Abandoned land and mansions are always a matter of curiosity to the human beings. They are treated as haunted places in many societies. In the present research, three decrepit abandoned mansions from the southern Bangladesh were investigated to measure their floral diversity, physico-chemical properties of soil and the soil-plant interrelationship which is responsible for the diversification of wild flora within the regions. From Shannon and Simpson diversity indexes, it can be deducted that the floral diversity within the abandoned mansions ha s a positive relationship with their territory size. The high values of Marg alef’s and Menhinick’s species richness indexes confirmed that these areas are a rich source of a large number of plant species. A great variation in soil physico-chemical properties has been observed during the analysis. Soil organic matter, nitrogen, phosphorus, potassium & moisture contents were varied significantly from one quadrat to another in every site. Biplot analysis showed that the distribution of plant species in abandoned mansions is primarily determined by the organic matter, pH, moisture and potassium contents of soil. As t hese factors were present in versatile distribution within the studied regions, a great number of plants can grow in the same area simultaneously. So these areas should be protected from human intervention to proce ss natural selection and in situ conservation of plant species.
Grove, A.O. and Rackham, O. (2000) The Nature of Mediterranean Europe: An Ecological History. Yale University Press, New Haven.
Roberts, N. (2014) The Holocene: An Environmental History. 3rd Edition, Wiley-Blackwell, Hoboken, 376.
MacDonald, D., et al. (2000) Agricultural Abandonment in Mountain Areas of Europe: Environmental Consequences and Policy Response. Journal of Environmental Management, 59, 47-69. https://doi.org/10.1006/jema.1999.0335
Serra, P., Pons, X. and Sauri, D. (2008) Land-Cover and Land-Use Change in a Mediterranean Landscape: A Spatial Analysis of Driving Forces Integrating Biophysical and Human Factors. Applied Geography, 28, 189-209. https://doi.org/10.1016/j.apgeog.2008.02.001
García-Ruiz, J.M., et al. (2008) Flood Generation and Sediment Transport in Experimental Catchments along a Plant Cover Gradient in the Central Pyrenees. Journal of Hydrology, 356, 245-260. https://doi.org/10.1016/j.jhydrol.2008.04.013
Rounsevell, M.D.A., et al. (2006) A Coherent Set of Future Land Use Change Scenarios for Europe. Agriculture, Ecosystem and Environment, 114, 57-68. https://doi.org/10.1016/j.agee.2005.11.027
Nowicki, P.L., et al. (2007) Scenar 2020: Scenario Study on Agriculture and the Rural World.
Pointereau, P., et al. (2008) Analysis of Farmland Abandonment and the Extent and Location of Agricultural Areas That Are Actually Abandoned or Are in Risk to Be Abandoned. JRC Scientific and Technical Reports.
Cramer, V.A., Hobbs, R.J. and Standish, R.J. (2008) What’s New about Old Fields? Land Abandonment and Ecosystem Assembly. Trends in Ecology and Evolution, 23, 104-112. https://doi.org/10.1016/j.tree.2007.10.005
Queiroz, C., Beilin, R., Folke, C. and Lindborg, R. (2014) Farm Land Abandonment: Threat or Opportunity for Biodiversity Conservation? A Global Review. Frontiers in Ecology and the Environment, 12, 288-296. https://doi.org/10.1890/120348
Cerdà, A., et al. (2018) Long-Term Impact of Rainfed Agricultural Land Abandonment on Soil Erosion in the Western Mediterranean Basin. Progress in Physical Geography, 42, 202-219. https://doi.org/10.1177/0309133318758521
Csecserits, A., et al. (2011) Regeneration of Sandy Old-Fields in the Forest Steppe Region of Hungary. Plant Biosystematics, 145, 715-729. https://doi.org/10.1080/11263504.2011.601340
Rahman, M.H., Khan, M., Roy, B. and Fardusi, M.J. (2011) Assesment of Natural Regeneration Status Anddiversity of Tree Species in the Biodiversity Conservation Areas of Northeastern Bangladesh. Journal of Forestry Research, 22, 551-559. https://doi.org/10.1007/s11676-011-0198-0
Giavelli, G., Rossi, O. and Sartore, F. (1986) Comparative Evaluation of Four Species Diversity Indices Related to 10 Specific Ecological Situations. FSC, 6, 429-438.
