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Bera, S. K.
- Mid-Holocene Vegetation and Climatic Variability in Tropical Deciduous Sal (Shorea robusta) Forest of Lower Brahmaputra Valley, Assam
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Authors
Swati Dixit
1,
S. K. Bera
1
Affiliations
1 Birbal Sahni Institute of Palaeobotany, 53 University Road, Lucknow - 226 007, IN
1 Birbal Sahni Institute of Palaeobotany, 53 University Road, Lucknow - 226 007, IN
Source
Journal of Geological Society of India (Online archive from Vol 1 to Vol 78), Vol 77, No 5 (2011), Pagination: 419-432Abstract
One 2.5 m lacustrine sedimentary profile dated back to 6340 years BP from Deosila swamp under Rangjuli Reserve forest of Assam, Northeast India has been pollen analyzed for tracing past vegetation vis a vis climate variability since mid-Holocene. The pollen diagram has deciphered that during 6340 to 2970 years BP, tropical tree savannah type of vegetation grew in the region chiefly constituted of grasses interspersed with scattered trees of Salmalia, Dillenia, Emblica, Meliaceae along with sporadic presence of Artocarpus chaplasha, Symplocos, Ilex, Schima and Shorea robusta under relatively less cool and dry climatic condition with a little ameliorating trend at the upper column. The vegetation scenario implies poor growth of arboreals due to harsh abiotic dynamics causing changes in drainage system. Subsequently during 2970 to 1510 years BP, tropical mixed deciduous forest succeeded tree savannah with invasion of Shorea robusta, Lagerstroemia, Lannea, Semecarpus and Acacia under warm and humid climate. The gradual enrichment of organic soil might have been conducive for better growth of both deciduous and semi evergreen arboreals as found today. However, during 1510 to 540 years BP, the forest groves became more strengthened resulting establishment of tropical deciduous Sal forest. Steady increment of Shorea robusta along with Lannea, Lagerstroemia, Terminalia, Sapotaceae, Albizia and Adina was observed probably due to influence of active SW monsoon under increased warm and humid climatic regime. This is well substantiated by the consistent occurrence of marshy and aquatic taxa along with ferns and fungal remains. Finally during 540 years BP onward the reduced forest floristics have obviously been envisaged the change in climate which turned to warm and relatively dry probably attributable to the weak monsoon rainfall. The acceleration in human settlement during this phase is evidenced by Cerealia and by the increase of Melastoma, Ziziphus and Areca catechu implying forest clearance.Keywords
Mid-Holocene, Pollen Deposition, Vegetation Development, Lower Brahmaputra Valley, Goalpara, Assam.- Low Phytic Acid Peanut:A Potential Tool to Overcome Mineral Malnutrition in Humans
Abstract Views :405 |
PDF Views:56
Authors
B. C. Ajay
1,
D. Kambiranda
2,
S. K. Bera
1,
Narendra Kumar
1,
K. Gangadhar
1,
R. Abdul Fiyaz
3,
K. T. Ramya
4
Affiliations
1 ICAR-Directorate of Groundnut Research, Post Box 5, Ivnagar Road, Junagadh 362 001, IN
2 Centre for Viticulture and Small Fruit Research, Florida A&M University, 6505 Mahan Drive Tallahassee, Florida 32317, US
3 ICAR-Indian Institute of Rice Research, Rajendranagar, Hyderabad 500 030, IN
4 ICAR-Indian Institute of Oilseeds Research, Rajendranagar, Hyderabad 500 030, IN
1 ICAR-Directorate of Groundnut Research, Post Box 5, Ivnagar Road, Junagadh 362 001, IN
2 Centre for Viticulture and Small Fruit Research, Florida A&M University, 6505 Mahan Drive Tallahassee, Florida 32317, US
3 ICAR-Indian Institute of Rice Research, Rajendranagar, Hyderabad 500 030, IN
4 ICAR-Indian Institute of Oilseeds Research, Rajendranagar, Hyderabad 500 030, IN
Source
Current Science, Vol 114, No 06 (2018), Pagination: 1165-1166Abstract
Malnutrition affects over one billion people worldwide and thus one out of six humans is malnourished. Though the green revolution solved the problem of malnutrition to the great extent, people living in developing and under-developed countries still face micronutrient malnutrition, which is a result of imbalanced diet and intake of insufficient micronutrients. Iron and zinc deficiencies together contributing to loss to GDP is at least US$ 5 billion in China and India alone.References
- Ajay, B. C. and Ananga, A., In 20th Penn State Plant Biology Symposium: Plant Stress-omics in a Changing Climate, University Park, Pennsylvania, USA, 13–16 May 2015, p. 64.
- Misra, J. B., In Groundnut Research in India (eds Basu, M. S. and Singh, N. B.), National Research Centre for Groundnut, Junagadh, 2004, pp. 273–291.
- Duffin, P. A., Ph D thesis, University of Surrey, Guildford, Surrey, USA, 1989, p. 14.
- Hande, P. A., Mondal, S., Badigannavar, A. M. and D’Souza, S. F., Plant Genet. Resour.-C, 2013, 11, 190–195; doi:10.1017/S1479262113000130.
- Fredlund, K., Isaksson, M., Rossander-Hulthen, L., Almgren, A. and Sandberg, A. S., J. Trace. Elem. Med. Biol., 2006, 20, 49–57.
- Nsvert, B., Sandström, B. and Cederblad, A., Br. J. Nutr., 1985, 53, 47–53.
- Raboy, V., In Inositol Phosphates: Linking Agriculture and Environment (eds Turner, B. L., Richardson, A. E. and Mullaney, E. J.), CAB International, Oxfordshire, UK, 2006, pp. 111–132.
- Raboy, V., Plant Sci., 2009, 177, 281–296.
- Kim, S. I., Andaya, C. B., Newman, J. W., Goyal, S. S. and Tai, T. H., Theor. Appl. Genet., 2008, 117, 1291–1301.
- Guttieri, M., Bowen, D., Dorsch, J. A., Raboy, V. and Souza, E., Crop Sci., 2004, 44, 418–424.
- Pilu, R. et al., Theor. Appl. Genet., 2003, 107, 980–987.
- Wilcox, J. R., Premachandra, G. S., Young, K. A. and Raboy, V., Crop Sci., 2000, 40, 1601–1605.
- DeMayo, F. J., Am. J. Kidney Dis., 1999, 33, 598–600.
- Mackay, I. and Powell, W., Trends. Plant Sci., 2007, 12, 57–63.
- Ajay, B. C., Ananga, A. and Kambiranda, D., 2015; http://www.ncbi.nlm.nih.gov/nuccore/966913594/
- Ajay, B. C., Ananga, A., Kambiranda, D., Obuya, J., Bera, S. K. and Tsolova, V., Clon. Tansgen., 2016, 5, 1.
- Cichy, K. A. and Raboy, V., In Modification of Seed Composition to Promote Health and Nutrition (ed. Krishnan, H.), Agronomy Monograph 51, American Society of Agronomy and Crop Science Society of America, SSSA, Madison, WI, 2009, pp. 177–200; doi:10.1234/agron.monogr51.frontmatter
- Hambidge, K. M., Krebs, N. F., Westcott, J. L., Sian, L., Miller, L. V., Peterson, K. L. and Raboy, V., Am. J. Clin. Nutr., 2005, 82, 84–87.