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Allievi, A.

Publications and source records attributed to Allievi, A..

2 recordsLinked to original sources

Environmental DNA reveals long-term persistence of a Midichloria-like bacterium in a rainbow trout aquaculture and links Ichthyopthirius multifiliis with the red mark syndrome

Red Mark Syndrome (RMS) is a widespread skin disease affecting rainbow trout (Onchorhynchus mykiss). It provokes substantial economic losses in aquaculture, and is putatively caused by a Rickettsiales bacterium named Midichloria-like organism (RMS-MLO), which is strongly associated with RMS lesions. However, RMS-MLO ecology and epidemiology in aquaculture systems remain poorly understood. In this study, we analysed environmental DNA to monitor the presence of RMS-MLO and its putative vector Ichthyophthirius multifiliis in a trout farm in Northern Italy over one year. Water and sediment samples were monthly collected from multiple water tanks. RMS-MLO was consistently detected by PCR throughout the study in all trout-containing tanks, both in water and sediment samples, but never in the trout-free inflow tank. We did not observe an increase in RMS-MLO abundance during the single RMS outbreak recorded nor in relation with the co-occurrence of I. multifiliis. Our findings indicate a long-term persistence of RMS-MLO in the aquaculture, possibly as a consequence of infections with low prevalence or abundance, rather than its entry from the external environment at the time of RMS outbreaks. Additionally, hints were recorded for a potential role of free-living aquatic microeukaryotes as additional occasional reservoirs. In contrast, I. multifiliis was negatively related with RMS-MLO, while it significantly increased in abundance during the RMS outbreak, particularly in the inflow tank. This supports that, rather than a stable reservoir, I. multifiliis may act as a facilitator of RMS outbreaks, which might indeed be triggered by the entry of this parasite in trout farms.

microbiology↗

Description of three new predator species of Litostomatea (Alveolata, Ciliophora), including sequencing and annotation of their mitochondrial genomes

Three new species of haptorian ciliates Lacrymaria venatrix sp. nov., Phialina famelica sp. nov., and Chanaea vermicularis sp. nov., recovered from water bodies of Tuscany, Italy, are described according to the standards of the Next Generation Taxonomy, which include morphology, ultrastructure, phylogeny, and associated microbial consortium analysis plus mitochondrial genome sequencing and annotation. Lacrymaria venatrix is a species with a small spindle-shaped trunk, a highly contractile neck that equals the trunk in length at its full extension, and a macronucleus consisting of two nodules; it is mostly similar to L. songi but diverges in the denser ciliature, the closer macronuclear nodules, and the single micronucleus. Phialina famelica has a blunter spindle-shaped trunk with a shallow oral bulge and an elongated macronucleus; it is mostly similar to P. salinarum and P. serranoi, but differs in the freshwater habitat, and by having fewer but denser kineties. Chaenea vermicularis differs from its congenerics by a modest contractility combined with a greater elongation ability, the mucocysts organized into multiple rows forming stripes, and the several hundreds of macronuclear nodules. The 18S rDNA-based phylogenetic analysis supports previous observations of the paraphyly of the genera Lacrymaria and Phialina, that need a deep systematics revision. The genus Chaenea seems not to be challenged, though its position within Haptoria remains not fully clear, and C. vermicularis sp. nov. appears rather divergent from its congeners.

zoology↗