Effects of Environmental Change on Species Diversity

Authors

  • Joshua Mulinge Egerton University

DOI:

https://doi.org/10.47604/ijb.2014

Keywords:

Environmental Changes, Species, Diversity

Abstract

Purpose: The aim of the study is to assess the effects of environmental changes on species diversity

Methodology: This study adopted a desktop methodology. This study used secondary data from which include review of existing literature from already published studies and reports that was easily accessed through online journals and libraries

Findings: The study found that environmental changes, such as deforestation, habitat fragmentation, and urbanization, lead to a decline in species diversity. Climate change has emerged as a critical driver of changes in species diversity. Rising temperatures, altered precipitation patterns, and sea-level rise have caused shifts in species distributions, changes in community composition, and reductions in species richness. Pollution including water and air pollution, has detrimental effects on species diversity especially in aquatic ecosystems.

Unique Contribution to Theory, Practice and Policy: The study was anchored on the theory of island biogeography which was propounded by Robert MacArthur and E. O. Wilson and niche theory which was originally proposed by G.E. Hutchinson. The study recommended that conservation efforts should prioritize habitat preservation and restoration. Protecting and restoring natural habitats is crucial for maintaining species diversity. Conservation practices should focus on minimizing habitat loss, creating ecological corridors, and rehabilitating degraded habitats. Environmental policies and regulations should be designed to mitigate the drivers of environmental change and promote sustainable practices.

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References

Ali, A., Parveen, A., Saeed, U., Ullah, H., & Ahmad, W. (2019). Threats to freshwater biodiversity in Pakistan: Current status and conservation challenges. Aquatic Conservation: Marine and Freshwater Ecosystems, 29(9), 1579-1592. doi: 10.1002/aqc.3140

Azevedo-Santos, V. M., Vitule, J. R., Pelicice, F. M., & Garcia, D. A. (2016). Spread of non-native freshwater fish: ecological explanations and research challenges. Hydrobiologia, 763(1), 1-21.

Batáry, P., Dicks, L. V., Kleijn, D., & Sutherland, W. J. (2015). The role of agri-environment schemes in conservation and environmental management. Conservation Biology, 29(4), 1006-1016.

Da Silva, J. M., Barlow, J., Louzada, J., Mestre, L. A., & Silveira, J. M. (2018). The effects of deforestation on riparian plant communities: A case study in the Brazilian Amazon. Forest Ecology and Management, 418, 23-30. doi: 10.1016/j.foreco.2018.02.030

Di Minin, (2015). Identifying determinants of effective anti"poaching ranger patrols across African savannahs. Biological Conservation, 191, 758-765. doi: 10.1016/j.biocon.2015.08.010

Hughes, T. P., Barnes, M. L., Bellwood, D. R., Cinner, J. E., Cumming, G. S., Jackson, J. B., ... & Wilson, S. K. (2017). Coral reefs in the Anthropocene. Nature, 546(7656), 82-90.

IPBES. (2019). Global assessment report on biodiversity and ecosystem services. IPBES secretariat.

Kirwan, M. L., Murray, A. B., & Donnelly, J. P. (2011). Rapid wetland expansion during European settlement and its implication for marsh survival under modern sediment delivery rates. Geology, 39(5), 507-510.

Laurance, (2014). Averting biodiversity collapse in tropical forest protected areas. Nature, 489(7415), 290-294. doi: 10.1038/nature11318

Laurance, (2014). Averting biodiversity collapse in tropical forest protected areas. Nature, 489(7415), 290-294. doi: 10.1038/nature11318

Leidner, A. K., & Haddad, N. M. (2011). Combining measures of dispersal to identify conservation strategies in fragmented landscapes. Conservation Biology, 25(6), 1022-1031. doi: 10.1111/j.1523-1739.2011.01704.x

Liess, M., & Von der Ohe, P. C. (2015). Analyzing effects of pesticides on invertebrate communities in streams. Environmental Toxicology and Chemistry, 34(9), 1990-1997.

Lomolino, M. V., Riddle, B. R., Whittaker, R. J., & Brown, J. H. (2017). Biogeography. Sinauer Associates. Top of Form

Mason, N. W., Mouillot, D., Lee, W. G., & Wilson, J. B. (2012). Functional richness, functional evenness and functional divergence: the primary components of functional diversity. Oikos, 122(12), 1613-1620.

Meijaard, (2018). Quantifying killing of orangutans and human-orangutan conflict in Kalimantan, Indonesia. PLoS ONE, 13(10), e0204285. doi: 10.1371/journal.pone.0204285

Midgley, (2019). Biodiversity and ecosystem services in dynamic landscapes under climate change. Current Opinion in Environmental Sustainability, 38, 56-62. doi: 10.1016/j.cosust.2019.05.003

Nakano, D., Sato, T., Sakanishi, Y., Tomiya, A., Matsui, K., & Nakamura, M. (2016). Drastic declines in stream-dwelling fishes in a regionally urbanized watershed in Japan over two decades. Biological Conservation, 200, 120-129. doi: 10.1016/j.biocon.2016.05.028

Newbold, T., Hudson, L. N., Arnell, A. P., Contu, S., De Palma, A., Ferrier, S., ... & Purves, D. W. (2016). Has land use pushed terrestrial biodiversity beyond the planetary boundary? A global assessment. Science, 353(6296), 288-291.

Newmark, W. D. (2015). Conserving biodiversity in east African forests: A study of the Eastern Arc Mountains. Oxford University Press.

Njumbi, S. J., de Boer, W. F., & Prins, H. H. T. (2016). Population status of herbivores in a Kenyan rangeland in relation to land use and rainfall. African Journal of Ecology, 54(1), 50-58. doi: 10.1111/aje.12280

Oliver, T. H., Isaac, N. J., August, T. A., Woodcock, B. A., Roy, D. B., & Bullock, J. M. (2015). Declining resilience of ecosystem functions under biodiversity loss. Nature Communications, 6, 10122. doi: 10.1038/ncomms10122

Roy, (2019). Biodiversity and climate change: Integrating evolutionary and ecological responses of species and communities. Reviews in Environmental Science and Bio/Technology, 18(4), 563-601. doi: 10.1007/s11157-019-09509-z

Smith, A. B., Knapp, A. K., Collins, S. L., Zambatis, N., Gurevitch, J., & Clark, C. M. (2017). Increased rainfall variability and reduced rainfall amount decreases soil CO2 flux in a grassland ecosystem. Global Change Biology, 23(5), 1908-1920. doi: 10.1111/gcb.13515

Steinbauer, M. J., Grytnes, J. A., Jurasinski, G., Kulonen, A., Lenoir, J., Pauli, H., ... & Wipf, S. (2018). Accelerated increase in plant species richness on mountain summits is linked to warming. Nature, 556(7700), 231-234.

Tscharntke, T., Tylianakis, J. M., Rand, T. A., Didham, R. K., Fahrig, L., Batáry, P., ... & Bengtsson, J. (2012). Landscape moderation of biodiversity patterns and processes"”eight hypotheses. Biological Reviews, 87(3), 661-685.

Vilà , (2011). Ecological impacts of invasive alien plants: A meta-analysis of their effects on species, communities, and ecosystems. Ecology Letters, 14(7), 702-708. doi: 10.1111/j.1461-0248.2011.01628.x

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Published

2023-06-26

How to Cite

Mulinge, J. (2023). Effects of Environmental Change on Species Diversity. International Journal of Biology, 3(1), 43–53. https://doi.org/10.47604/ijb.2014

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Articles