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Structure and function of the Central Himalayan oak forests

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Proceedings / Indian Academy of Sciences

Abstract

Oak (Quercus spp.) forests represent the climax evergreen vegetation between 1000–3600 m in the Central Himalaya. Shrub layer is well developed in these forests and phanerophytes prevail (50–60%). Though one oak species mixes frequently with other oak species, or conifers, the single-species dominance is quite common. All the oak forests are vulnerable to fire. They support a great variety of wildlife. Coppicing subsequent to cutting is well developed in all oak species and helps them in regeneration. However, because of severe biotic stress oaks are failing to regenerate in forest stands. The forest biomass ranges between 294–787 t ha−1 and the net primary productivity generally between 16–21 t ha−1 yr−1. Oak forests store a large proportion of their nutrients in biomass component. Leaves are nutrient-rich and decompose rapidly. Evergreen woody species with concentrated summer leaf drop prevail in oak forests. The seasonality of the ecosystem activities seem to be influenced by the monsoon pattern of rainfall. Though the recovery is rapid after the forest destruction, because of continuous and severe biotic stress, oaks are being replaced with other communities.

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References

  • Atkinson E T 1882The Himalayan Gazetteer (Delhi: Cosmo publications) vols. 1–2, pp 404–946

    Google Scholar 

  • Bormann F H and Likens G E 1979Patterns and process in forested ecosystem (New York: Springer)

    Google Scholar 

  • Bray J R and Curtis G T 1957 An ordination of upland forest communities of southern Wisconsin;Ecol. Monogr. 27 325–349

    Article  Google Scholar 

  • Bray J R and Gorham E 1964 Litter production in the forests of the World;Adv. Ecol. Res. 2 101–157

    Article  Google Scholar 

  • Champion H G and Seth S K 1968a A revised survey of forest types of India (Delhi: Manager of Publications) p 329

    Google Scholar 

  • Champion H G and Seth S K 1968b General silviculture for India (Delhi: Manager of Publications) p 404

    Google Scholar 

  • Dabel C V and Day E P 1977 Structural comparisons of four plant communities in the Great Dismal Swamp Virginia;Bull. Torrey Bot. Club. 104 352–360

    Article  Google Scholar 

  • De Angelis D L, Gardner R H and Shugart H H 1980 Productivity of forest ecosystems studied during the IBP. The Woodlands data set; inDynamic properties of forest ecosystems (ed.) D E Reichle (Cambridge: Cambridge University Press) pp 567–572

    Google Scholar 

  • Duvigneaud P and Denaeyer De Smet S 1970 Biological cycling of minerals in temperate deciduous forests; inAn Analysis of temperate forest ecosystems (ed.) D E Reichle (Berlin, Heidelberg, New York: Springer-Verlag) pp 199–225

    Google Scholar 

  • Dwivedi B N and Mathur R S 1978Working plan for the Naini Tal Forest Division, Kumaun Circle, Uttar Pradesh (1978–79 to 1987–88) (Naini Tal Working Plans Circle, UP) p 521

  • Frankie G W, Baker H G and Opler P A 1979 Comparative phenological studies of trees in tropical wet and dry forests in low land of Costa Rica;J. Ecol. 62 881–919

    Google Scholar 

  • Horn H S 1974 The ecology of secondary succession;Annu. Rev. Ecol. Syst. 5 25–37

    Article  Google Scholar 

  • Jenny H, Gessels S P and Bingham F T 1942 Comparative study of decomposition rate of organic matter in temperate and tropical regions;Soil Sci. 68 419–432

    Article  Google Scholar 

  • Khanna R K and Singh S P 1984 Standing state of nutrients; inAn integrated ecological study of eastern Kumaun Himalaya with emphasis on natural resources (eds) J S Singh and S P Singh (Final report (HCS/DST/187/76) Kumaun University, Naini Tal) vol. 2, pp 154–193

    Google Scholar 

  • Kittredge J 1948Forest influences (New York: McGraw-Hill Book Co. Inc.)

