Sign in to use this feature.

Years

Between: -

Subjects

remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline

Journals

Article Types

Countries / Regions

Search Results (139)

Search Parameters:
Keywords = carnivorous plants

Order results
Result details
Results per page
Select all
Export citation of selected articles as:
21 pages, 4209 KB  
Article
The Effects of Lycopene on the Growth Performance, Antioxidant Capacity, and Liver Health of Hybrid Groupers (♀ Epinephelus fuscoguttatus × ♂ E. lanceolatus) Under the Influence of Aflatoxin B1
by Yuxuan Han, Yilin Yao, Yansheng Liu, Yubin Liu and Xiaohui Dong
Animals 2026, 16(15), 2330; https://doi.org/10.3390/ani16152330 - 30 Jul 2026
Viewed by 451
Abstract
The continued rise in fishmeal prices and the scarcity of fishery resources have led to an increase in the use of plant-based protein sources in compound feed, making mold contamination in compound feed a frequent occurrence. Aflatoxin B1 (AFB1) contamination in aquaculture feed [...] Read more.
The continued rise in fishmeal prices and the scarcity of fishery resources have led to an increase in the use of plant-based protein sources in compound feed, making mold contamination in compound feed a frequent occurrence. Aflatoxin B1 (AFB1) contamination in aquaculture feed can seriously harm fish growth and liver health; it is extremely toxic, posing an even greater risk to carnivorous fish such as grouper. Lycopene, a natural carotenoid, has antioxidant and anti-inflammatory physiological functions and may act as a functional feed additive to mitigate damage induced by mycotoxins. This study utilized hybrid grouper (Epinephelus fuscoguttatus ♀ × E. lanceolatus ♂) as the experimental model. An 8-week feeding trial was performed to systematically assess the impact of lycopene supplementation at levels of 0, 200, 400, 600, and 800 mg/kg to a basal diet containing 800 μg/kg AFB1 on the fish’s growth performance, antioxidant capacity, liver health, inflammation-related gene expression, and hepatic transcriptome. The results showed that adding 200 mg/kg lycopene to the feed significantly increased the FWB and SGR (p < 0.05) of hybrid grouper. An appropriate amount of lycopene could enhance the antioxidant capacity of serum and liver, significantly increase the activities of catalase (CAT) and superoxide dismutase (SOD), and significantly decrease serum alanine aminotransferase (ALT) activity while increasing albumin (ALB) levels (p < 0.05). An amount of 200 mg/kg lycopene significantly alleviated AFB1-induced hepatocyte vacuolation, steatosis, and inflammatory cell infiltration, while the protective effect of higher doses was weakened. The gene expression results showed that 200 mg/kg lycopene significantly upregulated the expression of antioxidant-related genes such as cat, sod, and nrf-2, and increased the expression level of the anti-inflammatory factor il10 (p < 0.05). The transcriptome analysis identified a total of 621 differentially expressed genes, which were mainly enriched in metabolic pathways, fatty acid metabolism, PPAR signaling pathway, redox process, ferroptosis, NF-κB signaling pathway, and Toll-like receptor signaling pathway. In summary, the addition of 200 mg/kg lycopene to the feed can effectively alleviate the growth inhibition and liver damage caused by AFB1 in hybrid grouper. Its mechanism of action may be related to enhancing antioxidant defenses, improving liver tissue structure, regulating lipid metabolism, and maintaining immune homeostasis. The research results indicate that lycopene can be used as a natural functional feed additive to alleviate AFB1 toxicity in hybrid grouper aquaculture. Full article
Show Figures

