Effects of water parameters on population structure of mud crab from Buntal Mangroves, Kuching, Sarawak, Malaysia: A GLM analysis

##plugins.themes.bootstrap3.article.main##

ABANG MOHAMMAD HUDZAIFAH ABANG SHAKAWI
RUHANA HASSAN
DURRAH SYAZWANI MUSTAPAH

Abstract

Abstract. Shakawi AMHA, Hassan R, Mustapah DS. 2022. Effects of water parameters on population structure of mud crab from Buntal Mangroves, Kuching, Sarawak, Malaysia: A GLM analysis. Biodiversitas 23: 2580-2585. Buntal Mangroves, Kuching, Sarawak, Malaysia, is an area that is abundant with biological resources but contains minimal biodiversity information. Mud crab fisheries by the locals exist on small scales at Buntal Mangroves, but there is a tendency to overfish due to the increasing demand for this resource. The relationship between the population structure of mud crabs and the environmental factors in Buntal Mangroves has not been explored. Therefore, this study aimed to apply the generalized linear models (GLM) for analyzing the population structure of mud crabs with selected water parameters in Buntal Mangroves. Scylla olivacea (Herbst, 1796) has the highest abundance in Buntal compared to S. tranquebarica (Fabricius, 1798) and other types of mud crab. Three GLM with carapace length, carapace width, and body weight as dependent variables were constructed. These GLMs with gamma-distributed response variables indicated that depth, pH, salinity, and turbidity positively affected body weight, carapace width, and carapace length, while temperature had a negative impact on the dependent variables. The results emphasized the importance of adopting the GLM to describe a relationship where the response variable followed a non-normal distribution. The findings provide a basis for future studies at Buntal Mangroves, not only for conservation purposes but also to support the utilization of this valuable resource sustainably.

