

Status and importance of research on marine sponges in India with special reference to sponges on coral reefs
Marine sponges are integral parts of the marine environment and play key ecological roles, especially in coral reef ecosystems. Though research on marine sponges started in the 1800s, most of the works to date have focussed their attention on taxonomy and marine natural products from sponges in India. The lack of ecological studies on sponges is attributed to the requirement of scuba diving skills and hectic field work. Major Indian coral reef regions are undergoing severe decline due to climate change and other factors. The interaction betweencorals and sponges has becomeessential in the context of global climate change. More studies are warranted for the better management of coral reefs in India. This paper reviews the studies carried out on sponges thus far and explores the critical areas where moreresearch is desired.
Keywords
Climate change, Coral reefs, Ecology, India, Sponges.
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- Van Soest R W M, Boury-Esnault N, Vacelet J, Dohrmann M, Erpenbeck D,et al., Global Diversity of Sponges (Porifera) PLoS ONE, 7 (4) (2012) p. e35105. https://doi.org/10.1371/journal.pone.0035105
- Ellis J, On the nature and formation of sponges, Phil Trans, 39 (1765) 145-147.
- Thomas P A, The History of Spongology of the Indian Ocean, J Mar Biol Assoc India, 18 (3) (1976) 610-625.
- WoRMS, Porifera. Accessed on 18 August 2020. http:// www.marinespecies.org/aphia.php?p=taxdetails&id=558
- Sivaleela G & Venkataraman K,Indian marine sponges- their biodiversity and conservation, Zool Surv India, National Symposium on Conservation and Valuation of Marine Biodiversity, 2007, pp. 351–358.
- Bell J, Davy S, Jones T, Taylor M & Webster N, Could some coral reefs become sponge reefs as our climate changes? Glob Chang Biol, 19 (2013) 2613–2624. https://doi.org/10.1111/gcb.12212
- Chaves-Fonnegra A, Riegl B, Zea S, Lopez J, Smith T, et al., Bleaching events regulate shifts from corals to excavating sponges in algae dominated reefs, Glob Chang Biol, 24 (2018) 773–785. https://doi.org/10.1111/gcb.13962
- Carter H J, Report on marine sponges, chiefly from King Island in the Mergui Archipelago, collected for the Trustees of the Indian Museum, Calcutta by Dr. John Anderson, J Linn Soc Lond, 21 (1887) 61–84. https://doi.org/10.1111/j.1096-3642.1887.tb00381.x
- Dendy A, Report on the non-calcareous sponges collected by Mr. James Hornell at Okhamandal in Kattiawar in 1905–1906, Report to the Government of Baroda Marine Zoology Okhamandal, 2 (1916) 96–146.
- Burton M, Addition to the fauna of Gulf of Mannar, Ann Mag Nat Hist, London, 5 (10) (1930) 665–676. https://doi.org/10.1080/00222933008673180
- Thomas P A, Studies on Sponges, Ph.D. Thesis, University of Kerala, India, 1968.
- Pattanayak J G, Taxonomy of sponges of the Andaman and Nicobar Islands, Ph.D. Thesis, University of Calcutta, India, 1998.
- Pattanayak J G, Marine sponges of Andaman and Nicobar Islands, India, Rec Zool Surv India, Occ Pap, 255 (2006) 1–152.
- Dendy A, The sponge fauna of Madras. A report on the collection of sponges obtained in the neighbourhood of Madras by Edgar Thruston Esq, Ann Mag Nat Hist London, 5 (20) (1887) 153–165. https://doi.org/10.1080/ 00222938709460032
- Ali M A, Additions to the sponges fauna of Madras, J Madras Univ, B, 26 (2) (1956) 289–301.
- Annandale N, Fauna of the Chilika Lake: Sponges, Mem Indian Mu Calcutta, 5 (1915) 23–54.
- Reddiah K, The Coral Reefs of Andaman and Nicobar Islands, Rec Zool Surv India, 72 (1977) 315–324.