Figure 1

16 pages, 2046 KB  
Article
Phylogenetic Relationships and Genetic Diversity of Thai Nepenthes (Nepenthaceae) Revealed by Integrative Molecular Analyses
by Yaowaphan Sontikun, Sunya Nuanlaong, Tim Böhnert, Maximilian Weigend and Potjamarn Suraninpong
Plants 2026, 15(14), 2238; https://doi.org/10.3390/plants15142238 - 22 Jul 2026
Viewed by 328
Abstract
Accurate assessment of phylogenetic relationships is essential for understanding the evolution, taxonomy, and conservation of the carnivorous genus Nepenthes. In Thailand, species delimitation remains challenging because of extensive morphological variation and the occurrence of several closely related taxa. This study integrated genome-wide [...] Read more.
Accurate assessment of phylogenetic relationships is essential for understanding the evolution, taxonomy, and conservation of the carnivorous genus Nepenthes. In Thailand, species delimitation remains challenging because of extensive morphological variation and the occurrence of several closely related taxa. This study integrated genome-wide single nucleotide polymorphisms (SNPs) generated by Genotyping-by-Sequencing (GBS), chloroplast trnK intron sequences, nuclear ITS sequences, and AFLP markers to investigate phylogenetic relationships and genetic diversity among Thai Nepenthes taxa. Genome-wide SNP analysis recovered three principal clades, whereas trnK and ITS datasets provided complementary resolution at deeper and intermediate phylogenetic levels. The molecular datasets revealed broadly congruent phylogenetic patterns and improved resolution among several closely related Thai taxa. AFLP analysis of Nepenthes mirabilis populations revealed moderate polymorphism despite relatively high overall genetic similarity. Across all datasets, N. mirabilis var. globosa was consistently recovered within the broader N. mirabilis lineage and showed limited genetic differentiation from sampled N. mirabilis accessions. These findings provide an integrated molecular framework for understanding phylogenetic relationships among Thai Nepenthes and support future taxonomic, evolutionary, and conservation studies in the region. Full article
(This article belongs to the Topic New Insights in Plants Diversity and Conservation)
Show Figures

Figure 1

21 pages, 1114 KB  
Article
Delay-Induced Stability Transitions and Emergent Population Cycles in a Generalized Ecological Food Chain
by Dipesh, Pankaj Kumar, Hacer Ozden Ayna and Ismail Naci Cangul
Mathematics 2026, 14(14), 2530; https://doi.org/10.3390/math14142530 - 14 Jul 2026
Viewed by 298
Abstract
This research explores the influence of delayed species interactions on the stability of ecological communities. A generalized food-chain framework is considered, consisting of plants, herbivores, carnivores, and apex predators. Consumer growth in the model depends on resource availability at earlier times rather than [...] Read more.
This research explores the influence of delayed species interactions on the stability of ecological communities. A generalized food-chain framework is considered, consisting of plants, herbivores, carnivores, and apex predators. Consumer growth in the model depends on resource availability at earlier times rather than instantaneously. By applying delay differential equations, we demonstrate that increasing time delays can destabilize an initially stable equilibrium and give rise to sustained oscillatory dynamics through a Hopf bifurcation. The analysis shows that once the delay exceeds a critical value, the equilibrium loses stability and periodic population cycles emerge. To analyze these dynamic transitions, techniques such as linear stability analysis, center manifold reduction, and normal form theory are employed. The calculation of key bifurcation coefficients determines the nature of the bifurcation, indicating that stable limit cycles typically form beyond the critical delay point. These findings provide a theoretical basis for understanding population fluctuations in natural systems, where time delays are inevitably due to resource tracking or developmental lags. The framework explains how ecological cycles can be driven by delayed interactions without the need for outside environmental forcing. Also, the proposed research supports Life on Land, Life Below Water, and Climate Action, by helping to provide understanding of ecological dynamics. Full article
(This article belongs to the Section E3: Mathematical Biology)
Show Figures

