DIVERSITY AND ECOLOGY OF LAND SNAILS IN GUNUNG HALIMUN SALAK NATIONAL PARK (GHSNP) IN JAVA, INDONESIA

Ayu Savitri Nurinsiyah, Ita Faizah, Yogi Prasetio, Tedi Setiadi, Ristiyanti Marsetiowati Marwoto, Bernhard Hausdorf
| Abstract views: 640 | PDF views: 438

Abstract

The land snail fauna of the largest tropical montane forest in Java, the Gunung Halimun Salak National Park (GHSNP), was surveyed during the dry season (June-July) in 2015, concentrating on four park’s resorts, i.e. Cikaniki, Mt. Botol, Cisarua (Halimun area) and Cidahu (Salak area). In total, 399 specimens representing 43 species were collected. Prior to the surveys, 48 land snail species were known from the GHSNP. Fifteen new records for the GHSNP were discovered so 63 species are now known to inhabit the Park. This number represent 25% of the total land snail fauna of Java. 21 of the species found in GHSNP are endemic to Java. The species richness of the plots in GHSNP was correlated with soil pH and the composition of the land snail communities was correlated with elevation, annual mean temperature, and amount of deadwood.

Keywords

Endemism, tropical mountain forest, Java, Gastropods

Full Text:

PDF

References

Boettger, O. (1890). Ad. Strubell's Konchylien aus Java I. Bericht über die Senckenbergische Naturforschende Gesellschaft, 1890, 137–173, pls. 5–6.

Bruner, A.G., Gullison, R.E., Rice, R.E., & da Fonseca, G.A.B. (2001). Effectiveness of parks in protecting tropical biodiversity. Science, 291, 125-128.

Cameron, R.A.D. & Pokryszko, B.M. (2005). Estimating the species richness and composition of land mollusc communities: problems, consequences and practical advice. Journal of Conchology, 38, 529–547.

Carolyn, R.D., Baskoro, D.P.T. & Prasetyo, L.B. (2013). Analisis degradasi untuk penyusunan arahan strategi pengendaliannya di Taman Nasional Gunung Halimun-Salak Provinsi Jawa Barat. Majalah Ilmiah Globe, 15, 39-47.

Chao, A. & Chiu, C.H. (2016). Nonparametric estimation and comparison of species richness. Wiley StatsRef: Statistics Reference Online, 1, 26.

Chao, A., Ma, K.H., Hsieh, T.C. & Chiu, C.H. (2015). Online Program SpadeR (Species-richness Prediction and Diversity Estimation in R). Program and User's Guide. Accessed from http://chao.stat.nthu.edu.tw/wordpress/software_download/.

Cowie, R.H. (1998). Patterns of introduction of non-indigenous non-marine snails and slugs in the Hawaiian Islands. Biodiversity and Conservation, 7, 349–368.

DPJLHK (Direktorat Pemanfaatan Jasa Lingkungan Hutan Konservasi) (2016). Profil kawasan TN Gunung Halimun Salak. Accessed from http://jasling.net/profil_kawasan/detail_kawasan.php?id_kawasan=190&cat=1 . [19 February 2016].

Emberton, K.C., Pearce, TA. & Randalana, R. (1996). Quantitatively sampling land-snail species richness in Madagascan rainforests. Malacologia, 38, 203–212.

Endangered Species Team GHSNPMP-JICA (2005). Ecological Study Halimun-Salak Corridor Mount Halimun-Salak National Park. Accessed from https://report.nat.gov.tw/ReportFront/PageSystem/reportFileDownload/C10202500/003

Faith, D.P., Minchin, P.R. & Belbin, L. (1987). Compositional dissimilarity as a robust measure of ecological distance. Vegetatio, 69, 57–68.

Greke, K. (2019). New species and record of Diplommatina Benson, 1849 (Gastropoda: Diplommatinidae) from Java, Indonesia. Nautilus, 133, 14–21.

