The Diversity of Ants (Hymenoptera: Formicidae) on Industrial Forest in Sungai Merah Village, Sarolangun, Jambi with Its Identification Key
Nur Laras Fitriyani(1), RC. Hidayat Soesilohadi(2), Hari Purwanto(3*)
(1) Faculty of Biology, Universitas Gadjah Mada, Yogyakarta. Jalan Teknika Selatan, Caturtunggal, Depok, Sleman, D.I. Yogyakarta 55284, Indonesia
(2) Faculty of Biology, Universitas Gadjah Mada, Yogyakarta. Jalan Teknika Selatan, Caturtunggal, Depok, Sleman, D.I. Yogyakarta 55284, Indonesia
(3) Faculty of Biology, Universitas Gadjah Mada, Yogyakarta. Jalan Teknika Selatan, Caturtunggal, Depok, Sleman, D.I. Yogyakarta 55284, Indonesia
(*) Corresponding Author
Abstract
Ants have a very important role in an ecosystem. The insects act as decomposers, pollinators, soil aerators, pest controllers, and predators. Their role is very varied so that they can be easily found in various ecosystems, one of which is the rubber and oil palm ecosystem. The ant’s diversity in this forest eventually will affect the productivity of the land. The aim of this study is to determine the diversity and role of ants in the rubber and oil palm plantations in Sungai Merah Village. Both of the plantations dominate the industrial forest in Jambi. The method used in this study was purposive random sampling. Observation plots were installed in the ecosystem of rubber and oil palm plantations; each ecosystem had 4 plots consisting of 9 units of pitfall traps, and 9 units of bait traps. The results of this study show that 15 species of ants are found in the ecosystem of rubber and oil palm plantations. Furthermore, the collected ants consisted of 39.972 individual ants belonging to 12 genera and 5 subfamilies. Ants establish in the ecosystem of rubber and oil palm plantations in Sungai Merah Village have an important role either as predators (Crematogaster spp., Odontomachus rixosus, Odontoponera tranversa, Pheidole huberi, Tetraponera rufonigra, Tapinoma melanocephalum, Camponotus spp. and Colobopsis moeschi), or foragers such as ants from the genera Anoplolepis, Camponotus, Monomorium and Polyrhachis. As predators, Oecophylla smaragdina, Camponotus spp. and Crematogaster spp. also play a role as biological control agents in the ecosystem.
Keywords
Full Text:
PDFReferences
Agrawal, V.M. & Rastogi, N., 2010. Ants as dominant insect visitors of the extrafloral nectaries of sponge gourd plant, Luffa cylindrica (L.) (Cucurbitaceae). Asian Myrmecology, 3, pp.45-54.
Andersen, A.N., 1995. A classification of Australian ant communities, based on functional groups which parallel plant life-forms in relation to stress and disturbance. Journal of biogeography, 22 (1), pp.15-29. doi: 10.2307/2846070
Aswathi, P. & Sabu, T.K., 2011. Weaver ant (Oecophylla smaragdina), huntsman spider (Heteropoda venatoria) and house gecko (Hemidactylus frenatus) as potential biocontrol agents of the nuisance pest, Luprops tristis. Halteres, 3(3), pp.56-61.
Bilkis, F.G., Chozin, M.A. & Guntoro, D., 2022. Pergeseran dominasi gulma kebun kelapa sawit IPB Jonggol, dan kemungkinan resistensi terhadap herbisida glifosat. Indonesian Journal of Agronomy, 50(1), pp.115-122. doi: 10.24831/jai.v50i1.39921
Bolton, B., 1994. Identification guide to the ant genera of the world. Cambridge (UK); Harvard University Pr.
Borbély, C. & Nagy, C., 2022. Providing sugar sources for ants improves the biological control of Aphis spp. in apple orchards. Biological Control, 175. doi: 10.1016/j.biocontrol.2022.105056
BPS Jambi. Luas Tanaman Perkebunan Menurut Jenis Tanaman (Hektar), 2018-2020, viewed 6 January 2021 from https://jambi.bps.go.id/indicator/54/514/1/luas-tanaman-perkebunan-menurut-jenis-tanaman-.html.
