Two types of nucleolus can be distinguished among eukaryotic cells: a tricompartmentalized nucleolus in amniotes and a bicompartmentalized nucleolus in all the others. However, though the nucleolus’ ultrastructure is well characterized in mammals and birds, it has been so far much less studied in reptiles. In this work, we examined the ultrastructural organization of the nucleolus in various tissues from different reptilian species (three turtles, three lizards, two crocodiles, and three snakes). Using cytochemical and immunocytological methods, we showed that in reptiles both types of nucleolus are present: a bicompartmentalized nucleolus in turtles and a tricompartmentalized nucleolus in the other species examined in this study. Furthermore, in a given species, the same type of nucleolus is present in all the tissues, however, the importance and the repartition of those nucleolar components could vary from one tissue to another. We also reveal that, contrary to the mammalian nucleolus, the reptilian fibrillar centers contain small clumps of condensed chromatin and that their surrounding dense fibrillar component is thicker. Finally, we also report that Cajal bodies are detected in reptiles. Altogether, we believe that these results have profound evolutionarily implications since they indicate that the point of transition between bipartite and tripartite nucleoli lies at the emergence of the amniotes within the class Reptilia.

Nucleolar structure across evolution: The transition between bi- and tricompartmentalized nucleoli lies within the class Reptilia / Lamaye F.; Galliot S.; Alibardi L.; Lafontaine D.L.J.; Thiry M.. - In: JOURNAL OF STRUCTURAL BIOLOGY. - ISSN 1047-8477. - STAMPA. - 174:(2011), pp. 352-359. [10.1016/j.jsb.2011.02.003]

Nucleolar structure across evolution: The transition between bi- and tricompartmentalized nucleoli lies within the class Reptilia

ALIBARDI, LORENZO;
2011

Abstract

Two types of nucleolus can be distinguished among eukaryotic cells: a tricompartmentalized nucleolus in amniotes and a bicompartmentalized nucleolus in all the others. However, though the nucleolus’ ultrastructure is well characterized in mammals and birds, it has been so far much less studied in reptiles. In this work, we examined the ultrastructural organization of the nucleolus in various tissues from different reptilian species (three turtles, three lizards, two crocodiles, and three snakes). Using cytochemical and immunocytological methods, we showed that in reptiles both types of nucleolus are present: a bicompartmentalized nucleolus in turtles and a tricompartmentalized nucleolus in the other species examined in this study. Furthermore, in a given species, the same type of nucleolus is present in all the tissues, however, the importance and the repartition of those nucleolar components could vary from one tissue to another. We also reveal that, contrary to the mammalian nucleolus, the reptilian fibrillar centers contain small clumps of condensed chromatin and that their surrounding dense fibrillar component is thicker. Finally, we also report that Cajal bodies are detected in reptiles. Altogether, we believe that these results have profound evolutionarily implications since they indicate that the point of transition between bipartite and tripartite nucleoli lies at the emergence of the amniotes within the class Reptilia.
2011
Nucleolar structure across evolution: The transition between bi- and tricompartmentalized nucleoli lies within the class Reptilia / Lamaye F.; Galliot S.; Alibardi L.; Lafontaine D.L.J.; Thiry M.. - In: JOURNAL OF STRUCTURAL BIOLOGY. - ISSN 1047-8477. - STAMPA. - 174:(2011), pp. 352-359. [10.1016/j.jsb.2011.02.003]
Lamaye F.; Galliot S.; Alibardi L.; Lafontaine D.L.J.; Thiry M.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/114292
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