- Schulze F E, Hexactinelliden des indischen Oceanes. I. Die Hyalonematiden. Physikalische Abhandlungen der Königlischen Akademie der Wissenschaftenzu Berlin, 2 (1895) 1–60.
- Carter H J, Report on Specimens dredged up from the Gulf of Mannar and presented to the Liverpool Free Museum by Capt. W.H. Cawne Warren, Ann Mag Nat Hist, 6 (35–61) (1880) 129–156. https://doi.org/10.1080/ 00222938009458908
- Dendy A, Report on a Second Collection of Sponges from the Gulf of Mannar, Ann Mag Nat Hist,3 (6) (1889) 73–99. https://doi.org/10.1080/00222938909460303
- Kumar A, Report on some Tetraxonid sponges in the collection of the Indian Museum, Rec Indian Mus,27 (3) (1925) 211–229.
- Rao H S, Indian and Ceylon sponges of the Naturhistoriska Riksmuseet, Stockholm, collected by K. Fristedt, Rec Indian Mus, 43 (1941) 417–496.
- Ali M A, Studies on sponges, M.Sc. Thesis, University of Madras, India, 1954.
- Ali M A, Development of the Monaxonid sponge Lissodendoryx similis Thiele, Ibid, 26 (3) (1956) 553–581.
- Ali M A, Influence of environment on the distribution and form of sponges, Nature, 186 (4719) (1960) 177–178. https://doi.org/10.1038/186177b0
- Thomas P A, Boring Sponges of Zuari and Mandovi Estuaries, Bull Dept Mar Sci Ulliv Cachin, 7 (1) (1975) 117–126.
- Hornell J, Report to the government of Baroda on the marine zoology of Okhamandal Part I. Williams and Norgate, London, (1909) p. 148. https://doi.org/10.5962/bhl. title.54463
- Dendy A, Report on non-calcareous sponges collected by Mr. James Hornell, (1916) 93–146.
- Annandale N, Some sponges parasitic on Clionidae with further notes on that family, Rec Indian Mus, 11 (1915) 457–478.
- Dendy A & Burton M, Report on some deep sea sponges from the Indian Museum collected by the R.I.M.S. "Investigator". Part-I. Hexactinellida & Tetraxonida (Pars.), Rec Indian Mus, XXVIII, 28 (1926) 225–248.
- Burton M, Report on some deep sea sponges from the Indian Museum collected by the R.I.M.S. "Investigator" part II. Tetraxonida (Concluded) and Euceratosa, Rec Indian Mus, 30 (1928) 109–138.
- Burton M & Rao H S, Report on the shallow-water marine sponges in the collection of the Indian Museum. Part I, Rec Indian Mus, 34 (1932) 299–358.
- Burton M, Supplement to the littoral fauna of Krusadai Island, Bull Madras Govt Mus, Madras, 1 (2) (1937) 1–58.
- Thomas P A, Studies on Indiansponges-II. Two new species of silicious sponges belonging to the genera Aka De Lambenfels and Damirina Burton, J Mar Biol Assoc India, 10 (2) (1968) 250–254.
- Thomas P A, Studies on IndianSponges-III. Two species of silicious sponges of the family Ophlitaspongiidae de Laubenfels (Class: Demospongiae Sollas, Order: Poecilosclerida Topsent), J Mar Biol Assoc India, 10 (2) (1968) 255–259.
- Thomas P A, On some deep sea sponges from the Gulf of Mannar, with descriptionsof three new species, J Mar Biol Assoc India, 12 (1 & 2) (1970) 202–209.
- Thomas P A, Boring sponges of the reefs of Gulf of Mannar and Palk Bay. Symposium on Corals and Coral Reefs, (Marine Biological Association of India, Mandapam Camp. Abstracts), 1969, pp. 19.
- Sivaleela G, Marine sponges ofGulf of Mannar and Palk Bay, Rec Zool Surv India, 114 (Part-4) (2014) 607–622.
