Distribution Of Batillaria Zonalis (Mollusca : Gastropoda) on Avicennia Marina (Forsk.) Vierh In The Coast Of Banggi, Rembang, Central Java

Dafit Ariyanto Ariyanto, Dietriech Geoffrey Bengen, Tri Prartono, Yusli Wardiatno

Abstract


Mangroves prove a habitat for Batillaria zonalis as nursery ground, feeding ground and reproductive ground. This research was conducted from September 2016 - August 2017 and to determine the spasial and temporal pattern  with based on mangrove zone  and environmental characteristics. The gastropods and environmental characteristics were analyzed using Principal Component Analysis (PCA). The results showed that significant changes in gastropod assemblages were primarily due to changes in the water quality and season. Correlation between gastropod and physico-chemical parameters in A. marina  revealed significant relationship with gastropod B. zonalis distribution.


Full Text:

PDF

References


Ahmed, A. and A.A. Khedr. 2007. Zonation Pattern of Avicennia marina and Rhizophora mucronata along the Red Sea Coast, Egypt. World Application Science Journal 2(4): 283-288.

[APHA] American Public Health Association 22st ed. 2012, Standard Methods for Examination of Water and Wastewater Metode 4500-N-Org-B (Macro Kjeldahl Method) dan 4500-NH3-F (Manual Phenate Method).

Beasly, C.R., Fernandes, C.M. Gomes, C.P., Brito, B.A., Santos M.L., Tagliaro C.H. 2005. Molluscan diversity and abundance among coastal habitats of northern Brazil. Ecotropica 11, 9–20.

Bremner, J. 2008. Species traits and ecological functioning in marine conservation and management. Journal of Experimental Marine Biology and Ecology 366, 37–47.

Bremner, J., Rogers, S.I., Frid, C.L.J. 2006. Matching biological traits to environmental conditions in marine benthic ecosystems. Journal of Marine System 60, 302–316.

Brower, J.E., Zar., J.H. Von Ende, C.N.. 1990. Field and laboratory methods for general ecology, third edition.Wm. C. Brown Publishers. Dubuque, lowa. pp 237.

Chan, D.H.L., and Chan. B.K.K. 2005. Effect of epibiosis on the fitness of the sandy shore snail Batillaria zonalis in Hong Kong. Marine Biology. 146, 695–705.

Davis, S.E., Corronado-Molina, C., D.L. Childers., Day, D.W. 2003. Temporally dependent C, N, and P dynamics associated with the decay of Rhizophora mangle L. leaf litter in oligotrophic mangrove wetlands of the Southern Everglades. Aquatic Botany 75, 199-215

Dharma, B. 1988. Siput dan Kerang Indonesia (Indonesian Shells). PT. Sarana Graha, Jakarta. 111 pp.

Dittmar, T., Hertkorn, N., Kattner, G., Lara, R.J. 2006. Mangroves, a major source of dissolved organic carbon to the oceans. Glob Biogeochemistry Cycles 20, 10-12

Fondo, E.N., and Martens, E.E. 1998. Effects of mangrove deforestation on macrofaunal densities, Gazi bay, Kenya. Mangrove and Salt Mars 2, 75-83.

Garg, R.K, Rao, R.J., Saksena, D.N. 2009. Correlation of molluscan diversity with physicochemical characteristics of water of Ramsagar reservoir. India. International Journal of Biodiversity and Conservation 6, 202-207.

Giesen, W. Wulffraat, S., Zieren, M., Scholten, L. 2007. Mangrove Guidebook for Southeast Asia. FAO Regional Office for Asia and the Pacific, Bangkok. Thailand.

Hogarth, P.J. 2015. The Biology of Mangroves and Seagrasses, third ed. Oxford University Press, Oxford, p. 304.

Jayaraj, K.A., Jayalakshmi, K.V. Saraladevi, K. 2007. Influence of environmental properties on macrobenthos in the northwest Indian shelf. Environmental Monitoring. and Assessment 127, 459–475.

Kabir, M., M. Abolfathi, A. Hajimoradloo, S. Zahedi, K, Kathiresan., and S. Goli.. 2014. Effect of mangroves on distribution, diversity and abundance of molluscs in mangrove ecosystem: a review. AACL 7(4) : 286-300.

Kamimura, S., and Tsuchiya, M. 2006. Effects of opportunistic feeding by the intertidal

gastropods Batillaria zonalis and B. flectosiphonata on material flux on a tidal flat. Marine Ecology and Progress Series. 318, 203-211.

Kathiresan, K., and Bingham, L. 2001. Biology of mangroves and mangrove ecosystems. Advance and Marine Biology. 40 : 82 -251

Nishihira, M., Kuniyoshi, M., Shimamura, K. 2002. Size variation in Terebralia palustris (Gastropoda: Potamididae) of Iriomote Island, southern Japan, and its effect on some population characteristics. Wetland Ecology and Management 10, 243–247.

Pansu, M., and G. Jacques. 2003. Handbook of Soil Analysis Mineralogical, Organic, and Inorganic Methods. Verlag. Springer.

Peng, Y., Zhang, M., Lee, S.Y. 2017. Food availability and predation risk drive the distributional patterns of two pulmonate gastropods in a mangrove-saltmarsh transitional habitat. Marine and Environmental Research 130, 21-29.

Safahieh, A,. M.B. Nabavi, A, Vazirizadeh, M.T. Ronagh, R. Kamalifar. 2012. Horizontal zonation in macrofauna community of Bardestan mangrove Creek, Persian Gulf. World Journal of Fish Marine Science 4(2), 142–149.

Sharma, R.C. 1986. Effect of physico-chemical factors on benthic fauna of Bhagirathi river, Garhwal Himalayas. Ind. Journal of Ecology 13, 133-137

Shumway, S.E., and Marsden, I.D. 1981. The combined effects of temperature, salinity and declining oxygen tension on oxygen consumption in the marine pulmonate

Amphibola crenata (Gmelin). Journal of Experimental Marine Biology and Ecology 6 : 133-146.

Skilleter, G.A., and Warren, S. 2000. Effects of habitat modification in mangroves on the structure of mollusc and crab assemblages Journal of Experimental Marine Biology and Ecology . 244 :107-129.

Sokolova, I.M., and Berger, V.Y. 2000. Physiological variation related to shell colour polymorphism in White Sea Littorina saxatilis. Journal of Experimental Marine Biology and Ecology 245, 1–23

Swami, B.S., Suryawanshi, U.G., Karande, A. 2000. Water quality of Mumbai harbor, Indian. Journal of Marine Science 29, 111–115.

Zakaria, M., and M.N. Rajpar. 2015. Assessing the Fauna Diversity of Marudu Bay Mangrove Forest, Sabah, Malaysia, for Future Conservation. Diversity. 7, 137-148.

Zhuang, S., Zhang, M., Zhang, X., Wang, Z. 2004. The influence of body size, habitat and diet concentration on feeding of Laternula marilina Reeve. Aquacitc Research 35,622–628.




DOI: http://dx.doi.org/10.20884/1.oa.2018.14.3.458

Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 International License.

 

Lisensi Creative Commons

Omni-Akuatika de Fisheries and Marine Science Faculty - Jenderal Soedirman University est mis à disposition selon les termes de la licence Creative Commons Attribution 4.0 International.

Fondé(e) sur une œuvre à www.ojs.omniakuatika.net.
Les autorisations au-delà du champ de cette licence peuvent être obtenues à www.ojs.omniakuatika.net.