M Nath, T.K., Hossain, M.K. and Alam, M.K. (2000) Assessment of Tree Species Diversity of Sitapahar Forest Reserve, Chittagong Hill Tracts (South) Forest Division, Bangladesh. Indian Forestry, 126, 16-21.
Benning, T.L. and Seastedt, T.R. (1995) Landscape-Level Interactions between Topoedaphic Features and Nitrogen Limitation in Tallgrass Prairie. Landscape Ecology, 10, 337-348. https://doi.org/10.1007/BF00130211
Juan, J.G., Carlos, R.L. and Donaldo, E.B. (2011) Vegetation Composition and Its Relationship with the Environment in Mallines of North Patagonia, Argentina. Wetland Ecology Management, 19, 121-130. https://doi.org/10.1007/s11273-010-9205-z
Mellado, A. and Zamora, R. (2015) Spatial Heterogeneity of a Parasitic Plant Drives the Seed-Dispersal Pattern of a Zoochorous Plant Community in a Generalist Dispersal System. Functional Ecology, 30, 459-467. https://doi.org/10.1111/1365-2435.12524
Liu, Q.S., Liu, G.H., Huang, C., Yao, Z.J. and Huang, H.Q. (2016) Spatial Distribution of Vegetation and Soil Properties on the Ulan Bator-Fengzhen Transect on the Mongolian Plateau. Resources Science, 38, 982-993.
Lucie, H., Jana, K. and Zuzana, M. (2016) Assessment of Habitat Suitability Is Affected by Plant-Soil Feedback: Comparison of Field and Garden Experiment. PLoS ONE, 11, e0157800. https://doi.org/10.1371/journal.pone.0157800
Egler, F.E. (1954) Vegetation Science Concepts I. Initial Floristic Composition. A Factor in Old-Field Vegetation Development. Vegetation, 4, 412-417. https://doi.org/10.1007/BF00275587
De Deyn, G.B. and van der Putten, W.H. (2005) Linking Aboveground and Belowground Diversity. Trends in Ecology and Evolution, 20, 625-633. https://doi.org/10.1016/j.tree.2005.08.009
Gairola, S., Sharma, C.M., Suyal, S. and Ghildiyal, S.K. (2011) Composition and Diversity of Five Major Forest Types in Moist Temperate Climate of the Western Himalayas. Forestry Studies in China, 13, 139-153. https://doi.org/10.1007/s11632-011-0207-6
Khoshoo, T.N. (1992) Plant Diversity in the Himalaya: Conservation and Utilization. Govind Ballabh Pant Institute of Himalayan Environment and Development, Almora.
Odum, E.P. (1971) Fundamentals of Ecology. 3rd Edition, Saunders, Philadelphia.
Mifflin, H. (1992) American Heritage Dictionary of English Language. 3rd Edition.
Braun-Blanquet, J. (1932) Plant Sociology. McGraw-Hill, London.
Katsuno, T. (1977) Phytosociological Studies on the Roadside Vegetation, Part 1. Bulletin of the College of Agriculture and Veterinary Medicine Nihon University, 34, 311-343.
Hobbs, R.J. and Cramer, V.A. (2007) Why Old Fields? Socioeconomic and Ecological Causes and Consequences of Land Abandonment. In: Cramer, V.A. and Hobbs, R.J., Eds., Old Fields, Dynamics and Restoration of Abandoned Farmland, Society for Ecological Restoration International, Island Press, Washington DC, 334.
MEA: Millennium Ecosystem Assessment (2005) Ecosystems and Human Well-Being. Island Press, Washington DC.