- Thinesh T, Mathews G, Raj K D & Edward J K P, Outbreaks of Acropora white syndrome and Terpiossponge overgrowth combined with coral mortality inPalk Bay, southeast coast of India, Dis Aquat Organ, 126 (1) (2017) 63–70. https://doi.org/10.3354/dao03155
- Raj K D, Mathews G & Kumar P D, Tiger cowrie Cypraea tigrisfeeds on coral-competing sponge Rhabdastrella globostellatain an Acroporadominated reef of Gulf of Mannar, India, Mar Freshw Behav Physiol, 52 (2) (2019) 101–105. https://doi.org/10.1080/10236244.2019.1637701
- Ashok A, Schonberg C, Raj K D, Bhoopathi M, Bharath M S, et al., A sponge of the Cliona viridiscomplex invades and excavates corals of Gulf of Mannar, southeast India, Mar Fresh Res, 69 (2018) 874–882. https://doi.org/10.1071/MF17247
- Ashok A M, Calcinai B & Edward J K P, The coral-killing red sponge Clathria (Microciona) aceratoobtusa (Porifera: Demosponigiae) invades various coral communities of Gulf of Mannar Marine National Park, southeast India, Eur Zool J, 87 (1) (2020) 1–11. https://doi.org/ 10.1080/24750263.2019.1708486
- Ashok A, Distribution, Abundance and Role of Sponges in Coral Reef Ecosystem of Gulf of Mannar, Southeastern India, Ph.D Thesis, Manonmaniam Sundaranar University, India, 2021.
- Thomas P A, Demospongiae of Minicoy Island (Indian Ocean) Pt. 1- Orders Keratosidaagd Haplosclerida, J Mar Biol Assoc India, 21 (12) (1979) 10–16.
- Thomas P A, Demospongiae of Minicoy Island (Indian Ocean) Pt. 2- Order Poecilosclerida, J Mar Biol Assoc India, 22 (12) (1980) 1–7.
- Thomas P A, Demospongiae of Minicoy Island (Indian Ocean) Pt. 3-Orders Halichondrida, Hadromerida, Epipolasida and Choristida, J Mar Biol Assoc India, 22 (12) (1980) 8–20.
- Prabhakaran M P, Ecological Studies on the Seagrass Ecosystem of Minicoy Lagoon, Lakshadweep, Ph.D Thesis, Cochin University of Science and Technology, India, 2008.
- Mohan G, Sponge Fauna of Lakshadweep Archipelago, Seshaiyana, 20 (2) (2012) 3–5.
- Thomas P A, Pillai C S G & Rajagopalan M S, Demospongiae of the Gulf of Kutch, J Mar Biol Assoc India, 8 (1-2) (1996) 124–132.
- Subba Rao N V & Sastry D R K,Fauna of Marine National Park, Gulf of Kachchh (Gujrat): An overview, Conservation Area Series, (Published by the Director, Zoological Survey of India, Kolkata), 23 (2005) 1–79.
- Thomas P A, Studies on Indian sponges VIII. Four new records of Silicious sponges Echinochalina glabra (Ridley and Dendy), Higginsia mixta (Hentschel), Geodia lindgreni (Lendenfeld) and Pachamphilla dendyi Hentschel from the Indian Ocean, J Mar Biol Assoc India, 19 (1) (1977) 115–122.
- Sarà M, A rearrangement of the family Tethyidae (Porifera, Hadromerida) with establishment of new genera and description of two new species, Zool J Linn Soc, 110 (4) (1994) 355–371. https://doi.org/10.1111/j.1096-3642.1994.tb01479.x
- Immanuel T, Krishnan P, Raghuraman R, Veerappan N & Dam-Roy S, New records of Chondrilla australiensis and Chondrillagrandi stellata (Demospongiae: Chondrosida: Chondrillidae) from Havelock Island, South Andaman, India, J Threat Taxa, 7 (14) (2015) 8167–8172. https://doi.org/10.11609/jott.2432.7.14.8167-8172
- Ubare V V & Mohan P M, New records and range extensions of some marine sponges (Porifera: Demospongiae and Homoscleromorpha) from the Andaman Islands, India; part of the Indo-Burma biodiversity hotspot. Zool Stud, 57 (2018) p. 6. https://dx.doi.org/10.6620/ZS.2018.57-03
- Pereira P & Raghunathan C, Diversity of sponges in marine protected areas of North Andaman, India, Thalassas, 34 (2018) 361–372. https://doi.org/10.1007/s41208-018-0073-2
- Pereira P & Raghunathan C, New records of Indo-Pacific sponges from the Andaman and Nicobar Islands, India, Zootaxa, 4894 (4) (2020) 081–097. https://doi.org/10.11646/zootaxa.4894.1.4
- Dam Roy S, Krishnan P, Raghunathan C & Vinith Kumar N V, Cataloguing and Conservation of Marine Sponges of Andaman through DNA Barcoding, Project Completion Report, (2013) pp. 84.