    Google Scholar 

  • Knight D H 1975 A phytosociological analysis of species rich tropical forest on Borro Colorada Island Panama;Ecol. Monogr. 45 259–284

    Article  Google Scholar 

  • Lieth H 1975 Primary production of the major vegetation units of the world, inPrimary productivity of the biosphere (eds) H Lieth and R H Whittaker (New York: Springer-Verlag) pp 203–215

    Google Scholar 

  • Lull H W 1964 Ecological and silvicultural aspects-Section 6; inHand book of Applied Hydrology (ed) V T Chaw (New York: McGraw-Hill Book Company Inc.) pp 6–30

    Google Scholar 

  • Mehra M S, Pathak P C and Singh J S 1985 Nutrient movement in litterfall and precipitation components for Central Himalayan forests;Ann. Bot. (London) 55 153–170

    CAS  Google Scholar 

  • Monk C D 1967 Tree species diversity in the eastern deciduous forest with particular reference to north-Central Florida;Am. Nat. 101 173–187

    Article  Google Scholar 

  • Negi K S, Rawat Y S and Singh J S 1983 Estimation of biomass and nutrient storage in a Himalayan Moist temperate forest;Can. J. For. Res. 13 1185–1196

    Article  CAS  Google Scholar 

  • Ovington J D, Heitkamp D and Lawrence D 1963 Plant biomass and productivity of prairie Savannah: Oak wood and maize field ecosystem;Ecology 44 52–63

    Article  Google Scholar 

  • Pandey U and Singh J S 1981a A quantitative study of the forest floor litter fall and nutrient return in an oak-conifer forest in Himalaya I: Composition and dynamics of forest floor;Acta Oecol. Oecol. Gen. 2 49–61

    Google Scholar 

  • Pandey U and Singh J S 1981b A quantitative study of the forest floor litter fall and nutrient return in an oak-conifer forest in Himalaya II: Pattern of litter fall and nutrient return;Acta Oecol. Oecol. Gen. 2 83–99

    Google Scholar 

  • Pandey U and Singh J S 1982 Leaf litter decomposition in an oak-conifer forest in Himalaya: The effects of climate and chemical composition;Forestry 55 47–49

    Article  CAS  Google Scholar 

  • Pandey U and Singh J S 1984a Energy flow relationships between agro and forest ecosystems in Central Himalaya;Environ. Conser. 11 45–53

    Google Scholar 

  • Pandey U and Singh J S 1984b Energetics of hill agroecosystems: A case study from Central Himalaya;Agricultural Systems 13 83–96

    Article  Google Scholar 

  • Pandey A N and Singh J S 1985 Mechanism of ecosystem recovery: a case study from Kumaun Himalaya;Reclam. Reveg. Res. 37 271–292

    Google Scholar 

  • Pathak P C and Singh J S 1984 Nutrients in precipitation components for the pine and oak forests in Kumaun Himalaya;Tellus 36 44–49

    Google Scholar 

  • Ralhan P K 1985Phenology of Plants in forest ecosystems of Kumaun Himalaya; Ph.D. thesis, Kumaun University, Naini Tal

    Google Scholar 

  • Ralhan P K, Saxena A K and Singh J S 1982 Analysis of forest vegetation at and around Naini Tal in Kumaun Himalaya;Proc. Indian Natl. Sci. Acad. B48 121–137

    Google Scholar 

  • Ralhan P K, Khanna R K, Singh S P and Singj J S 1985a Phenological characteristics of the tree layer of Kumaun Himalayan Forests,Vegetatio 60 91–101

    Article  Google Scholar 

  • Ralhan P K, Khanna R K, Singh S P and Singh J S 1985b Phenological characteristics of the shrub layer of Kumaun Himalayan forests;Vegetatio 63 113–119

    Article  Google Scholar 

  • Rana B S 1985Blomass and net primary productivity in different forest ecosystems along an altitudinal gradient in Kumaun Himalaya, Ph.D. thesis, Kumaun University, Naini Tal

    Google Scholar 

  • Rana B S and Singh R P 1984 Biomass and primary productivity; inAn integrated ecological study of eastern Kumaun Himalaya with emphasis on natural resources (eds) J S Singh and S P Singh (Final Report (HCS/DST/187/76) (Kumaun University, Naini Tal) vol. 2, pp 1–19

