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result(s) for
"Salvatore D’Aniello"
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Duplication and Losses of Opsin Genes in Lophotrochozoan Evolution
by
Feuda, Roberto
,
Ferretti, Miriam
,
Crocetta, Fabio
in
Animals
,
Evolution
,
Evolution, Molecular
2023
Abstract
Opsins are G-coupled receptors playing a key role in metazoan visual processes. While many studies enriched our understanding of opsin diversity in several animal clades, the opsin evolution in Lophotrochozoa, one of the major metazoan groups, remains poorly understood. Using recently developed phylogenetic approaches, we investigated the opsin evolution in 74 lophotrochozoan genomes. We found that the common ancestor of Lophotrochozoa possessed at least seven opsin paralog groups that underwent divergent evolutionary history in the different phyla. Furthermore, we showed for the first time opsin-related molecules in Bilateria that we named pseudopsins, which may prove critical in uncovering opsin evolution.
Journal Article
Nitric Oxide Function and Nitric Oxide Synthase Evolution in Aquatic Chordates
by
Agnisola, Claudio
,
Annona, Giovanni
,
Palumbo, Anna
in
Animals
,
Chordata - genetics
,
Comparative analysis
2023
Nitric oxide (NO) is a key signaling molecule in almost all organisms and is active in a variety of physiological and pathological processes. Our understanding of the peculiarities and functions of this simple gas has increased considerably by extending studies to non-mammal vertebrates and invertebrates. In this review, we report the nitric oxide synthase (Nos) genes so far characterized in chordates and provide an extensive, detailed, and comparative analysis of the function of NO in the aquatic chordates tunicates, cephalochordates, teleost fishes, and amphibians. This comprehensive set of data adds new elements to our understanding of Nos evolution, from the single gene commonly found in invertebrates to the three genes present in vertebrates.
Journal Article
Amphioxus as a model to study the evolution of development in chordates
by
D'Aniello, Salvatore
,
Bertrand, Stephanie
,
Escriva, Hector
in
amphioxus
,
Animal models
,
Asymmetry
2023
Cephalochordates and tunicates represent the only two groups of invertebrate chordates, and extant cephalochordates – commonly known as amphioxus or lancelets – are considered the best proxy for the chordate ancestor, from which they split around 520 million years ago. Amphioxus has been an important organism in the fields of zoology and embryology since the 18 th century, and the morphological and genomic simplicity of cephalochordates (compared to vertebrates) makes amphioxus an attractive model for studying chordate biology at the cellular and molecular levels. Here we describe the life cycle of amphioxus, and discuss the natural histories and habitats of the different species of amphioxus. We also describe their use as laboratory animal models, and discuss the techniques that have been developed to study different aspects of amphioxus.
Journal Article
Molecular taxonomy confirms that the northeastern Atlantic and Mediterranean Sea harbor a single lancelet, Branchiostoma lanceolatum (Pallas, 1774) (Cephalochordata: Leptocardii: Branchiostomatidae)
by
Crocetta, Fabio
,
Caccavale, Filomena
,
Osca, David
in
Animals
,
Atlantic Ocean
,
Biology and Life Sciences
2021
Branchiostomatidae (lancelets or amphioxus) comprises about 30 species, several of which are well-established models in evolutionary development. Our zoological and ecological knowledge of the family is nonetheless limited. Despite evident differences can be found among known populations, the taxonomy of Branchiostoma lanceolatum (type species of the genus Branchiostoma ) has never been investigated with modern methods through its range in the northeastern Atlantic and Mediterranean Sea. We address this via a multilocus molecular approach and comparing specimens collected from different European populations. Results obtained here confirm the presence of a single species inhabiting the range between the topotypical localities of B . lanceolatum (Atlantic Ocean) and of its junior synonym B . lubricum (Mediterranean Sea), without evincing geographical structure between populations. This suggests that environment most likely drives the characteristics observed in different geographic areas. The long larval phase and the slow mutation rate in lancelets may have played a key role in the evolutionary history of this iconic species.
