The Echinodermata is an ancient phylum of benthic marine invertebrates with a dispersal stage planktonic larva. These animals have innate immune systems as characterized by clearance of foreign particles including microbes from the body cavity of both larvae and adults, and allograft tissue rejection in adults. Immune responsiveness is mediated by a variety of adult coelomocytes and larval mesenchyme cells. Echinoderm diseases from a range of pathogens can lead to mass die-offs and impact aquaculture, but from which some individuals can recover. Genome sequences of several echinoderms have identified genes with immune function including expanded families of Toll-like receptors, NOD-like receptors, scavenger receptors with cysteine rich domains, plus signaling pathways, and cytokines. The set of transcription factors that regulate proliferation and differentiation of the cellular immune system are conserved and indicate the ancestral origins of hematopoiesis. Both larval and adult echinoderms are in constant contact with potential pathogens in sea waterseawater and they respond to infection by phagocytosis and encapsulation and employ proteins that function in immune detection and response. Anti-pathogen responses include activation of the SpTransformer genes, a complement system, and the production of many types of antimicrobial peptides. Echinoderms have homologues of the recombinase activating genes plus all associated genes that function in vertebrates for immunoglobulin gene family rearrangement, although their gene targets are unknown. The echinoderm immune system has been characterized as unexpectedly complex, robust, and flexible. Many echinoderms have very long life spans that correlate with an excellent capacity for cell damage repair. In many marine ecosystems, echinoderms are keystone predators and herbivores and therefore are species that can serve as optimal sentinels of environmental health. Coelomocytes can be employed in sensor systems to test for the presence of marine pollutants. When Elie Metchnikoff inserted a rose prickle into a larval sea star and observed chemotaxis, phagocytosis, and encapsulation by the mesenchyme cells, not only did he initiate the field of immunology, but also that of comparative immunology in which the echinoderms have been an important part.

Echinodermata: The Complex Immune System in Echinoderms

A Pinsino;L Stabili;
2018

Abstract

The Echinodermata is an ancient phylum of benthic marine invertebrates with a dispersal stage planktonic larva. These animals have innate immune systems as characterized by clearance of foreign particles including microbes from the body cavity of both larvae and adults, and allograft tissue rejection in adults. Immune responsiveness is mediated by a variety of adult coelomocytes and larval mesenchyme cells. Echinoderm diseases from a range of pathogens can lead to mass die-offs and impact aquaculture, but from which some individuals can recover. Genome sequences of several echinoderms have identified genes with immune function including expanded families of Toll-like receptors, NOD-like receptors, scavenger receptors with cysteine rich domains, plus signaling pathways, and cytokines. The set of transcription factors that regulate proliferation and differentiation of the cellular immune system are conserved and indicate the ancestral origins of hematopoiesis. Both larval and adult echinoderms are in constant contact with potential pathogens in sea waterseawater and they respond to infection by phagocytosis and encapsulation and employ proteins that function in immune detection and response. Anti-pathogen responses include activation of the SpTransformer genes, a complement system, and the production of many types of antimicrobial peptides. Echinoderms have homologues of the recombinase activating genes plus all associated genes that function in vertebrates for immunoglobulin gene family rearrangement, although their gene targets are unknown. The echinoderm immune system has been characterized as unexpectedly complex, robust, and flexible. Many echinoderms have very long life spans that correlate with an excellent capacity for cell damage repair. In many marine ecosystems, echinoderms are keystone predators and herbivores and therefore are species that can serve as optimal sentinels of environmental health. Coelomocytes can be employed in sensor systems to test for the presence of marine pollutants. When Elie Metchnikoff inserted a rose prickle into a larval sea star and observed chemotaxis, phagocytosis, and encapsulation by the mesenchyme cells, not only did he initiate the field of immunology, but also that of comparative immunology in which the echinoderms have been an important part.
2018
Istituto di biomedicina e di immunologia molecolare - IBIM - Sede Palermo
Istituto per l'Ambiente Marino Costiero - IAMC - Sede Napoli
Echinoidea - Asteroidea - Holothuroidea - Ophiuroidea - Crinoidea - Sea
Sea urchin
Diseases
Genomics - Proteomics - Coelomocytes - Larval immune cells
Immune responses - Senescence - Immuno-toxicology
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/372290
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