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15 pages, 9806 KB  
Article
Zooplankton Community Structure in the Paraopeba River Basin After the Brumadinho Dam Collapse
by Luciana Pena Mello Brandão, Ludmila Silva Brighenti, João Pedro Costa Elias, Diego Guimarães Florencio Pujoni, Laura Martins Gagliardi, Alessandra Giani, Juliana da Silva Martins Pimentel, Mariana Neves Moura, Ricardo Solar, Adriano Paglia, Tiago Teixeira Dornas, Fabio Vieira and Eneida Maria Eskinazi-Sant’Anna
Limnol. Rev. 2026, 26(3), 49; https://doi.org/10.3390/limnolrev26030049 (registering DOI) - 28 Aug 2026
Abstract
The Paraopeba River basin has been exposed to long-term anthropogenic pressures, including urbanization, wastewater discharge, land-use changes, and mining. These impacts were intensified by the Brumadinho tailings dam collapse in 2019, which released approximately 1.6 million m3 of iron-mining tailings into the [...] Read more.
The Paraopeba River basin has been exposed to long-term anthropogenic pressures, including urbanization, wastewater discharge, land-use changes, and mining. These impacts were intensified by the Brumadinho tailings dam collapse in 2019, which released approximately 1.6 million m3 of iron-mining tailings into the Paraopeba River. This study evaluated spatial and temporal dynamics of zooplankton communities and their relationships with environmental gradients. Eighteen sampling campaigns were conducted at nineteen monitoring sites, integrating physicochemical variables, nutrients, and metals with biological indicators. Sampling began approximately one year after the collapse and therefore does not capture the acute response to the initial tailings pulse. During the monitoring period, zooplankton assemblages showed no marked differences between upstream and downstream areas. Community structure was more strongly associated with hydrological seasonality and ongoing anthropogenic pressures, particularly nutrient enrichment and urban effluents. Turbidity, metals, and nutrients were important environmental correlates of richness, diversity, and density. Rotifers and copepods dominated, while the invasive Kellicottia bostoniensis persisted across sites and seasons. Tributaries supported higher densities and more exclusive species, potentially reflecting differences in nutrient availability, hydrodynamic conditions, and habitat retention. Overall, hydrological dynamics and contemporary anthropogenic stressors were more closely associated with community patterns than the upstream–downstream spatial gradient. Full article
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15 pages, 684 KB  
Article
First Feeding of Dwarf Gourami (Trichogaster lalius, Hamilton 1822) Larvae: A Study on Egg Yolk, Rotifer, Infusoria and Spirulina
by İhsan Çelik, Pınar Çelik and Tolga Göksan
Fishes 2026, 11(5), 278; https://doi.org/10.3390/fishes11050278 - 9 May 2026
Viewed by 1381
Abstract
In this study, the effects of different feeds provided during the initial feeding period of Trichogaster lalius (dwarf gourami) larvae on larval survival were evaluated. Larvae reared under laboratory conditions were assigned to four dietary treatments (EY: boiled chicken egg yolk, RO: live [...] Read more.
In this study, the effects of different feeds provided during the initial feeding period of Trichogaster lalius (dwarf gourami) larvae on larval survival were evaluated. Larvae reared under laboratory conditions were assigned to four dietary treatments (EY: boiled chicken egg yolk, RO: live rotifers, IN: infusoria, SP: live Spirulina) during days 3–5 post hatching, after which all groups were enriched with live Artemia on days 5–10. A total of 4800 larvae were distributed across 16 treatment groups. On day 10, larval abundance and total length (mm) were recorded, and survival percentages were subsequently calculated. The pooled survival rates at the end of the experiment were 95.50 ± 4.05 for EY, 95.50 ± 2.53 for RO, 58.58 ± 8.88 for IN, and 77.25 ± 10.23 for SP. Statistical analysis revealed no significant differences in survival between the EY and RO groups (p > 0.05). In contrast, significant differences were observed between the IN group and the SP group, as well as between IN and the remaining treatment groups (p < 0.05). Moreover, no significant differences in total length were detected among the 16 groups at the end of the experiment (p > 0.303). Overall, the findings suggest that, under the present experimental conditions, larval survival of T. lalius was higher in the egg yolk and rotifer feeding treatments than in the infusoria and live Spirulina groups. Full article
(This article belongs to the Section Nutrition and Feeding)
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24 pages, 2009 KB  
Article
Integrated Hydro-Ecological Assessment for Sustainable Water Management: Anthropogenic Stress in the Main Nile Arteries—Bahr Yusuf and Ibrahimia Canals, Egypt
by Mohamed H. H. Ali, Mohamad S. Abdelkarim, Amal A. Othman, Khadiga M. Gaber, Afify D. G. Al-Afify, Amaal M. Abdel-Satar, Mohamed H. Ghallab and Shaimaa M. Ibrahim
Sustainability 2026, 18(7), 3615; https://doi.org/10.3390/su18073615 - 7 Apr 2026
Viewed by 552
Abstract
Global freshwater scarcity is a pressing environmental challenge, particularly in Egypt, which depends entirely on the Nile River and its tributaries. Rapid population growth, domestic wastes, agricultural runoff, and rapid industrial expansion exert highly anthropogenic stress on aquatic ecosystems, including Bahr Yusuf and [...] Read more.