Cayuela, L., Rey-Benayas, J.M. and Echeverría, C. (2006) Clearance and Fragmentation of Tropical Montane Forests in the Highlands of Chiapas, México (1975-2000). Forest Ecology Management, 226, 208-218. https://doi.org/10.1016/j.foreco.2006.01.047
Schroter, D., et al. (2005) Ecosystem Service Supply and Vulnerability to Global Change in Europe. Science, 310, 1333-1337. https://doi.org/10.1126/science.1115233
Sickel, H., Ihse, M., Norderhang, A. and Sickel, M.A.K. (2003) How to Monitor Semi-Natural Key Habitats in Relation to Grazing Preferences of Cattle in Mountain Summer Farming Areas. An Aerial Photo and GPS Method Study. Landscape Urban Plan, 67, 67-77. https://doi.org/10.1016/S0169-2046(03)00029-X
Suárez-Seoane, S., Osborne, P.E. and Baudry, J. (2002) Responses of Birds of Different Biogeographic Origins and Habitat Requirements to Agricultural Land Abandonment in Northern Spain. Biological Conservation, 105, 333-344. https://doi.org/10.1016/S0006-3207(01)00213-0
Suárez-Seoane, S., Osborne, P.E. and Baudry, J. (2005) Wilderness: What It Means When It Becomes a Reality—A Case Study from the Southwestern Alps. Landscape Urban Plan, 70, 85-95. https://doi.org/10.1016/j.landurbplan.2003.10.006
Zaravali, M.P., Yakoulaki, M.D. and Papansatasis, V.P. (2007) Effects of Shrub Encroachment on Herbage Production and Nutritive Value in Semi-Arid Mediterranean Grasslands. Grass and Forage Science, 62, 355-363. https://doi.org/10.1111/j.1365-2494.2007.00590.x
Cosandey, C., et al. (2005) The Hydrological Impact of the Mediterranean Forest: A Review of French Research. Journal of Hydrology, 301, 235-249. https://doi.org/10.1016/j.jhydrol.2004.06.040
Nadal-Romero, E., Lasanta, T. and García-Ruiz, J.M. (2013) Runoff and Sediment Yield from Land under Various Uses in a Mediterranean Mountain Area. Long-Term Results from an Experimental Station. Earth Surface Processes and Landforms, 38, 346-355. https://doi.org/10.1002/esp.3281
López-Moreno, J.I., García-Ruiz, J.M. and Beniston, M. (2008) Environmental Change and Water Management in the Pyrenees. Facts and Future Perspectives for Mediterranean Mountains. Global Planet Change, 66, 300-312. https://doi.org/10.1016/j.gloplacha.2007.10.004
López-Moreno, J.I. (2011) Impact of Climate Evolution and Land Use Changes on Water Yield in the Ebro Basin. Hydrology and Earth System Sciences, 15, 311-322. https://doi.org/10.5194/hess-15-311-2011
Hyland, B.P.M. (1972) A Technique for Collecting Botanical Specimens in Rain Forest. Flora Malesiana Bulletin, 26, 2038-2040.
Alexiades, M.N. (1996) Selected Guidelines for Ethno Botanical Research: A Field Manual. The New York Botanical Garden, New York, 1-306.
Hooker, J.D. (1872-1897) Flora of British India, Vol. 1-7. First Indian Reprint (1973). Bishen Singh Mahendra Pal Singh, Dehra Dun.
Prain, D. (1903) Bengal Plants, Vol. 1-2. First Indian Reprint (1963), Bishen Singh, Mahendra Pal Singh, Dehra Dun.
Siddiqui, K.U., et al. (2007) Encyclopedia of Flora and Fauna of Bangladesh, Vol. 11. Angiosperms: Monocotyledons (Agavaceae-Najadaceae). Asiatic Society of Bangladesh, Dhaka, 1-399.
Ahmed, Z.U., et al. (2008) Encyclopedia of Flora and Fauna of Bangladesh, Vol. 6. Angiosperms: Dicotyledons (Acanthaceae-Asteraceae). Asiatic Society of Bangladesh, Dhaka, 1-408.