Journal Article
The evolutionary landscape of the Rab family in chordates
by
Ristoratore, Filomena
,
Coppola, Ugo
,
D’Aniello, Salvatore
in
Animals
,
Biochemistry
,
Biological Evolution
2019
Intracellular traffic amongst organelles represents a key feature for eukaryotes and is orchestrated principally by members of Rab family, the largest within Ras superfamily. Given that variations in Rab repertoire have been fundamental in animal diversification, we provided the most exhaustive survey regarding the Rab toolkit of chordates. Our findings reveal the existence of 42 metazoan conserved subfamilies exhibiting a univocal intron/exon structure preserved from cnidarians to vertebrates. Since the current view does not capture the Rab complexity, we propose a new Rab family classification in three distinct monophyletic clades. The
Rab
complement of chordates shows a dramatic diversification due to genome duplications and independent gene duplications and losses with sharp differences amongst cephalochordates, tunicates and gnathostome vertebrates. Strikingly, the analysis of the domain architecture of this family highlighted the existence of chimeric calcium-binding Rabs, which are animal novelties characterized by a complex evolutionary history in gnathostomes and whose role in cellular metabolism is obscure. This work provides novel insights in the knowledge of
Rab
family: our hypothesis is that chordates represent a hotspot of
Rab
variability, with many events of gene gains and losses impacting intracellular traffic capabilities. Our results help to elucidate the role of Rab members in the transport amongst endomembranes and shed light on intracellular traffic routes in vertebrates. Then, since the predominant role of Rabs in the molecular communication between different cellular districts, this study paves to way to comprehend inherited or acquired human disorders provoked by dysfunctions in
Rab
genes.
Journal Article
A potential role for BDNF in recognition behavior revealed through knockout in zebrafish
by
Lucon-Xiccato, Tyrone
,
Gatto, Elia
,
Bertolucci, Cristiano
in
bdnf
,
behavioral variation
,
Brain-derived neurotrophic factor
2026
Brain-derived neurotrophic factor (BDNF) is a key player in the molecular mechanisms underlying learning and memory in mammals. Recent studies have shown that mutant fish lacking BDNF exhibit widespread deficits in learning tasks. Moreover, natural variation in brain BDNF gene expression predicts individual differences in learning ability in fish. These findings suggest that the role of BDNF in cognition may be widespread among vertebrates.
Following this hypothesis, we used a
knockout zebrafish model to investigate whether BDNF is involved in recognition memory in fish. Zebrafish larvae were tested in a novel object recognition test, where their response to a previously encountered stimulus and a novel one was recorded.
Overall, zebrafish did not demonstrate a group-level preference for either stimulus. However, individuals appeared to show variation in their responses to the novel stimulus (either approaching or avoiding it). When accounting for the individual variation, the strength of recognition memory performance was lower in zebrafish lacking
compared with control zebrafish, although this effect was influenced by the type of stimulus used. Moreover, the absence of BDNF resulted in less variability in the behavioral response towards the novel stimulus, supporting the role of this protein in shaping individual differences in behavior.
Our findings suggest that BDNF may be involved in recognition test performance and the underlying behavior, although the nature of this involvement and the contribution of memory processes remain unclear.
Journal Article
Brain Proteome and Behavioural Analysis in Wild Type, BDNF+/− and BDNF−/− Adult Zebrafish (Danio rerio) Exposed to Two Different Temperatures
2022
Experimental evidence suggests that environmental stress conditions can alter the expression of BDNF and that the expression of this neurotrophin influences behavioural responses in mammalian models. It has been recently demonstrated that exposure to 34 °C for 21 days alters the brain proteome and behaviour in zebrafish. The aim of this work was to investigate the role of BDNF in the nervous system of adult zebrafish under control and heat treatment conditions. For this purpose, zebrafish from three different genotypes (wild type, heterozygous BDNF+/− and knock out BDNF−/−) were kept for 21 days at 26 °C or 34 °C and then euthanized for brain molecular analyses or subjected to behavioural tests (Y-maze test, novel tank test, light and dark test, social preference test, mirror biting test) for assessing behavioural aspects such as boldness, anxiety, social preference, aggressive behaviour, interest for the novel environment and exploration. qRT-PCR analysis showed the reduction of gene expression of BDNF and its receptors after heat treatment in wild type zebrafish. Moreover, proteomic analysis and behavioural tests showed genotype- and temperature-dependent effects on brain proteome and behavioural responding. Overall, the absent expression of BDNF in KO alters (1) the brain proteome by reducing the expression of proteins involved in synapse functioning and neurotransmitter-mediated transduction; (2) the behaviour, which can be interpreted as bolder and less anxious and (3) the cellular and behavioural response to thermal treatment.