Halimun Salak National Park Authority (2016). Accessed from http://halimunsalak.org/ [19 February 2016].

Hausdorf, B. (2002). Introduced land snails and slugs in Colombia. Journal of Molluscan Studies, 68, 127–131.

Hengl, T., Mendes, J.J., Heuvelink, G.B.M., Ruiperez, G.M., Kilibarda, M., Blagotić, A., Shangguan, W., Wright, M.N., Geng, X., Bauer-Marschallinger, B., Guevara, M.A., Vargas, R., MacMillan, R.A., Batjes, N.H., Leenaars, J.G.B., Ribeiro, E., Wheeler, I., Mantel, S. & Kempen, B. (2017). SoilGrids250m: global gridded soil information based on machine learning. PloS One, 12, 1-40.

Heryanto. (2001). Snails composition in the southern part of Gvjsung Halimun National Park. Berita Biologi, 5(6), 765-771.

Heryanto. (2008). Ekologi keong darat di Taman Nasional Gunung Ciremai. Jurnal Biologi Indonesia, 4, 359-370.

Heryanto. (2012). Keanekaragaman keong darat di dua macam habitat makro di Gunung Slamet Jawa Tengah. In: Maryanto, I., Noerdjito, M. & Partomihardjo, T. (Editors.) Ekologi Gunung Slamet: Geologi, klimatologi, biodiversitas dan dinamika sosial. Jakarta: LIPI Press.

Heryanto, Ristiyanti, M.M., Munandar, A. & Susilowati, P. (2003). Keong dari Taman Nasional Gunung Halimun, Sebuah Buku Panduan Lapangan. Cibinong: Biodiversity Conservation

Project-LIP-JICA-PHKA.

Hijmans, R.J., Cameron, S.E., Parra, J.L., Jones, P.G. & Jarvis, A. (2005). Very high-resolution interpolated climate surfaces for global land areas. International Journal of Climatology, 25, 1965–1978.

Kubo, H. & Supriyanto, B. (2010). From fence-and-fine to participatory conservation: mechanism of transformation in conservation governance at the Gunung Halimun-Salak National Park, Indonesia. Biodiversity Conservation, 19, 1785-1803.

Loosjes, F.E. (1953). Monograph of the Indo-Australian Clausiliidae (Gastropoda, Pulmonata, Clausiliidae, Phaedusinae). Beaufortia, 31, 1–226.

Martens, E. (1867). Die Landschnecken. In: Die Preussische Expedition nach Ost-Asien. Nach amtlichen Quellen. Zoologischer Theil. Vol. 2. Berlin: Decker

Marwoto RM (1998) A Preliminary Study of Land Snails in Gunung Halimun National Park. Research and Conservation of Biodiversity in Indonesia Vol. IV. Gunung Halimun: The Last Submontane Tropical Forest in West Java. LIPI-JIKA-PHPA, Bogor, pp.148-154.

Ministry of Environment and Forestry. (2016). Statistik Kementrian Lingkungan Hidup dan Kehutanan Tahun 2015. Jakarta: Pusat Data dan Informasi Kementrian Lingkungan Hidup dan Kehutanan Republik Indonesia.

Moritz, C., Richardson, K.S., Ferrier, S., Monteith, G.B., Stanisic, J., Williams, S.E. & Whiffin, T. (2001). Biogeographical concordance and efficiency of taxon indicators for establishing conservation priority in a tropical rainforest biota. Proceedings of the Royal Society of London. Series B: Biological Sciences, 268(1479), 1875-1881.

Nurinsiyah, A.S. (2015). Land snail fauna of the Sukolilo karst in Java (Indonesia). American Conchologist, 43, 30–32.

Nurinsiyah, A.S. (2018). Land snails of Java: a study on systematics, ecology, and biogeography. Dissertation. Hamburg: University Hamburg

Nurinsiyah, A.S., Fauzia, H., Hennig, C. & Hausdorf, B. (2016). Native and introduced land snail species as ecological indicators in different land use types in Java. Ecological Indicators, 70, 557–565.

