Decoding Stress Responses in Farmed Crustaceans: Comparative Insights for Sustainable Aquaculture Management.

Fuente: PubMed
Gespeichert in:
Bibliographische Detailangaben
Hauptverfasser: Hapsari, Fitriska, Suprayudi, Muhammad Agus, Akiyama, Dean M, Ekasari, Julie, Norouzitallab, Parisa, Baruah, Kartik
Format: Artículo científico
Sprache:en
Veröffentlicht: Biology 2025
Online-Zugang:
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
_version_ 1868266157467762688
author Hapsari, Fitriska
Suprayudi, Muhammad Agus
Akiyama, Dean M
Ekasari, Julie
Norouzitallab, Parisa
Baruah, Kartik
author_facet Hapsari, Fitriska
Suprayudi, Muhammad Agus
Akiyama, Dean M
Ekasari, Julie
Norouzitallab, Parisa
Baruah, Kartik
Hapsari, Fitriska
Suprayudi, Muhammad Agus
Akiyama, Dean M
Ekasari, Julie
Norouzitallab, Parisa
Baruah, Kartik
collection PubMed - marine biology
contents Decoding Stress Responses in Farmed Crustaceans: Comparative Insights for Sustainable Aquaculture Management. Hapsari, Fitriska Suprayudi, Muhammad Agus Akiyama, Dean M Ekasari, Julie Norouzitallab, Parisa Baruah, Kartik Aquaculture is a crucial food-producing sector that can supply more essential nutrients to nourish the growing human population. However, it faces challenges, including limited water quality and space competition. These constraints have led to the intensification of culture systems for more efficient resource use while maintaining or increasing production levels. However, intensification introduces stress risks to cultured organisms by, for instance, overcrowding, waste accumulation, and water quality deterioration, which can negatively affect the growth, health, and immunity of animals and cause diseases. Additionally, environmental changes due to climate and anthropogenic activities further intensify the environmental stress for aquaculture organisms, including crustaceans. Shrimp are one of the most widely cultured and consumed farmed crustacea. Relative to aquatic vertebrates such as fish, the physiology of crustaceans has simpler physiological structures, as they lack a spinal cord. Consequently, their stress response mechanisms follow a single pathway, resulting in less complex responses to stress exposure compared to those of fish. While stress is considered a primary factor influencing the growth, health, and immunity of shrimp, comprehensive research on crustacean stress responses remains limited. Understanding the stress response at the organismal and cellular levels is essential to identify sensitive and effective stress biomarkers which can inform the development of targeted intervention strategies to mitigate stress. This review provides a comprehensive overview of the physiological changes that occur in crustaceans under stress, including hormonal, metabolic, hematological, hydromineral, and phenotypic alterations. By synthesizing current knowledge, this article aims to bridge existing gaps and provide insights into the stress response mechanisms, paving the way for advancements in crustacean health management.
format Artículo científico
id pubmed_40906089
institution PubMed
language en
publishDate 2025
publisher Biology
record_format pubmed
spellingShingle Decoding Stress Responses in Farmed Crustaceans: Comparative Insights for Sustainable Aquaculture Management.
Hapsari, Fitriska
Suprayudi, Muhammad Agus
Akiyama, Dean M
Ekasari, Julie
Norouzitallab, Parisa
Baruah, Kartik
Decoding Stress Responses in Farmed Crustaceans: Comparative Insights for Sustainable Aquaculture Management. Hapsari, Fitriska Suprayudi, Muhammad Agus Akiyama, Dean M Ekasari, Julie Norouzitallab, Parisa Baruah, Kartik Aquaculture is a crucial food-producing sector that can supply more essential nutrients to nourish the growing human population. However, it faces challenges, including limited water quality and space competition. These constraints have led to the intensification of culture systems for more efficient resource use while maintaining or increasing production levels. However, intensification introduces stress risks to cultured organisms by, for instance, overcrowding, waste accumulation, and water quality deterioration, which can negatively affect the growth, health, and immunity of animals and cause diseases. Additionally, environmental changes due to climate and anthropogenic activities further intensify the environmental stress for aquaculture organisms, including crustaceans. Shrimp are one of the most widely cultured and consumed farmed crustacea. Relative to aquatic vertebrates such as fish, the physiology of crustaceans has simpler physiological structures, as they lack a spinal cord. Consequently, their stress response mechanisms follow a single pathway, resulting in less complex responses to stress exposure compared to those of fish. While stress is considered a primary factor influencing the growth, health, and immunity of shrimp, comprehensive research on crustacean stress responses remains limited. Understanding the stress response at the organismal and cellular levels is essential to identify sensitive and effective stress biomarkers which can inform the development of targeted intervention strategies to mitigate stress. This review provides a comprehensive overview of the physiological changes that occur in crustaceans under stress, including hormonal, metabolic, hematological, hydromineral, and phenotypic alterations. By synthesizing current knowledge, this article aims to bridge existing gaps and provide insights into the stress response mechanisms, paving the way for advancements in crustacean health management.
title Decoding Stress Responses in Farmed Crustaceans: Comparative Insights for Sustainable Aquaculture Management.
url https://pubmed.ncbi.nlm.nih.gov/40906089/