- Pattanayak J G & Mitra S, Marine Sponges, In: Fauna of Karnataka, edited by Director, (Published by the Director, Zool. Surv. India, Kolkata),State Fauna Series, 21 (2013) 1–595.
- Kavungal V, George R, Thomas, P A, Manisseri M & Shylaja G, Diversity and distribution of shallow water sponges (Porifera) in the coastal waters from Enayam to Kollam, south-west coast of India, Indian J Fish, 61 (2014) 52–57.
- Varsha M S, Joshi K K & Jasmine S, Six new species of Hyattella (Porifera: Dictyoceratida: Spongiidae) from the Southern Coast of India, J Mar Biol Assoc India, 62 (1) (2020) 1–19. https://dx.doi.org/ 10.6024/jmbai.2020. 62.1.2206-01
- George A, Van Soest R, SlukaR & Lazarus S, Checklist of marine sponges (Porifera) of peninsula India, Zootaxa, 4885 (2) (2020) 277–300. https://doi.org/10.11646/ zootaxa.4885.2.10
- Mote S, Schönberg C H L, Toufiek S, Vishal G & Baban I, A new clionaid sponge infests live corals on the west coast of India (Porifera, Demospongiae, Clionaida), System Biodivers, 17 (2) (2019) 1–17. https://doi.org/ 10.1080/14772000.2018.1513430
- Rao J V, Usman P K & BharatKumar J, Larvicidal and insecticidal properties of some marine sponges collected in Palk Bay and Gulf of Mannar waters, Afr J Biotechnol, 7 (2) (2008) 109–113.
- Boobathy S, Soundarapandian P, Subasri V, Vembu N & Gunasundari V, Bioactivities ofprotein isolated from marine sponge, Sigmadocia fibulatus,Curr Res J Bio Sci, 1 (3) (2009) 160–162.
- Chairman K, Ranjitsingh A & Ramesh M, Screening twelve species of sponges for biomedical activity in Gulf of Mannar Tuticorin Coast, Int J Mar Sci, 2 (2012) 43–50.
- Skariyachan S, Challapilli S B, Packirisamy S, Sridhar V S & Kumargowda S T, Monitoring and assessment of the therapeutic impact of metabolites extracted from sponge-associated bacteria screened from Gulf of Mannar, southeast coast of India, Environ Monit Assess, 192 (2020) p. 241. https://doi.org/10.1007/s10661-020-8201-x
- Meenatchi R, Brindangnanam P,Hassan S, Rathna K, Kiran G S, et al., Diversity of a bacterial community associated with Cliona lobataHancock and Gelliodes pumila(Lendenfeld, 1887) sponges on the South-East coast of India, Sci Rep, 10 (1) (2020) p. 11558. https://doi.org/10.1038/s41598-020-67717-9
- Baig U, Dahanukar N, Shintre N, Holkar K, Pund A, et al., Phylogenetic diversity and activity screening of cultivable actinobacteria isolated from marine sponges and associated environments from the western coast of India, Access Microbiol, 3 (9) (2021) p. 000242. https://doi.org/ 10.1099/acmi.0.000242
- Lekshmi N, Umar M D, Dhaneesha M, Joseph R, Ravinesh R, et al., Endophytic Fungi Isolated from the Marine Sponges as a Source of Potential Bioactive Compounds, J Aquat Biol Fish, 2 (2020) 58–66.
