Monitoring toxic microalgae Ostreopsis (dinoflagellate) species in coastal waters of the Mediterranean Sea using molecular PCR-based assay combined with light microscopy

2010 ◽  
Vol 60 (7) ◽  
pp. 1074-1084 ◽  
Author(s):  
Cecilia Battocchi ◽  
Cecilia Totti ◽  
Magda Vila ◽  
Mercedes Masó ◽  
Samuela Capellacci ◽  
...  
Phytotaxa ◽  
2019 ◽  
Vol 404 (7) ◽  
pp. 287
Author(s):  
МAXIM А. KRAKHMALNYI ◽  
ALEKSANDR F. KRAKHMALNYI

A new dinoflagellate species (Dinophyceae, Gymnodiniales)—Apicoporus haificum Krachmalny sp. nov. was described on a basis of thorough light microscopy studies. The species was found in sandy sediments (water-filled spaces between sand grains) on the eastern coast of the Mediterranean Sea (HaCarmel beach, Haifa, Israel). Apicoporus haificum possesses the following features: cells elongated (with length exceeding width by 3.1–3.8 times), lanceolate in dorsoventral projection, roundish in cross-section with slight dorsoventral compression, asymmetrical, slightly curved to the right, with antapical depression. Epicone asymmetrical, somewhat umbonate, with a small hook-shaped protrusion on the apex. Cingulum displaced, descending by 1/3 cell’s length, its distal part almost parallel to the anterior portion of sulcus. Sulcus narrow, shallow, extends from the apex to the antapical depression, with apical groove. Cell surface covered with longitudinal striations that converge on the apex and on the antapical protrusion. Chloroplasts absent. Dimensions: 75.3±2.2 μm in length, 21.4±1.5 μm in width. Comparison of A. haificum to morphologically similar Apicoporus glaber and Amphidinium scissum is discussed.


2016 ◽  
Vol 18 (2) ◽  
pp. 111-128
Author(s):  
A. F. Krakhmalnyi ◽  
Solomon P. Wasser ◽  
M. A. Krakhmalny ◽  
Eviatar Nevo

2022 ◽  
Vol 19 (1) ◽  
pp. 47-69
Author(s):  
Paula Maria Salgado-Hernanz ◽  
Aurore Regaudie-de-Gioux ◽  
David Antoine ◽  
Gotzon Basterretxea

Abstract. We estimated pelagic primary production (PP) in the coastal (<200 m depth) Mediterranean Sea from satellite-borne data, its contribution to basin-scale carbon fixation, its variability, and long-term trends during the period 2002–2016. Annual coastal PP was estimated at 0.041 Gt C, which approximately represents 12 % of total carbon fixation in the Mediterranean Sea. About 51 % of this production occurs in the eastern basin, whereas the western and Adriatic shelves contribute with ∼25 % each of total coastal production. Strong regional variability is revealed in coastal PP, from high-production areas (>300 g C m−2) associated with major river discharges to less productive provinces (<50 g C m−2) located in the southeastern Mediterranean. PP variability in the Mediterranean Sea is dominated by interannual variations, but a notable basin-scale decline (17 %) has been observed since 2012 concurring with a period of increasing sea surface temperatures in the Mediterranean Sea and positive North Atlantic Oscillation and Mediterranean Oscillation climate indices. Long-term trends in PP reveal slight declines in most coastal areas (−0.05 to −0.1 g C m−2 per decade) except in the Adriatic where PP increases at +0.1 g C m−2 per decade. Regionalization of coastal waters based on PP seasonal patterns reveals the importance of river effluents in determining PP in coastal waters that can regionally increase up to 5-fold. Our study provides insight into the contribution of coastal waters to basin-scale carbon balances in the Mediterranean Sea while highlighting the importance of the different temporal and spatial scales of variability.


Zootaxa ◽  
2005 ◽  
Vol 1063 (1) ◽  
pp. 33 ◽  
Author(s):  
AHMET ÖKTENER

This study provides a checklist of 114 parasitic helminths (87 Platyhelminthes; 16 Nemathelminthes; 9 Acanthocephala; 2 Annelida) reported from 65 marine fish collected from Turkey since 1931, including locations where fish were collected. Two species of microcotylids (Monogenea): Pyragraphorus pyragraphorus (Mac Callum and Mac Callum, 1913) on garrick, Trachynotus ovatus (Linnaeus, 1758) (Carangidae), from the Mediterranean Sea and Axine belones Abildgaard, 1794 on garfish, Belone belone (Linnaeus,1761) (Belonidae), from the Sea of Marmara are reported for the first time in Turkish coastal waters.


