Inland halophilous vegetation as indicator of soil salinity

Basic and Applied Ecology - Tập 4 - Trang 525-536 - 2003
Agnieszka Piernik1
1Laboratory of Ecological Modelling, Institute of Ecology and Environment Protection, Nicholas Copernicus University, Toruń, Poland

Tài liệu tham khảo

Abramski, 1977, Ochrona środowiska przed skażeniem ściekami przemysłu sodowego w zbiornikach, Gospodarka wodna, 4, 107 Álvarez Rogel J, Alcaraz Ariza F, Ortiz Silla R (1995) Some soil features influending plant zonation in a non coastal salt-marsh in SE Spain. Matherials of International Symposium on Salt-Affected Lagoon Ecosystems, Valencia, Spain, 261-263. Álvarez Rogel, 2000, Soil alinity and moisture gradients and plant zonation in Mediterranean salt marshes of Southeast Spain, Wetlands, 20, 357, 10.1672/0277-5212(2000)020[0357:SSAMGA]2.0.CO;2 Álvarez, 2001, Edaphic characterization and soil ionic composition influencing plant zonation in a semiarid Mediterranean salt marsh, Geoderma, 99, 81, 10.1016/S0016-7061(00)00067-7 Andersen, 1990, Long-term changes of salt marsh communities by cattle grazing, Vegetatio, 89, 137, 10.1007/BF00032166 Bakker, 1989 Bakker, 1992, Germination and early establishment of lower salt-marsh species in grazed and mown salt marsh, Journal of Vegetation Science, 3, 247, 10.2307/3235686 Bank Ch, Spitzenberg D (2001) Die Salzstelle Hecklingen. Darstellung der derzeitig bedeutendsten Binnenlandsalzstellen in Deutschland. Herausgegeben von der Fachgruppe Faunistik und Ökologie, Stassfurt. Bertness, 1991, Interspecific interactions among high marsh perennials in a New England salt marsh, Ecology, 72, 125, 10.2307/1938908 Bertness, 1987, Determinations of pattern in a New England salt marsh plant community, Ecological Monographs, 57, 129, 10.2307/1942621 Beyschlag, 1996, Experimental studies on the competitive balance between two central European roadside grasses with different growth forms. 2. Controlled experiments on the influence of soil depth, salinity and allelopathy, Botanica Acta, 109, 449, 10.1111/j.1438-8677.1996.tb00597.x Brandes, 1999 Braun-Blanquet, 1964 Burhill, 1991, Vegetation-environment relationships of an inland boreal salt pan, Canadian Journal of Botany, 69, 722, 10.1139/b91-098 Cantero, 1998, Environmental relationships of vegetation patterns in salt marshes of central Argentina, Folia Geobotanica, 33, 133, 10.1007/BF02913341 Cantero, 1998, Habitat structure and vegetation relationships in central Argentina salt marsh landscapes, Plant Ecology, 137, 79, 10.1023/A:1008071813231 Cieśla, 1981, Stan zasolenia gleb w okolicach Inowrocławskich Zakładöw Sodowych w Mątwach, Roczniki gleboznawcze, 32, 103 Cieśla, 1984, Właściwości zasolonych gleb w sąsiedztwie Janikowskich Zakładöw Sodowych na Kujawach, Roczniki gleboznawcze, 35, 39 Czerwińnski, 1996, Zasolenie wöd i gleb na terenie Kujaw, Roczniki gleboznawcze, 47, 131 Czerwińnski, 1984, Wpływ odpadów z Janikowskich Zakładów Sodowych na tereny rolnicze, Roczniki gleboznawcze, 35, 87 Dzwonko, 1998, Współlczesne metody numerycznego porządkowania i ich zastosowanie w badaniach nad roóslinnościąa., 132 Escoufier, 1979, Choosing variables and metrics by optimising the RV-coefficient., 205 Frąckowiak, 1996, Wpłlyw nawodnień zasolonymi wodami górnej Noteci na niektóre właściwości fizykochemiczne organicznych gleb łąkowych, Roczniki gleboznawcze, 47, 75 Fresco, 2001 Gaudet, 1995, Competitive performance and species distribution in shoreline plant communities: a comparative approach, Ecology, 76, 280, 10.2307/1940649 Grave, 1999, Neu aufgetretene Blütenpflanzen an salzhaltigen Rückstandshalden in Niedersachsen., 171 Hill, 1979 Hohendorf, 1952, Klimat Kujaw i przyległej części pradoliny Wisły w świetle potrzeb rolnictwa, Postępy Wiedzy Rolniczej, 1, 3 Huisman, 1993, A hierarchical set of models for species response analysis, Journal of Vegetation Science, 4, 37, 10.2307/3235732 Jackson, 1958 Jensen, 1985, The effect of cattle and sheep grazing on salt-marsh