Ahmed, Z.U., et al. (2008) Encyclopedia of Flora and Fauna of Bangladesh, Vol. 12. Angiosperms: Monocotyledons (Orchidaceae-Zingiberaceae). Asiatic Society of Bangladesh, Dhaka, 1-552.
Ahmed, Z.U., et al. (2009) Encyclopedia of Flora and Fauna of Bangladesh, Vol. 7. Angiosperms: Dicotyledons (Balsaminaceae-Euphorbiaceae). Asiatic Society of Bangladesh, Dhaka, 1-546.
Ahmed, Z.U., et al. (2009) Encyclopedia of Flora and Fauna of Bangladesh, Vol. 8. Angiosperms: Dicotyledons (Fabaceae-Lythraceae). Asiatic Society of Bangladesh, Dhaka, 1-478.
Ahmed, Z.U., et al. (2009) Encyclopedia of Flora and Fauna of Bangladesh, Vol. 9. Angiosperms: Dicotyledons (Magnoliaceae-Punicaceae). Asiatic Society of Bangladesh, Dhaka, 1-488.
Ahmed, Z.U., et al. (2009) Encyclopedia of Flora and Fauna of Bangladesh, Vol. 10. Angiosperms: Dicotyledons (Ranunculaceae-Zygophyllaceae). Asiatic Society of Bangladesh, Dhaka, 1-580.
Hammer, O., Harper, D.A.T. and Ryan, P.D. (2001) PAST: Paleontological Statistics Software Package for Education and Data Analysis. Palaeontologia Electronica, 4, 9.
Moore, P.D. and Chapman, S.B. (1986) Methods in Plant Ecology. Blackwell Scientific Publication, Hoboken, 550.
Shukla, R.S. and Chandel, P.S. (1980) Plant Ecology. S. Chand and Company Ltd., New Delhi, 197.
Dallmeier, F., Kabel, M. and Rice, R. (1992) Methods for Long Term Biodiversity Inventory Plots in Protected Tropical Forests. In: Dallmeier, F., Ed., Long-Term Monitoring of Biological Diversity in Tropical Forest Areas: Methods for Establishment and Inventory of Permanent Plots, UNESCO, Paris, 14-16.
Thakur, N.S., Gupta, N.K. and Gupta, B. (2008) Volume and Biomass Prediction Mio Dels for 4 C4 CL4 C4 Tech U Willid. In Agro Forestry Systemis of North West Himalaya. Journal of Non-Timber Froest Products, 15, 1-9.
Petchey, O.L. and Gaston, K.J. (2006) Functional Diversity: Back to Basics and Looking Forward. Ecology Letters, 9, 741-758. https://doi.org/10.1111/j.1461-0248.2006.00924.x
Colin, P. (2018) Biogeographic Region. In: Encyclopedia Britannica.
Margalef, D.R. (1958) Information Theory in Ecology. General Systems, 3, 36-71.
Pielou, E.C. (1984) The Interpretation of Ecological Data: A Primer on Classification and Ordination. John Wiley and Sons, Hoboken.
Shannon, C.E. and Weiner, W. (1963) The Mathematical Theory of Communication. Urban University, Illinois Press, Champaign, 125.
Simpson, E.H. (1949) Measurement of Diversity. Nature, 163, 688. https://doi.org/10.1038/163688a0
Sørensen, T. (1957) A Method of Establishing Groups of Equal Amplitude in Plant Sociology Based on Similarity of Species and Its Application to Analyses of the Vegetation on Danish Commons. Biologiske Skrifter, 5, 1-34.
Kjeldahl, J.Z. (1883) A New Method for the Determination of Nitrogen in Organic Matter. Zeitschrift für Analytische Chemie, 22, 366-382. https://doi.org/10.1007/BF01338151
Walkley, A. and Black, I.A. (1934) An Examination of the Degtjareff Method for Determining Soil Organic Matter and a Proposed Modification of the Chromic Acid Titration Method. Soil Science, 37, 29-38. https://doi.org/10.1097/00010694-193401000-00003
Olsen, S.R. and Sommers, L.E. (1982) Phosphorus. In: Page, A.L., et al., Eds., Methods of Soil Analysis: Part 2. Chemical and Microbiological Properties, Agronomy Monographs 9, 2nd Edition, ASA and SSSA, Madison, 403-430. https://doi.org/10.2134/agronmonogr9.2.2ed.c24
Rural Development (2005) Service Technical Advice Note, Defra, 31.
