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Demography of Juniperus phoenicea L. and Juniperus procera Hochst. ex Endl. populations at Sarrawat Mountains, Southwest of Saudi Arabia

  • Received : 2023.08.23
  • Accepted : 2023.12.05
  • Published : 2024.03.31

Abstract

Background: The present study aims to identify the pattern and size of Juniperus species (Juniperus phoenicea and J. procera) in the natural forests in terms of tree dimension, size structure and density, discussing the existing both species in Sarrawat Mountains for suggesting the preservation, conservation, and sustainable development. For achieving this, the height and mean crown diameter of each individual was measured based on 2-4 diameter measurements per ind. (506 ind. for J. phoenicea and 322 ind. for J. procera). Results: The size index of both species was classified into 7 classes: the first (< 100 cm) and the second (100-200 cm) classes were chosen to represent the juvenile stage. The total mean of the J. phoenicea population increased with the increase of altitude, while the whole population decreased after altitude of 2,000 m. The total mean of the J. procera population increased with the increase of altitude till altitude of 2,000-2,100 m. Conclusions: The present study indicated that both of species grow at low altitudes, they only grow at altitude above 1,700 m above sea level. The present study indicated that the study area has the two Juniperus spp. (J. phoenicea and J. procera) associated together all over the area. The results were discussed and compared with other related studies.

Keywords

Acknowledgement

The authors would like to sincerely thank Asmaa Abu-Hattab PhD candidate in Kafrelsheikh University, Egypt for drawing the GIS map (Fig. 1).