Figure 1

16 pages, 11561 KB  
Communication
Effects of Aquatic Conditions on Trap Structure in the Submerged Form of Drosera intermedia Hayne
by Izabela Kozak, Krzysztof Banaś and Bartosz J. Płachno
Plants 2026, 15(13), 2081; https://doi.org/10.3390/plants15132081 - 3 Jul 2026
Viewed by 631
Abstract
Carnivorous plants possess highly specialized trap structures that enable the acquisition of nutrients from captured animals. This study investigated whether the aquatic environment influences the architecture of glandular emergences (tentacles) in the submerged form of Drosera intermedia. Morphometric analyses were performed on [...] Read more.
Carnivorous plants possess highly specialized trap structures that enable the acquisition of nutrients from captured animals. This study investigated whether the aquatic environment influences the architecture of glandular emergences (tentacles) in the submerged form of Drosera intermedia. Morphometric analyses were performed on tentacles from plants growing in sandy terrestrial habitats, emergent wetland habitats, and submerged aquatic habitats. Significant differences in tentacle morphology were detected among habitat types. Emergent plants generally developed the largest tentacles and tentacle heads, whereas submerged plants exhibited shorter marginal tentacles and smaller glandular heads. In contrast, the shape of both marginal and central tentacle heads remained relatively stable across habitats, indicating stronger developmental conservation of this trait. Nevertheless, the submerged form differed significantly in the morphology of central tentacle heads. These results demonstrate that aquatic conditions substantially modify the structure of carnivorous emergences, revealing pronounced phenotypic plasticity in the carnivorous syndrome of D. intermedia. The reduction in tentacle size under submerged conditions may reflect altered functional demands associated with prey capture, changes in mucilage effectiveness, and the mechanical constraints imposed by the aquatic environment. However, differences in light availability, nutrient status, and other habitat characteristics may also contribute to the observed patterns. At the same time, the persistence of glandular structures indicates the retention of the carnivorous apparatus despite prolonged submergence. This study highlights the remarkable developmental flexibility of D. intermedia and provides new evidence that trap morphology in carnivorous plants may be highly responsive to environmental conditions. Full article
Show Figures

Figure 1

15 pages, 15828 KB  
Article
Does Size Matter? Population and Patch Size Effects on Fitness Components in Pinguicula gracilis
by Hugo David Gallardo-Sánchez, Ricardo Quirino-Olvera, Jorge Armando Verduzco-Martínez, Omar Horacio Sol-Torres, Fátima Yedith Camacho-Sánchez and Miguel Angel Reyes-López
J. Zool. Bot. Gard. 2026, 7(3), 26; https://doi.org/10.3390/jzbg7030026 - 1 Jul 2026
Viewed by 659
Abstract
Butterworts (Pinguicula spp.) are carnivorous plants often restricted to small, isolated populations in mountainous microclimates, making them vulnerable to inbreeding and demographic decline. In Mexico, the global hotspot for Pinguicula diversity (>50 species, 90% endemic), conservation is limited by scarce data on [...] Read more.
Butterworts (Pinguicula spp.) are carnivorous plants often restricted to small, isolated populations in mountainous microclimates, making them vulnerable to inbreeding and demographic decline. In Mexico, the global hotspot for Pinguicula diversity (>50 species, 90% endemic), conservation is limited by scarce data on population biology, demography, and vulnerability. This study provides the first population size estimate for the endemic P. gracilis and evaluates how patch and population size influence biological fitness components across three localities in northeastern Mexico. Using a multi-component fitness framework and statistical models, we found that smaller populations and patches exhibit significantly reduced reproductive fitness, particularly in fruit set and seed quality. Patch size showed strong positive correlations with fruit production (r = 0.45–0.53), while isolation negatively affected seed output (r = −0.48). These results highlight the role of landscape structure in shaping fitness components, with patch size influencing reproductive effort and connectivity determining reproductive success. Our findings provide the first germplasm and population baseline for P. gracilis and a framework to identify vulnerable populations, prioritize conservation actions, and guide restoration strategies. Full article
Show Figures