Nurinsiyah, A.S. & Hausdorf, B. (2017). Revision of the Diplommatinidae (Gastropoda: Cyclophoroidea) from Java. Zootaxa, 4312, 201-245.

Nurinsiyah, A.S. & Hausdorf, B. (2019). Listing, impact assessment and prioritization of introduced land snail and slug species in Indonesia. Journal of Molluscan Studies, 85, 92-102.

Nurinsiyah, A.S., Neiber, M.T. & Hausdorf, B. (2019). Revision of the land snail genus Landouria Godwin-Austen, 1918 (Gastropoda, Camaenidae) from Java. European Journal of Taxonomy, 526, 1-73.

Oksanen, J., Blanchet, F.G., Kindt, R., Legendre, P., Minchin, P.R., O'Hara, R.B., Simpson, G.L., Solymos, P., Stevens, M.H.H. & Wagner, H. (2013). Package ‘vegan’: Community Ecology

Package. R package version 2.0-6. Accessed from http://CRAN.R-project.org/package=vegan.

Pusat Pendidikan dan Pelatihan Kehutanan. (2016). Modul Pengantar KPH. http://pusdiklathut.org/baktirimbawan/kph/index.html. Accessed from [19 December 2016].

R Core Team. (2018). R: A language and environment for statistical computing, version 3.5.2. R Foundation for Statistical Computing, Vienna, Austria. Accessed from http://CRAN.R-project.org/.

Régnier, C., Achaz, G., Lambert, A., Cowie, R.H., Bouchet, P. &

Fontaine, B. (2015). Mass extinction in poorly known taxa. PNAS, 112(25), 7761-7766.

Schilthuizen, M. (2011). Community ecology of tropical forest snails: 30 years after Solem. Contributions to Zoology, 80, 1–15.

Schilthuizen, M., Liew, T.S., Elahan, B. & Lackman-Ancrenaz, I. (2005). Effect of karst forest degradation on pulmonate and prosobranch land snail communities in Sabah, Malaysian Borneo. Conservation Biology, 19, 949-954.

Sodhi, N.S., Koh, L.P., Brook, B.W. & Ng, P.K.L. (2004). Southeast Asian biodiversity: an impending disaster. Trends in Ecology and Evolution, 19, 654-660.

Subasli, D.R. & Munandar, A. (1999). Laporan Perjalanan ke Taman Nasional Gunung Halimun. Unpublished report. Balitbang Zoologi, Puslitbang Biologi LIPI.

Tillier, S. (1992). Introduced land snails in New Caledonia: A limited impact in the past, a potential disaster in the future. Pacific Science, 46, 396-397.

van Benthem Jutting, W.S.S. (1948). Systematic studies on the non-marine Mollusca of the Indo-Australian archipelago. I. Critical Revision of the Javanese Pulmonate land-shells of the families Hydrocenidae, Helicinidae, Cyclophoridae, Pupinidae and Cochlostomatidae. Treubia, 19, 539–604.

van Benthem Jutting, W.S.S. (1950). Systematic studies on the non-marine Mollusca of the Indo-Australian archipelago. II. Critical Revision of the Javanese Pulmonate land-shells of the families Helicarionidae, Pleurodontidae, Fruticicolidae and Streptaxidae. Treubia, 20, 381–505.

van Benthem Jutting, W.S.S. (1952). Systematic studies on the non-marine Mollusca of the Indo-Australian archipelago. III. Critical Revision of the Javanese Pulmonate land-shells of the families Ellobiidae to Limacidae, with an Appendix on Helicarionidae. Treubia, 21, 291–435.

Vermeulen, J.J. & Whitten, A.J. (1998). Fauna Malesiana Guide to the Land Snails of Bali. Leiden: Backhuys Publishers.


Refbacks

  • There are currently no refbacks.