Global freshwater scarcity is a pressing environmental challenge, particularly in Egypt, which depends entirely on the Nile River and its tributaries. Rapid population growth, domestic wastes, agricultural runoff, and rapid industrial expansion exert highly anthropogenic stress on aquatic ecosystems, including Bahr Yusuf and Ibrahimia Canals in Upper Egypt. This study aimed to evaluate the ecological health and sustainability status of the two canals using an integrated multi-metric framework combining physicochemical variables, microbiological indicators, and community structures of zooplankton and benthic fauna. Multivariate statistical analyses (PCA, CCA), and ecological indices, including the water quality index (WQI), microbial assessment index (MAI), Rotifer-Based Index (TSIRot) and Hilsenhoff Biotic Index, were applied to determine pollution gradients. The results revealed that Bahr Yusuf suffers from higher pollution levels than the Ibrahimia Canal. Canonical correspondence analysis (CCA) showed that nutrient enrichment and elevated organic load are responsible for over 72% of the variance in zooplankton and benthic invertebrate assemblage in both water bodies. The dominance of pollution-tolerant species, Philodina roseola and B. calyciflorus of zooplankton and Limnodrilus udekemianus, Chironomidae larvae, Melanoides tuberculate and Cleopatra bulimoides of benthic taxa, further indicates a direct increase in organic loading and nutrient enrichment from agricultural and domestic sources. According to the Integrated Water Quality–Biotic Health Index (IWQ-BHI), the downstream stations of Bahr Yusuf are critical risk zones, with scores below 50.0, while the upstream stations of Ibrahimia Canal fell within the “good” category, with scores exceeding 70.0. Overall, both waterbodies are approaching a critical threshold of ecological instability and require urgent, integrated and sustainable management to restore and preserve these vital freshwater ecosystems. Full article
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28 pages, 11280 KB  
Article
Ontogenetic Changes in the Digestive Capacities of the Naozhou Stock of Large Yellow Croaker (Larimichthys crocea)
by Yue Liu, Shu-Pei Huang, Eric Amenyogbe, Ye Yang, Hao-Jie Wang, Zhong-Liang Wang and Jian-Sheng Huang
Animals 2026, 16(1), 120; https://doi.org/10.3390/ani16010120 - 31 Dec 2025
Viewed by 1684
Abstract
This study examined the digestive and metabolic responses of Naozhou (NZ) stock large yellow croaker (Larimichthys crocea) larvae and juveniles under five developmental feeding stages (DAH3, DAH7, DAH12, DAH19, DAH49) to clarify mechanisms of early nutritional adaptation. Digestive enzyme assays, transcriptome [...] Read more.