    Google Scholar 

  • Rao P B 1984Regeneration of some trees of Western Kumaun Himalaya, Ph.D. thesis, Kumaun University, Naini Tal

    Google Scholar 

  • Rao P B, Singh R P and Singh S P 1984 Regeneration of some forest trees; inAn Integrated Ecological Study of Eastern Kumaun Himalaya with Emphasis on Natural Resources (eds) J S Singh and S P Singh (Final report (HCS/DST/187/76) Kumaun University, Naini Tal) vol. 2, pp 21–60

    Google Scholar 

  • Rao P B and Singh S P 1985 Response breadths on environmental gradients of germination and seedling growth in two dominant forest tree species of Central Himalaya;Ann. Bot. (in press)

  • Rapp M 1969 Production de litiere et apport an sal d’element mineraux dans deux ecosystems mediterraneens: La foret deQuercus ilex L. et la garrigue deQuercus coccifera L;Oecol. Plant. 4 377–410

    Google Scholar 

  • Rawat Y S 1983Plant biomass net primary production and nutrient cycling in oak forests, Ph.D. thesis, Kumaun University, Naini Tal

    Google Scholar 

  • Reiners W A 1972 Structure and energetics of three Minnesota forests;Ecol. Monogr. 42 71–94

    Article  Google Scholar 

  • Risser P G and Rice E L 1971 Diversity in tree species in Oklahoma Upland forests,Ecology 52 876–880

    Article  Google Scholar 

  • Rochow J J 1972 A vegetational description of a mid-Missouri forest using gradient analysis techniques;Am. Midl. Nat. 87 377–396

    Article  Google Scholar 

  • Saxena A K 1979Ecology of vegetation complex of North-Western Catchment of river Gola, Ph.D. thesis, Kumaun University, Naini Tal

    Google Scholar 

  • Saxena A K, Pandey U and Singh J S 1978 On the Ecology of oak forests in Naini Tal hills, Kumaun Himalaya; inGlimpses of Ecology (Jaipur: International Scientific Publications) (eds) J S Singh and B Gopal pp 167–180

    Google Scholar 

  • Saxena A K and Singh J S 1980 Analysis of forest grasslands vegetation in parts of Kumaun Himalaya;Indian J. Range. Manage. 1 13–32

    Google Scholar 

  • Saxena A K and Singh J S 1982a A phytosociological analysis of woody species in forest communities of a part of Kumaun Himalaya;Vegetatio 50 3–22

    Article  Google Scholar 

  • Saxena A K and Singh J S 1982b Quantitative profile structure of certain forests in the Kumaun Himalaya;Proc. Indian Acad. Sci. (Plant Sci.) 91 529–549

    Google Scholar 

  • Saxena A K, Pandey P and Singh J S 1982 Biological spectrum and other structural-functional attributes of the vegetation of Kumaun Himalaya;Vegetatio 49 111–119

    Article  Google Scholar 

  • Saxena A K and Singh J S 1984 Tree population structure of certain Himalayan Forest associations and implications concerning future composition;Vegetatio 58 61–69

    Article  Google Scholar 

  • Saxena A K, Singh S P and Singh J S 1984 Population Structure of forests of Kumaun Himalaya: Implications for management;J. Environ. Manage. 19 307–324

    Google Scholar 

  • Saxena A K, Pandey T and Singh J S 1985 Altitudinal variation in the vegetation of Kumaun Himalaya; inPerspectives in Environmental Botany (eds) D N Rao, K J Ahmad, Mohd Yunus and S N Singh (Lucknow: Print House)

    Google Scholar 

  • Shanks R E and Olson J S 1961 First year breakdown of leaf litter in Southern Appalchian forests;Science 134 194–195

    Article  PubMed  CAS  Google Scholar 

  • Shannon C E and Wiener W 1963 The mathematical theory of communication (Urbana: Univ. Illinois Press)

    Google Scholar 

  • Singh J S and Chaturvedi O P 1982 Photosynthetic pigments on plant bearing surfaces in Himalayas;Photosynthetica 61 101–114

    Google Scholar 

  • Singh J S, Pandey A N and Pathak P C 1983 A hypothesis to account for the major pathway of soil loss from Himalaya;Environ. Conserv. 10 343–345

