World Aquaculture Magazine -December 2016

58 DECEMBER 2016 • WORLD AQUACULTURE • WWW.WAS.ORG Notes Mohd Ashraf Rather, Department of Fish Biology, College of Fisheries Shirgoan, Ratnagiri Maharashtra - India Irfan Ahmad Bhat, Niti Sharma, Rupam Sharma, Division of Fish Genetics and Biotechnology, Central Institute of Fisheries Education, Mumbai- 400061 India Adnan Gora, Division of Fish Nutrition, Biochemistry and Physiology Central Institute of Fisheries Education, Mumbai-400061, India References Antony, J. J., Ni Murugaiyan, S. Durairaj, P. Ganesapandy, K. Palanivel, K. Seenivasan, S. Arunachalam and A. Shanmugam. 2013. Antimicrobial activity of Leucas aspera engineered silver nanoparticles against Aeromonas hydrophila in infected Catla catla. Colloids and Surfaces B: Biointerfaces 109:20-24. Barakat, K.M., H.S. El-Sayed, and Y.M. Gohar. 2016. Protective effect of squilla chitosan-silver nanoparticles for Dicentrarchus labrax larvae infected with Vibrio anguillarum. International Aquatic Research 8:179-189. Bhat, I.A., M.A. Rather, R. Saha, G.B. Pathakota, A. Pavan-Kumar and R. Sharma. 2016. Expression analysis of Sox9 genes during annual reproductive cycles in gonads and after nanodelivery of LHRH in Clarias batrachus. Research in Veterinary Science 106:100-106. Gong, P., H. Li, X. He, K.Wang, J. Hu, W. Tan, S. Zhang and X. Yang. 2007. Preparation and antibacterial activity of Fe3O4@Ag nanoparticles. Nanotechnology 18:604-611. Kim, J. S., E. Kuk, K. N. Yu, J. H. Kim, S. J. Park, H. I. Lee, S. H. Kim, S. J. Park, Y. H. Park, C. Y. Hwang, Y. K. Kim, Y. S. Lee, D. H. Jeong and M. H. Cho. 2007. Antimicrobial effects of silver nanoparticles. Nanomedicine: Nanotechnology, Biology and Medicine 3: 95-101. Kuzma, J. and P. Verhage. 2006. Nanotechnology in Agriculture and Food Production: Anticipated Applications. Project on Emerging Nanotechnologies and the Consortium on Law, Values and Health and Life Sciences. Centre for Science, Technology and Public Policy (CSTPP). Lansdown, A. B. 2002. Silver. I: Its antibacterial properties and mechanism of action. Journal of Wound Care 11:125-130. Rai, M., A.Yadav and A. Gade. 2009. Silver nanoparticles as a new generation of antimicrobials. Biotechnology Advances 27:76-83. Ramya. V.L., R. Sharma, P. Gireesh-Babu, A. Rather, P.C. Nandanpawar and E. Suresh. In press. Development of polymer based DNA-nano construct against nodavirus Macrobrachium rosenbergii. Journal of Fish Diseases. Rather, M. A., I.A. Bhat, N. Sharma, A. Gora, P. Ahmad, P.A. Ganie and R. Sharma. 2016. Synthesis and characterization of Azadirachta indica constructed silver nanoparticles and their immunomodulatory activity in fish. Aquaculture Research DOI 10.1111/are.13199. Rather, M.A., I.A. Bhat, P. Gireesh-Babu, A. Chaudhari, J.K. Sundaray, and R. Sharma. 2016. Molecular characterization of kisspeptin gene and effect of nano–encapsulted kisspeptin-10 on reproductive maturation in Catla catla. Domestic Animal Endocrinology 56:36-47. Rather M.A, R. Sharma, S. Gupta, S. Ferosekhan, V.L. Ramya and J.B. Sanjay. 2013. Chitosan-nanoconjugated hormone nanoparticles for sustained surge of gonadotropins and enhanced reproductive output in female fish. PLOS ONE 8(2): e57094. doi: 10.1371/ journal.pone.0057094. Rather, M.A., I.A. Bhat, N. Sharma, R. Sharma, B.P. Gireesh, C. Aparna and K.S. Jeetendra. 2016. Molecular characterization, tissue distribution of Follicle-Stimulating Hormone (FSH) beta sub unit and effect of kisspepetin-10 on reproductive hormonal profile of Catla catla (Hamilton, 1822). Aquaculture Research 47:20892100. Saleh, M., G. Kumar, A.A. Abdel-Baki, S. Al-Quraishy, and M. El-Matbouli. 2016. In vitro antimicrosporidial activity of gold nanoparticles against Heterosporis saurida. BMC Veterinary Research 12:1-10. Sarkar, B., A. Mahanty, P. Netam, S. Mishra, N. Pradhan and M. Samanta. 2012. Inhibitory role of silver nanoparticles against important fish pathogen, Aeromonas hydrophila . International Journal of Nanomaterials and Biostructures 2(4):70-74. Sharma, N., M.A. Rather, M.N Ajima, P. Gireesh-Babu, K. Kumar, K. and R. Sharma. 2016. Assessment of DNA damage and molecular responses in Labeo rohita (Hamilton, 1822) following short-term exposure to silver nanoparticles. Food and Chemical Toxicology 96: 122-132. Soltani, M., M. Ghodratnema, H. Ahari, H.A. Ebrahimzadeh Mousavi, M. Atee, F. Dastmalchi and J. Rahmanya. 2009.The inhibitory effect of silver nanoparticles on the bacterial fish pathogens, Streptococcus iniae, Lactococcus garvieae, Yersinia ruckeri and Aeromonas hydrophila. International Journal of Veterinary Research 3(2):137-142. Sondi, I. and B. Salopek-Sondi. 2004. Silver nanoparticles as antimicrobial agent: a case study on E. coli as a model for Gramnegative bacteria. Journal of Colloid and Interface Science 275:177182. Vaseeharan, B., P. Ramasamy and J.C. Chen. 2010. Antibacterial activity of silver nanoparticles (AgNps) synthesized by tea leaf extracts against pathogenic Vibrio harveyi and its protective efficacy on juvenile Feneropenaeus indicus . Letters in Applied Microbiology 50:352-356. Velmurugan, P., M. Iydroose, S.M. Lee, M. Cho, J.H. Park, V. Balachandar and B.T. Oh. 2014. Synthesis of silver and gold nanoparticles using cashew nut shell liquid and its antibacterial activity against fish pathogens. Indian Journal of Microbiology 54:196-202. Vijayaraghavan, K., N. Udaya Prakash and D. Madhankumar. 2012. Biomimetic synthesis of silver nanoparticles by aqueous extract of Syzygium aromaticum. Colloids and Surfaces B Biointerfaces 75:33-35. With a strong history of accepting new technologies, the dynamic fish farming industry may be among the best to integrate and commercialize nanotech products.

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