290
Farnsworth, E. J., & Ellison, A. M. (1996). Sun-shade adaptability of the Red Man grove,Rhizophora
mangle (Rhizophoraceae): Changes through ontogeny at several levels of biological organization. American Journal of Botany, 83(9), 1131–1143.
Gupta, S.K. 1987. Some mangrove soils of the Sunderbans ecosystem. UNESCO Regional
Introductory Training Course on Estuarine Research, Calcutta, 1, 105–112.
Hesse, P. R. (1961). The decomposition of organic matter in a mangrove swamp soil. Plant and
Soil, XIV(3), 249–263.
Hora, S. L. (1934). Brackish water animals of Gangetic Delta. Current Science, 2, 426–427.
Jhingran, V. G. (1982). Fish and fisheries of India (p. 666). New Delhi: Hindustan Publication
Corporation.
Kaliaperumal, N. (1994). Seaweed resources of Tamil Nadu Coast. Biology-Education, 11(4),
281–293.
Kangas, P. C., & Lugo, A. E. (1990). The distribution of mangroves and saltmarshes in Florida.
Tropical Ecology, 31, 32–39.
Kathiresan, K., Moorthy, P., & Rajendran, N. (1994). Seedling performance of mangrove
Rhizophora apiculata (Rhizophorales: Rhizophoraceae) in different environs. Indian Journal
of Marine Sciences, 23(3), 168–169.
Kemp, S. (1917). Notes on Fauna of the Matla river in the Gangetic delta. Records of the Indian
Museum, 13, 233–292.
Khan, R. A. (2003). Fish faunal resources of Sundarban estuarine system with special reference
to the Biology of some commercially important species. Records of the Zoological Survey of
India, Occasional Paper,, 209, 1–150.
Koch, M. S., & Snedaker, S. C. (1997). Factors influencing Rhizophora mangle L. seedling development in Everglades carbonate soils. Aquatic Botany, 59(1–2), 87–98.
Lacerda, L. D. (1998). Biogeochemistry of trace metals and diffuse pollution in mangrove ecosystems. International Society for Mangrove Ecosystems, Okinawa, 64 p. [A review on contaminants biogeochemistry, mobility and bioavailability within mangroves and its applicability in
pollution control].
Lana, P. D. C., Guiss, C., & Disaro, S. T. (1991). Seasonal variation of biomass and production
dynamics for aboveground and belowground components of a Spartina alterniflora marsh in
the Euhaline sector of Paranagua Bay (SE Brazil). Estuarine, Coastal and Shelf Science, 32(3),
231–242.
Mandal, A. K., & Nandi, N. C. (1989). Fauna of Sundarban mangrove ecosystem, West Bengal,
India (Fauna of conservation areas). Calcutta: Zoological Survey of India.
Mazda, Y., Sato, Y., Sawamoto, S., Yokochi, H., & Wolanski, E. (1990). Links between physical,
chemical and biological processes in Bashita-minato, a mangrove swamp in Japan. Estuarine,
Coastal and Shelf Science, 31(6), 817–833.
Mitra, A. (2000). The North West Coast of the Bay of Bengal and Deltaic Sundarbans. In Seas at
the millennium: An environmental evaluation (Vol. II, pp. 145–160). Oxford: Pergamon.
Mitra, A., & Zaman, S. (2016). Basics of marine and estuarine ecology (pp. 1–481). New Delhi:
Springer, ISBN 978-81-322-2707-6.
Mitra, A., Gangopadhyay, A., Dube, A., Andre, C. K. S., & Banerjee, K. (2009). Observed changes
in water mass properties in the Indian Sundarbans (Northwestern Bay of Bengal) during 1980–
2007. Current Science, 97(10), 1445–1452.
Mitra, A., Sengupta, K., & Banerjee, K. (2011). Standing biomass and carbon storage of aboveground structures in dominant mangrove trees in the Sundarbans. Forest Ecology and
Management (Elsevier), 261(7), 1325–1335. https://doi.org/10.1016/j.foreco.2011.01.012.
Motomura, S. (1962). The effect of organic matter on the formation of ferrous ion in soil. Soil
Science and Plant Nutrition, 8, 20–29.
Patrick, W. H., Jr., & Mikkelsen, D. S. (1971). Plant nutrient behavior in flooded soil. In R. A.
Olson (Ed.), Fertilizer technology and use (2nd ed., pp. 187–215). Madison: Soil Science
Society of America.
