three lightly embalmed cadavers were used to create three “normal lungs” and three lungs modeling a “pneumothorax.” The residents were blinded to the side and number of pneumothoraces, as well as to each other’s findings. Each resident performed an ultrasound examination on all six lung models during ventilation of cadavers. They were evaluated on their ability t
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Sigurbjörnsdóttir, Margrét Auður, Starri Heiðmarsson, Anna Rut Jónsdóttir, and Oddur Vilhelmsson. "Novel bacteria associated with Arctic seashore lichens have potential roles in nutrient scavenging." Canadian Journal of Microbiology 60, no. 5 (May 2014): 307–17. http://dx.doi.org/10.1139/cjm-2013-0888.

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While generally described as a bipartite mutualistic association between fungi and algae or cyanobacteria, lichens also host diverse and heretofore little explored communities of nonphototrophic endolichenic bacteria. The composition and possible roles of these bacterial communities in the lichen symbiotic association constitute an emerging field of research. Saxicolous (rock-dwelling) seashore lichens present an unusual environment, characterized by rapid fluctuations in temperature, salinity, exposure to solar radiation, etc. The present study focuses on the bacterial biota associated with 4
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Jeon, Mi-Jeong, and Kee-Jeong Ahn. "Revision of the seashore genus Salinamexus (Coleoptera: Staphylinidae: Aleocharinae) with a description of Salinamexus koreanus sp. nov. from Korea." Canadian Entomologist 139, no. 2 (April 2007): 189–94. http://dx.doi.org/10.4039/n06-023.

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AbstractThe seashore aleocharine genus Salinamexus Moore and Legner is revised. Three species are recognized, one of which is described as new (Salinamexus koreanussp. nov.). The genus Salinamexus and the species S. browni Moore and Legner and S. reticulatus (Moore and Legner) are redescribed. A key and illustrations of diagnostic features are provided.
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HLAVÁČ, PETER, JIŘÍ SKUHROVEC, and JAN PELIKÁN. "A new, peculiar genus of Cossoninae (Coleoptera, Curculionidae) from Oman with description of a new species, larva and notes on biology." Zootaxa 4768, no. 1 (April 30, 2020): 129–42. http://dx.doi.org/10.11646/zootaxa.4768.1.8.

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A new genus and species of the subfamily Cossoninae, Omanocossonus sabulosus gen. et sp. nov. is described from Oman. All specimens including larvae were found on sand dunes on the seashore in roots of Calotropis procera (Aiton) W.T. Aiton. The crucial features, including male and female terminalia, are illustrated, and the taxonomic position of the new genus within Cossoninae is briefly discussed. The generic status of Lindbergius Roudier, 1957 is resurrected. The mature larva of the new species is described, larval morphology is discussed and the current state of knowledge about immature sta
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Liu, Zhao-Wei, Robert L. Jarret, Ronny R. Duncan, and Stephen Kresovich. "Genetic relationships and variation among ecotypes of seashore paspalum (Paspalum vaginatum) determined by random amplified polymorphic DNA markers." Genome 37, no. 6 (December 1, 1994): 1011–17. http://dx.doi.org/10.1139/g94-143.

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Random amplified polymorphic DNA (RAPD) markers were used to assess genetic relationships and variation among ecotypes of the turfgrass seashore paspalum (Paspalum vaginatum Swartz). Vegetative tissues or seeds of 46 seashore paspalum ecotypes were obtained from various locations in the United States, Argentina, and South Africa. Leaf DNA extracts were screened for RAPD markers using 34 10-mer random primers. A total of 195 reproducible RAPD fragments were observed, with an average of six fragments per primer. One hundred and sixty-nine fragments (87% of the total observed) were polymorphic, a
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Nuessly, G. S., R. T. Nagata, J. D. Burd, M. G. Hentz, A. S. Carroll, and S. E. Halbert. "Biology and Biotype Determination of Greenbug,Schizaphis graminum(Hemiptera: Aphididae), on Seashore Paspalum Turfgrass (Paspalum vaginatum)." Environmental Entomology 37, no. 2 (April 1, 2008): 586–91. http://dx.doi.org/10.1093/ee/37.2.586.

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Richards, M. H. "Nesting biology and social organization of Halictus sexcinctus (Fabricius) in southern Greece." Canadian Journal of Zoology 79, no. 12 (December 1, 2001): 2210–20. http://dx.doi.org/10.1139/z01-184.

