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        <title>Latest Articles from Arthropod Systematics &amp; Phylogeny</title>
        <description>Latest 4 Articles from Arthropod Systematics &amp; Phylogeny</description>
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            <title>Latest Articles from Arthropod Systematics &amp; Phylogeny</title>
            <link>https://arthropod-systematics.arphahub.com/</link>
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		    <title>Insights into the molecular diversity and phylogeographic structure of Tabanus bifarius Loew, 1858 (Diptera: Tabanidae)</title>
		    <link>https://arthropod-systematics.arphahub.com/article/162008/</link>
		    <description><![CDATA[
					<p>Arthropod Systematics & Phylogeny 84: 31-46</p>
					<p>DOI: 10.3897/asp.84.e162008</p>
					<p>Authors: Sumeyra Nur Sanal Demirci, Volkan Kılıç, Serap Mutun, A. Yavuz Kılıç</p>
					<p>Abstract: Tabanus bifarius Loew, 1858 is a horsefly species distributed throughout the Mediterranean region and in the areas of central and southeastern Europe and partly in Asia. In this study, we conducted the first comprehensive phylogeographic and population genetic analysis of T. bifarius collected from 13 localities across Türkiye and Iran, through utilizing mitochondrial (COI) and nuclear DNA (ITS1–5.8S–ITS2) markers. A total of 81 haplotypes and 59 nuclear alleles were identified among 187 sequenced individuals. Both mitochondrial and nuclear DNA patterns and diversity observed in T. bifarius are indicative of complex historical and demographic processes. Among all the populations studied, Eskişehir and Hatay exhibited the highest genetic diversity, which may be due to the region’s topography and transitional zones. Phylogenetic analyses suggested that T. bifarius split from the outgroup species approximately 5.53 million years ago (MYA) during the Late Miocene–Early Pliocene, likely driven by tectonic and climatic events. Subsequent diversification events that occurred during times of climatic and environmental fluctuations in the Late Pliocene and Early Pleistocene also seemed to have significantly affected the species and gave rise to the formation of some important genetic lineages. Our analyses results indicate that T. bifarius exhibits a structured genetic landscape shaped by multiple refugial routes, geographic barriers, and Quaternary climatic oscillations. Further, our findings suggest that the species likely entered Anatolia through three distinct routes: (1) from the Levant region into southern Anatolia via Hatay; (2) from the Caucasus into northeastern Anatolia through Ardahan; and (3) from the Iranian Plateau into eastern Anatolia via Van.</p>
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			]]></description>
		    <category>Research Article</category>
		    <pubDate>Thu, 5 Feb 2026 08:03:22 +0000</pubDate>
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		    <title>Phylogeographic analyses of western Palearctic Scaurus (Coleoptera: Tenebrionidae) reveal undetected taxonomic substructure along the pre-Saharian Atlantic Coast of western Africa</title>
		    <link>https://arthropod-systematics.arphahub.com/article/132546/</link>
		    <description><![CDATA[
					<p>Arthropod Systematics & Phylogeny 82: 707-717</p>
					<p>DOI: 10.3897/asp.82.e132546</p>
					<p>Authors: Carmen Duque-Amado, Mario García-París, Alberto Sánchez-Vialas</p>
					<p>Abstract: Phylogeography stands as a key tool to explore evolutionary patterns and processes, playing a crucial role in delimiting evolutionary units. Identifying these units is essential for providing robust taxonomic decisions. In this study, we present a comprehensive phylogeographical framework of Scaurus uncinus (Forster, 1771) and Scaurus gigas Waltl, 1835 across the Iberian Peninsula and North-western Africa, where they are widely co-distributed, coexisting in several localities on both sides of Strait of Gibraltar. Our results show that the Strait of Gibraltar did not act as a geographical barrier for these species, revealing shared mitochondrial haplotypes and nuclear alleles between populations on both sides. However, the Souss Valley in Morocco appears to have historically served as a significant geographical barrier within the S. gigas lineage, leading to the divergence of two morphologically distinct sublineages, one to the north (S. gigas) and the other to the south (S. ferreri stat. nov.). In addition, we point out a case of cytonuclear discordance between S. uncinus and S. gigas in the southwest corner of the Iberian Peninsula, suggesting the occurrence of an ancient event of genetic introgression between the two species.</p>
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			]]></description>
		    <category>Research Article</category>
		    <pubDate>Fri, 27 Dec 2024 15:04:45 +0000</pubDate>
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		    <title>Uncovering glacial footprints and identifying phylogeographic units in the freshwater crab Potamon elbursi Pretzmann, 1962 (Decapoda: Potamidae) based on mitochondrial data</title>