Figure 1

19 pages, 3629 KB  
Article
Habitat-Associated Dietary Plasticity in the Japanese Weasel (Mustela itatsi): Fecal Analysis in a Floodplain Wetland and Comparative Synthesis
by Shufan Qiao, Kaoru Suzuki, Masato Yoshikawa, Chris Newman and Yayoi Kaneko
Animals 2026, 16(11), 1720; https://doi.org/10.3390/ani16111720 - 4 Jun 2026
Viewed by 1005
Abstract
The range of food resources consumed by opportunistic carnivores is shaped by habitat-specific availability and productivity. However, baseline data on the diet of the Japanese weasel (Mustela itatsi) in managed wetland habitats remain scarce. Firstly, we conducted a diet study examining [...] Read more.
The range of food resources consumed by opportunistic carnivores is shaped by habitat-specific availability and productivity. However, baseline data on the diet of the Japanese weasel (Mustela itatsi) in managed wetland habitats remain scarce. Firstly, we conducted a diet study examining Japanese weasel scats from the Watarase-yusuichi wetland (WYW) (September 2024–August 2025). Based on 103 fecal samples, we calculated seasonal frequency of occurrence (FO) for 16 food categories and estimated their relative volume (RV) using the point-frame method. Surprisingly, plant material and fruit seeds were eaten frequently across seasons, and fruit seeds constituted a major component of scat volume, particularly in summer. Secondly, we compared baseline WYW data with published datasets from two contrasting aquatic habitats (a suburban river area and a rice paddy landscape) using harmonized categories and multivariate analyses. Diet composition differed markedly among study sites, and the PERMANOVA analysis indicated a significant effect of sampling site (R2 = 0.643, p = 0.001) with a weaker seasonal effect (R2 = 0.208, p = 0.038), with no significant pairwise differences between seasons (all p ≥ 0.300). Although cross-site comparisons should be interpreted cautiously because datasets were collected in different decades (1998, 2018, and 2024–2025), these findings support habitat-associated trophic plasticity in the Japanese weasel, with dietary shifts across habitats and seasons apparently reflecting variation in available food resources. In managed floodplain wetlands such as WYW, maintaining a mosaic of reed beds, ponds, and channels may help sustain dietary flexibility and population persistence in this species. Full article
(This article belongs to the Section Ecology and Conservation)
Show Figures

Figure 1

26 pages, 1483 KB  
Review
Content of Short-Lived Radionuclides (125Sb, 131I, 141Ce, and 144Ce) in Fish
by Nataliia E. Zarubina, Vladislav Semak and Liliia P. Ponomarenko
Fishes 2026, 11(6), 328; https://doi.org/10.3390/fishes11060328 - 30 May 2026
Viewed by 432
Abstract
This review is part of a series of studies on short-lived radionuclide accumulation in aquatic organisms following nuclear weapons testing, routine facility discharges, and accidental releases. It examines the pathways of uptake, accumulation, and internal redistribution of 125Sb, 131I, 141Ce, [...] Read more.
This review is part of a series of studies on short-lived radionuclide accumulation in aquatic organisms following nuclear weapons testing, routine facility discharges, and accidental releases. It examines the pathways of uptake, accumulation, and internal redistribution of 125Sb, 131I, 141Ce, and 144Ce in fish representing different ecological groups. The analysis combines published literature data with our original findings obtained from studies conducted in the cooling pond of the Chornobyl Nuclear Power Plant and the Kaniv Reservoir during the post-accident period. It has been established that radionuclide accumulation is governed by their physicochemical properties, environmental speciation, and the trophic characteristics of fish. 125Sb demonstrates high bioavailability and accumulates in internal organs, gills, roe, and muscle depending on its chemical form in the aquatic environment. 131I is characterized by high solubility, rapid incorporation into biological processes, and transient retention in tissues. 141Ce and 144Ce exhibit low mobility, strong association with particulate matter, and preferential accumulation in the gastrointestinal tract, external, and mineralized tissues. At the same time, the presence of 144Ce in the muscle tissue of carnivores and piscivores suggests possible trophic transfer and does not exclude potential manifestations of limited biomagnification of this radionuclide under conditions of elevated environmental contamination. It has been determined that the ratio of 125Sb to 144Ce can be used to identify contamination sources: their co-occurrence is interpreted as evidence of fuel particle input, explaining their predominant localization in the gastrointestinal tract and, to a lesser extent, in external tissues. Conversely, their separate detection reflects differences in mobility and bioavailability. It has been shown that the principal pathways for the uptake of the investigated radionuclides by fish are particle ingestion and absorption from the dissolved phase; thus, trophic dilution predominates over biomagnification, although trophic transfer of 144Ce cannot be excluded. Full article
(This article belongs to the Section Environment and Climate Change)
Show Figures