Gatson, K.J. (2000) Global Patterns in Biodiversity. Nature, 405, 220-227. https://doi.org/10.1038/35012228
Parthasarathy, N. and Karthikeyan, R. (1997) Biodiversity and Population Density of Woody Species in a Tropical Evergreen Forest in Courtallum Reserve Forest, Western Ghats, India. Tropical Ecology, 38, 297-306.
Bhandari, B.S., Nautiyal, D.C. and Gaur, R.D. (1999) Structural Attributes and Productivity Potential of an Alpine Pasture of Garhwal Himalaya. Journal of Indian Botanical Society, 78, 321-329.
Kharkwal, G. and Rawat, Y.S. (2010) Structure and Composition of Vegetation in Subtropical Forest of Kumaun Himalaya. African Journal of Plant Science, 4, 116-121.
Zhang, Q., Onstein, R.E., Little, S.A. and Sauquet, H. (2018) Estimating Divergence Times and Ancestral Breeding Systems in Ficus and Moraceae. Annals of Botany, 123, 191-204. https://doi.org/10.1093/aob/mcy159
Zerega, N.J.C., Nur Supardi, M.N. and Motley, T.J. (2010) Phylogeny and Recircumscription of Artocarpeae (Moraceae) with a Focus on Artocarpus. Systematic Botany, 35, 766-782. https://doi.org/10.1600/036364410X539853
Datwyler, S.L. and Weiblen, G.D. (2004) On the Origin of the Fig: Phylogenetic Relationships of Moraceae from ndhF Sequences. American Journal of Botany, 91, 767-777. https://doi.org/10.3732/ajb.91.5.767
Zerega, N.J.C., Clement, W.L., Datwyler, S.L. and Weiblen, G.D. (2005) Biogeography and Divergence Times in the Mulberry Family (Moraceae). Molecular Phylogenetics and Evolution, 37, 402-416. https://doi.org/10.1016/j.ympev.2005.07.004
Clement, W.L. and Weiblen, G.D. (2009) Morphological Evolution in the Mulberry Family (Moraceae). Systematic Botany, 34, 530-552. https://doi.org/10.1600/036364409789271155
Mehrotra, P. (1988) Adaptive Significance of Leaf in Relation to Other Parts in Oak Forest Herbs of Kumaun Himalaya. Ph.D. Thesis, Kumaun University, Nainital.
Stockey, R.A., Rothwell, G.W. and Johnson, K.R. (2007) Cobbania corrugata gen. et comb. nov. (Araceae): A Floating Aquatic Monocot from the Upper Cretaceous of Western North America. American Journal of Botany, 94, 609-624. https://doi.org/10.3732/ajb.94.4.609
Friis, E.M., Pedersen, K.R. and Crane, P.R. (2004) Araceae from the Early Cretaceous of Portugal: Evidence on the Emergence of Monocotyledons. PNAS USA, 101, 16565-16570. https://doi.org/10.1073/pnas.0407174101
Friis, E.M., Pedersen, K.R. and Crane, P.R. (2006) Cretaceous Angiosperm Flowers: Innovation and Evolution in Plant Reproduction. Palaeogeography, Palaeoclimatology and Palaeoecology, 232, 251-293. https://doi.org/10.1016/j.palaeo.2005.07.006
Friis, E.M., Pedersen, K.R. and Crane, P.R. (2010) Diversity in Obscurity: Fossil Flowers and the Early History of Angiosperms. Philosophical Transactions of the Royal Society B: Biological Sciences, 365, 369-373. https://doi.org/10.1098/rstb.2009.0227
Bogner, J., Hoffman, G.L. and Aulenback, K.R. (2002) A Fossilized Aroid Infructescence, Albertarumpueri gen. nov. et sp. nov. of Late Cretaceous (Late Campanian) Age from the Horseshoe Canyon Formation of Southern Alberta, Canada. Canadian Journal of Botany, 83, 591-598. https://doi.org/10.1139/b05-033
Bogner, J., Johnson, K.R., Kvacek, Z. and Upchurch, G.R. (2007) New Fossil Leaves of Araceae from the Late Cretaceous and Paleogene of Western North America. Zitteliana, 47, 133-147.