    Google Scholar 

  • Singh J S and Singh S P 1984An integrated ecological study of eastern Kumaun Himalaya with emphasis on natural resources; (Kumaun University, Naini Tal: Final Report (HCS/DST/187/76)) vols 1–3

    Google Scholar 

  • Singh J S, Singh S P, Saxena A K and Rawat Y S 1984a The forest vegetation of Silent Valley, India; inTropical Rain-Forest (The Leeds Symposium) (eds) A C Chadwick and S L Sutton, Leeds Philosophical and Literary Society, Central Museum, Calverley Street, Leeds LS13AA, UK pp 25–52

    Google Scholar 

  • Singh J S, Pandey U and Tiwari A K 1984b Man and forests: A Central Himalayan Case Study;Ambio 2 80–87

    Google Scholar 

  • Singh J S, Rawat Y S and Chaturvedi O P 1984c Replacement of oak forest with pine in the Himalaya affects the nitrogen cycle;Nature (London) 311 54–56

    Article  Google Scholar 

  • Singh J S, Tiwari A K and Saxena A K 1985 Himalayan forests: A net source of carbon for the atmosphere;Environ. Conserv. 12 67–69.

    CAS  Google Scholar 

  • Singh J S and Singh S P 1986 Forest Vegetation of the Himalayas;Bot. Rev. 52

  • Singh S P 1981 Rural ecosystems and development in the Himalayas; inScience and Rural Development in Mountains (eds) J S Singh, S P Singh and C Shastri (Naini Tal: Gyanodaya Prakashan) pp 74–87

    Google Scholar 

  • Singh S P 1985aRiver Gaula Catchment Ecodevelopment Project Report 2 (Naini Tal: Kumaun University) p 22

    Google Scholar 

  • Singh S P 1985b Editors Page;Bull. of the Central Himalaya Environment Association 1 3–4

    Google Scholar 

  • Singh S P, Khanna R K and Singh J S 1985 Accumulation in wood: A nutrient-conserving strategy of tropical forests;Environ. Conserv. 12 170–173

    Google Scholar 

  • Singh S P and Singh J S 1985a Man and Environment: The Central Himalayan Case;Biol. Mem. 11 47–59

    Google Scholar 

  • Singh S P and Singh J S 1985b Structure and function of forest ecosystems of Central Himalaya: Implications for Management; inEnvironmental Regeneration in the Himalaya: Concepts and Strategies, Central Himalayan Environment Association (ed) J S Singh (Naini Tal: Gyanodaya Prakashan) pp 85–113

    Google Scholar 

  • Singh S P and Singh J S 1985cResearch on Central Himalayan forests (Regional meeting of the national MAB committees of Central and South Asian countries, New Delhi) p 20

    Google Scholar 

  • Singh S P and Singh J S 1985d Survey of patterns and processes in ecosystems of the Himalayan ranges;Trends Plant Res. 473–485

  • Singh S P, Ralhan P K and Tewari J C 1985 Stability of Himalayan Climax oak forests in view of Resilience Hypothesis;Environ. Conserv. 12 73–75

    Article  Google Scholar 

  • Tewari J C 1982Vegetational analysis along altitudinal gradients around Naini Tal, Ph.D. thesis, Kumaun University, Naini Tal

    Google Scholar 

  • Tewari J C and Singh S P 1981 Vegetation analysis of a forest lying in transitional zone between lower and upper Himalayan moist temperate forest; inThe vegetational wealth of Himalaya (ed.) G S Paliwal (New Delhi: Piya Publishers) pp 104–119

    Google Scholar 

  • Tewari J C and Singh J S 1983 Application of aerial photo-analysis for assessment of vegetation in Kumaun Himalaya I: Ranibagh to Naina Peak—Kilbari;Proc. Indian Natl. Sci. Acad. B49 336–347

    Google Scholar 

  • Tewari J C and Singh S P 1985 Analysis of woody vegetation in a mixed oak forest of Kumaun Himalaya;Proc. Indian Natl. Sci. Acad. B51 332–347

    Google Scholar 

  • Tiwari A K, Tewari J C and Singh J S 1983 Application of aerial photo-analysis for assessment of vegetation in Kumaun Himalaya II: Kathgodam to Okhal Kanda;Proc. Indian Natl. Sci. Acad. B49 421–435