This study examined the digestive and metabolic responses of Naozhou (NZ) stock large yellow croaker (Larimichthys crocea) larvae and juveniles under five developmental feeding stages (DAH3, DAH7, DAH12, DAH19, DAH49) to clarify mechanisms of early nutritional adaptation. Digestive enzyme assays, transcriptome sequencing, and metabolomics were integrated to compare physiological changes across diets. Protease activity increased sharply from DAH7–19 with the introduction of rotifers, Artemia, and copepods, while amylase and lipase activities rose at DAH19–49, reflecting enhanced carbohydrate and lipid utilization during transition to formulated feeds. Transcriptomic analysis showed that differentially expressed genes were enriched in pathways involving protein digestion, lipid and energy metabolism, and cell cycle regulation. The metabolomic analysis further highlighted dynamic changes in amino acid, lipid, carbohydrate, and vitamin metabolism, consistent with transcriptomic findings. The integrated analysis suggests that the coordinated modulation of digestive enzyme activities, gene expression, and metabolite profiles enabled a smooth transition from yolk dependency to live prey feeding and a subsequent use of artificial diets. These findings provide new insights into the early nutritional development of NZ large yellow croaker and provide a scientific basis for the improvement of artificial aquaculture seed production. Full article
(This article belongs to the Section Animal Nutrition)
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17 pages, 3993 KB  
Article
Early Nutrition Impacts on Growth, Skeletal Anomalies and Organ Ontogeny in Larval Atlantic Cod (Gadus morhua)
by Joana Pedro, João Henriques, Maria Bergvik, Konstantinos Tzakris, Michael Viegas, Katerina Loufi, Jorge M. O. Fernandes, Benjamín Costas, Nils Tokle and Luís E. C. Conceição
Animals 2025, 15(20), 2985; https://doi.org/10.3390/ani15202985 - 15 Oct 2025
Cited by 4 | Viewed by 1515
Abstract
Early life nutrition is a critical factor influencing subsequent performance and quality, including skeletal development, in farmed Atlantic cod (Gadus morhua). This study investigated the effects of a novel start-feed protocol utilizing barnacle nauplii and plankton eggs and two experimental microdiets [...] Read more.
Early life nutrition is a critical factor influencing subsequent performance and quality, including skeletal development, in farmed Atlantic cod (Gadus morhua). This study investigated the effects of a novel start-feed protocol utilizing barnacle nauplii and plankton eggs and two experimental microdiets on larval survival, growth, skeletal anomalies, and organ ontogeny. Atlantic cod larvae were reared using three feeding protocols (COM, D1, and D2): COM used enriched rotifers and a commercial microdiet, while D1 and D2 protocols incorporated blue mussel eggs (Cryo-µ) and barnacle nauplii (Cryo-S, Cryo-L), followed by inert microdiets that differed in their phospholipid (PL) source (D1 richer in vegetable PL; D2 richer in marine PL). Larvae were sampled up to 66 days post hatching (dph) for morphometric, skeletal anomaly, and histological analyses. Survival averaged 21.3% and was unaffected by the diets. The control group had slightly higher standard length and dry weight at 66 dph compared to the experimental groups. However, larvae fed the D1 protocol exhibited a significantly lower overall prevalence of skeletal anomalies (52%) compared to the control group (91%). Moreover, D1 showed a lower occurrence of severe anomalies and a significantly reduced prevalence of scoliosis compared to both D2 and COM groups. Histology showed that group D1 achieved an overall accelerated organ ontogeny, with greater villi length and goblet cell abundance in the anterior intestine at 66 dph. In conclusion, the novel D1 feeding protocol, incorporating barnacle nauplii and a microdiet richer in vegetable phospholipids, enhanced larval quality by effectively reducing skeletal anomalies and accelerating internal organ development. Full article
(This article belongs to the Special Issue Fish Nutrition, Physiology and Management: Second Edition)
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20 pages, 2072 KB  
Article
Effects of Feeding Newly Hatched Larvae on the Growth, Survival, and Growth Patterns of Kawakawa (Euthynnus affinis) Larvae and Juveniles
by Lynn Nuruki, Aki Miyashima, Yasuo Agawa and Yoshifumi Sawada
Animals 2025, 15(13), 1997; https://doi.org/10.3390/ani15131997 - 7 Jul 2025
Viewed by 1488
Abstract
This study investigated the effects of feeding striped beakfish (Oplegnathus fasciatus) newly hatched larvae on the survival and growth of kawakawa (Euthynnus affinis) larvae and juveniles, as well as their relative growth patterns. Fertilized eggs of kawakawa were reared [...] Read more.