Graphical abstract

17 pages, 37393 KB  
Article
Structure and Immunocytochemical Analysis of Tracheoid Idioblasts in Nepenthes Pitchers
by Bartosz J. Płachno, Małgorzata Kapusta, Marcin Feldo, Piotr Stolarczyk and Piotr Świątek
Int. J. Mol. Sci. 2026, 27(10), 4223; https://doi.org/10.3390/ijms27104223 - 9 May 2026
Viewed by 631
Abstract
Tracheoid idioblasts in Nepenthes are anatomically specialized cells that differ distinctly from surrounding tissues in morphology, wall structure, and staining properties. Their presence has been documented in both vegetative organs, such as roots and stems, and in highly modified carnivorous leaves that form [...] Read more.
Tracheoid idioblasts in Nepenthes are anatomically specialized cells that differ distinctly from surrounding tissues in morphology, wall structure, and staining properties. Their presence has been documented in both vegetative organs, such as roots and stems, and in highly modified carnivorous leaves that form pitchers. We tested the hypothesis that if tracheoid idioblasts function to reinforce the mechanical strength of Nepenthes pitchers or to protect them from animal damage, they exhibit a secondary cell wall composition comparable to that of sclerenchyma or xylem cells, particularly with respect to its lignin and hemicellulose components. We assessed the localization of cell wall components in gland cell walls using histochemical tests, immunolabeling, and confocal microscopy. Light and scanning electron microscopy were used to reveal the tracheoid idioblast structure. Two species were examined: Nepenthes albomarginata T.Lobb ex Lindl. and Nepenthes bicalcarata Hook. f. In both species, giant tracheoid idioblasts with helical bands of secondary wall material were found throughout the pitchers. Negative phloroglucinol, fuchsin, and safranin staining test results demonstrated the absence of lignins in the tracheoid idioblast secondary cell walls. A histochemical test showed that the wall thickenings of the tracheoid idioblasts contained polysaccharides and cellulose and were rich in unsubstituted or low-substituted xylans, resembling the secondary cell walls of sclerenchyma and xylem cells. Our results suggest that tracheoid idioblasts with a helical secondary wall that is rich in xylans but not lignified most likely function as elastic reinforcing elements that increase the mechanical integrity of the organ while maintaining its flexibility and ability to undergo reversible deformation. Furthermore, tracheoid idioblasts may provide defense against herbivory. Full article
(This article belongs to the Section Molecular Plant Sciences)
Show Figures