2019 ◽  
Vol 145 ◽  
pp. 14-22 ◽  
Author(s):  
Regina Temino-Boes ◽  
Inmaculada Romero ◽  
María Pachés ◽  
Remedios Martinez-Guijarro ◽  
Rabindranarth Romero-Lopez

2018 ◽  
Vol 133 ◽  
pp. 543-552 ◽  
Author(s):  
Matteo Baini ◽  
Maria Cristina Fossi ◽  
Matteo Galli ◽  
Ilaria Caliani ◽  
Tommaso Campani ◽  
...  

2009 ◽  
Vol 54 (4) ◽  
Author(s):  
Esmail Shakman ◽  
Ragnar Kinzelbach ◽  
Jean Trilles ◽  
Michel Bariche

AbstractThis paper presents the first record of two native Mediterranean cymothoid species caught attached to introduced Lessepsian rabbitfishes. This is also the first record of cymothoids from the coastal waters of Libya. Anilocra physodes was collected from Siganus luridus while Nerocila bivittata was found on both Siganus rivulatus and S. luridus. Rabbitfishes in the southern central Mediterranean have acquired native Mediterranean cymothoids but do not seem to be infested along the Levantine coast.


2017 ◽  
Vol 14 (22) ◽  
pp. 5069-5075 ◽  
Author(s):  
Francesca Iuculano ◽  
Carlos Maria Duarte ◽  
Núria Marbà ◽  
Susana Agustí

Abstract. The role of seagrass, Posidonia oceanica, meadows as a source of transparent exopolymer particles (TEPs) to Mediterranean coastal waters was tested by comparing the TEP dynamics in two adjacent coastal waters in the oligotrophic NW Mediterranean Sea, one characterized by oligotrophic open-sea waters and the other accumulating seagrass leaf litter, together with an experimental examination of TEP release by seagrass litter. TEP concentrations ranged from 4.6 to 90.6 µg XG (xanthan gum) Eq L−1, with mean (±SE) values of 38.7 (± 2.02) µg XG Eq L−1 in the site devoid of seagrass litter, whereas the coastal beach site accumulating leaf litter had > 10-fold mean TEP concentrations of 487.02 (± 72.8) µg XG Eq L−1. Experimental evaluation confirmed high rates of TEP production by P. oceanica litter, allowing calculations of the associated TEP yield. We demonstrated that P. oceanica is an important source of TEPs to the Mediterranean Sea, contributing an estimated 76 Gg C as TEPs annually. TEP release by P. oceanica seagrass explains the elevated TEP concentration relative to the low chlorophyll a concentration in the Mediterranean Sea.


Marine Drugs ◽  
2021 ◽  
Vol 19 (11) ◽  
pp. 619
Author(s):  
Loredana Stabili ◽  
Lucia Rizzo ◽  
Rosa Caprioli ◽  
Antonella Leone ◽  
Stefano Piraino

Marine invertebrates represent a vast, untapped source of bioactive compounds. Cnidarians are represented by nearly 10,000 species that contain a complex mixture of venoms, collagen, and other bioactive compounds, including enzymes, oligosaccharides, fatty acids, and lipophilic molecules. Due to their high abundance in coastal waters, several jellyfish taxa may be regarded as candidate targets for the discovery of novel lead molecules and biomaterials and as a potential source of food/feed ingredients. The moon jellyfish Aurelia coerulea is one of the most common jellyfish worldwide and is particularly abundant in sheltered coastal lagoons and marinas of the Mediterranean Sea, where it first appeared—as an alien species—in the last century, when Pacific oyster cultivation began. In the present study, the antioxidant and lysozyme antibacterial activities associated with extracts from different medusa compartments—namely the umbrella, oral arms, and secreted mucus—were investigated. Extracts from the oral arms of A. coerulea displayed significant antioxidant activity. Similarly, lysozyme-like activity was the highest in extracts from oral arms. These findings suggest that A. coerulea outbreaks may be used in the search for novel cytolytic and cytotoxic products against marine bacteria. The geographically wide occurrence and the seasonally high abundance of A. coerulea populations in coastal waters envisage and stimulate the search for biotechnological applications of jellyfish biomasses in the pharmaceutical, nutritional, and nutraceutical sectors.


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