A Study on the Diversity and Relative Abundance of Insect Fauna in Wukari, Taraba State, Nigeria

سال انتشار: 1398
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 297

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شناسه ملی سند علمی:

JR_IJABBR-7-2_004

تاریخ نمایه سازی: 3 آذر 1398

چکیده مقاله:

A field survey was conducted in Wukari, Taraba State to assess the diversity and abundance of insect species in selected habitats (residential, open field made up of grassland and an agro ecosystem). Insects recovered were wet preserved in 70% ethanol except butterflies and moths. A total of 4,501 insects spread across 9 orders, 34 families and 77 species were recovered. The most dominant order was Coleoptera with a relative abundance of (44.41%) and, the least was Orthoptera (0.84%). The most dominant insect species are Heteronychus mossambicus (11.44%) followed by Termes sp. (7.77%) and, Goryphus sp. (7.71%). Chlaenius decipiens, Cheilomenes sulphurea, Copris sp., Cicindela sp., Pseudantheraea sp., Derobranchus geminatus, Glaurocara townsendi, Camponotus perrisi, and Gryllus bimaculatus were the rare species with relative abundance of 0.02%. Species richness is based on number of individual insects measured. The highest species diversity was observed in the order Coleoptera (Shannon H’ =2.547) while, Isoptera was the least (H’ = 0.00). However, the highest species evenness was observed in the order Isoptera (E’ = 1.00). Fisher-alpha (α) index of diversity shows that the agro ecosystem has the highest index of diversity (α = 14.24) while, the residential area had the least (α = 11.9). This study therefore, brings to the fore the diversity and abundance of insects in Wukari and underscores the need for a more intensive study and for sustainable actions to be taken in conserving beneficial rare species while, managing the abundant pestiferous ones.

نویسندگان

Emmanuel Okrikata

Federal University Wukari

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  • Adetundan, SA, Olusola, JA. (2013). Diversity and abundance of arthropod ...
  • as influenced by different forest vegetation types in Ondo State ...
  • Adetundan, SA, Ofuya, TI, Fuwape, JA. (2005). Environmental effects of ...
  • and logging on tree species diversity in Akure Forest Reserve ...
  • Axmacher, JC, Fiedler, K. (2004). Manual versus automatic moth sampling ...
  • sources: A comparison of catches from mountain Kilimanjaro, J Lepidopt ...
  • Berenhaum, MR. (1995). Bugs in the System: Insect and their ...
  • Addison - Wesley publishing, p. 296. ...
  • Bradshaw, CJA, Sohdi NS, Brook, BW. (2009). Tropical turmoil a ...
  • progress, Front Ecol Environ, 7:79- 87. ...
  • Campos, WG, Pereira DBS, Schoerder, JH. (2000). Comparison of the ...
  • interception trap models for sampling hymenoptera and other insects , ...
  • Entomol do Bra, 29:381- 389. ...
  • Cheng, S, Kirton, LG. (2005). Overview of insect biodiversity research ...
  • Malaysia, pp 121- 128. In Chua, L.SL, L.G Kirton and ...
  • Malaysia and threat assessments of plant species in Malaysia. Proceeding ...
  • and workshop, 28-30. ...
  • David, HE, Mark, DR. (1994). Interactions between herbivores insects and ...
  • coevolution, America Natur, 145(4):677-697. ...
  • Frank, KD. (2006). Effect of Artificial Light on Moth. In: ...
  • Night Lighting (Longcore T, Rich C, Eds.), Washington DC: Island ...
  • Gaston, KJ. (1991). The magnitude of global insect species richness ...
  • Godfray, HC. (2002). Challenges for taxonomy, Nature, 417:17-19. ...
  • John, SN. (1989). A study of five methods of sampling ...
  • rainforest, with reference to the Parasita, J Natur History, 23:285–298. ...
  • Kato, M, Itioka, T, Sakai, S, Monose, K, Yamane, S. ...
  • population fluctuation patterns of light attracted beetle in a tropical ...
  • forest in Sarawak, Populat Ecology, 42:97-104. ...
  • Maina, YT, Maina, UM. (2012). Preliminary survey of insect fauna ...
  • basin area of Borno State, Nigeria, J Natur Sci Res, ...
  • Mazon M, Bordera, S. (2008). Effectiveness of two sampling methods ...
  • Tchneumonidae (hymenoptera) in the cabaneros national park (spain), Eur J ...
  • Meddler, JT. (1980). Insect of Nigeria checklist and bibiolography , ...
  • Entomological Institute, p. 919. ...
  • Miller SE, Rogo, LM. (2001). Challenges and oppuntunities in understanding ...
  • of African insect diversity, Cimbebasia, 17:197-218. ...
  • Premalatha, M, Abbasi, T, Abbasi, T, Abassi, SA. (2011). Energy ...
  • reduce global warming ecodegradation: The use of edible insects, Renew ...
  • Roulston, TH, Smith, SA, Brewster, AL. (2007). A comparison of ...
  • sampling techniques for documenting bees (Hymenoptera: Apiformes) fauna, J Kansas ...
  • Entomol Soc, 80:179-181. ...
  • Sabu, TK, Shiju, RT. (2010). Efficiency of pitfall trapping; winker ...
  • methods for measuring ground-dwelling arthropods in moist deciduous forests in ...
  • Ghats, J Insect Sci, vol. 10, pp. 1-17. ...
  • Samways, MJ. (2007). Connecting biodiversity, Trend in Ecology and Evolution, ...
  • Saunder, ME, Luck, GW. (2013). Pan trap catches of pollinators ...
  • Australia J Entomol, 52:106-113. ...
  • Tscharntke, T, Brandl, R. (2004). Plant insect interactions in fragmented ...
  • Rev Entomol, 49:405-430. ...
  • Wardle, DA. (2002). Community and Ecosystem linking the above and ...
  • components. Princeton university press, Princeton New Jersey, p. 392. ...
  • Winder, L, Holland, JM, Perry, J, Woolley NC, Alexander, CJ. ...
  • connected pitfall trapping for sampling predatory beetles and spider , ...
  • Appl, 98:249-258. ...
  • Yi, Z, Jinchao, F, Dayuan, X, Weiguo S, Axmacher, JC. ...
  • arthropods sampling methods, J Res Ecology, 3:174-182. ...
  • نمایش کامل مراجع