- Mote S, Gupta V, De K, Nanajkar M, Damare S R, et al., Bacterial diversity associated with a newly described bioeroding sponge, Cliona thomasi, from the coral reefs on the West Coast of India, Folia Microbiol, 66 (2021) 203–211. https://doi.org/10.1007/s12223-020-00830-4
- Feby A & Nair S, Sponge-associated bacteria of Lakshadweep coral reefs, India: resource for extracellular hydrolytic enzymes, Adv Biosci Biotech, 1 (2010) 330–337. https://doi.org/10.4236/abb.2010.14043
- Mohan G, Ajith Kumar T T & Balagurunathan R, Antimicrobial activities of secondary metabolites and phylogenetic study of sponge endosymbiotic bacteria, Bacillussp. at Agatti Island, Lakshadweep Archipelago, Biotechnol Rep, 11 (2016) 44–52. https://doi.org/ 10.1016/j.btre.2016.06.001
- Annandale N, Some sponges commonly associated with oysters and mussels in Madras Harbour and the Chilka Lake, In: Fauna Symbiotica indica, No. 5, Rec Indian Mus, 10 (1914) 149–158. https://doi.org/10.5962/bhl.part.5625
- Nayar K N & Mahadevan S,Underwater ecological observations in the Gulf of Mannar, off Tuticorin. II. The occurrence of the Synaptid Ohondrocloeaalong with the massive sponge Petrosia, J Mar Biol Assoc India, 7 (1) (1965) 190–291.
- Dahihande A S & Thakur N L, Differential growth forms of the sponge Biemna fortisgovern the abundance of its associated brittle star Ophiactis modesta, J Sea Res, 126 (2017) 1–11. https://doi.org/10.1016/j.seares.2017.06.007
- Kumar S & Thomas P A, Biodiversity Studies on Bioeroding Sponges Infesting Brown Mussel of the South West Coast of India, J Mar Biol Aquacult, 1 (2) (2015) 1–3. https://doi.org/10.15436/2381-0750.15.008
- Kiruba-Sankar R, Chadha N K,Dam-Roy S, Paramita B S, Neelam S, et al., Marine sponges as biological indicator of oligotrophic Andaman waters, Indian J Geo-Mar Sci, 45 (2) (2016) 338–341.
- Namboothri N & Fernando S A, Coral-Boring Fauna of the Great Nicobar Island, In: Ecology of Faunal Communities on the Andaman and Nicobar Islands, edited by Venkataraman K, Raghunathan C & Sivaperuman C, (Springer, Berlin, Heidelberg), 2012. https://doi.org/ 10.1007/978-3-642-28335-24
- Thinesh T, Jose P A, Hassan S, Selvan K M & Selvin J, Intrusion of coral-killing sponge (Terpios hoshinota) on the reef of Palk Bay, Curr Sci, 109 (6) (2015) 1030–1032.
- Raj K D, Bharath M S, Mathews G, Aeby G S & Edward J K P, Coral-killing sponge Terpios hoshinotainvades the corals of Gulf of Mannar, Southeast India, Curr Sci, 114 (5) (2018) 1117–1119. https://doi.org/10.18520/cs/v114/i05/ 1117-1119
- Thinesh T, Meenatchi R, Pasiyappazham R, Jose P A, Selvan M,et al., Short-term in-situ shading effectively mitigates linear progression of coral-killing sponge Terpios hoshinota, PLoS ONE, 12 (8) (2017) e0182365. https://doi.org/10.1371/journal.pone.0182365
- Das R R, Sreeraj C R, Mohan G, Abhilash K R, Samuel V K D, et al., Incursion of the killer sponge Terpios hoshinota Rützler & Muzik, 1993 on the coral reefs of the Lakshadweep archipelago, Arabian Sea, J Threat Taxa, 12 (14) (2020) 17009–17013. https://doi.org/10.11609/ jott.5790.12.14.17009-17013
- Thinesh T, Meenatchi R, LiptonA N, Anandham R, Jose P A, et al., Metagenomic sequencing reveals altered bacterial abundance during coral-sponge interaction: Insights into the invasive process of coral-killing sponge Terpios hoshinota. Microbiol Res, 240 (2020) p. 126553. https://doi.org/ 10.1016/j.micres.2020.126553
- Ashok A, Clathria(Thalysias) reinwardtii(Porifera, Demospongiae)-An active space competitor on the coral communities of Gulf of Mannar Marine Biosphere Reserve-Southeast India, International Conferencein Marine Science and Aquaculture, 2019.
