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Early Access

Vegetation composition and anthropogenic impact on Nannorrhops communities in Shurku Valley, District Kurram, Pakistan

DOI
https://doi.org/10.14719/pst.8529
Submitted
26 March 2025
Published
03-11-2025
Versions

Abstract

Phytosociological studies were conducted in the previously unexplored Shurku Valley, Lower Kurram, Khyber Pakhtunkhwa, Pakistan, between 2021 and 2024. The research revealed that Nannorrhops vegetation is under significant ecological and anthropogenic pressure, primarily due to deforestation and habitat degradation. Understanding these pressures is essential for developing effective conservation strategies aimed at preserving this unique vegetation and maintaining the ecological balance of the region. Vegetation analysis was conducted using the quadrat method with standardized plot sizes for trees, shrubs and herbs. Four distinct plant communities were identified: Nannorrhops-Heteropogon-Olea, Nannorrhops-Olea-Parthenium, Hyparrhenia-Olea-Quercus and Olea-Nannorrhops-Leptorhabdos, classified based on quantitative characteristics. Soil properties across the sites varied from silty loam to sandy textures with near-neutral pH levels. Silty loam was more conducive to Nannorrhops growth, while sandy soils presented ecological challenges requiring adaptive management. Organic matter was moderate and although certain nutrients such as potassium and micronutrients were present in favorable amounts, limitations in nitrogen and inconsistent phosphorus levels highlighted the need for targeted soil interventions. Overall, Nannorrhops vegetation is under considerable biotic stress, emphasizing the urgent need for conservation measures, including habitat restoration, sustainable land management and public awareness efforts. Protecting these plant communities is crucial for sustaining the valley’s biodiversity and ecological resilience.