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Halictus sexcinctus is a large halictine bee species widely distributed across central Europe and into the Middle East. Although its behaviour had not previously been studied in detail, it is known to exhibit solitary behaviour in central Europe. An aggregation nesting beside the seashore at Pyla-Daimonia, Demos Molai, in the southeastern Peloponnesos, Greece, was studied during the summers of 1997 and 1998. In southern Greece, H. sexcinctus exhibits weakly eusocial colonies, based on a partially bivoltine colony cycle, so across its range it is socially polymorphic. Weak eusociality in this M
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Park, Sooyeon, Mi-Hwa Lee, and Jung-Hoon Yoon. "Oceanicola litoreus sp. nov., an alphaproteobacterium isolated from the seashore sediment." Antonie van Leeuwenhoek 103, no. 4 (December 28, 2012): 859–66. http://dx.doi.org/10.1007/s10482-012-9867-z.

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Kurilenko, Valeriya V., Lyudmila A. Romanenko, Nadezhda Y. Chernysheva, Peter V. Velansky, Liudmila A. Tekutyeva, Marina P. Isaeva, and Valery V. Mikhailov. "Thalassobius aquimarinus sp. nov., isolated from the Sea of Japan seashore." Archives of Microbiology 203, no. 6 (April 8, 2021): 3201–7. http://dx.doi.org/10.1007/s00203-021-02285-8.

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Rozprawy doktorskie na temat "Seashore biology"

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Walpole, Brenda. "Seasonal changes in a rocky shore community structure in Hong Kong." Thesis, Hong Kong : [University of Hong Kong], 1985. http://sunzi.lib.hku.hk/hkuto/record.jsp?B1231593X.

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Loegering, John P. "Piping plover breeding biology, foraging ecology and behavior on Assateague Island National Seashore, Maryland." Thesis, This resource online, 1992. http://scholar.lib.vt.edu/theses/available/etd-09052009-040402/.

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Rautiainen, P. (Pirjo). "Population biology of the Primula sibirica group species inhabiting frequently disturbed seashore meadows: implications for management." Doctoral thesis, University of Oulu, 2006. http://urn.fi/urn:isbn:9514280253.

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Abstract Many plant species inhabiting the seashore meadows of the Bothnian Bay, especially early successional ones, have become threatened. Isostatic land uplift creates virgin land for early successional species to colonise. However, at the same time it gradually elevates the habitat and eventually makes the habitat unsuitable for them. Disturbances of the waterfront may slow down succession and create new empty sites. In order to persist on the shores, pioneer species have to be able to colonise new sites by seeds, vegetative propagules or growth. In this thesis I studied the status of an
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Schweikert, Katja, and n/a. "The functional biology of Porphyra sp. in New Zealand." University of Otago. Department of Botany, 2007. http://adt.otago.ac.nz./public/adt-NZDU20080910.114121.

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The intertidal red algal genus Porphyra is found on rocky shores worldwide. In the Northern Hemisphere the genus is well studied but there is a paucity of data on southern hemisphere Porphyra and even less on New Zealand Porphyra. The species� taxonomy has been undergoing revision since the late 1990�s, when it was discovered that the main species P. columbina and P. lilliputana reported for New Zealand were a combination of several endemic species. These species are found from the low to the high intertidal watermark; hence they are exposed to fluctuating stresses such as desiccation, tempera
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Marin, Jarrin Jose R. 1980. "The Ecology of Surf Zone Fauna of Dissipative Sandy Beaches in Southern Oregon U.S.A." Thesis, University of Oregon MS Thesis, 2007. http://hdl.handle.net/1794/5232.

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Harris, Linda Rozanne. "An ecosystem-based spatial conservation plan for the South African sandy beaches." Thesis, Nelson Mandela Metropolitan University, 2012. http://hdl.handle.net/10948/d1007920.

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An ecosytem-based spatial conservation plan for the South African sandy beaches. Sandy beaches are valuable ecosystems. They support a collection of species that is unique, comprising many endemic species, and provide a number of key ecosystem goods and services, including scenic vistas for human recreation, nesting sites for turtles and birds, and important areas for biogeochemical recycling, water filtration and purification. However, sandy beaches have not been well understood or appreciated as ecosystems, and consequently have a legacy of poor coastal management. In many instances this has
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Pavani, Lilian. "Anfipodes gamarideos associados a bancos de Sargassum (Phaeophyceae, Fucales) em ambientes sujeitos a contaminação por hidrocarbonetos de petroleo." [s.n.], 2009. http://repositorio.unicamp.br/jspui/handle/REPOSIP/316363.

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Orientador: Fosca Pedini Pereira Leite<br>Dissertação (mestrado) - Universidade Estadual de Campinas, Instituto de Biologia<br>Made available in DSpace on 2018-08-14T00:36:25Z (GMT). No. of bitstreams: 1 Pavani_Lilian_M.pdf: 1390022 bytes, checksum: 43df8a085a06d86b5eadaf092c0fbf14 (MD5) Previous issue date: 2009<br>Resumo: Na região do Canal de São Sebastião, onde opera o maior terminal petrolífero do Brasil, há extensos bancos de algas pardas do gênero Sargassum e anfípodes associados, mas também existem hidrocarbonetos alifáticos e aromáticos de petróleo na água e no sedimento. Sabese que
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Evans, Adrian G., and Ronel Nel. "The ecology of hard substrate communities around Sardinia Bay in the warm-temperate Agulhas Bioregion." Thesis, Nelson Mandela Metropolitan University, 2016. http://hdl.handle.net/10948/6782.