- Ashok A M, Schönberg C H L, Laju R L & Edward J K P, Coral-killing sponge Terpios hoshinotain Southeast India-bested by Acropora muricata? Mar Biodivers, 49 (2019) 1069–1070. https://doi.org/10.1007/s12526-019-00966-8
- Raj K D, Schönberg C & Emmett J S, Space competition under thermal stress; clionaid sponge versus favid coral, Gulf of Mannar, India, Reef Encounter, 37 (1) (2022) 48–51. https://doi.org/10.53642/PLDR6830
- Emmett J S, Raj K D, Mathews G & Laju R L, Opportunistic spongivore fishes in a reef of Gulf of Mannar, India, Environ Biol Fish, 104 (6) (2021) 1251–1262. https://doi.org/10.1007/s10641-021-01150-3
- Mote S, Gupta V, De K, Hussain A, More K, et al., Differential Symbiodiniaceae association with coral and coral-eroding sponge in a bleaching Impacted marginal coral reef environment, Front Mar Sci, 8 (2021) p. 666825. https://doi.org/10.3389/fmars.2021.666825
- Carballo J L, Effect of natural sedimentation on the structure of tropical rocky sponge assemblages, Ecosci, 13 (2006) 119–130. https://doi.org/10.2980/1195-6860(2006) 13[119:EONSOT]2.0.CO;2
- Schönberg C H L & Juan-Carlos O, Is sponge bioerosion increasing? Proc 11 th Int Coral Reef Symp, 16 (2008) 520–523.
- Hill M, Walter C & Bartels E, A mass bleaching event involving clionaid sponges, Coral Reefs, 35 (2016) p. 153. https://doi.org/10.1007/s00338-016-1402-7
- Marlow J, Davy S, Shaffer M, Haris A & Bell J, Bleaching and recovery of a phototrophic bioeroding sponge, Coral Reefs, 37 (2018) 1–6. https://doi.org/10.1007/s00338-018-1680-3
- Gochfeld D, Easson C, Freeman C, Thacker R & Olson J, Disease and nutrient enrichment as potential stressors on the Caribbean sponge Aplysina cauliformisand its bacterial symbionts, Mar Ecol Prog Ser, 456 (2012) 101–111. https://doi.org/10.3354/meps09716
- Goodwin C, Rodolfo-Metalpa R,Picton B & Hall-Spencer J, Effects of ocean acidification on sponge communities, Mar Ecol, 35 (2014) 41–49. https://doi.org/10.1111/maec.12093
- Bell J, McGrath E, Biggerstaff A, Bates T, Bennett H, et al., Sediment impacts on marine sponges, Mar Poll Bull, 94 (1-2) (2015) 5–13. https://doi.org/10.1016/j.marpolbul. 2015.03.030
- Skariyachan S, Rao G A, Patil M R, Saikia B, Bharadwaj K V, et al., Antimicrobial potential of metabolites extracted from bacterial symbionts associated with marine sponges in coastal area of Gulf of Mannar Biosphere, India, Lett Appl Microbiol, 58 (3) (2014) 231–241.
- Joseph B & Sujatha S, Pharmacologically important natural products from marine sponges, J Nat Prod, 4 (512) (2011) p. 12.
- Ramkumar B & Ramakritinan C M, Devastation Effect of Traditional Bottom-Set-Gill Net Fishery on Clathria frondifera(Bowerbank, 1875) in Northern Gulf of Mannar, India, Int J Sci Nat, 8 (2) (2017) 269–73.

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