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Lazzaro, G.

Publications and source records attributed to Lazzaro, G..

2 recordsLinked to original sources

Pigment-Dispersing Factor is present in circadian clock neurons of pea aphids and may mediate photoperiodic signaling to insulin-producing cells

The neuropeptide Pigment-Dispersing Factor (PDF) plays a pivotal role in the circadian clock of most Ecdysozoa and is additionally involved in the timing of seasonal responses of several photoperiodic species. The pea aphid, Acyrthosiphon pisum, is a paradigmatic photoperiodic species with an annual life cycle tightly coupled to the seasonal changes in day length. Nevertheless, PDF could not be identified in A. pisum so far. In the present study, we identified a PDF-coding gene that has undergone significant changes in the otherwise highly conserved insect C-terminal amino acid sequence. A newly generated aphid-specific PDF antibody stained four neurons in each hemisphere of the aphid brain that co-express the clock protein Period and have projections to the pars lateralis that are highly plastic and change their appearance in a daily and seasonal manner, resembling those of the fruit fly PDF neurons. Most intriguingly, the PDF terminals overlap with dendrites of the insulin-like peptide (ILP) positive neurosecretory cells in the pars intercerebralis and with putative terminals of Cryptochrome (CRY) positive clock neurons. Since ILP has been previously shown to be crucial for seasonal adaptations and CRY might serve as a circadian photoreceptor vital for measuring day length, our results suggest that PDF plays a critical role in aphid seasonal timing.

cell biology↗

Characterization of undocumented CO2 hydrothermal vents in the Mediterranean Sea: implications for ocean acidification studies

A previously undocumented shallow water hydrothermal field from Sicily (Southern Tyrrhenian Sea, Italy), is here described based on a multidisciplinary investigation. The field, covering an area of nearly 8000 m2 and ranging in depth from surface to -5 m, was explored in June 2021, to characterise the main physico-chemical features of the water column, describe bottom topography and features, and identify the main megabenthic and nektonic species. Twenty sites were investigated to characterize the carbonate system. Values of pH ranged between 7.84 and 8.04, {Omega}Ca between 3.68 and 5.24 and {Omega}Ar from 2.41 to 3.44. Geochemical analyses of hydrothermal fluids gases revealed a dominance of CO2 (98.1%) along with minor amounts of oxygen and reactive gases. Helium isotope ratios (R/Ra =2.51) and {delta}13CCO2 (3) support an inorganic origin of hydrothermal degassing of CO2 and the ascent of heat and deep-seated magmatic fluids to the surface. Visual census of fishes and megabenthos (mainly sessile organisms) allowed identification of 62 species, of which four are protected by the SPA/BIO Protocol and two by the International Union for Conservation of Nature. The macroalgae Halopteris scoparia and Jania rubens and the sponge Sarcotragus sp. were the dominant taxa in the area, while among fishes Coris julis and Chromis chromis were predominant. The preliminary description of this venting field indicates this site as an area of considerable interest and suitable for future experimental studies on ocean acidification.

ecology↗