Wilde, V., Kvaček, Z. and Bogner, J. (2005) Fossil Leaves of the Araceae from the European Eocene and Notes on Other Aroid Fossils. International Journal of Plant Sciences, 166, 157-183. https://doi.org/10.1086/425673
Herrera, F.A., Jaramillo, C.A., Dilcher, D.L., Wing, S.L. and Gómez, N.C. (2008) Fossil Araceae from a Paleocene Neotropical Rainforest in Colombia. American Journal of Botany, 95, 1569-1583. https://doi.org/10.3732/ajb.0800172
Cabrera, L.I., Salazar, G.A., Chase, M.W., Mayo, S.J., Bogner, J. and Davila, P. (2008) Phylogenetic Relationships of Aroids and Duckweeds (Araceae) Inferred from Coding and Noncoding Plastid DNA. American Journal of Botany, 95, 1153-1165. https://doi.org/10.3732/ajb.0800073
Cusimano, N. (2011) Relationships within the Araceae: Comparisons of Morphological Patterns with Molecular Phylogenies. American Journal of Botany, 98, 654-668. https://doi.org/10.3732/ajb.1000158
Joshi, N.K. and Tiwar, S.C. (1990) Phytosociological Analysis of Woody Vegetation along an Altitudinal Gradient in Garhwal. Indian Journal of Forestry, 13, 322-328.
Bhandari, B.S. (1995) Vegetation Structure under Different Management Regimes in a Grazing Land at Srinagar Garhwal. Journal of Hill Research, 8, 39-46.
Pande, P.K. (1996) Plant Species Diversity and Vegetation Analysis in Moist Temperate Himalayan Forests. Abstracts of First Indian Ecological Congress, New Delhi, 51.
Kershaw, K.A. (1973) Quantitative and Dynamic Plant-Ecology. 3rd Edition, ELBS and Edward Arnold Ltd., London.
Singh, J.S. and Yadava, P.S. (1974) Seasonal Variation in Composition, Plant Biomass and Net Primary Productivity of a Tropical Grassland at Kurukshetra, India. Ecology Monograph, 44, 351-375. https://doi.org/10.2307/2937034
Kunhikannan, C., Verma, R.K., Verma, R.J., Khatri, P.K. and Totey, N.G. (1998) Ground Flora, Soil Micro-Flora and Fauna Diversity under Plantation Ecosystem on Bhata Land of Bilaspur, Madhya Radesh. Environment and Ecology, 16, 539-548.
Belsky, A.J., et al. (1989) The Effects of Trees on Their Physical, Chemical, and Biological Environment in a Semi-Arid Savanna in Kenya. Journal of Applied Ecology, 26, 1005-1024. https://doi.org/10.2307/2403708
Treydte, A.C., Looringh van Beeck, F., Ludwig, F. and Heitkönig, L.M.A. (2008) Improved Beneath-Crown Grass Quality in South African Savannas Varying Locally and Over Seasons. Journal of Vegetation Science, 19, 663-670. https://doi.org/10.3170/2008-8-18435
Hossain, M.A., Hossain, M.K., Salam, M.A. and Rahman, S. (2013) Composition and Diversity of Tree Species in Dudh Pukur-Do Pachori Wildlife Sanctuary of Chittagong (South) Forest Division, Bangladesh. Research Journal of Pharmaceutical, Biological and Chemical Sciences, 4, 1447-1457.