References

  1. 1. Abdullah K, Pieroni A, ul Haq Z, Ahmad Z. Mazri (Nannorrhops ritchiana (Griff) Aitch.): a remarkable source of manufacturing traditional handicrafts, goods and utensils in Pakistan. Journal of Ethnobiology and Ethnomedicine. 2020;16(1):1-13. https://doi.org/10.1007/s10722-020-01047-7
  2. 2. Farrukh H, Badshah L, Hussain F, Ali A. Vegetation structure and threats to montane temperate ecosystems in Hindukush range, Swat, Pakistan. Applied Ecology & Environmental Research. 2018;16(4):1-23. https://doi.org/10.15666/aeer/1604_47894811
  3. 3. Haq A, Badshah L. The structure of threatened vegetation in the Montane temperate ecosystem of Pashat Valley, Pak-Afghan Border, Hindukush Range, Bajaur, Pakistan. Applied Ecology & Environmental Research. 2021;19(5):1-19. https://doi.org/10.15666/aeer/1905_35793600
  4. 4. Hussain W, Badshah L, Asghar A. Ecological characteristics of plants of Koh-e-Safaid range, northern Pakistani-Afghan borders. Acta Ecologica Sinica. 2019;40(3):221-36. https://doi.org/10.1016/j.chnaes.2020.04.006
  5. 5. Rashid S, Rashid K, Islam T, Ganie A. Phytosociological and edaphic parameters of Actaea kashmiriana assemblages in Kashmir Himalaya. Acta Ecologica Sinica. 2023;43(6):1038-48. https://doi.org/10.1016/j.chnaes.2023.02.009
  6. 6. Zerwes CM, Rempel C, Schneider JK, Maranho LT. Importance of the review on floristic and phytosociological studies of the arboreal stratum of the seasonal deciduous forest of the Serra Geral slope, Rio Grande do Sul, Brazil, to support proposals for sustainable management. Ciência e Natura. 2018;4(1):64-86. https://doi.org/10.5902/2179460X28664
  7. 7. Khan W, Khan SM, Ahmad H. Altitudinal variation in plant species richness and diversity at Thandiani sub forests division, Abbottabad, Pakistan. Journal of Biodiversity and Environmental Sciences. 2015;7(1):46-53. https://doi.org/10.15666/aeer/1703_63756396
  8. 8. Susilowati A, Elfiati D, Rachmat HH. Vegetation structure and floristic composition of tree species in the habitat of Scaphium macropodum in Gunung Leuser National Park, Sumatra, Indonesia. Journal of Biological Diversity. 2020;21(7):24-50. https://doi.org/10.13057/biodiv/d210720
  9. 9. Ahmed M, Siddiqi MF, Shah M. Vegetation-environment relationship in conifer dominating forests of the mountainous range of Indus Kohistan in northern Pakistan. Journal of Mountain Science. 2020;17(8):1989-2000. https://doi.org/10.1007/s11629-019-5562-0
  10. 10. Akhlaq R, Amjad MS, Qaseem MF, Fatima S, Chaudhari SK, Khan AM, et al. Species diversity and vegetation structure from different climatic zones of Tehsil Harighel, Bagh, Azad Kasmir, Pakistan analysed through multivariate techniques. Applied Ecology & Environmental Research. 2018;16(4). https://doi.org/10.15666/aeer/1604_51935211
  11. 11. Ullah H, Khan SM, Jaremko M. Vegetation assessments under the influence of environmental variables from the Yakhtangay Hill of the Hindu-Himalayan range, North Western Pakistan. Scientific Reports. 2022;12(1):20973. https://doi.org/10.1038/s41598-022-21097-4
  12. 12. Zeb SA, Khan SM, Ahmad Z, Abdullah K. Phytogeographic elements and vegetation along the river Panjkora-Classification and ordination studies from the Hindu Kush Mountains range. The Botanical Review. 2022;87:518-42. https://doi.org/10.1007/s12229-021-09247-1
  13. 13. Ali, M, Huang Z, Bai Y, Tng DY, Qin F, Fang Z. A multifaceted approach to expanding conservation efforts in the Pan-Himalayan landscape. Journal of Cleaner Production. 2024;476:143783. https://doi.org/10.1016/j.jclepro.2024.143783
  14. 14. Tegegne S, Workineh B. Vegetative structure, floristic composition and natural regeneration of a species in Ylat Forest, Meket Woreda, Northeastern Ethiopia. Asian Journal of Forestry. 2017;1(1):40-53. https://doi.org/10.13057/asianjfor/r010106
  15. 15. Majeed M, Khan AM, Habib T, Anwar MM. Vegetation analysis and environmental indicators of an arid tropical forest ecosystem of Pakistan. Ecological Indicators. 2022;14(2):109-291. https://doi.org/10.1016/j.ecolind.2022.109291
  16. 16. Khan AM, Qureshi R, Saqib Z. Multivariate analyses of the vegetation of the western Himalayan forests of Muzaffarabad district, Azad Jammu and Kashmir, Pakistan. Ecological Indicators. 2019;104:723-36. https://doi.org/10.1016/j.ecolind.2019.05.061
  17. 17. Iqbal M, Khan SM, Ahmad Z. Vegetation classification of the Margalla foothills, Islamabad under the influence of edaphic factors and anthropogenic activities using modern ecological tools. Pakistan Journal of Botany. 2021;53(5):1831-43. https://doi.org/10.30848/PJB2021-5
  18. 18. Iqbal M, Iftikhar M, Ahmad MSA. Vegetation dynamics of anthropogenically disturbed ecosystem in hilly areas around Sargodha, Pakistan. International Journal of Agriculture & Biology. 2016;18(4):23-45. https://doi.org/10.17957/IJAB/15.0126
