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Silva de Miranda, G.

Publications and source records attributed to Silva de Miranda, G..

2 recordsLinked to original sources

The impact of climate and habitat on body shape and size evolution in whip spiders (Amblypygi)

Arthropod body size responds to environmental variation at differing spatial scales. Amblypygi (whip spiders) is an ancient order of arachnids with remarkably conserved body shape, despite their global distribution. While several studies have investigated how body size evolved in spiders, virtually no study has addressed this issue in whip spiders. Here, we analysed how body size and shape of 69 species of Charontid whip spiders evolved in response to climate and habitat. We used Generalized Least Squares to test if bioclimatic variables and habitat influence the variation in body size and shape. Additionally, we fitted alternative macroevolutionary models to body size and shape using Bayesian and Maximum Likelihood approaches. Finally, we estimated phylogenetic signal and tested for differences in evolutionary rates among habitats. Body size decreased slightly with increasing mean annual temperatures and increased with increasing yearly precipitation. Body size evolved following an increasing trend, while the adaptive landscape of body shape seems to have distinct optima, but not rates, for each habitat. Our results support both Cope-Deperets and Bergmanns rule, while habitat had a lesser role. This is the first study to analyze the evolution of Amblypygi phenotypes, which helps in understanding why their morphology is so conserved.

evolutionary biology↗

Neglected no longer: Phylogenomic resolution of higher-level relationships in Solifugae

Considerable progress has been achieved in resolving higher-level relationships of Arthropoda in the past two decades, largely precipitated by advances in sequencing technology. Yet, dark branches persist in the arthropod tree of life, principally among groups that are difficult to collect, occur in cryptic habitats, or are characterized by minute body size. Among chelicerates, the mesodiverse order Solifugae (commonly called camel spiders or sun spiders) is one of the last orders of Arachnida that lacks a higher-level phylogeny altogether and has long been characterized as one of the "neglected cousins", a lineage of arachnid orders that are comparatively poorly studied with respect to evolutionary relationships. Though renowned for their aggression, remarkable running speed, and adaptation to arid habitats, inferring solifuge relationships has been hindered by inaccessibility of diagnostic characters in most ontogenetic stages for morphological datasets, whereas molecular investigations to date have been limited to one of the 12 recognized families. In this study we generated a phylogenomic dataset via capture of ultraconserved elements (UCEs) and sampled all extant families. We recovered a well-resolved phylogeny of solifuge families, with two distinct groups of New World taxa nested within a broader Paleotropical radiation. To provide a temporal context to solifuge diversification, we estimated molecular divergence times using fossil calibrations within a least-squares framework. Solifugae were inferred to have radiated by the Permian, with divergences of most families dating to the post Paleogene-Cretaceous extinction. These results accord with a diversification history largely driven by vicariance as a result of continental breakup.

evolutionary biology↗