References

  1. Abd El-Wahab RH, Zaghloul MS, Kamel WM, Moustafa ARA. Diversity and distribution of medicinal plants in North Sinai, Egypt. Afr J Environ Sci Technol. 2008;2(7):157-71.
  2. Al-Sodany YM, Kahil AA, Al-Juaid NS. Population demography of Calotropis procera (Ait.) R.Br. in Taif region, Saudi Arabia. Egypt J Bot. 2019;59(3):567-79.
  3. Al-Sodany YM, Mosallam HA, Al-Yasi HM. Floristic diversity and plant communities associated with juniper forests in high altitudes. Int J Curr Life Sci. 2014;4(2):118-33.
  4. Baker PJ, Wilson JS. Plant ecology: Coexistence of tropical tree species. Nature. 2003;422(6932):581-2; discussion 852. https://doi.org/10.1038/422581a.
  5. Block J, Treter U. The limiting factors at the upper and lower forest limits in the mountain-woodland steppe of Northwest Mongolia. In: Kaennel Dobbertin M, Braker OU, editors. Tree Rings and People. Birmensdorf: Swiss Federal Research Institute WSL; 2001. p. 22-6.
  6. Burton GW. African grasses. In: Janick J, Simon JE, editors. New crops. New York: Wiley; 1993. p. 294-8.
  7. Clifton SJ, Ward LK, Ranner DS. The status of juniper Juniperus communis L. in northeast England. Biol Conserv. 1997;79(1):67-77. https://doi.org/10.1016/S0006-3207(96)00101-2.
  8. Couralet C, Bakamwesiga H. Juniperus procera Hochst. Ex. Endl. In: Louppe D, Oteng-Amoako AA, Brink M, editors. PROTA (Plant Resources of Tropical Africa/Ressources vegetales de l'Afrique tropicale). Wageningen: PROTA Foundation/CTA; 2007.
  9. Crisp MD, Lange RT. Age structure, distribution and survival under grazing of the arid-zone shrub Acacia burkittii. Oikos. 1976;27(1):86-92. https://doi.org/10.2307/3543436.
  10. Danin A. Plant species diversity and ecological districts of the Sinai desert. Vegetatio. 1978;36(2):83-93. https://doi.org/10.1007/BF00221835.
  11. Danin A. Desert rocks as plant refugia in the Near East. Bot Rev. 1999;65:93-170. https://doi.org/10.1007/BF02857625.
  12. de Kroon H, Plaisier A, van Groenendael J, Caswell H. Elasticity: the relative contribution of demographic parameters to population growth rate. Ecology. 1986;67(5):1427-31. https://doi.org/10.2307/1938700.
  13. El-Juhany L. The magnitude of dieback on Juniperus procera trees in the natural forests in the southwestern region of Saudi Arabia. Biosci Biotechnol Res Asia. 2015;12(1):219-30.
  14. Fagg CW, Stewart JL. The value of Acacia and Prosopis in arid and semi-arid environments. J Arid Environ. 1994;27(1):3-25. https://doi.org/10.1006/jare.1994.1041.
  15. Farjon A. Juniperus procera: The IUCN Red List of Threatened Species. 2013. https://doi.org/10.2305/IUCN.UK.2013-1.RLTS.T33217A2835242.en. Accessed 24 May 2018.
  16. Garcia D, Gomez JM, Zamora R, Hodar JA. Do empty Juniperus communis seeds defend filled seeds against predation by Apodemus sylvaticus? Ecoscience. 2000;7(2):214-21. https://doi.org/10.1080/11956860.2000.11682590.
  17. Garcia D, Zamora R, Hodar JA, Gomez JM. Age structure of Juniperus communis L. in the Iberian peninsula: conservation of remnant populations in Mediterranean mountains. Biol Conserv. 1999;87(2):215-20. https://doi.org/10.1016/S0006-3207(98)00059-7.
  18. Goldberg DE, Turner RM. Vegetation change and plant demography in permanent plots in the Sonoran desert. Ecology. 1986;67(3):695-712. https://doi.org/10.2307/1937693.
  19. Golubov J, Mandujano MDC, Franco M, Montana C, Eguiarte LE, Lopez-Portillo J. Demography of the invasive woody perennial Prosopis glandulosa (honey mesquite). J Ecol. 1999;87(6):955-62. https://doi.org/10.1046/j.1365-2745.1999.00420.x.
  20. Gray JD. Letter: complete uterine prolapse in a mare. Vet Rec. 1975;96(4):98.
  21. Harper JL. Population biology of plants. London: Academic Press; 1977.
  22. Kirkpatrick M. Demographic models based on size, not age, for organisms with indeterminate growth. Ecology. 1984;65(6):1874-84. https://doi.org/10.2307/1937785.
  23. Lusk C. Tree-species competition and coexistence. Nature. 2003;422: 580-1. https://doi.org/10.1038/422580b.
  24. Menendez R, Megias AG, Hill JK, Braschler B, Willis SG, Collingham Y, et al. Species richness changes lag behind climate change. Proc Biol Sci. 2006;273(1593):1465-70. https://doi.org/10.1098/rspb.2006.3484.
  25. Midgley JJ, Bond WJ. A synthesis of the demography of African acacias. J Trop Ecol. 2001;17(6):871-86.
  26. Moller EM, Bahnweg G, Sandermann H, Geiger HH. A simple and efficient protocol for isolation of high molecular weight DNA from filamentous fungi, fruit bodies, and infected plant tissues. Nucleic Acids Res. 1992;20(22):6115-6. https://doi.org/10.1093/nar/20.22.6115.
  27. Negash L. Successful vegetative propagation techniques for the threatened African pencil cedar (Juniperus procera Hoechst. ex Endl.). For Ecol Manag. 2002;161(1-3):53-64. https://doi.org/10.1016/S0378-1127(01)00501-1.
  28. Price PW. Insect ecology. 3rd ed. New York: Wiley; 1997.
  29. Primack R. A primer of conservation biology. Sunderland: Sinauer Associates; 1995.
  30. Rosen E. Periodic droughts and long-term dynamics of Alvar grassland vegetation on Oland, Sweden. Folia Geobot. 1995;30:131-40. https://doi.org/10.1007/BF02812093.
  31. Shahi A, Movafeghi A, Hekmat-Shoar H, Neishabouri A, Iranipour S. Demographic study of Juniperus communis L. on Mishu-Dagh altitudes in North West of Iran. Asian J Plant Sci. 2007;6(7):1080-7. https://doi.org/10.3923/ajps.2007.1080.1087.
  32. Shaltout KH, Ayyad MA. Structure and standing crop of Egyptian Thymelaea hirsuta populations. Vegetatio. 1988;74(2-3):137-42.
  33. Shaltout KH, Mady MA. Current situation of the raudha's woody plant populations in the Central Saudi Arabia. Feddes Repert. 1993;104(7-8):503-9.
  34. Shimono A, Zhou H, Shen H, Hirota M, Ohtsuka T, Tang Y. Patterns of plant diversity at high altitudes on the Qinghai-Tibetan Plateau. J Plant Ecol. 2010;3(1):1-7. https://doi.org/10.1093/jpe/rtq002.
  35. Verheyen K, Schreurs K, Vanholen B, Hermy M. Intensive management fails to promote recruitment in the last large population of Juniperus communis (L.) in Flanders (Belgium). Biol Conserv. 2005;124(1):113-21. https://doi.org/10.1016/j.biocon.2005.01.018.
  36. Vidakovic M. Conifers: morphology and variation. Translated from Croatian by Maja Soljan. Zagreb: Graficko Zavod Hrvatske; 1991.
  37. Vincent P. Saudi Arabia: an environmental overview. London: Taylor and Francis; 2008.
  38. Ward LK. The demography, fauna and conservation of Juniperus communis in Britain. In: Synge H, editor. The Biological aspects of rare plant conservation. Chichester: Wiley; 1981. p. 319-29.
  39. Ward LK. The conservation of juniper: longevity and old age. J Appl Ecol. 1982;19(3):917-28. https://doi.org/10.2307/2403293.
  40. Warrag E, Mallick J, Singh R, Khan R. Status of dieback of Juniperus procera (African pencil cedar) in natural stands and plantation in Alsouda Highlands, Saudi Arabia. Appl Ecol Environ Res. 2019;17(2):2325-38. https://doi.org/10.15666/aeer/1702_23252338.
  41. Weiner J. Size hierarchies in experimental populations of annual plants. Ecology. 1985;66(3):743-52. https://doi.org/10.2307/1940535.
  42. Witt SM. Microhabitat distribution and demography of two Florida scrub endemic plants with comparisons to their habitat-generalist congeners [PhD dissertation]. Baton Rouge: Louisiana State University and Agricultural and Mechanical College; 2004.