Figure 1

22 pages, 323 KB  
Perspective
Carnivore and Animal-Based Diets in Sport: A Critical Evaluation of Current Evidence and Future Perspectives for Precision Nutrition
by Zbigniew Waśkiewicz
Nutrients 2026, 18(6), 998; https://doi.org/10.3390/nu18060998 - 21 Mar 2026
Cited by 1 | Viewed by 7335
Abstract
The increasing popularity of carnivore and animal-based diets among athletes has generated substantial interest, despite limited direct scientific evidence supporting their efficacy and safety in sport-specific contexts. This narrative review critically evaluates the current evidence and examines the physiological, performance, and health-related implications [...] Read more.
The increasing popularity of carnivore and animal-based diets among athletes has generated substantial interest, despite limited direct scientific evidence supporting their efficacy and safety in sport-specific contexts. This narrative review critically evaluates the current evidence and examines the physiological, performance, and health-related implications of these dietary models in athletic populations. These dietary models, characterized by the partial or complete exclusion of plant-derived foods, are often promoted on the basis of mechanistic arguments, anecdotal reports, and extrapolations from research on ketogenic and very low-carbohydrate diets. However, their physiological relevance, long-term health implications, and compatibility with the demands of athletic training remain poorly defined. This narrative review provides a critical perspective on the current evidence related to carnivore and animal-based diets in sport, integrating findings from studies on low-carbohydrate, ketogenic, high-protein, and elimination-based dietary patterns. The analysis focuses on metabolic adaptations, body composition, exercise performance, gastrointestinal function, micronutrient adequacy, hormonal responses, and potential long-term health risks. Particular attention is given to the distinction between metabolic adaptations and functional performance outcomes, as well as to the high interindividual variability in dietary responses. The available evidence suggests that while carbohydrate restriction may induce specific metabolic adaptations, such as increased fat oxidation, these changes do not consistently translate into improved performance, particularly in high-intensity or high-volume training contexts. Moreover, the highly restrictive nature of carnivore and animal-based diets raises concerns about micronutrient deficiencies, alterations in the gut microbiota, changes in the lipid profile, and potential effects on eating behaviours, particularly in competitive athletic populations. Given the absence of well-controlled, long-term intervention studies in athletes, carnivore and animal-based diets cannot currently be recommended as safe or optimal nutritional strategies for sports performance. Rather than representing viable alternatives to established sports nutrition guidelines, these dietary models may be better understood as experimental or short-term tools within highly controlled research or diagnostic frameworks. Future research should prioritize rigorous, sport-specific study designs, long-term safety outcomes, and personalized approaches that account for individual metabolic and physiological variability. Full article
(This article belongs to the Section Sports Nutrition)
12 pages, 3496 KB  
Article
Feeding Morphology Supports Carnivorous Habits in Algansea lacustris: A Multitrait Approach
by Citlali Wendolin Rodriguez-Paramo, María Cristina Chávez-Sánchez, Pamela Navarrete-Ramírez, Carlos Antonio Martínez-Palacios, Andrea Gutiérrez-Contreras and Carlos Cristian Martínez-Chávez
Fishes 2026, 11(3), 167; https://doi.org/10.3390/fishes11030167 - 14 Mar 2026
Viewed by 692
Abstract
Accurate classification of fish trophic strategies based solely on gut contents can be misleading, especially when plant material is ingested incidentally during predatory benthic foraging. The Pátzcuaro chub (Algansea lacustris) is a critically endangered cyprinid endemic to Central Mexico. It has [...] Read more.
Accurate classification of fish trophic strategies based solely on gut contents can be misleading, especially when plant material is ingested incidentally during predatory benthic foraging. The Pátzcuaro chub (Algansea lacustris) is a critically endangered cyprinid endemic to Central Mexico. It has historically been described as omnivorous with a tendency toward algivory, despite limited anatomical evidence. In this study, integrated anatomical, morphometric, and functional approaches were used to reassess the feeding strategy of A. lacustris and inform conservation-oriented aquaculture. Double-staining techniques revealed a specialised filtering and crushing branchial–pharyngeal system adapted to capture and process animal prey. Relative intestinal length (RIL) was measured from freshly dissected intestines. Intestinal transit time was experimentally evaluated using a formulated diet and live Artemia. Algansea lacustris exhibited a short intestine (RIL = 0.86 ± 0.10) and rapid intestinal transit (<30 min), both of which are characteristics of carnivorous teleosts. These results provide consistent anatomical and physiological evidence that A. lacustris is primarily adapted to a low-trophic carnivorous or insectivorous feeding strategy, with important implications for its ecological characterisation. Moreover, intestinal transit was faster after ingestion of live Artemia than after the formulated diet, likely due to differences in moisture content. The observed short transit times indicate the need for more frequent feeding and support the refinement of diet formulation and feeding strategies in conservation aquaculture programmes. Full article
(This article belongs to the Special Issue Trophic Ecology of Freshwater and Marine Fish Species)
Show Figures