vegetation at Skallingen, Denmark, Vegetatio, 60, 37, 10.1007/BF00053910 Jongman, 1987 Kaca, 1993, Stan zasolenia wód powierzchniowych w zlewni Noteci Górnej, Zeszyty Naukowe AR we Wrocławiu, Inżynieria środowiska, 3, 287 Karasińska, 1998, Halofity jako chwasty pól uprawnych wokół fabryki sody w Mątwach., 303 Kenkel, 1991, Competition and the response of three plant species to salinity gradient, Canadian Journal of Botany, 69, 2497, 10.1139/b91-310 Kiehl, 1996, Impact of different sheep grazing intensities on salt marsh vegetation in northern Germany, Journal of Vegetation Science, 7, 99, 10.2307/3236421 Kiehl, 1997, Nutrient limitation and plant species composition in temperate salt marshes, Oecologia, 111, 325, 10.1007/s004420050242 Kovach, 1986 Levine, 1998, Nutrients, competition and plant zonation in a New England salt marsh, Journal of Ecology, 86, 285, 10.1046/j.1365-2745.1998.00253.x Levine, 1998, Nitrogen effects on an interaction chain in a salt marsh community, Oecologia, 117, 266, 10.1007/s004420050657 Miller, 1996, Mid-Texas coastal marsh change (1939–1991) as influenced by lesser snow goose herbivory, Journal of Coastal Research, 12, 462 Noest, 1989, Optimum transformation of plant species cover abundance value, Vegetatio, 83, 167, 10.1007/BF00031689 Økland, 1990, Vegetation ecology: theory, methods and applications with reference to Fennoscandia. Palmer, 1998, Canonical Correspondence Analysis: some advice and guidelines., 171 Pennings, 1992, Salt marsh plant zonation: the relative importance of competition and physical factors, Ecology, 73, 681, 10.2307/1940774 Pennings, 1996, Impact of a parasitic plant on the structure and dynamics of salt marsh vegetation, Ecology, 77, 1410, 10.2307/2265538 Piernik, 2000 Piernik, 1996, Differentiation of vegetation in a saline grassland in the vicinity of Inowrocłlaw Soda Plants at Mąatwy, Acta Societatis Botanicorum Poloniae, 65, 349, 10.5586/asbp.1996.054 Ryel, 1996, Experimental studies on the competitive balance between two central European roadside grasses with different growth forms. 1. Field experiments on the effects of mowing and maximum leaf temperatures on competitive ability, Botanica Acta, 109, 441, 10.1111/j.1438-8677.1996.tb00596.x Snow, 1984, Plant zonation in an Alaskan salt marsh. II. An Experimental study of the role of edaphic conditions, Journal of Ecology, 72, 669, 10.2307/2260075 Soil Map of the World FAO/UNESCO (1997) ISRIC, Wageningen. Soil Survey Staff, 1994, Keys to Soil Taxonomy Systematyka Gleb Polski, 1989, Roczniki Gleboznawcze, 40, 5 Szabolcs, 1990, Impact of climate change on soil attributes. Influence on salinization and alkalinization., 61 Tóth, 1994, Plant cover as predictor variable of salinity and alkality in abandoned saline soils of the Huang-Huai-Hai Plain, China, Agrokémia és Talajtan, 43, 175 Tóth, 1995, Precision of predicting soil salinity based on vegetation categories of abandoned lands, Soil Science, 160, 218, 10.1097/00010694-199509000-00007 Tóth, 1997, Plant composition of a pasture as a predictor of soil salinity, Revista de Biologia Tropical, 45, 1385 ter Braak CJF, Smilauer P 1998. CANOCO Reference Manual and User's Guide to Canoco for Windows: Software for Canonical Community Ordination (version 4). Micro-computer Power (Ithaca, NY, USA). Tutin, 1964 Ungar, 1974, Inland halophytes of the United States. van der Maarel, 1979, Transformation of cover-abundance values in phytosociology and its effect on community similarity, Vegetatio, 39, 97, 10.1007/BF00052021 Vince, 1984, Plant zonation in an Alaskan salt marsh. I. Distribution, abundance and environmental factors, Journal of Ecology, 72, 651, 10.2307/2260074 Westhoff, 1978, The Braun-Blanquet approach., 287 Wilkoń-Michalska, 1963, Halofity Kujaw, Studia Societatis Scientiarum Torunensis D, Botanica, 7, 3 Wilkoń-Michalska, 1970, Zmiany sukcesyjne w rezerwacie halofitów w Ciechocinku w latach 1954–65, Ochrona Przyrody, 35, 25 Wilkoń-Michalska, 1976 Wilkoń-Michalska, 1986, 123