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Hard substrates in the marine environment are an important ecosystem of great scientific and economic value. Hard substrates provide suitable habitat for a diverse assemblage of benthic organisms. This thesis investigated the ecology of benthic hard substrate communities along a section of wave-exposed coastline, including the Sardinia Bay Marine Protected Area (MPA), in the warm-temperate Agulhas bioregion of South Africa. The effect of physical variables on benthic communities, including both the intertidal and shallow subtidal, was quantitatively assessed across (Chapter 3) and along (Chapt
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"The ecology and biology of marine cladocerans in Tolo Harbour, Hong Kong." 2001. http://library.cuhk.edu.hk/record=b6073310.

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Ji Changhai.<br>"February 2001."<br>Thesis (Ph.D.)--Chinese University of Hong Kong, 2001.<br>Includes bibliographical references (p. 156-183).<br>Electronic reproduction. Hong Kong : Chinese University of Hong Kong, [2012] System requirements: Adobe Acrobat Reader. Available via World Wide Web.<br>Mode of access: World Wide Web.<br>Abstracts in English and Chinese.<br>Abstracts in English and Chinese.
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Koganemaru, Reina. "Reproduction, growth, and mortality of an intertidal acorn barnacle Chthamalus fissus in La Jolla, California, U.S. A. /." 2006. http://www.consuls.org/record=b2802457.

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Thesis (M.A.) -- Central Connecticut State University, 2006.<br>Thesis advisor: Jeremiah N. Jarrett. "... in partial fulfillment of the requirements for the degree of Master of Arts in Ecology and Environmental Science." Includes bibliographical references (leaves 33-39). Also available via the World Wide Web.
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Książki na temat "Seashore biology"

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Steve, Parker. Seashore. London: Dorling Kindersley, 1989.

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Seashore. London: Pan Books, 1986.

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Steve, Parker. Seashore. London: B.B.C., 1990.

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Burnie, David. Seashore. New York, N.Y: DK Pub., 1997.

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Burnie, David. Seashore. New York, N.Y: DK Pub., 1997.

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Pope, Joyce. The seashore. London: F. Watts, 1985.

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Amos, Stephen H. Familiar seashore creatures. New York: Knopf, 1990.

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Society, National Audubon, ed. Familiar seashore creatures. New York: Knopf, 1990.

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J, Jennings Terry. Sea and seashore. Chicago: Childrens Press, 1989.

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Wilkes, Angela. The seashore. New York: Kingfisher, 2001.

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Części książek na temat "Seashore biology"

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Fernández, Miriam, Antonio Brante, and Simone Baldanzi. "Costs and Benefits of Brooding among Decapod Crustaceans: The Challenges of Incubating in Aquatic Systems." In Reproductive Biology, 86–114. Oxford University Press, 2020. http://dx.doi.org/10.1093/oso/9780190688554.003.0004.

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This chapter discusses general patterns of brooding in decapod crustaceans from aquatic to terrestrial environments, addressing behavioral adaptations as well as costs and benefits. Brooding embryos is a common feature among decapods. However, brooding exhibits a wide range of modes that are highly dependent on the environment. Brooding is less common in marine systems, whereas there is a general pattern of extended brooding with terrestrialization. Exceptions are crabs that have invaded land directly via the seashore, i.e. land crabs that have indirect development like their marine ancestors. During terrestrialization, adaption to environmental stressors like desiccation, UV radiation, temperature variability, mechanical support, and osmolality seemed to generally favor decreasing larval development and increasing duration of brood care. Thus, crustaceans developed more complex brooding mechanisms as adaptive responses to the colonization of land (e.g., osmoregulation of the maternal fluids, marsupial fluid, sealed and specialized marsupium, provision of nutritious material, grooming and cleaning, ventilation of the embryo masses). However, clear brooding behaviors are also observed among several marine species (e.g. grooming and cleaning, oxygen provision). The major efforts to characterize general brooding patterns among decapod crustaceans and describe brooding behaviors were not accompanied by comprehensive studies to understand the costs and the benefits of brooding. Several studies have addressed the positive influence of the mother on embryo development, but the efforts to quantify the impact on embryo survival are still limited. This chapter identifies problems that need further consideration to reach a deeper understanding of the evolution of brooding in decapod crustaceans.
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"1. Why Have Biologists Studied at the Seashore? The Woods Hole Marine Biological Laboratory." In Why Study Biology by the Sea? University of Chicago Press, 2020. http://dx.doi.org/10.7208/chicago/9780226673097.003.0001.