This study investigated the effects of feeding striped beakfish (Oplegnathus fasciatus) newly hatched larvae on the survival and growth of kawakawa (Euthynnus affinis) larvae and juveniles, as well as their relative growth patterns. Fertilized eggs of kawakawa were reared in 1 m3 experimental tanks until 13 days post-hatch (dph). From 3 to 8 dph, larvae were fed enriched rotifers, and from 9 to 12 dph, they were assigned to two experimental groups: one receiving only a formulated diet and the other receiving a combination of the formulated diet and 10,000 striped beakfish newly hatched larvae every day in each tank. The group fed newly hatched larvae exhibited approximately 36% greater growth than the group fed only the formulated diet. However, survival at 13 dph was approximately 34% lower, suggesting that further investigation is needed to determine the optimal feeding quantity of newly hatched larvae. The relative growth patterns of larvae and juveniles reared in a commercial 30 m3 tank showed morphological traits characteristic of scombrid fish, such as a longer preanal length and upper jaw length. Growth patterns varied at three key body lengths (notochord length or standard length; 3, 8–10, and 30 mm), as well as at their corresponding standard lengths. In kawakawa, the upper jaw exhibited early accelerated growth compared to other scombrid species. This characteristic is believed to facilitate the early onset of piscivory under captive conditions. Full article
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16 pages, 3694 KB  
Article
Feeding Behavior and Ecological Significance of Craspedacusta sowerbii in a Freshwater Reservoir: Insights from Prey Composition and Trophic Interactions
by Hailong Yan, Yu Wang, Mengyao Wu, Yuying Li, Wanping Wang, Dongliang Zhang, Jingjing Guo, Nicola Fohrer and Bailian Larry Li
Biology 2025, 14(6), 665; https://doi.org/10.3390/biology14060665 - 7 Jun 2025
Cited by 3 | Viewed by 2676
Abstract
This study investigates the feeding behavior and ecological role of Craspedacusta sowerbii in the Danjiangkou Reservoir, a crucial freshwater source in central China. Through in situ cultivation, microscopic examination, and amplicon sequencing analysis, we identified the primary food sources of C. sowerbii within [...] Read more.
This study investigates the feeding behavior and ecological role of Craspedacusta sowerbii in the Danjiangkou Reservoir, a crucial freshwater source in central China. Through in situ cultivation, microscopic examination, and amplicon sequencing analysis, we identified the primary food sources of C. sowerbii within the reservoir’s aquatic food web. Our results indicate that C. sowerbii predominantly consumes zooplankton, specifically rotifers, copepods, and cladocerans, while phytoplankton is ingested less frequently and often remains undigested. Amplicon sequencing data further confirms that the prey composition of C. sowerbii is enriched in zooplanktonic communities compared to phytoplanktonic communities. Our findings suggest that C. sowerbii plays a significant role in regulating plankton populations and shaping the planktonic community structure in the Danjiangkou Reservoir, thereby contributing to the ecosystem’s functions and trophic dynamics. This study enhances our understanding of the feeding ecology of C. sowerbii and highlights its potential as a bioindicator species for assessing freshwater ecosystem health and monitoring water quality. Full article
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16 pages, 2378 KB  
Article
Ontogenesis from Embryo to Juvenile in Threadsail Filefish, Stephanolepis cirrhifer
by Liming Liu, Xuanhan Liu, Yanqing Wu, Jun Zeng and Wengang Xu
Animals 2025, 15(8), 1124; https://doi.org/10.3390/ani15081124 - 13 Apr 2025
Cited by 1 | Viewed by 1878
Abstract
The threadsail filefish, Stephanolepis cirrhifer, is an economically important marine species. However, wild catches have sharply decreased over the past 20 years, causing S. cirrhifer to be added to the IUCN Red List of Threatened Species. Accordingly, this study seeks to promote [...] Read more.