		    <link>https://arthropod-systematics.arphahub.com/article/105740/</link>
		    <description><![CDATA[
					<p>Arthropod Systematics & Phylogeny 82: 253-266</p>
					<p>DOI: 10.3897/asp.82.e105740</p>
					<p>Authors: Atefe Kalate, Alireza Keikhosravi, Reza Nasrabadi, Elahe Parvizi, Christoph D. Schubart, Reza Naderloo</p>
					<p>Abstract: The current patterns of biodiversity have significantly been affected by glacial-interglacial cycles during the Pleistocene period. True freshwater crabs are considered as poor dispersers and terrestrial barriers restrict gene flow between their local populations. Recent studies, however, suggest that certain environmental conditions, such as periods of heavy rainfall and humidity, can facilitate their between-drainage dispersal and will result in the evolution of homogenous genetic patterns among different drainage systems. Here we tested this hypothesis by comparing populations of the endemic freshwater crab Potamon elbursi Pretzmann, 1962 distributed in two drainage systems, the Caspian Sea and Namak Lake, in northern Iran. Our results based on the genetic analysis of 70 new and 61 previously published sequences of the mitochondrial cytochrome oxidase subunit I gene revealed a substantial haplotype diversity in some populations and high levels of local population structuring in others. Initially, we found mixed evidence of genetic differentiation and connectivity among drainages and populations. Genetic differentiation between the two drainages only became apparent after the Sepirdood population (which belongs to the Caspian Sea drainage) was excluded. Subsequently, the two drainages showed significant genetic distinctions, with a limited gene flow between them. Our demographic analyses supported recent population bottlenecks, followed by a rapid demographic and/or spatial expansion dating back to the Pleistocene climatic fluctuations. Species distribution modelling suggests that precipitation during warm weather conditions profoundly affects the distribution of P. elbursi. This study indicates that freshwater crabs can override short land barriers under favorable weather conditions and will have conservation implications in the face of contemporary climatic fluctuations.</p>
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			]]></description>
		    <category>Research Article</category>
		    <pubDate>Tue, 16 Apr 2024 17:32:56 +0000</pubDate>
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		    <title>A fine line between species and ecotype: a case study of Anoplistes halodendri and A. kozlovi (Coleoptera: Cerambycidae) occurring sympatrically in Mongolia</title>
		    <link>https://arthropod-systematics.arphahub.com/article/61499/</link>
		    <description><![CDATA[
					<p>Arthropod Systematics & Phylogeny 79: 1-23</p>
					<p>DOI: 10.3897/asp.79.e61499</p>
					<p>Authors: Lech Karpiński, Patrick Gorring, Lech Kruszelnicki, Denis G. Kasatkin, Wojciech T. Szczepański</p>
					<p>Abstract: This paper discusses ecological adaptation based on a case study of Anoplistes halodendri and Anoplistes kozlovi (Coleoptera: Cerambycidae) that occur in the arid zone of Mongolia. By applying an integrative taxonomy approach, we revealed one of the first documented cases of sympatrically occurring ecotypes in Polyphaga and the second case of ecotypes in the family Cerambycidae. The results of the analysis of the ecological data, molecular analysis of mitochondrial (COI) and nuclear (ArgK and CAD) genes, as well as a detailed morphological examination, which consisted of a study on the male genitalia including the endophallic structures, supported the hypothesis that these two entities, which are commonly considered separate species, represent only ecologically adapted forms that are associated with rocky hills and sandy/gravelly plains, respectively. Therefore, a synonym is restored: Anoplistes halodendri minutus Hammarström, 1892 = Asias kozlovi Semenov and Znojko, 1934, syn. res. The differences in the elytral pattern and shade appear to be adapted to the different substrates in these distinct habitats. A probable scenario assumes that these two forms arose in parapatry, independently in multiple populations, under parallel speciation during the intensification of the aridification across the region in the period during which the Gobi Desert was formed (~ 24 to 2.6 Ma) and they may evolve into separate species in the future. The phylogenetic relationships of some taxa representing the most closely related genera of the tribe Trachyderini were analysed and the questioned species status of Anoplistes jacobsoni was confirmed. Low interspecific differences in the endophallic structures in the genus Anoplistes and between some species of the genus Amarysius indicate that they are evolutionarily relatively young groups. The practical differences between ecotype and subspecies are also discussed.</p>
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			]]></description>
		    <category>Research Article</category>
		    <pubDate>Fri, 16 Apr 2021 18:12:22 +0000</pubDate>
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