  19. 19. Shirazi SA, Kazmi JH. Analysis of socio-environmental impacts of the loss of urban trees and vegetation in Lahore, Pakistan: a review of public perception. Ecological Processes. 2016;5:1-12. https://doi.org/10.1186/s13717-016-0050-8
  20. 20. Shaheen H, Aziz S, Dar ME. Ecosystem services and structure of western Himalayan temperate forests stands in Neelum valley, Pakistan. Pakistan Journal of Botany. 2017;49(2):707-14.
  21. 21. Sainge MN, Mbatchou GP, Kenfack D, Peterson A. Vegetation, floristic composition and structure of a tropical montane forest in Cameroon. Bothalia-African Biodiversity & Conservation. 2019;49(1):1-12. https://doi.org/10.4102/abc.v49i1.2376
  22. 22. Ali M, Yar P, Khan S, Muhammad S, Hussain W, Hussain K, et al. Land use and land cover modification and its impact on biodiversity and the ecosystem services in District Kurram, Pakistan. Boletín Latinoamericano y del Caribe de Plantas Medicinales y Aromáticas. 2022;21(3):1-25. https://doi.org/10.37360/blacpma.22.21.3.22
  23. 23. Le Stradic S, Buisson E, Fernandes GW. Vegetation composition and structure of some Neotropical mountain grasslands in Brazil. Journal of Mountain Science. 2015;12:864-77. https://doi.org/10.1007/s11629-013-2866-3
  24. 24. Kassaye M, Abiyu A, Alemu A. Effect of forest restoration on vegetation composition and soil characteristics in north Wollo and Waghemira zones, northeastern Ethiopia. Environmental Sciences Proceedings. 2021;13(1):14. https://doi.org/10.3390/IECF2021-10776
  25. 25. Hussain W, Badshah L, Ali A. Quantitative aspects of the Koh-E-Safaid range vegatation across the altitudinal gradient in Upper Kurram Valley, Pakistan. Applied Ecology & Environmental Research. 2020;17(4):9905-26. https://doi.org/10.15666/aeer/1704_99059924
  26. 26. Abbas W, Hussain W, Hussain W, Badshah L. Traditional wild vegetables gathered by four religious groups in Kurram District, Khyber Pakhtunkhwa, North-West Pakistan. Genetic Resources and Crop Evolution. 2020;67:1521-36. https://doi.org/10.1007/s10722-020-00926-3
  27. 27. Hussain S, Hussain W, Nawaz A, Badshah L. Quantitative ethnomedicinal study of indigenous knowledge on medicinal plants used by the tribal communities of Central Kurram, Khyber Pakhtunkhwa, Pakistan. Ethnobotany Research and Applications. 2022;2(3):1-31. https://doi.org/10.32859/era.23.5.1-31
  28. 28. Hussain ST, Muhammad S, Khan S. Ethnobotany for food security and ecological transition: wild food plant gathering and consumption among four cultural groups in Kurram District, NW Pakistan. Journal of Ethnobiology and Ethnomedicine. 2023;19(1):35. https://doi.org/10.1186/s13002-023-00607-2
  29. 29. Muhammad S, Hussain M, Saqib Z. Flora of the Kurram valley (tribal area), Pakistan: diversity, physiognomy and conservation issues. Pakistan Journal of Botany. 2023;55(1):199-212. https://doi.org/10.30848/PJB2023-1
  30. 30. Hussain W, Badshah L, Ghulam D. Ethnobotanical appraisal of medicinal plants used by inhabitants of lower Kurram, Kurram agency, Pakistan. Avicenna Journal of Phytomedicine. 2018;8(4):313-29.
  31. 31. Oosting HJ. The study of plant communities. 2nd ed. San-Francisco, California, USA: W.H. Freeman and company; 1956. p. 440.
  32. 32. Urooj R, Ahmad SS, Ahmad MN, Ahmad H, Nawaz M. Ordination study of vegetation analysis around wetland area: a case study of Mangla dam, Azad Kashmir, Pakistan. Pakistan Journal of Botany. 2016;48(1):115-9.
  33. 33. Ilyas M, Qureshi R, Akhtar N. Floristic diversity and vegetation structure of the remnant subtropical broadleaved forests from Kabal valley, Swat, Pakistan. Pakistan Journal of Botany. 2018;50(1):217-30.
  34. 34. Simpson EH. Measurement of diversity. Nature. 1949;163(4148):688. https://doi.org/10.1038/163688a0
  35. 35. Menhinick EF. A comparison of some species individuals diversity indices applied to samples of field insects. Ecology. 1964;45(4):859-61. https://doi.org/10.2307/1934933
  36. 36. Sorensen T. A method of establishing groups of equal amplitude in plant sociology based on similarity of species content and its application to analyses of the vegetation on Danish commons. Biologiske skrifter. 1948;5:1-34.
  37. 37. Motyka J, Dobrzanski B, Zawadski S. Wstepne badania nad lakami polundnlowowschodneij Lubeiszczyzny. Annales Universitatis Mariae Curie-Skłodowska. Sectio E, Agricultura. Vol. 5, 13. Lublin: Nakł. UMCS; 1950. p. 367-447.
  38. 38. Badshah L, Hussain F, Akhtar N. Vegetation structure of subtropical forest of Tabai, South Waziristan, Pakistan. Frontiers of Agriculture in China. 2010;4(2):232-6. https://doi.org/10.1007/s11703-010-0108-9

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