The threadsail filefish, Stephanolepis cirrhifer, is an economically important marine species. However, wild catches have sharply decreased over the past 20 years, causing S. cirrhifer to be added to the IUCN Red List of Threatened Species. Accordingly, this study seeks to promote technological development for artificial breeding and early life-stage farming by defining the morphological characteristics of ontogenesis. The fertilized eggs, with a diameter of 0.62 ± 0.01 mm, were spherical and sticky and contained multiple oil globules of varying sizes. The embryonic development was observed and divided into eight phases, which were cleavage, blastocyst, gastrula, neurula, organogenesis, muscular contraction, heart pulsation, and hatching. At 3 days post-hatching (dph), the yolk sac was completely absorbed. The eye developed rapidly, and the mouth fissure and anus initially formed. Some larvae were fed on S-rotifers (Brachionus plicatilis). At 6–8 dph, the upper and lower jaws of larvae were gradually covered by leathery skin, and the head-to-body proportion increased. At 14–16 dph, the fin differentiation occurred in the dorsal, anal, and pectoral fins, with widespread distribution of yellow and melanin on the body surface. Swim bladder was clear. The swimming ability of larva was enhanced, resulting in an obvious clustering phenomenon. At 22–25 dph, the end of the notochord continued to tilt upwards, forming a tail fin. The trunk was evenly distributed with protruding circular punctate scales. The snout was covered with leathery epidermis, and the mouth began to round. At 40–45 dph, the juvenile completed metamorphosis, with horizontal dark stripes appearing on the trunk. Pigmented spots appeared on the tail fins. The counts of dorsal and anal fin spines were 34–36 and 32–34 dph, respectively. During the development of larvae and juveniles, the growth parameters, such as total length, standard length, body height, and body weight, were made as growth curves. The slopes of growth curves were calculated. We found two inflexion points occurring in the growth curves, which may be associated with metamorphosis and transitions in feeding habits. These results enrich the biological understanding of filefish species while providing guidance for artificial propagation and fry production in S. cirrhifer. Full article
(This article belongs to the Special Issue Early Development and Growth of Fishes: 2nd Edition)
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16 pages, 3686 KB  
Article
Co-Culturing Microalgae with Roseobacter Clade Bacteria as a Strategy for Vibrionaceae Control in Microalgae-Enriched Artemia
by José Pintado, Patricia Ruiz, Gonzalo Del Olmo and Pavlos Makridis
Microorganisms 2023, 11(11), 2715; https://doi.org/10.3390/microorganisms11112715 - 6 Nov 2023
Cited by 10 | Viewed by 3580
Abstract
Bacterial communities associated with fish larvae are highly influenced by the microbiota of live prey used as feed (rotifers or Artemia), generally dominated by bacterial strains with a low degree of specialization and high growth rates, (e.g., Vibrionaceae), which can be [...] Read more.
Bacterial communities associated with fish larvae are highly influenced by the microbiota of live prey used as feed (rotifers or Artemia), generally dominated by bacterial strains with a low degree of specialization and high growth rates, (e.g., Vibrionaceae), which can be detrimental to larvae. Co-cultivation of microalgae used in the enrichment of Artemia (e.g., Phaeodactylum tricornutum, or Chlorella minutissima) with Vibrio-antagonistic probiotics belonging to the Roseobacter clade bacteria (e.g., Phaeobacter spp. or Ruegeria spp.) was studied. The introduction of the probiotics did not affect microalgae growth or significantly modify the composition of bacterial communities associated with both microalgae, as revealed by DGGE analysis. The inoculation of P. tricornutum with Ruegeria ALR6 allowed the maintenance of the probiotic in the scale-up of the microalgae cultures, both in axenic and non-axenic conditions. Using Ruegeria-inoculated P. tricornutum cultures in the enrichment of Artemia reduced the total Vibrionaceae count in Artemia by 2 Log units, therefore preventing the introduction of opportunistic or pathogenic bacteria to fish larvae fed with them. Full article
(This article belongs to the Special Issue Beneficial Microorganisms in Aquaculture)
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14 pages, 2047 KB  
Article
Determination of the Optimal Conditions for the Mass Culture of Large-Type Rotifers (Brachionus plicatilis) at Low Temperatures
by Hae-Kyun Yoo, So-Sun Kim, Ki-Wook Lee, Suk-Young Lee, Min-Min Jung and Soo-Ji Woo
Water 2023, 15(18), 3310; https://doi.org/10.3390/w15183310 - 19 Sep 2023
Cited by 8 | Viewed by 6594
Abstract
We aimed to determine the optimal conditions for the mass culture of rotifers, which can be used as feed for cold-water fish species at low temperatures. The growth and specific growth rates (SGRs) of rotifers were assessed considering water temperature, salinity, density, dissolved [...] Read more.