Journal Article
Expression Pattern of Nitric Oxide Synthase during Development of the Marine Gastropod Mollusc, Crepidula fornicata
by
Truchado-Garcia, Marta
,
Caccavale, Filomena
,
D’Aniello, Salvatore
in
Animal models
,
Crepidula fornicata
,
Deoxyribonucleic acid
2021
Nitric Oxide (NO) plays a key role in the induction of larval metamorphosis in several invertebrate phyla. The inhibition of the NO synthase in Crepidula fornicata, a molluscan model for evolutionary, developmental, and ecological research, has been demonstrated to block the initiation of metamorphosis highlighting that endogenous NO is crucial in the control of this developmental and morphological process. Nitric Oxide Synthase contributes to the development of shell gland, digestive gland and kidney, being expressed in cells that presumably correspond to FMRF-amide, serotoninergic and catecolaminergic neurons. Here we identified a single Nos gene in embryonic and larval transcriptomes of C. fornicata and studied its localization during development, through whole-mount in situ hybridization, in order to compare its expression pattern with that of other marine invertebrate animal models.
Journal Article
Diatom-Derived Polyunsaturated Aldehydes Activate Similar Cell Death Genes in Two Different Systems: Sea Urchin Embryos and Human Cells
by
Celentano, Susanna
,
Costantini, Maria
,
Sansone, Clementina
in
A549 Cells
,
Aldehydes - pharmacology
,
Animals
2020
Programmed cell death, such as apoptosis and autophagy, are key processes that are activated early on during development, leading to remodelling in embryos and homeostasis in adult organisms. Genomic conservation of death factors has been largely investigated in the animal and plant kingdoms. In this study, we analysed, for the first time, the expression profile of 11 genes involved in apoptosis (extrinsic and intrinsic pathways) and autophagy in sea urchin Paracentrotus lividus embryos exposed to antiproliferative polyunsaturated aldehydes (PUAs), and we compared these results with those obtained on the human cell line A549 treated with the same molecules. We found that sea urchins and human cells activated, at the gene level, a similar cell death response to these compounds. Despite the evolutionary distance between sea urchins and humans, we observed that the activation of apoptotic and autophagic genes in response to cytotoxic compounds is a conserved process. These results give first insight on death mechanisms of P. lividus death mechanisms, also providing additional information for the use of this marine organism as a useful in vitro model for the study of cell death signalling pathways activated in response to chemical compounds.
Journal Article
Ran GTPase, an eukaryotic gene novelty, is involved in amphioxus mitosis
by
Scelzo, Marta
,
Ristoratore, Filomena
,
Holland, Nicholas D.
in
Amino Acid Sequence
,
Amino acids
,
Animals
2018
Ran (ras-related nuclear protein) is a small GTPase belonging to the RAS superfamily that is specialized in nuclear trafficking. Through different accessory proteins, Ran plays key roles in several processes including nuclear import-export, mitotic progression and spindle assembly. Consequently, Ran dysfunction has been linked to several human pathologies. This work illustrates the high degree of amino acid conservation of Ran orthologues across evolution, reflected in its conserved role in nuclear trafficking. Moreover, we studied the evolutionary scenario of the pre-metazoan genetic linkage between Ran and Stx, and we hypothesized that chromosomal proximity of these two genes across metazoans could be related to a regulatory logic or a functional linkage. We studied, for the first time, Ran expression during amphioxus development and reported its presence in the neural vesicle, mouth, gill slits and gut corresponding to body regions involved in active cell division.
Journal Article