
<rss version="0.91">
    <channel>
        <title>Latest Articles from Vertebrate Zoology</title>
        <description>Latest 2 Articles from Vertebrate Zoology</description>
        <link>https://vertebrate-zoology.arphahub.com/</link>
        <lastBuildDate>Tue, 21 Jul 2026 12:59:51 +0000</lastBuildDate>
        <generator>Pensoft FeedCreator</generator>
        <image>
            <url>https://vertebrate-zoology.arphahub.com/i/logo.jpg</url>
            <title>Latest Articles from Vertebrate Zoology</title>
            <link>https://vertebrate-zoology.arphahub.com/</link>
            <description><![CDATA[Feed provided by https://vertebrate-zoology.arphahub.com/. Click to visit.]]></description>
        </image>
	
		<item>
		    <title>The colorful giants: Revisiting the systematics of the Anolis latifrons series (Squamata: Anolidae)</title>
		    <link>https://vertebrate-zoology.arphahub.com/article/162071/</link>
		    <description><![CDATA[
					<p>Vertebrate Zoology 75: 441-457</p>
					<p>DOI: 10.3897/vz.75.e162071</p>
					<p>Authors: Carlos M. Marín, Daniel Bocanumenth, Juan M. Daza</p>
					<p>Abstract: Abstract          The lizard genus Anolis is the second most diverse genus of terrestrial vertebrates. Within Anolis, the highly speciose clade Dactyloa comprises six species series, including the latifrons series. Despite previous efforts to reconstruct its phylogeny, earlier studies have excluded a substantial proportion of the clade’s species diversity. Here, we integrated both historical and newly generated genetic data to reconstruct the most comprehensive molecular phylogeny of the latifrons series to date including 88% of the current species diversity. We also conducted a thorough morphological examination of museum specimens representing ten species, primarily distributed in Colombia, including vouchers of A. danieli from the Central Cordillera used in previous molecular phylogenies. Our phylogeny also included genetic samples of A. danieli from several localities in the Western Cordillera, samples of Anolis limon and A. mirus (two species previously lacking genetic data), and sequences from the Central American species A. kathydayae and A. brooksi. Our results recovered topological differences for A. limon and A. mirus compared to previous hypotheses and revealed that specimens assigned to A. danieli in earlier studies were misidentified and are not phylogenetically related to this species. Instead, our results showed that the true A. danieli is sister to a green anole clade distributed across the Central Cordillera, Pacific region, and Panama. Based on our phylogenetic and genetic distance analyses, we conclude that A. kathydayae should be considered a junior synonym of A. brooksi. Lastly, we describe the taxon previously confused with A. danieli and comment on the taxonomic implications of our findings.</p>
					<p><a href="https://vertebrate-zoology.arphahub.com/article/162071/">HTML</a></p>
					<p><a href="https://vertebrate-zoology.arphahub.com/article/162071/download/xml/">XML</a></p>
					<p><a href="https://vertebrate-zoology.arphahub.com/article/162071/download/pdf/">PDF</a></p>
			]]></description>
		    <category>Research Article</category>
		    <pubDate>Wed, 29 Oct 2025 22:32:30 +0000</pubDate>
		</item>
	
		<item>
		    <title>A revision of the Anolis carolinensis subgroup supports three species in Cuba, including a new cryptic species (Squamata: Anolidae)</title>
		    <link>https://vertebrate-zoology.arphahub.com/article/152054/</link>
		    <description><![CDATA[
					<p>Vertebrate Zoology 75: 107-126</p>
					<p>DOI: 10.3897/vz.75.e152054</p>
					<p>Authors: Javier Torres, Dexter Reilly, Claudia Nuñez-Penichet, R. Graham Reynolds, Richard E. Glor</p>
					<p>Abstract: Abstract          Cuba is the only landmass with more than one species in the Anolis carolinensis subgroup. We test the hypothesis that three rather than two distinct species occur on Cuba, based on substantial prior evidence of paraphyly. To test this hypothesis, we collected phenotypic data from all described species in the subgroup, including eastern and west-central Cuban populations of A. porcatus, and assessed phenotypic diagnosability using uni- and multivariate analyses. We also examined geographic isolation using all available occurrence records for Cuban lineages. Additionally, we conducted ecological niche modeling and niche overlap analyses, considering only Cuban lineages, to test for ecological differentiation. Finally, we reconstructed phylogenetic trees, incorporating all species from the subgroup for the first time. Our results support the recognition of three species in Cuba: A. allisoni and eastern and west-central A. porcatus as two distinct cryptic species, showing minimal phenotypic differentiation but clear geographic isolation, distinct ecological niches, and deep genetic divergence. We restrict the name A. porcatus to west-central Cuba, with Havana as the type locality, and formally describe the eastern Cuban populations as Anolis torresfundorai sp. nov., designating Baracoa, Guantánamo, as the type locality.</p>
					<p><a href="https://vertebrate-zoology.arphahub.com/article/152054/">HTML</a></p>
					<p><a href="https://vertebrate-zoology.arphahub.com/article/152054/download/xml/">XML</a></p>
					<p><a href="https://vertebrate-zoology.arphahub.com/article/152054/download/pdf/">PDF</a></p>
			]]></description>
		    <category>Research Article</category>
		    <pubDate>Thu, 24 Apr 2025 17:55:01 +0000</pubDate>
		</item>
	
	</channel>
</rss>
	