##plugins.themes.bootstrap3.article.details##

References
Avianto I, Sulistiono, Setyobudiandi I. 2013. Karakteristik habitat dan potensi kepiting bakau (Scylla serrata, S. transquaberica, dan S. olivacea) di hutan mangrove Cibako, Sancang Kabupaten Garut Jawa Barat. Bonorowo Wetlands 3 (2): 97-106. DOI: 10.13057/bonorowo/w030201. [Indonesian]
Conklin JR, Verkuil YI, Smith BR. 2014. Prioritizing migratory shorebirds for conservation action on the East Asian–Australasian Flyway. WWF-Hong Kong, Hong Kong.
DeForest DK, Brix KV, Tear LM, Adams WJ. 2017. Multiple linear regression models for predicting chronic aluminum toxicity to freshwater aquatic organisms and developing water quality guidelines. Environ Toxicol Chem 37 (1): 80-90. DOI: 10.1002/etc.3922.
Dubuc A, Waltham N, Malerba M, Sheaves M. 2017. Extreme dissolved oxygen variability in urbanised tropical wetlands: The need for detailed monitoring to protect nursery ground values. Estuar Coast Shelf Sci 198: 163-171. DOI: 10.1016/j.ecss.2017.09.014.
Fazhan H, Waiho K, Al-Hafiz I, Kasan NA, Ishak SD, Afiqah-Aleng N, Tola S, Ikhwanuddin M. 2021. Composition, size distribution, length-weight relationship of sympatric mud crab species (Scylla) and the case of presumed hybrids. Estuar Coast Shelf Sci 250: 1-7. DOI: 10.1016/j.ecss.2020.107154.
Fazhan H, Waiho K, Darin Azri MF, Al-Hafiz I, Wan Norfaizza WI, Megat FH, Jasmani F, Ma H, Ikhwanuddin M. 2017. Sympatric occurrence and population dynamics of Scylla spp. in equatorial climate: Effects of rainfall, temperature and lunar phase. Estuar Coast Shelf Sci 198: 299-310. DOI: 10.1016/j.ecss.2017.09.022.
Gong J, Yu K, Shu L, Ye H, Li S, Zeng C. 2015. Evaluating the effects of temperature, salinity, starvation and autonomy on moulting success, moulting interval and expression of ecdysone receptor in early juvenile mud crabs, Scylla paramamosain. J Exp Mar Biol Ecol 464: 11-17. DOI: 10.1016/j.jembe.2014.12.008.
Green BS, Gardner C, Hochmuth JD, Linnane A. 2014. Environmental effects on fished lobsters and crabs. Rev Fish Biol Fisheries 24: 613-638. DOI: 10.1007/s11160-014-9350-1.
Ha NTV. 2022. Evaluating impact of climate change to fishing productivity of Vietnam: An application of autoregressive distributed lag (ARDL) regression model. Global Changes and Sustainable Development in Asian Emerging Market Economies 2: 671-686. DOI: 10.1007/978-3-030-81443-4_43.
Harrison XA, Donaldson L, Correa-Cano ME, Evans J, Fisher DN, Goodwin CED, Robinson BS, Hodgson DJ, Inger R. 2018. A brief introduction to mixed effects modelling and multi-model inference in ecology. PeerJ 6: e4794. DOI: 10.7717/peerj.4794.
Hassan R, Mustapah DS. 2019. Morphology and genetic diversity of mud crabs (Portunidae: ScyIlla) from Teluk Sulaman, Sabah, Malaysian Borneo. ASM Sci J 12: 1-9. DOI: 10.32802/asmscj.2019.252.
Ikhwanuddin M, Azmie G, Juariah HM, Zakaria MZ, Ambak MA. 2011. Biological information and population features of mud crab, genus Scylla from mangrove areas of Sarawak, Malaysia. Fish Res 108: 299-306. DOI: 10.1016/j.fishres.2011.01.001.
Johnston DJ, Yeoh DE, Harris DC. 2021. Environmental drivers of commercial blue swimmer crab (Portunus armatus) catch rates in Western Australian fisheries. Fish Res 235: 105827. DOI: 10.1016/j.fishres.2020.105827.
Keenan CP, Davie P, Mann D. 1998. A revision of the genus Scylla De Haan, 1833 (Crustacea: Decapoda: Brachyura: Portunidae). Raffles Bull Zool 46 (1): 217-245.
Kumalah AA, Wardiatno Y, Setyobudiandi I, Fahrudin A. 2017. Biologi populasi kepiting bakau Scylla Serrata – Forsskal 1775 di Ekosistem Mangrove Kabupaten Subang, Jawa Barat. J Ilmu dan Teknologi Kelautan Tropis 9(1): 173-184. DOI: 10.29244/jitkt.v9i1.17928 . [Indonesian]
Leoville A, Lagarde R, Grondin H, Teichert N, Faivre R, Rasoanirina E. 2021. Influence of environmental conditions on the distribution of burrows of the mud crab, Scylla serrata, in a fringing mangrove ecosystem. Reg Stud Mar Sci 43 (1): 101684. DOI: 10.1016/j.rsma.2021.101684.
Levy O, Ball BA, Bond-Lamberty B, Cheruvelil KS, Finley AO, Lottig NR, Punyasena SW, Xiao J, Zhou J, Buckley LB, Filstrup CT, Keitt TH, Kellner JR, Knapp AL, Richardson AD, Tcheng D, Toomey M, Vargas R, Voordeckers JW, Wagner T, Williams JW. 2014. Approaches to advance scientific understanding of macrosystems ecology. Front Ecol Environ 12 (1): 15-23. DOI: 10.1890/130019.
Malaysian Marine Quality Standard and Index. 2019. Ministry of Energy Science, Technology, Environment and Climate Change. https://doe.gov.my/portalv1/wp-content/uploads/2019/04/BOOKLET-BI.pdf
Monteiro JN, Pinto M, Crespo D, Pardal MA, Martinho F. 2021. Effects of climate variability on an estuarine green crab Carcinus maenas population. Mar Environ Res 169: 105404. DOI: 10.1016/j.marenvres.2021.105404.
Nakagawa S, Schielzeth H. 2012. A general and simple method for obtaining R2 from generalized linear mixed-effects models. Methods Ecol Evol 4 (2): 133-142. DOI: 10.1111/j.2041-210x.2012.00261.x.
Pedapoli S, Ramudu KR. 2014. Effect of water quality parameters on growth and survivability of mud crab (Scylla tranquebarica) in grow out culture at Kakinada Coast, Andhra Pradesh. Intl J Fish Aquat Stud 2 (2): 163-166.
Rees HC, Maddison BC, Middleditch DJ, Patmore JRM, Gough KC. 2014. The detection of aquatic animal species using environmental DNA – A review of eDNA as a survey tool in ecology. J Appl Ecol 51 (5): 1450-1459. DOI: 10.1111/1365-2664.12306.
Schmidt TS, Clements WH, Cade BS. 2012. Estimating risks to aquatic life using quantile regression. Freshw Sci 31 (3): 15-20. DOI: 10.1899/11-133.1.
Sharif NAM, Kahar NAS, Hussein, MAS, Ransangan J, Yong AS. 2019. Species diversity and distribution of mud crab in Marudu Bay mangrove forest reserve, Sabah, Malaysia. Borneo J Mar Sci Aquac 3(1): 18-24. DOI: 10.51200/bjomsa.v3i1.1709.
Su Q, Lu W, Du D, Chen F, Niu B, Chou K. 2017. Prediction of the aquatic toxicity of aromatic compounds to Tetrahymena pyriformis through support vector regression. Oncotarget 8 (30): 49359-49369. DOI: 10.18632/oncotarget.17210.
Sun Z, Sokolova E, Brittain JE, Saltveit SJ, Rauch S, Meland S. 2019. Impact of environmental factors on aquatic biodiversity in roadside stormwater ponds. Sci Rec 9: 5995. DOI: 10.1038/s41598-019-42497-z.
Trivedi JN, Vachhrajani KD. 2013. First record of two porcellanid crabs from Gujarat State, India (Crustacea: Decapoda: Porcellanidae). J Mar Biol Assoc India 55 (1): 55-58. DOI: 10.6024/jmbai.2013.55.1.01756-09.
Wang H, Tang L, Wei H, Lu J, Mu C, Wang C. 2018. Transcriptomic analysis of adaptive mechanisms in response to sudden salinity drop in the mud crab, Scylla paramamosain. BMC Genom 19: 421. DOI: 10.1186/s12864-018-4803-x.
Zhang Z, Gao L, Zhang X. 2021. Environmental enrichment increases aquatic animal welfare: A systematic review and meta-analysis. Rev Aquac. DOI: 10.1111/raq.12641.

Most read articles by the same author(s)