8 Mangroves: A Reservoir of Biodiversity
Farnsworth, E. J., & Ellison, A. M. (1996). Sun-shade adaptability of the Red Man grove,Rhizophora
mangle (Rhizophoraceae): Changes through ontogeny at several levels of biological organization. American Journal of Botany, 83(9), 1131–1143.
Gupta, S.K. 1987. Some mangrove soils of the Sunderbans ecosystem. UNESCO Regional
Introductory Training Course on Estuarine Research, Calcutta, 1, 105–112.
Hesse, P. R. (1961). The decomposition of organic matter in a mangrove swamp soil. Plant and
Soil, XIV(3), 249–263.
Hora, S. L. (1934). Brackish water animals of Gangetic Delta. Current Science, 2, 426–427.
Jhingran, V. G. (1982). Fish and fisheries of India (p. 666). New Delhi: Hindustan Publication
Corporation.
Kaliaperumal, N. (1994). Seaweed resources of Tamil Nadu Coast. Biology-Education, 11(4),
281–293.
Kangas, P. C., & Lugo, A. E. (1990). The distribution of mangroves and saltmarshes in Florida.
Tropical Ecology, 31, 32–39.
Kathiresan, K., Moorthy, P., & Rajendran, N. (1994). Seedling performance of mangrove
Rhizophora apiculata (Rhizophorales: Rhizophoraceae) in different environs. Indian Journal
of Marine Sciences, 23(3), 168–169.
Kemp, S. (1917). Notes on Fauna of the Matla river in the Gangetic delta. Records of the Indian
Museum, 13, 233–292.
Khan, R. A. (2003). Fish faunal resources of Sundarban estuarine system with special reference
to the Biology of some commercially important species. Records of the Zoological Survey of
India, Occasional Paper,, 209, 1–150.
Koch, M. S., & Snedaker, S. C. (1997). Factors influencing Rhizophora mangle L. seedling development in Everglades carbonate soils. Aquatic Botany, 59(1–2), 87–98.
Lacerda, L. D. (1998). Biogeochemistry of trace metals and diffuse pollution in mangrove ecosystems. International Society for Mangrove Ecosystems, Okinawa, 64 p. [A review on contaminants biogeochemistry, mobility and bioavailability within mangroves and its applicability in
pollution control].
Lana, P. D. C., Guiss, C., & Disaro, S. T. (1991). Seasonal variation of biomass and production
dynamics for aboveground and belowground components of a Spartina alterniflora marsh in
the Euhaline sector of Paranagua Bay (SE Brazil). Estuarine, Coastal and Shelf Science, 32(3),
231–242.
Mandal, A. K., & Nandi, N. C. (1989). Fauna of Sundarban mangrove ecosystem, West Bengal,
India (Fauna of conservation areas). Calcutta: Zoological Survey of India.
Mazda, Y., Sato, Y., Sawamoto, S., Yokochi, H., & Wolanski, E. (1990). Links between physical,
chemical and biological processes in Bashita-minato, a mangrove swamp in Japan. Estuarine,
Coastal and Shelf Science, 31(6), 817–833.
Mitra, A. (2000). The North West Coast of the Bay of Bengal and Deltaic Sundarbans. In Seas at
the millennium: An environmental evaluation (Vol. II, pp. 145–160). Oxford: Pergamon.
Mitra, A., & Zaman, S. (2016). Basics of marine and estuarine ecology (pp. 1–481). New Delhi:
Springer, ISBN 978-81-322-2707-6.
Mitra, A., Gangopadhyay, A., Dube, A., Andre, C. K. S., & Banerjee, K. (2009). Observed changes
in water mass properties in the Indian Sundarbans (Northwestern Bay of Bengal) during 1980–
2007. Current Science, 97(10), 1445–1452.
Mitra, A., Sengupta, K., & Banerjee, K. (2011). Standing biomass and carbon storage of aboveground structures in dominant mangrove trees in the Sundarbans. Forest Ecology and
Management (Elsevier), 261(7), 1325–1335. https://doi.org/10.1016/j.foreco.2011.01.012.
Motomura, S. (1962). The effect of organic matter on the formation of ferrous ion in soil. Soil
Science and Plant Nutrition, 8, 20–29.
Patrick, W. H., Jr., & Mikkelsen, D. S. (1971). Plant nutrient behavior in flooded soil. In R. A.
Olson (Ed.), Fertilizer technology and use (2nd ed., pp. 187–215). Madison: Soil Science
Society of America.
8 Mangroves: A Reservoir of Biodiversity