Hossain, M.A., Hossain, M.K., Alam, M.S. and Uddin, M.M. (2015) Composition and Diversity of Tree Species in Kamalachari Natural Forest of Chittagong South Forest Division, Bangladesh. Journal of Forestry and Environmental Sciences, 31, 192-201. https://doi.org/10.7747/JFES.2015.31.3.192
Nath, T.K., Jashimuddin, M. and Inoue, M. (2016) Community-Based Forest Management (CBFM) in Bangladesh. Springer, Berlin. https://doi.org/10.1007/978-3-319-42387-6
Nath, T.K., et al. (2016) Phytosociological Characteristics and Diversity of Trees in a Comanaged Protected Area of Bangladesh: Implications for Conservation. Journal of Sustainable Forestry, 35, 562-577. https://doi.org/10.1080/10549811.2016.1231615
Rahman, M.M., Mahmud, M.A.A. and Ahmed, F.U. (2017) Restoration of Degraded Forest Ecosystem through Non-Forestry Livelihood Supports: Experience from the Chunati Wildlife Sanctuary in Bangladesh. Forest Science and Technology, 13, 109-115. https://doi.org/10.1080/21580103.2017.1349003
Rahman, M.M., Mahmud, M.A.A., Shahidullah, M., Nath, T.K. and Jashimuddin, M. (2016) The Competitiveness of the Phytosociological Attributes of the Protected Areas in Bangladesh with That in the Other Tropical Countries. Journal of Sustainable Forestry, 35, 431-450. https://doi.org/10.1080/10549811.2016.1202841
Rogge, E., Nevens, F. and Gulinck, H. (2007) Perception of Rural Landscapes in Flanders: Looking beyond Aesthetics. Landscape Urban Plan, 82, 159-174. https://doi.org/10.1016/j.landurbplan.2007.02.006
Nijnik, M. and Mather, A. (2008) Analyzing Public Preferences Concerning Woodland Development in Rural Landscapes in Scotland. Landscape Urban Plan, 86, 267-275. https://doi.org/10.1016/j.landurbplan.2008.03.007
Nassauer (2011) Care and Stewardship: From Home to Planet. Landscape Urban Plan, 100, 321-323. https://doi.org/10.1016/j.landurbplan.2011.02.022
Legendre, P. and Legendre, L. (2012) Developments in Environmental Modeling. In: Numerical Ecology, 3rd Edition, Elsevier, Amsterdam.
Borcard, D., Gillet, F. and Legendre, P. (2011) Numerical Ecology with R Media. Springer, Berlin. https://doi.org/10.1007/978-1-4419-7976-6
Wildi, O. (2013) Data Analysis in Vegetation Ecology. 2nd Edition, Wiley-Black-well, Hoboken. https://doi.org/10.1002/9781118562543
BARC-Bangladesh Agricultural Research Council (2018) Fertilizer Recommendation Guide. Bangladesh Agricultural Research Council (BARC), Farmgate, Dhaka.
SRDI-Soil Resources Development Institute (2010) Saline Soils of Bangladesh. SRMAF Project, Ministry of Agriculture, Dhaka.