We aimed to determine the optimal conditions for the mass culture of rotifers, which can be used as feed for cold-water fish species at low temperatures. The growth and specific growth rates (SGRs) of rotifers were assessed considering water temperature, salinity, density, dissolved oxygen (DO) levels, and the amount of Chlorella supplied as feed. The growth of rotifers was higher at 15 °C than at 10 °C and at salinities of ~11–17 psu. Initial inoculation densities of 500 and 700 individuals/mL resulted in the highest rotifer density, and SGR was highest at 100 individuals/mL. DO concentration did not significantly affect the growth and SGRs of rotifers. Enrichment with fatty acids is important to supplement the diet of cold-water fish species. Highly unsaturated fatty acid content increased with enrichment time to 14.04 ± 0.86% at 12 h and 15.58 ± 2.20% at 24 h. Thus, the optimal conditions for rotifer mass culture are a water temperature of 15 °C, salinity of 11–17 psu, initial inoculation density of 300–500 individuals/mL, DO concentration of 8 mg/L or more, and Chlorella supply at 7.5 × 1012 cells/mL. Therefore, the present study suggests optimal culture conditions of rotifers at low temperatures for breeding cold-water fish species. Full article
(This article belongs to the Special Issue Biology and Ecology of Zooplankton: Latest Advances and Prospects)
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16 pages, 619 KB  
Article
Dynamics of Fatty Acids in Pikeperch (Sander lucioperca) Larvae and Juveniles during Early Rearing and Weaning in a Commercial RAS—Implications for Dietary Refinement
by Adrian A. Bischoff, Melanie Kubitz, Laura Ballesteros-Redondo, Marcus Stüeken, Tobias Rapp, Patrick Fink, Wilhelm Hagen and Harry Wilhelm Palm
Fishes 2023, 8(9), 444; https://doi.org/10.3390/fishes8090444 - 31 Aug 2023
Cited by 3 | Viewed by 2392
Abstract
The aquaculture production of pikeperch has reached commercial scale in a number of European countries, but the high mortality of early life cycle stages and minor understanding of nutritional requirements are still major bottlenecks. To investigate the fate of fatty acids during early [...] Read more.
The aquaculture production of pikeperch has reached commercial scale in a number of European countries, but the high mortality of early life cycle stages and minor understanding of nutritional requirements are still major bottlenecks. To investigate the fate of fatty acids during early development, weaning and rearing, pikeperch larvae and juveniles from a commercial recirculating aquaculture system (RAS) were sampled over 2 months for morphometric data, as well as fatty acid composition, with a total of 6 sampling days, with four to five replicates per sampling day and between 1 and 25 pikeperch larvae per individual sample, depending on larval biomass. The biomass of sampled pikeperch larvae varied from 0.1 to 420 mg (dry mass DM), depending on the age of the larvae, and the initial length of the pikeperch larvae was about 4.5 mm. Our data confirm that, accompanied by an exponential increase in dry mass, total fatty acids (TFAs) in larval tissues increased with the beginning of exogenous feed uptake and were depleted between days 13 and 25 post hatch, most likely associated with the weaning and metamorphosis of the larvae. We conclude that all fatty acid classes may serve as metabolic fuel during metamorphosis, but the ultimate fatty acid composition is strongly impacted by the available feed. The chosen diet probably caused a lack of alpha-linolenic (18:3n-3; ALA) and docosahexaenoic acid (22:6n-3; DHA) during larval development and a shortage of vaccenic (18:1n-7), alpha-linolenic (18:3n-3; ALA) and arachidonic acid (20:4n-6; ARA) in juvenile pikeperch. This led to low DHA/EPA ratios 13 days post hatch, a high EPA/ARA ratio at days 41 and 56 post hatch and a fluctuating ratio of alpha-linolenic acid to linoleic acid (18:2n-6; LA). A temporary lack of essential fatty acids can cause dysfunctions and eventually mortalities in pikeperch larvae and juveniles. Despite high larval growth rates, the biochemical composition of the first fed Artemia and microdiets was most likely not sufficient and in need of improvement. We suggest that deficiencies must be compensated, e.g., through the substitution of the offered Artemia with more suitable live feed organisms, such as freshwater rotifers, and the enrichment of current microdiets in order to prevent high mortalities during pikeperch rearing and weaning. Full article
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14 pages, 1180 KB  
Article
Short and Long-Term Effects of Early and Late Weaning on Atlantic Cod, Gadus morhua
by Velmurugu Puvanendran and Øyvind J. Hansen
Fishes 2023, 8(6), 312; https://doi.org/10.3390/fishes8060312 - 13 Jun 2023
Cited by 1 | Viewed by 3054
Abstract
Studies have shown negative short-term effects of early weaning (EW) in finfish larvae but information on long-term effects of EW on growth and subsequent economic loss is lacking. We evaluated the short- and long-term effects of EW and late weaning (LW) on Atlantic [...] Read more.