    Google Scholar 

  • Tiwari A K and Singh J S 1984 Mapping forest biomass in India through aerial photographs and nondestructive field sampling;Appl. Geogr. 4 153–167

    Article  Google Scholar 

  • Trimble G R Jr and Weitzman S 1954 Effects of a hardwood forest canopy on rainfall intensities;Trans. Am. Geophys. Union 35 226–234

    Google Scholar 

  • Troup R S 1921The Silviculture of Indian Trees (Clarendon Press: Oxford) vols. 1–3, p 1195

    Google Scholar 

  • Upreti N 1982A study on phytosociology and state of regeneration of oak forests at Naini Tal, Ph.D. thesis, Kumaun University, Naini Tal

    Google Scholar 

  • Upreti N, Tewari J C and Singh S P 1985 the oak forests of the Kumaun Himalaya (India): Composition, Diversity and Regeneration;Mt. Res. Dev. 5 163–174

    Article  Google Scholar 

  • Upadhyay V P and Singh J S 1985a Decomposition of woody branch litter along an altitudinal transect in the Himalaya;Vegetatio 64 49–54

    Article  Google Scholar 

  • Upadhyay V P, Pandey U and Singh J S 1985 Effect of habitat on decomposition of standard leaf litter species;Biol. Fertil. Soils 1 201–208

    Article  Google Scholar 

  • Upadhyay V P and Singh J S 1985b Nitrogen dynamics of decomposition hardwood leaf litter in a Central Himalayan forest;Soil. Biol. Biochem. 17 827–830

    Article  Google Scholar 

  • Vishnu-Mittre 1963 Oak in the Kashmir valley with remarks on their history;Grana Palynol. 4 306–312

    Article  Google Scholar 

  • Vishnu-Mittre 1965 Floristic and ecological reconsiderations of the pleistocene plant impressions from Kashmir;Palaeobotanist 13 308–327

    Google Scholar 

  • Vishnu-Mittre 1966 Some aspects of pollen analytical investigations in the Kashmir valley;Palaeobotanist 15 157–175

    Google Scholar 

  • Vishnu-Mittre (ed.) 1974 Late Quaternary Palaeobotany and Palynology in India. An appraisement; inLate Quaternary Vegetational Development in Extra-European Areas (Lucknow: Birbal Sahni Inst. Palaeobotany) pp 16–51

    Google Scholar 

  • Vishnu-Mittre 1979 Palaeobotanical evidence of the environment of early Man in Northwestern and Western India;Grana 18 167–181

    Google Scholar 

  • Vishnu-Mittre 1984 Quaternary Palaeobotany/Palynology in the Himalaya: an overview;Palaeobotanist 32 158–187

    Google Scholar 

  • Vishnu-Mittre 1984 Floristic Changes in the Himalayan (Southern slopes) and Siwaliks from the Mid-Tertiary to recent times

  • Witkamp M 1966 Decomposition of leaf litter in relation to environmental conditions microflora and microbial respiration;Ecology 47 194–201

    Article  Google Scholar 

  • Witkamp M and Olson J S 1963 Breakdown of confined and non-confined oak litter;Oikos 14 138–147

    Article  Google Scholar 

  • Whittaker R H and Woodwell G M 1969 Structure production and diversity of the oak pine forest at Brook heaven, New York;J. Ecol. 57 157–174

    Google Scholar 

  • Whittaker R H 1973 Climax concepts and recognition Handbook of vegetation;Science 8 137–154

    Google Scholar 

  • Whittaker R H 1975 Community and Ecosystems 2nd edition (New York: Macmillan)

    Google Scholar 

  • Zobel D B A M, Hawk G M and Dyrness C T 1976 Relationship of environment to composition structure and diversity of forest communities of the Central Western Cascade of Oregon;Ecol. Monogr. 46 135–156

    Article  Google Scholar 

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Singh, S.P., Singh, J.S. Structure and function of the Central Himalayan oak forests. Proc. Indian Acad. Sci. 96, 159–189 (1986). https://doi.org/10.1007/BF03053301

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