The Diversity of Nepenthes Species and Their Rhizosphere Soil Properties Around The Lore Lindu National Park Area, Central Sulawesi, Indonesia
Author(s)
Yusran Yusran , I Nengah Korja , Rahmawati Rahmawati , Kartika Megawati , Rahmawati Rahmawati , Sustri Sustri ,
Download Full PDF Pages: 48-56 | Views: 209 | Downloads: 61 | DOI: 10.5281/zenodo.7611844
Abstract
Lore Lindu National Park is one of the most important ecosystem protection areas in Central Sulawesi. However, currently, the conservation area is threatened by mining activities, both legal and illegal, such as gold mining, which of course threatens the sustainability of the biological resources in it. On the one hand, research on endemic flora and their potential for symbiosis with soil microbes is still lacking, especially in conservation areas. This study aims to determine the diversity of Nepenthes spp that grow both outside and inside the Lore Lindu National Park area, their ecological characteristics and the potential for symbiosis with soil microbes. The results showed that in each research location two types of Napenthes were found, namely Nepenthes mirabilis with 23 individuals in Padang Padaeha and 71 individuals in pine stands, then Nepenthes tentaculata with 77 individuals in Padang Padaeha and 109 in pine stands. Both types of Napenthes are associated with other plant species such as Eucalyptus deglupta, Imperata cilindrica, Selaginella plana, Gleichenia linearis, Rhodomyrtus tomentosa, Blechnum sp, Stenoclaena palustris, Dicronapteris linearis, Lycopodiella cernua, Lygodium microphyllum, Clidemia hirta and Digitaria sp. The Nepenthes species diversity index in both locations was in the low category. Furthermore, the fungal population was also higher than the bacterial population in both research sites as effects of soil characteritics. The results of this study can be used as a basis for in-situ conservation of these species in the future, especially in the national park area
Keywords
Diversity, Nepenthes spp, Soil Microbes, Lore Lindu National Park
References
i. Adam J.H., Hamid HA., Juhari M.A.A., Tarmizi S.N.A., Idris W.M.R., 2011. Species composition and dispersion pattern of pitcher plants recorded from Rantau Abang in Marang District, Terengganu State of Malaysia. Inter. J. Bota. 7: 162-169.
ii. Allen S.E., Grinshaw H.M., Parkinson J.A., Quaramby C., 1974. Chemical analysis of ecological materials. Blackwell Scientific Publications, Oxford.
iii. Anderson J.M and Ingram J.S.I., 1993. (Eds.) Tropical soil biology and fertility. A handbook of methods. C.A.B. International, Oxford. 296: 1694-1697.
iv. Broeckling, C.D, Broz, A.K, Bergelson, J., Manter, D.K. and Vivanco, J.M. 2008. Root exudates regulate soil fungal community composition and diversity. Appl Environ Microb., 74: 738–744
v. Buckley H.L, Miller T.E, Ellison A.M & Gotelli N.J., 2003. Reverse latitudinal trends in species richness of pitcher-plant food webs. Ecol Lett 6: 825–829.
vi. Cheek, M., & Jebb, M., 2016. A New Section in Nepenthes (Nepenthaceae) and A New Species From Sulawesi, Blumea, 61 (2): 59-62.
vii. Danser B.H., 1928. The Nepenthaceae of the Netherlands Indies. Bulletine Jardin Botanique de Buttenzorg. 3:330-357.
viii.D’amato P., 1996. The savage garden. Berkeley, CA. Ten. Speed Press.
ix. Frankie H., dan Maloedyn S., 2006. Petunjuk Praktis Perawatan Nepenthes. Agromedia Pustaka. Jakarta
x. Frazier C.K., 2000. The enduring controversities concerning the process of protein digestion in Napenthes carnivorous. Plant Newsletter. 29(2): 56-61.
xi. Grantina L., Seile E., Kenigsvalde K., Kasparinskis R., Tabors G., Nikolajeva V., Jungerius P., Muiznieks I., 2011. The influence of the land use on abundance and diversity of soil fungi: comparison of conventional and molecular methods of analysis. Environmental and Experimental Biology. 9:9-21.
xii. Hackl E., Bachmann G., Boltenstern-Zechmeister S., 2000. Soil microbial biomass and rhizosphere effects in natural forest stands. Phyton. 40:83-90.
xiii.Handayani T., 2001. Nepenthes spp. koleksi Kebun Raya Bogor yang berpotensi sebagai tanaman hias. Warta Kebun Raya. 3(1):26-31.
xiv.Handayani, T., Latifah, D., & Dodo., 2005. Diversity and Growth Behaviour of Nepenthes (Pitcher Plants) in Tanjung Puting National Park, Central Kalimantan Province. Biodiversitas, 6(4), 248-252.
xv. Hidayat S., Helmanto H., Dodo, Purnomo D.W., Supriyatna I., 2018. Habitat of Nepenthes spp. in the area of Sampit Botanic Garden, Central Kalimantan, Indonesia. Biodiversitas. 19(4): 1258-1265. https://doi.org/10.13057/biodiv/d190411
xvi.Jackson M.L. 1973. Soil chemical analysis. Ist Edn., Pretice Hall of India Pvt. Ltd., New Delh, India.
xvii. Jeffry W., Rafdinal, Turnio M., 2017. Keanekaragaman jenis kantong semar (Napenthes spp.) di kawasan Pelestarian plasma nutfah (KPPN) PT. Muara Sunga Landak Kabupaten Mempawah. Protobiont. 6(3):42-50.