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Maun, M. Anwar. "Animal–plant interactions." In The Biology of Coastal Sand Dunes. Oxford University Press, 2009. http://dx.doi.org/10.1093/oso/9780198570356.003.0015.

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Population dynamics of plant species of coastal sand dunes is influenced directly, both above and below the soil surface, by a wide variety of organisms. Plants serve as sources of carbon and pathogens including viruses, insects, bacteria, fungi, birds, and mammals of various kinds. Some enhance plant performance while others have deleterious effects. Positive interactions include pollination of flowers by useful insects in return for nectar and pollen, nutrient acquisition from soil by mycorrhizal fungi in exchange for carbon and acquiring nitrogen (N) from N-fixing bacteria. In the history of co-evolution between plants and organisms over one hundred million years plants have developed many mechanisms to defend themselves from pathogens. Morphology may be altered by producing epicuticular waxes, developing trichomes over leaves, producing tough leaves with deposition of celluloses, lignin, suberin and callose, developing thorns on stems and branches or producing secondary plant metabolites that retard development, intoxicate or kill herbivorous insects. Herbivory may induce a plant to produce chemicals that signal to advertise the presence of insects feeding on them and attract parasites to reduce their numbers. Phenological escape is also employed, such as delay of leaf expansion during periods of insect abundance. Some indirect mechanisms of plant defence involve the use of insects such as ants for protection from other phytophagous insects. However, the predators have also evolved the ability to break down the defence mechanisms of the plant. For example, they may use phytochemicals for their own defence or as olfactory clues for feeding. In this chapter a brief account of organisms of the coastal dune communities, including species of the intertidal zone, scavengers of the sea coast, reptiles, birds, insects, mammals and their possible interactions with terrestrial vegetation is presented. For biological organisms of the seashore the intertidal zone is the most important for food and shelter. The sand-dwelling species of the seashore must be able to contend with four limiting factors: (i) rush of water from the approaching or receding high tide and pounding breakers, (ii) low salinity of the top surface of sand (iii) desiccation of surface by high winds and sunshine and (iv) extreme changes in temperature of topsoil.
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Rouse, Greg W., Fredrik Pleijel, and Tilic Ekin. "NEREIDIDAE BLAINVILLE, 1818." In Annelida, 70–73. Oxford University Press, 2022. http://dx.doi.org/10.1093/oso/9780199692309.003.0016.

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Nereididae (littoral ones often referred to as ‘ragworms’) are probably the most familiar of annelids, both from textbooks in zoology and marine biology and from their occurrence on seashores around the world. They are widely employed in teaching, in laboratory experiments, and as bait for fishing.
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Maun, M. Anwar. "Plant communities." In The Biology of Coastal Sand Dunes. Oxford University Press, 2009. http://dx.doi.org/10.1093/oso/9780198570356.003.0016.

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Plant communities of the dune complex are a result of interaction between tolerance of plant species and sandy substrate, high wind velocities, salt spray, sand accretion and environmental heterogeneity. Propagules of many plant species are dispersed by water currents and deposited on the driftline. Most of these species find ideal conditions for germination but seedling establishment, growth and reproduction is denied to all but a few species with ecological amplitude sufficient to withstand the physical stresses associated with sand accretion, erosion and sandblasting in the highly disturbed environment. The distinct differences between habitats from the water´s edge to the inland grass-forest ecotone leads eventually to the establishment of ecologically distinct communities consisting of both plants and animals. The distinction is caused by sharp differences in the physical environment that may create sharp zones with abrupt or gradual blending of the two community types. In some locations these zones are relatively stable for long periods before any visible change occurs in the community depending on the recession of the shoreline, availability of new bare areas and the advance of communities towards the sea coast. The occurrence of plant communities in zones has been documented along sea coasts worldwide. This chapter examines the plant communities of the sand dune complex along seashores of the world. The following information has been assembled from Doing (1985), Dry coastal ecosystems Vol. 2 A, B, C, edited by Eddy van der Maarel (1993), Doody (1991) and Thannheiser (1984). It presents data on plant communities and ecology of each zone from various parts of the world. The species complement in the ´foredune complex´ in tropical, temperate and other regions around the world may be different, but their response to the prevailing environmental stresses of foredunes is convergent. In different world regions the boundaries between vegetation zones of the sand dune complex may not be defined sharply because of climatic variability, geographic location, physiography of the dune system and other factors peculiar to each location. Usually three to six different plant assemblages have been identified on the dune complex along sea coasts and lakeshores. A brief description of vegetation and ecological traits of species in each zone are presented below.
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