Cao, Q. et al., 2022. Differentiated impacts of the feeding-habits of three ant species on carbon mineralization in tropical forest soils. European Journal of Soil Biology, 110. doi: 10.1016/j.ejsobi.2022.103403
Exélis, M.P. et al., 2023. Foraging Behaviour and Population Dynamics of Asian Weaver Ants: Assessing Its Potential as Biological Control Agent of the Invasive Bagworms Metisa plana (Lepidoptera: Psychidae) in Oil Palm Plantations. Sustainability, 15(1), pp.780. doi: 10.3390/su15010780
Haneda, N.F. & Yuniar, N., 2015. Komunitas Semut (Hymenoptera: Formicidae) pada Empat Tipe Ekosistem yang Berbeda di Desa Bungku Provinsi Jambi. Jurnal Silvikultur Tropika, 6(3), pp.203-209.
Haneda, N.F. & Yuniar, N., 2020. Peranan Semut di Ekosistem Transformasi Hutan Hujan Tropis Dataran Rendah. Jurnal Ilmu Kehutanan, 14, pp.16-2. doi: 10.22146/jik.57459
Harwanto, H. et al., 2020. Explorasi Dan Studi Komposisi Botani Gulma Di Perkebunan Karet Ptpn IX Kebun Getas Sebagai Pakan Ternak Ruminansia. In Prosiding Seminar Nasional Teknologi Agribisnis Peternakan (STAP), 7, pp.699-700.doi: 10.46549/jipvet.v11i1.133
Hashimoto, Y. & Rahman, H. 2003. Manual for Bornean Ant (Formicidae) Identification. Universitas Malaysia Sabah, Kinabalu.
Hidayat, S. & Yohanes, V.A., 2007. Strategi Pengembangan Kawasan Agroindustri Terintegritas yang Berbasis Ekspor di Provinsi Jambi. EKO-REGIONAL, 2(1), pp.1-8. doi: 10.20884/1.erjpe.2007.2.1.384
Krebs, C.J., 2014. Ecology: The Experimental Analysis of Distribution and Abundance 6th Edition.
Latumahina, F. et al., 2015. Respon semut terhadap kerusakan antropogenik dalam hutan lindung sirimau ambon (Ants Response to Damage Anthropogenic in Sirimau Forest Ambon). Jurnal Manusia dan Lingkungan, 22(2), pp.169-178. doi: 10.22146/jml.18739
Majeed, W., Khawaja, M. & Rana N., 2021. Assessing Fluctuation of Ant Populations in a Distinct Ecological Habitat to Track Climate Change Effects. BIODIVERSITAS: Journal of Biology Diversity, 22(5), pp.2722-2727. doi: 10.13057/biodiv/d220533
Nazarreta, R. et al., 2021. A guide to the ants of Jambi (Sumatra, Indonesia): Identification key to ant genera and images of the EFForTS collection. doi: 10.14203/press.273
Nazarreta, R. et al., 2020. Rainforest conversion to smallholder plantations of rubber or oil palm leads to species loss and community shifts in canopy ants (Hymenoptera: Formicidae). Myrmecological News, 30, pp.175-186. doi: 10.25849/myrmecol.news_030:175
Nazarreta. R., 2017. Keanekaragaman dan Identifikasi Semut Arboreal di Lanskap Hutan Harapan dan Taman Nasional Bukit Duabelas, Jambi. Institut Pertanian Bogor.
Nooten, S. et al., 2019. Habitat complexity affects functional traits and diversity of ant assemblages in urban green spaces (Hymenoptera: Formicidae). Myrmecological News, 29, pp.67-77. doi: 10.25849/myrmecol.news_029:067
Pawar, S.L., 2014. Formicidae: Occurance and its role in ecosystem functioning. Flora and Fauna, 20(1).
Pierre, E.M. & Idris, A.H., 2013. Studies on the predatory activities of Oecophylla smaragdina (Hymenoptera: Formicidae) on Pteroma pendula (Lepidoptera: Psychidae) in oil palm plantations in Teluk Intan, Perak (Malaysia). Asian Myrmecology, 5(1), pp.163-176.