xviii. Johnson, Leander F., and Elroy A. Curl. 1972. Methods for Research on the Ecology of Soil-Borne Plant Pathogens. 426 So. Sixth St., Minneapolis Burgess Publishing Company.
xix.Julianto E.D., Mallombasang S.R., Labiro E., 2021. Keanekaragaman jenis kantong semar (Nepenthes spp.) di Padang Padeah Taman Nasional Lore Lindu. Jurnal Warta Rimba. 9(2): 101-108.
xx. Kawasaki, A., Donn, S., Ryan, P. R., Mathesius, U., Devilla, R., Jones, A., et al., 2016. Microbiome and exudates of the root and rhizosphere of Brachypodium distachyon, a model for wheat. PLoS One 11:e0164533. doi: 10.1371/journal. pone.0164533
xxi.Latiff N.A, Sukri R.S, Metali F., 2014. Nepenthes diversity and abundance in five habitats in Brunei Darussalam. Reinwardtiana 14: 67-71.
xxii. Majaw A.P., Makdoh K., Devi H.R., Kayang H., 2015. Fungal diversity in the rhizosphere of Napenthes khasiana Hook., f., an endemic and endangered insectivorous plant of Meghalaya, India. International Journal of Advanced Research in Biological Sciences. 2(10): 96-102.
xxiii. Mansur, M. 2008. Penelitian Ekologi Nepenthes di Laboratorium Alam Hutan Gambut Sabangau Kereng Bangkirai Kalimantan Tengah. Jurnal Teknologi Lingkungan 9(1):67- 73.
xxiv. Martin J.P. 1950. Use of acid, rose bengal, and streptomycin in the plate method for estimating soil fungi. Soil Sci., 69:215- 232
xxv. Mey F.S., 2010. Introduction to the pitcher plants (Nepenthes) in Cambodia. Cambodian J. Nat. Hist. 2:106-117.
xxvi. Miller T.E., Kneitel J.M., 2005. Inquiline communities in pitcher plants as a prototypical metacommunity. Metacommunities: Spatial Dynamics and Ecological Communities, (Holoyak M, Leibold MA & Holt R, eds), pp. 122–145. University of Chicago Press, Chicago, IL.
xxvii. Pitopang R., Thaha I., Amar A.L., Lee C.C., 2018. Has Nepenthes pitopangii Chi C. Lee, S. Mc Pherson, Bourke & M. Mansur a rare and endemic flowering plant of Sulawesi, been extinct in its original nature? Natural Science: Journal of Science and Technology. 7(3): 358-370.
xxviii. Puspitaningtyas, M.D., & Wawangningrum, H., 2007. Keanekaragaman Nepenthes di Suaka Alam Sulasih Talang, Sumatera Barat. Biodiversitas, 8(2): 152-156
xxix. Rawi N.A and Shahrudin R., 2021. Species Richness and soil properties in Nepenthes habitat at Bris Ecosystem, in Setiu Trengganu. University Malaysia Trengganu Journal of Undergraduate Research. 3(4); 67-72.
xxx. Rembold K ., Fischer E., Wetzel M.A., Barthlott W., 2010. Prey composition of the pitcher plant Nepenthes madagascariens. Journal of Tropical Ecology. 26:365–372.
xxxi. Rismita S., 2009. Keanekaragaraman jenis kantong semar (Nepenthes spp.) dan manfaatnya bagi masyarakat lokal. Seminar Nasional Etnobotani, Cibinong Science Center-LIPI, 18 Mei 2009.
xxxii. Robinson A.S., Fleischmann A.S., Mcpherson S.R., Heinrich V.B., Gironella E.P., Pena C.Q., 2009. A spectacular new species of Nepenthes L. (Nepenthaceae) pitcher plant from Cenyral Palawan, Phillipines. Bot. J. Linn. Cocc. 159:195-202.
xxxiii. Setiawan H., Wardhani H.A.K., Kamaludin, Hutagaol RR., Afriani R., 2018. The diversity of Nepenthes at the post-mining area in Sintang District, West Kalimantan, Indonesia. 19(5): 1820-1827.
xxxiv. Takeuchi, Y., Salcher, M.M., Ushio, M., Shimizu-Inatsugi, R., Kobayashi, M.J., Diway, B., von Mering, C., Pernthaler, J., Shimizu, K.K., 2011. In situ enzyme activity in the dissolved and particulate fraction of the fluid from four pitcher plant species of the genus Nepenthes. PLoS ONE 6, e25144.
xxxv. Takeuchi Y., Chaffron S., Salcher M.M., Shimizu-Inatsugi R., Kobayashi M.J., Diway B., von Mering C., Pernthaler J., Shimizu k.k., 2015. Bacterial diversity and composition in the fluid of pitcher plants of the genus Nepenthes. Systematic and Applied Microbiology. 38: 330-339. https://doi.org/10.1016/j.syapm.2015.05.006
xxxvi. Tamin R., Hotta M., 1986. Nepenthes in Sumatera. The genus Nepenthes of Sumatera island. In Hotta M (ed.). Diversity and Dynamic of Plant Life in Sumatera. Kyoto: Kyoto University.
xxxvii. Wistuba, A. N., Fleischmann, A. (2007). Nepenthes Flava, A New Species of Nepenthaceae From the Northern Part of Sumatera, Blumea, 52 (2), 159-163.
xxxviii. Yelli, F. 2013. Induksi Pembentukan Kantong dan Pertumbuhan Dua Spesies Tanaman Kantong Semar (Nepenthes spp.) Pada Berbagai Konsentrasi Media Ms Secara In Vitro. Jurnal Agrotropika 18(2): 56-62
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