Figure 1

21 pages, 3362 KB  
Article
Effect of Different Characters of the Pitcher Trap Syndrome in Nepenthes on Insect Trapping Efficiency: A Biomimetic Approach
by Elena V. Gorb, Meike Lange, Anna Jamke and Stanislav N. Gorb
Biomimetics 2026, 11(3), 180; https://doi.org/10.3390/biomimetics11030180 - 3 Mar 2026
Cited by 1 | Viewed by 1399
Abstract
The aim of our study was to determine the importance of different pitcher syndrome characters (size of the trap, the presence of inner microscopic surface coverage, physical properties of the pitcher fluid) for insect trapping efficiency using artificial, “biomimetic” pitchers. We performed trapping [...] Read more.
The aim of our study was to determine the importance of different pitcher syndrome characters (size of the trap, the presence of inner microscopic surface coverage, physical properties of the pitcher fluid) for insect trapping efficiency using artificial, “biomimetic” pitchers. We performed trapping experiments with Drosophila melanogaster flies, applied cryo scanning electron microscopy for characterization of the topography of surface coatings and visualization of their contaminability effects on insect attachment organs, and conducted contact angle measurements with different liquids used in experiments. The type of the liquid used as the pitcher fluid had the most important impact on the trapping efficiency; surfactant-containing liquids exhibiting strong wetting properties provided a high number of trapped flies. The diameter of the trap rather than its height influenced insect trapping efficiency; apparently, because wider traps provide a larger space for more insects to get into a trap, they captured more flies in comparison to narrower traps. The presence of both the calcium carbonate and kaolin coatings mimicking the epicuticular wax coverage inside pitchers in many Nepenthes species additionally contributed to the trapping success due to a reduction of contact between insect feet and the trap surface and to contamination of flies’ attachment organs by detached microparticles. Full article
(This article belongs to the Special Issue Advances in Biomimetics: Patents from Nature)
Show Figures

Figure 1

19 pages, 1775 KB  
Article
Arachidonic Acid Metabolic Rewiring Drives Differential Plant Protein Adaptation in Golden Pompano (Trachinotus ovatus)
by Yayang Gao, Baosuo Liu, Huayang Guo, Kecheng Zhu, Yichao Li, Lin Xian, Nan Zhang, Tengfei Zhu and Dianchang Zhang
Int. J. Mol. Sci. 2026, 27(4), 2051; https://doi.org/10.3390/ijms27042051 - 22 Feb 2026
Cited by 1 | Viewed by 1707
Abstract
The replacement of fishmeal with plant protein is widely regarded as a key strategy for sustainable aquaculture. However, carnivorous marine fish often show limited tolerance to fishmeal-free diets. Here, we investigated growth performance, hepatic physiological responses, and molecular mechanisms underlying adaptation to a [...] Read more.
The replacement of fishmeal with plant protein is widely regarded as a key strategy for sustainable aquaculture. However, carnivorous marine fish often show limited tolerance to fishmeal-free diets. Here, we investigated growth performance, hepatic physiological responses, and molecular mechanisms underlying adaptation to a soy protein concentrate-based diet (SPCD) in golden pompano (Trachinotus ovatus). An 8-week feeding trial was conducted under communal rearing conditions, followed by the phenotypic stratification of SPCD-fed fish into high- and low-growth subgroups. Growth performance, serum biochemical indices, and liver histology were assessed, and integrated transcriptomic and metabolomic analyses were performed on liver tissue. At the population level, the SPCD resulted in reduced growth, a lower feed intake, and decreased feed utilization efficiency compared with a fishmeal-based diet. Notably, marked inter-individual variation was observed: fish fed the SPCD exhibited significantly lower final body weights and a higher FCR compared with the FMD group (p < 0.001), and pronounced growth divergence was observed between the PB and PS subgroups, with a subset of SPCD-fed fish maintaining growth comparable to fishmeal-fed controls, whereas others exhibited severely constrained growth. Divergent phenotypes were associated with distinct hepatic alterations, including aggravated vacuolation, the enrichment of tight junction-related and immune regulatory pathways, and the broad reprogramming of lipid metabolism. Integrated multi-omics analysis identified arachidonic acid metabolism as the most significantly perturbed pathway, characterized by altered membrane phospholipid composition, the upregulation of RARRES3L, increased COX/LOX-derived eicosanoids, and the suppression of the CYP–EET branch. Collectively, these findings indicate that soy protein replacement induces coordinated hepatic structural and metabolic remodeling, with tight junction disruption and arachidonic acid metabolic reprogramming contributing to inflammatory imbalance and divergent growth phenotypes in T. ovatus. Full article
Show Figures