Studies have shown negative short-term effects of early weaning (EW) in finfish larvae but information on long-term effects of EW on growth and subsequent economic loss is lacking. We evaluated the short- and long-term effects of EW and late weaning (LW) on Atlantic cod. Cod larvae were fed with enriched rotifers from 2 to 35 days post-hatch (dph) and weaning carried out from 21 to 35 dph (EW) or with enriched rotifers from 2 to 29 dph followed by enriched Artemia nauplii from 25 to 56 dph and weaning carried out from 45 to 56 dph (LW). At 190 dph, 50 fish from each tank were tagged with an electronic tag and were transferred to sea cages at 10 months old. At the end of 30 months post-hatch, the weight of the fish was recorded. Our results showed a significant short-term effect of the weaning method on the growth of Atlantic cod at 65 dph, but no significant difference at 90 and 190 dph. However, fish from LW showed a significantly higher body weight compared to fish from EW at 30 months post-hatch. A cost analysis indicated substantial benefit for commercial cod farming by using LW and we recommend using LW to gain sizable financial benefit. Full article
(This article belongs to the Section Sustainable Aquaculture)
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14 pages, 2593 KB  
Article
Assessing the Effects of Rotifer Feed Enrichments on Turbot (Scophthalmus maximus) Larvae and Post-Larvae Gut-Associated Bacterial Communities
by Antonio Louvado, Carolina Castro, Davide A. M. Silva, Vanessa Oliveira, Luís E. C. Conceição, Daniel F. R. Cleary and Newton C. M. Gomes
Microorganisms 2023, 11(2), 520; https://doi.org/10.3390/microorganisms11020520 - 17 Feb 2023
Cited by 14 | Viewed by 4445
Abstract
Live feed enrichments are often used in fish larvicultures as an optimized source of essential nutrients to improve larval growth and survival. In addition to this, they may also play an important role in structuring larval-associated microbial communities and may help improve their [...] Read more.
Live feed enrichments are often used in fish larvicultures as an optimized source of essential nutrients to improve larval growth and survival. In addition to this, they may also play an important role in structuring larval-associated microbial communities and may help improve their resistance to diseases. However, there is limited information available on how larval microbial communities and larviculture water are influenced by different live feed enrichments. In the present study, we investigated the effects of two commercial rotifer enrichments (ER) on turbot (Scophthalmus maximus) larval and post-larval gut-associated bacterial communities during larviculture production. We evaluated their effects on bacterial populations related to known pathogens and beneficial bacteria and their potential influence on the composition of bacterioplankton communities during larval rearing. High-throughput 16S rRNA gene sequencing was used to assess the effects of different rotifer enrichments (ER1 and ER2) on the structural diversity of bacterial communities of the whole turbot larvae 10 days after hatching (DAH), the post-larval gut 30 DAH, and the larviculture water. Our results showed that different rotifer feed enrichments were associated with significant differences in bacterial composition of turbot larvae 10 DAH, but not with the composition of larval gut communities 30 DAH or bacterioplankton communities 10 and 30 DAH. However, a more in-depth taxonomic analysis showed that there were significant differences in the abundance of Vibrionales in both 10 DAH larvae and in the 30 DAH post-larval gut fed different RE diets. Interestingly, the ER1 diet had a higher relative abundance of specific amplicon sequence variants (ASVs) related to potential Vibrio-antagonists belonging to the Roseobacter clade (e.g., Phaeobacter and Ruegeria at 10 DAH and Sulfitobacter at 30 DAH). In line with this, the diet was also associated with a lower relative abundance of Vibrio and a lower mortality. These results suggest that rotifer diets can affect colonization by Vibrio members in the guts of post-larval turbot. Overall, this study indicates that live feed enrichments can have modulatory effects on fish bacterial communities during the early stages of development, which includes the relative abundances of pathogenic and antagonist taxa in larviculture systems. Full article
(This article belongs to the Section Veterinary Microbiology)
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12 pages, 1327 KB  
Article
Molecular Antioxidant Functions are Enhanced in Atlantic Bluefin Tuna (Thunnus Thynnus, L.) Larvae Fed Selenium-Enriched Rotifers Brachionus Rotundiformis
by Pauline Wischhusen, Mónica B. Betancor, Matthew Sprague, Aurelio Ortega, Fernando de la Gándara, Douglas R. Tocher and Gabriel Mourente
Antioxidants 2023, 12(1), 26; https://doi.org/10.3390/antiox12010026 - 23 Dec 2022
Cited by 4 | Viewed by 3195
Abstract
Selenium (Se) is an essential trace element for fish with more than 40 selenoproteins identified, many exhibiting antioxidant functions. This study investigated the effect of dietary Se supplementation on physiological parameters, selenoprotein and antioxidant enzyme gene expression in Atlantic bluefin tuna (ABT, Thunnus [...] Read more.
