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1.
Zootaxa ; 5403(1): 65-79, 2024 Jan 18.
Artigo em Inglês | MEDLINE | ID: mdl-38480454

RESUMO

A list of acrodont lizard type specimens extant in the Naturalis collection is presented here for the first time. The collections combines original specimens of the former Rijksmuseum van Natuurlijke Historie, Leiden (RMNH) and the former Zologisch Museum Amsterdam (ZMA). Currently the Naturalis collection holds primary types of 25 agamid lizard species (11 holotypes, six lectotypes and syntypes for eight species, including types of two species where the type status is unclear) as well as numerous secondary types for 22 species (14 para- and eight paralectotype series). Type material present in the collection represents 29 currently valid agamid lizards taxa and three currently valid chameleon taxa.


Assuntos
Lagartos , Animais , Serpentes , Museus
2.
Mol Biol Evol ; 38(10): 4222-4237, 2021 09 27.
Artigo em Inglês | MEDLINE | ID: mdl-34164688

RESUMO

The frameshift hypothesis is a widely accepted model of bird wing evolution. This hypothesis postulates a shift in positional values, or molecular-developmental identity, that caused a change in digit phenotype. The hypothesis synthesized developmental and paleontological data on wing digit homology. The "most anterior digit" (MAD) hypothesis presents an alternative view based on changes in transcriptional regulation in the limb. The molecular evidence for both hypotheses is that the MAD expresses Hoxd13 but not Hoxd11 and Hoxd12. This digit I "signature" is thought to characterize all amniotes. Here, we studied Hoxd expression patterns in a phylogenetic sample of 18 amniotes. Instead of a conserved molecular signature in digit I, we find wide variation of Hoxd11, Hoxd12, and Hoxd13 expression in digit I. Patterns of apoptosis, and Sox9 expression, a marker of the phalanx-forming region, suggest that phalanges were lost from wing digit IV because of early arrest of the phalanx-forming region followed by cell death. Finally, we show that multiple amniote lineages lost phalanges with no frameshift. Our findings suggest that the bird wing evolved by targeted loss of phalanges under selection. Consistent with our view, some recent phylogenies based on dinosaur fossils eliminate the need to postulate a frameshift in the first place. We suggest that the phenotype of the Archaeopteryx lithographica wing is also consistent with phalanx loss. More broadly, our results support a gradualist model of evolution based on tinkering with developmental gene expression.


Assuntos
Dinossauros , Asas de Animais , Animais , Aves/genética , Aves/metabolismo , Dinossauros/anatomia & histologia , Extremidades , Filogenia
3.
Zootaxa ; 4695(5): zootaxa.4695.5.2, 2019 Nov 12.
Artigo em Inglês | MEDLINE | ID: mdl-31719333

RESUMO

We present information on primary type specimens for 13,282 species and subspecies of reptiles compiled in the Reptile Database, that is, holotypes, neotypes, lectotypes, and syntypes. These represent 99.4% of all 13,361 currently recognized taxa (11,050 species and 2311 subspecies). Type specimens of 653 taxa (4.9%) are either lost or not located, were never designated, or we did not find any information about them. 51 species are based on iconotypes. To map all types to physical collections we have consolidated all synonymous and ambiguous collection acronyms into an unambiguous list of 364 collections holding these primary types. The 10 largest collections possess more than 50% of all (primary) reptile types, the 36 largest collections possess more than 10,000 types and the largest 73 collections possess over 90% of all types. Of the 364 collections, 107 hold type specimens of only 1 species or subspecies. Dozens of types are still in private collections. In order to increase their utility, we recommend that the description of type specimens be supplemented with data from high-resolution images and CT-scans, and clear links to tissue samples and DNA sequence data (when available). We request members of the herpetological community provide us with any missing type information to complete the list.


Assuntos
Répteis , Animais , Bases de Dados Factuais
4.
Nature ; 500(7463): 445-8, 2013 Aug 22.
Artigo em Inglês | MEDLINE | ID: mdl-23831646

RESUMO

Evolution involves interplay between natural selection and developmental constraints. This is seen, for example, when digits are lost from the limbs during evolution. Extant archosaurs (crocodiles and birds) show several instances of digit loss under different selective regimes, and show limbs with one, two, three, four or the ancestral number of five digits. The 'lost' digits sometimes persist for millions of years as developmental vestiges. Here we examine digit loss in the Nile crocodile and five birds, using markers of three successive stages of digit development. In two independent lineages under different selection, wing digit I and all its markers disappear. In contrast, hindlimb digit V persists in all species sampled, both as cartilage, and as Sox9- expressing precartilage domains, 250 million years after the adult digit disappeared. There is therefore a mismatch between evolution of the embryonic and adult phenotypes. All limbs, regardless of digit number, showed similar expression of sonic hedgehog (Shh). Even in the one-fingered emu wing, expression of posterior genes Hoxd11 and Hoxd12 was conserved, whereas expression of anterior genes Gli3 and Alx4 was not. We suggest that the persistence of digit V in the embryo may reflect constraints, particularly the conserved posterior gene networks associated with the zone of polarizing activity (ZPA). The more rapid and complete disappearance of digit I may reflect its ZPA-independent specification, and hence, weaker developmental constraints. Interacting with these constraints are selection pressures for limb functions such as flying and perching. This model may help to explain the diverse patterns of digit loss in tetrapods. Our study may also help to understand how selection on adults leads to changes in development.


Assuntos
Jacarés e Crocodilos/anatomia & histologia , Jacarés e Crocodilos/embriologia , Evolução Biológica , Aves/anatomia & histologia , Aves/embriologia , Extremidades/anatomia & histologia , Seleção Genética , Animais , Dromaiidae/anatomia & histologia , Dromaiidae/embriologia , Extremidades/embriologia , Membro Anterior/anatomia & histologia , Membro Anterior/embriologia , Regulação da Expressão Gênica no Desenvolvimento , Proteínas Hedgehog/metabolismo , Membro Posterior/anatomia & histologia , Membro Posterior/embriologia , Proteínas de Homeodomínio/metabolismo , Dados de Sequência Molecular , Fenótipo , Filogenia , Asas de Animais/anatomia & histologia , Asas de Animais/embriologia
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