Cortical cytasters: a highly conserved developmental trait of Bilateria with similarities to Ctenophora

<p>Abstract</p> <p>Background</p> <p>Cytasters (cytoplasmic asters) are centriole-based nucleation centers of microtubule polymerization that are observable in large numbers in the cortical cytoplasm of the egg and zygote of bilaterian organisms. In both protostome and...

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Main Authors: Salinas-Saavedra Miguel, Vargas Alexander O
Format: Article
Language:English
Published: BMC 2011-12-01
Series:EvoDevo
Subjects:
Online Access:http://www.evodevojournal.com/content/2/1/23
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spelling doaj-f22a9819262c466897e158c7b3233c2e2020-11-24T22:16:23ZengBMCEvoDevo2041-91392011-12-01212310.1186/2041-9139-2-23Cortical cytasters: a highly conserved developmental trait of Bilateria with similarities to CtenophoraSalinas-Saavedra MiguelVargas Alexander O<p>Abstract</p> <p>Background</p> <p>Cytasters (cytoplasmic asters) are centriole-based nucleation centers of microtubule polymerization that are observable in large numbers in the cortical cytoplasm of the egg and zygote of bilaterian organisms. In both protostome and deuterostome taxa, cytasters have been described to develop during oogenesis from vesicles of nuclear membrane that move to the cortical cytoplasm. They become associated with several cytoplasmic components, and participate in the reorganization of cortical cytoplasm after fertilization, patterning the antero-posterior and dorso-ventral body axes.</p> <p>Presentation of the hypothesis</p> <p>The specific resemblances in the development of cytasters in both protostome and deuterostome taxa suggest that an independent evolutionary origin is unlikely. An assessment of published data confirms that cytasters are present in several protostome and deuterostome phyla, but are absent in the non-bilaterian phyla Cnidaria and Ctenophora. We hypothesize that cytasters evolved in the lineage leading to Bilateria and were already present in the most recent common ancestor shared by protostomes and deuterostomes. Thus, cytasters would be an ancient and highly conserved trait that is homologous across the different bilaterian phyla. The alternative possibility is homoplasy, that is cytasters have evolved independently in different lineages of Bilateria.</p> <p>Testing the hypothesis</p> <p>So far, available published information shows that appropriate observations have been made in eight different bilaterian phyla. All of them present cytasters. This is consistent with the hypothesis of homology and conservation. However, there are several important groups for which there are no currently available data. The hypothesis of homology predicts that cytasters should be present in these groups. Increasing the taxonomic sample using modern techniques uniformly will test for evolutionary patterns supporting homology, homoplasy, or secondary loss of cytasters.</p> <p>Implications of the hypothesis</p> <p>If cytasters are homologous and highly conserved across bilateria, their potential developmental and evolutionary relevance has been underestimated. The deep evolutionary origin of cytasters also becomes a legitimate topic of research. In Ctenophora, polyspermic fertilization occurs, with numerous sperm entering the egg. The centrosomes of sperm pronuclei associate with cytoplasmic components of the egg and reorganize the cortical cytoplasm, defining the oral-aboral axis. These resemblances lead us to suggest the possibility of a polyspermic ancestor in the lineage leading to Bilateria.</p> http://www.evodevojournal.com/content/2/1/23cytasterscytoplasmic astersparthenogenesispolyspermic fertilizationbilaterianctenophoresmicrotubule networkcentrioles.
collection DOAJ
language English
format Article
sources DOAJ
author Salinas-Saavedra Miguel
Vargas Alexander O
spellingShingle Salinas-Saavedra Miguel
Vargas Alexander O
Cortical cytasters: a highly conserved developmental trait of Bilateria with similarities to Ctenophora
EvoDevo
cytasters
cytoplasmic asters
parthenogenesis
polyspermic fertilization
bilaterian
ctenophores
microtubule network
centrioles.
author_facet Salinas-Saavedra Miguel
Vargas Alexander O
author_sort Salinas-Saavedra Miguel
title Cortical cytasters: a highly conserved developmental trait of Bilateria with similarities to Ctenophora
title_short Cortical cytasters: a highly conserved developmental trait of Bilateria with similarities to Ctenophora
title_full Cortical cytasters: a highly conserved developmental trait of Bilateria with similarities to Ctenophora
title_fullStr Cortical cytasters: a highly conserved developmental trait of Bilateria with similarities to Ctenophora
title_full_unstemmed Cortical cytasters: a highly conserved developmental trait of Bilateria with similarities to Ctenophora
title_sort cortical cytasters: a highly conserved developmental trait of bilateria with similarities to ctenophora
publisher BMC
series EvoDevo
issn 2041-9139
publishDate 2011-12-01
description <p>Abstract</p> <p>Background</p> <p>Cytasters (cytoplasmic asters) are centriole-based nucleation centers of microtubule polymerization that are observable in large numbers in the cortical cytoplasm of the egg and zygote of bilaterian organisms. In both protostome and deuterostome taxa, cytasters have been described to develop during oogenesis from vesicles of nuclear membrane that move to the cortical cytoplasm. They become associated with several cytoplasmic components, and participate in the reorganization of cortical cytoplasm after fertilization, patterning the antero-posterior and dorso-ventral body axes.</p> <p>Presentation of the hypothesis</p> <p>The specific resemblances in the development of cytasters in both protostome and deuterostome taxa suggest that an independent evolutionary origin is unlikely. An assessment of published data confirms that cytasters are present in several protostome and deuterostome phyla, but are absent in the non-bilaterian phyla Cnidaria and Ctenophora. We hypothesize that cytasters evolved in the lineage leading to Bilateria and were already present in the most recent common ancestor shared by protostomes and deuterostomes. Thus, cytasters would be an ancient and highly conserved trait that is homologous across the different bilaterian phyla. The alternative possibility is homoplasy, that is cytasters have evolved independently in different lineages of Bilateria.</p> <p>Testing the hypothesis</p> <p>So far, available published information shows that appropriate observations have been made in eight different bilaterian phyla. All of them present cytasters. This is consistent with the hypothesis of homology and conservation. However, there are several important groups for which there are no currently available data. The hypothesis of homology predicts that cytasters should be present in these groups. Increasing the taxonomic sample using modern techniques uniformly will test for evolutionary patterns supporting homology, homoplasy, or secondary loss of cytasters.</p> <p>Implications of the hypothesis</p> <p>If cytasters are homologous and highly conserved across bilateria, their potential developmental and evolutionary relevance has been underestimated. The deep evolutionary origin of cytasters also becomes a legitimate topic of research. In Ctenophora, polyspermic fertilization occurs, with numerous sperm entering the egg. The centrosomes of sperm pronuclei associate with cytoplasmic components of the egg and reorganize the cortical cytoplasm, defining the oral-aboral axis. These resemblances lead us to suggest the possibility of a polyspermic ancestor in the lineage leading to Bilateria.</p>
topic cytasters
cytoplasmic asters
parthenogenesis
polyspermic fertilization
bilaterian
ctenophores
microtubule network
centrioles.
url http://www.evodevojournal.com/content/2/1/23
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AT vargasalexandero corticalcytastersahighlyconserveddevelopmentaltraitofbilateriawithsimilaritiestoctenophora
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