Putra, I.L.I., Setiawan, H. & Suprihatini, N., 2021. Keanekaragaman jenis semut (Hymenoptera: Formicidae) di sekitar kampus 4 Universitas Ahmad Dahlan Yogyakarta. Biospecies, 14(2), pp.20-30. doi: 10.22437/biospecies.v14i2.12905
Rawal, D., 2020. A report on various benefical roles of insects. International Journal of Entomology Research, 5(1), pp.15-17.
Riyanto., 2007. Kepadatan, pola distribusi dan peranan semut pada tanaman di sekitar lingkungan tempat tinggal. Jurnal Penelitian Sains, 10(2), pp.241-253. doi: 10.56064/jps.v10i2.445
Ronque, M.U.V., Fourcassie, V. & Oliveira, P.S., 2018. Ecology and Field Biology of Two Dominant Camponotus Ants (Hymenoptera: Formicidae) in the Brazilian Savannah. Journal of Natural History, 52(3-4), pp.237-252. doi: /10.1080/00222933.2017.1420833
Roza, S., 2018. Keanekaragaman Semut (Hymenoptera: Formicidae) pada Beberapa Jenis Ekosistem Perkebunan di Dharmasraya. Universitas Andalas Padang.
Rubiana et al., 2015. Agricultural land use alters species composition but not species richness of ant communities. Asian Myrmecology, 7(1), pp.73-85. doi: 10.20362/am.007008
Shattuck, S.O., 2000. Australian ants: their biology and identification (Vol. 3). CSIRO publishing.
Sholih, M.B. et al., 2019. Pengaruh tipe penggunaan lahan dalam membentuk komunitas semut dan layanan ekosistem yang diberikan. Jurnal Entomologi Indonesia, 16(2), pp.83-83. doi: 10.5994/jei.16.2.83
Siriyah, S.L., 2016. Keanekaragaman dan dominansi jenis semut (Formicidae) di hutan musim Taman Nasional Baluran Jawa Timur. Biota: Jurnal Ilmiah Ilmu-Ilmu Hayati, 1(2), pp.85-90. doi: 10.24002/biota.v1i2.995
Suin, N.M., 1997. Ekologi Fauna Tanah. Jakarta: Bumi Aksara.
Swift, M. & David, B., 2001. Standard Methods for Assessment of Soil Biodiversity and Land Use Practice. International Centre for Research in Agroforestry. Bogor, Indonesia.
Ward, P.S. & Boudinot, B.E., 2021. Grappling with homoplasy: taxonomic refinements and reassignments in the ant genera Camponotus and Colobopsis (Hymenoptera: Formicidae). Arthropod Systematics & Phylogeny, 79, pp.37-56. doi: 10.3897/asp.79.e66978
Worboys, G., Wendy, L.F., & Michael, L., 2010. Connectivity Conservation Management: A Global Guide (with Particular Reference to Mountain Connectivity Conservation). Britania Raya: Earthscan.
Wielgoss, A. et al., 2010. Temperature and a dominant dolichoderine ant species affect ant diversity in Indonesian cacao plantations. Agriculture, Ecosystems & Environment, 135(4), pp.253-259. doi: 10.1016/j.agee.2009.10.003
Yaherwandi et al., 2019. The Influence of Forest Ecosystems to Ant Community on Smallholder Oil Palm Plantations at Dharmasraya Regency, West Sumatera Indonesia. IOP Conference Series: Earth and Environmental Science, 347(1). doi: 10.1088/1755-1315/347/1/012104
DOI: https://doi.org/10.22146/jtbb.86022
Article Metrics
Abstract views : 1169 | views : 475Refbacks
- There are currently no refbacks.
Copyright (c) 2024 Journal of Tropical Biodiversity and Biotechnology
This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.
Editoral address:
Faculty of Biology, UGM
Jl. Teknika Selatan, Sekip Utara, Yogyakarta, 55281, Indonesia
ISSN: 2540-9581 (online)