Kadowaki, K., Sato, H., Yamamoto, S., Tanabe, A.S., Hidaka, A. and Toju, H. (2014) Detection of the Horizontal Spatial Structure of Soil Fungal Communities in a Natural Forest. Popular Ecology, 56, 301-310. https://doi.org/10.1007/s10144-013-0424-z
Reid, M.A., Reid, M.C. and Thoms, M.C. (2016) Ecological Significance of Hydrological Connectivity for Wetland Plant Communities on a Dryland Floodplain River, MacIntyre River, Australia. Aquatic Sciences, 78, 139-158. https://doi.org/10.1007/s00027-015-0414-7
Yamaji, Y., Honda, H., Hanai, R. and Inoue, J. (2016) Soil and Environmental Factors Affecting the Efficacy of 1 in Wetland Pyroxasulfone for Weed Control. Journal of Pesticide Science, 41, 1-5. https://doi.org/10.1584/jpestics.D15-047
Peres-Neto, P.R., Legendre, P., Dray, S. and Borcard, D. (2006) Variation Partitioning of Species Data Matrices: Estimation and Comparison of Fractions. Ecology, 87, 2614-2625. https://doi.org/10.1890/0012-9658(2006)87[2614:VPOSDM]2.0.CO;2
Dwirek, A., Kauffman, J.B. and Baham, J.E. (2006) Plant Species Distribution in Relation to Water-Table Depth and Soil Redox Potential in Montane Riparian Situ St Meadows. Wetlands, 26, 131-146. https://doi.org/10.1672/0277-5212(2006)26[131:PSDIRT]2.0.CO;2
Jager, N.R.D., Rohweder, J.J., Yao, Y. and Hoy, E. (2015) The Upper Mississippi River Floodscape: Spatial Patterns of Flood Inundation and Associated Plant Community Distributions. Applied Vegetation Sciences, 19, 164-172. https://doi.org/10.1111/avsc.12189
Dong, L., Xu, L.G., Xu, J.X., Xu, J., Wang, X.L. and Zhang, Q. (2014) Effects of Soil Environmental Factors on Vegetation Distribution in Shoaly Wetlands Typical to Poyang Lake. Acta Pedol Sin, 51, 618-626.
Kashian, D.M., Barnes, B.V. and Walker, W.S. (2003) Ecological Species Groups of Landform-Level Ecosystems Dominated by Jack Pine in Northern Lower Michigan, USA. Plant Ecology, 166, 75-91. https://doi.org/10.1023/A:1023265012964
Rola, K., Osyczka, P. and Nobis, M. (2015) How Do Soil Factors Sp Determine Vegetation Structure and Species Richness in Post-Smelting Dumps? Ecological Engineering, 75, 332-342. https://doi.org/10.1016/j.ecoleng.2014.11.026
Bigelow, S.W. and Canham, C.D. (2002) Community Organization of Tree Species along Soil Gradients in a North-Eastern USA Forest. Journal of Ecology, 90, 188-200. https://doi.org/10.1046/j.0022-0477.2001.00655.x
Amorim, P.K. and Batalha, M.A. (2007) Soil-Vegetation Relationships in Hyperseasonal Cerrado, Seasonal Cerrado, and Wet Grassland in Emas National Park (Central Brazil). Acta Oecologia, 32, 319-327. https://doi.org/10.1016/j.actao.2007.06.003
Hammersmark, C.T., Rains, M.C., Wickland, A.C. and Mount, J.F. (2009) Vegetation and Water Table Relationships in a Hydrologically Restored Riparian Meadow. Wetlands, 29, 785-797. https://doi.org/10.1672/08-15.1
Onur, S. and Suha, B. (2016) Crop Yield Prediction under Soil Salinity Using Satellite Derived Vegetation Indices. Field Crops Research, 192, 134-143. https://doi.org/10.1016/j.fcr.2016.04.028
Sarah, P., Zhevelev, H.M. and Atar, O.Z. (2015) Urban Park Soil and Vegetation: Effects of Natural and Anthropogenic Factors. Pedosphere, 25, 392-404. https://doi.org/10.1016/S1002-0160(15)30007-2
Zielke, M., Solheim, B., Spjelkavik, S. and Olsen, R.A. (2015) Nitrogen Fixation in the High Arctic: Role of Vegetation and Environmental Conditions. Arctic, Antarctic and Alpine Research, 37, 372-378. https://doi.org/10.1657/1523-0430(2005)037[0372:NFITHA]2.0.CO;2
Sui, Z., Chang, Y., Li, Y.H., Man, H.Y., Miao, L. and Wei, C.H. (2010) Relationships of Arctium lappa Community Distribution and Species Composition with Eco-Environ Mental Factors. Chinese Journal of Ecology, 29, 215-220.
Boy, J., et al. (2016) Successional Patterns along Soil Development Gradients Formed by Glacier Retreat in the Maritime Antarctic, King George Island. Revista Chilena de Historia Natural, 89, Article No. 6. https://doi.org/10.1186/s40693-016-0056-8