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2022-07-05

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Kamalii, A., Mathivanan, A., Thilagavathi, T., Sangavi, C., Antony, C., Ahilan, B., 2022. Cutting-Edge Methodologies and Tools in Fisheries. Biotica Research Today 4(7), 506-509.

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HOME / ARCHIVES / Vol. 4 No. 7 : July (2022) / Popular Article

Cutting-Edge Methodologies and Tools in Fisheries

A. Kamalii*

Dr. MGR Fisheries College and Research Institute, Ponneri, Tamil Nadu (601 204), India

A. Mathivanan

Dr. MGR Fisheries College and Research Institute, Ponneri, Tamil Nadu (601 204), India

T. Thilagavathi

Dr. MGR Fisheries College and Research Institute, Ponneri, Tamil Nadu (601 204), India

C. Sangavi

Dr. MGR Fisheries College and Research Institute, Ponneri, Tamil Nadu (601 204), India

Cheryl Antony 

Dr. MGR Fisheries College and Research Institute, Ponneri, Tamil Nadu (601 204), India

B. Ahilan

Dr. MGR Fisheries College and Research Institute, Ponneri, Tamil Nadu (601 204), India

DOI: NIL

Keywords: Burgeoning, Cutting-edge technology, Fisheries, Sustainability

Abstract


The fisheries sector is one of the most profitable businesses; the cutting-edge technologies nurture them with more and more economical wealth and sustainability. The latest information and novel monitoring technologies are potential game-changers for fisheries resource management and foster the growth of sustainability in the sector. The utilization of novel technologies has enabled the government to collect more data on fish stocks, better monitor, enforce and evaluate the environmental impacts of fisheries activities and improve the effectiveness of policies to sustainably manage fisheries. To this end, there are many recent technological developments. Such technologies can be collaborative, i.e., involving more than one stakeholder group along the value chain, or non-collaborative which are set up by governments to monitor the fisheries sector. Thus, this article focuses on the burgeoning trends in the fisheries sector.

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Hamasaki, M., Takeuchi, Y., Yazawa, R., Yoshikawa, S., Kadomura, K., Yamada, T., Miyaki, K., Kikuchi, K., Yoshizaki, G., 2017. Production of tiger puffer Takifugu rubripes offspring from triploid grass puffer Takifugu niphobles parents. Marine Biotechnology 19(6), 579-591.

Morita, T., Kumakura, N., Morishima, K., Mitsuboshi, T., Ishida, M., Hara, T., Kudo, S., Miwa, M., Ihara, S., Higuchi, K., Takeuchi, Y., 2012. Production of donor-derived offspring by allogeneic transplantation of spermatogonia in the yellowtail (Seriola quinqueradiata). Biology of Reproduction 86(6), 176-1.

Okutsu, T., Shikina, S., Kanno, M., Takeuchi, Y., Yoshizaki, G., 2007. Production of trout offspring from triploid salmon parents. Science 317(5844), 1517-1517.

Takeuchi, Y., Yoshizaki, G., Takeuchi, T., 2004. Surrogate broodstock produces salmonids. Nature 430(7000), 629-630.

Yoshizaki, G., Lee, S., 2018. Production of live fish derived from frozen germ cells via germ cell transplantation. Stem Cell Research 29, 103-110.