Selenium (Se) is an essential trace element for fish with more than 40 selenoproteins identified, many exhibiting antioxidant functions. This study investigated the effect of dietary Se supplementation on physiological parameters, selenoprotein and antioxidant enzyme gene expression in Atlantic bluefin tuna (ABT, Thunnus thynnus) larvae. First-feeding ABT larvae were divided into triplicate groups and fed rotifers Brachionus rotundiformis enriched with five different levels of Se (0, 3, 10, 30, and 100 µg Se·L−1) until 14 days after hatching. Both rotifers and ABT larvae effectively accumulated Se achieving maximum levels in the Se100 treatment (30.05 μg Se·g−1 and 194 ± 38 μg Se·g−1 dry mass, respectively). Larvae showed highest total length when fed Se3 rotifers, whereas flexion index was highest in larvae fed Se10. Selenium supplementation increased the gene expression of selenoproteins gpx1, msrb1, trxr2, selenom, selenop, and selenoe compared to the non-supplemented control (Se0), but only marginal differences were detected between supplementation levels. In contrast, expression of the antioxidant enzymes cat and sod1 were lowest in larvae fed Se100. To conclude, non-Se-enriched rotifers may be suboptimal for first feeding ABT larvae, which showed improved selenoprotein and antioxidant gene expression when fed a diet containing 4.42 μg Se·g−1 dry mass. Full article
(This article belongs to the Special Issue Antioxidants Benefits in Aquaculture)
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Article
A Preliminary Study on the Effects of Taurine-Enriched Rotifers on the Growth and Survival of the Small Yellow Croaker Larimichthys polyactis Larvae
by Jeong-Hyeon Cho, Jae-Hoon Kim and Jin Woo Park
Animals 2022, 12(11), 1403; https://doi.org/10.3390/ani12111403 - 30 May 2022
Cited by 3 | Viewed by 3085
Abstract
The effect of feeding with taurine-enriched rotifers on larval growth and survival in the small yellow croaker Larimichthys polyactis was investigated. Rotifers, control (without taurine enrichment) or enriched with a commercial taurine supplement at two concentrations (400, and 800 mg/L), were used. The [...] Read more.
The effect of feeding with taurine-enriched rotifers on larval growth and survival in the small yellow croaker Larimichthys polyactis was investigated. Rotifers, control (without taurine enrichment) or enriched with a commercial taurine supplement at two concentrations (400, and 800 mg/L), were used. The larvae (initial notochord length = 3.83 mm) were fed taurine-enriched rotifers in triplicate, from 3 days after hatching for 12 days. The average taurine contents of the rotifers were 0.31, 5.34, and 8.55 mg/g dry matter, respectively. The rotifers from all treatments had similar fatty acid composition. The growth and survival rates of the larvae fed rotifers enriched with 800 mg/L taurine supplementation were significantly higher than those of larvae fed rotifers without taurine enrichment (p = 0.005 and 0.002, respectively). The whole-body taurine content in the fish increased significantly with the increase in taurine level in the rotifers: 1.02, 3.48, and 4.11 mg/g in larvae fed control rotifers, and rotifers enriched with 400, and 800 mg/L taurine supplementation, respectively. The results of this study indicate that small yellow croaker larvae benefit from taurine concentrations above those typically reported in non-taurine-enriched rotifers. Full article
(This article belongs to the Special Issue Nutritional Management to Promote Responsible Aquaculture)
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