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Jeanne M Serb

Publications and source records attributed to Jeanne M Serb.

4 recordsLinked to original sources

New insights into the evolutionary history of photoreceptor cells.

Although the common descent of all life has been widely accepted since Darwin's time, new research occasionally provides us with arresting reminders of the unity of evolutionary history. Recent papers by Arendt et al. and Panda et al. provide one such reminder. They illustrate that the two classes of animal photoreceptors, ciliary and rhabdomeric photoreceptors, are likely to share an ancient common ancestor and have been evolving in parallel since their duplication over 600 million years ago.

Journal Article↗

Hierarchical phylogenetics as a quantitative analytical framework for evolutionary developmental biology.

Phylogenetics has inherent utility in evolutionary developmental biology (EDB) as it is an established methodology for estimating evolutionary relationships and for making comparisons between levels of biological organization. However, explicit phylogenetic methods generally have been limited to two levels of organization in EDB-the species and the gene. We demonstrate that phylogenetic methods can be applied broadly to other organizational levels, such as morphological structures or cell types, to identify evolutionary patterns. We present examples at and between different hierarchical levels of organization to address questions central to EDB. We argue that this application of "hierarchical phylogenetics" can be a unifying analytical approach to the field of EDB.

Animals↗

Complete mtDNA sequence of the North American freshwater mussel, Lampsilis ornata (Unionidae): an examination of the evolution and phylogenetic utility of mitochondrial genome organization in Bivalvia (Mollusca).

Molluscs in general, and bivalves in particular, exhibit an extraordinary degree of mitochondrial gene order variation when compared with other metazoans. Two factors inhibiting our understanding the evolution of gene rearrangement in bivalves are inadequate taxonomic sampling and failure to examine gene order in a phylogenetic framework. Here, we report the first complete nucleotide sequence (16,060 bp) of the mitochondrial (mt) genome of a North American freshwater bivalve, Lampsilis ornata (Mollusca: Paleoheterodonta: Unionidae). Gene order and mt genome content is examined in a comparative phylogenetic framework for Lampsilis and five other bivalves, representing five families. Mitochondrial genome content is shown to vary by gene duplication and loss among taxa and between male and female mitotypes within a species. Although mt gene arrangement is highly variable among bivalves, when optimized on an independently derived phylogenetic hypothesis, it allows for the reconstruction of ancestral gene order states and indicates the potential phylogenetic utility of the data. However, the interpretation of reconstructed ancestral gene order states must take in to account both the accuracy of the phylogenetic estimation and the probability of character state change across the topology, such as the presence/absence of atp8 in bivalve lineages. We discuss what role, if any, doubly uniparental inheritance (DUI) and recombination between sexual mitotypes may play in influencing gene rearrangement of the mt genome in some bivalve lineages.

Animals↗

Molecular systematics of the North American freshwater bivalve genus Quadrula (Unionidae: Ambleminae) based on mitochondrial ND1 sequences.

A molecular phylogeny of the bivalve genus Quadrula (Unionidae) was constructed based on nucleotide sequences of the mitochondrial ND1 gene. Phylogenetic analysis of 66 specimens representing 17 of the 20 currently recognized taxa within Quadrula, three closely allied species, and 16 outgroup taxa reveals a non-monophyletic Quadrula due to the placement of Tritogonia verrucosa, 'Fusconaia' succissa, and 'Quincuncina' infucata. We suggest that the taxonomic description of the genus Quadrula be expanded to include these species. Within the genus, we continue to recognize three monophyletic species groups (the quadrula, metanvera, and pustulosa species groups), as historically described; however, the pustulosa species group must include 'F.' succissa and 'Quincuncina' infucata. Finally, while our findings place the monotypic genus Tritogonia within Quadrula, its relationship to members within the genus Quadrula remains unresolved.

Animals↗