Figure 1

28 pages, 2870 KB  
Review
Cancer Across Domestic Animals: A Descriptive Review from the Veterinarian’s Perspective
by Antonio Giuliano, Rodrigo dos Santos Horta, Luca Santi Engel, Ayisa Rodrigues de Oliveira, Santiago Alonso, Celine Loubiere, Andrea Lombardo, Aldo Dal Prà and Felisbina Queiroga
Vet. Sci. 2026, 13(2), 167; https://doi.org/10.3390/vetsci13020167 - 8 Feb 2026
Cited by 1 | Viewed by 2839
Abstract
Cancer is a disease characterised by uncontrolled cell growth, that affects not only humans but also a wide range of animal species, and even plants. In this review, we explore and discuss the published literature about cancer across domestic animals. Most existing cancer [...] Read more.
Cancer is a disease characterised by uncontrolled cell growth, that affects not only humans but also a wide range of animal species, and even plants. In this review, we explore and discuss the published literature about cancer across domestic animals. Most existing cancer across species studies have been conducted by researchers who are not familiar with the diagnosis and treatment of cancer in domestic animals, and the veterinary perspective is rarely included. Moreover, many scientists remain unaware of the value of clinical data obtained from spontaneous cancer in domestic animals. In this review, we examine, summarise, and comment on the available literature investigating cancer across different species, with a focus on domestic animals, including herbivores, carnivores, and omnivores. We also analyse the potential influence of body size, metabolism, environment, and genetic background on cancer risk across species. Understanding both cancer sensitivity and resistance mechanisms in different animals may help bridge current knowledge gaps between veterinarians, researchers, and human oncologists. Ultimately, these insights may support the development of more effective cancer prevention and treatment strategies in animals and humans, emphasising the One Health–One Cancer approach. Full article
Show Figures

Figure 1

18 pages, 13568 KB  
Article
Immunocytochemical Analysis of the Wall Ingrowths and Cell Wall Microdomains in the Digestive Glands of Venus’ Flytrap
by Bartosz J. Płachno, Małgorzata Kapusta, Marcin Feldo, Piotr Stolarczyk and Piotr Świątek
Int. J. Mol. Sci. 2026, 27(3), 1193; https://doi.org/10.3390/ijms27031193 - 24 Jan 2026
Viewed by 1186
Abstract
The digestive gland of Venus flytrap consists of various types of specialized cells. Secretory cells form two layers: the first is a more external outer layer and the second is an internal layer that is connected to stalk cells. Our goal was to [...] Read more.
The digestive gland of Venus flytrap consists of various types of specialized cells. Secretory cells form two layers: the first is a more external outer layer and the second is an internal layer that is connected to stalk cells. Our goal was to check whether the position/location of cells is essential in terms of cell wall composition (whether cell wall microdomains exist). We also focused on the structure of cell wall ingrowths in secretory cells. To achieve this, the localization of the cell wall components in the cell walls of gland cells was performed using the immunolabeling technique and confocal microscopy. It has been found that cells within the gland head are not equal. Their location determines the composition of their cell walls in terms of the presence of various epitopes. The cell walls of the secretory cells in the outer layer were deficient in epitopes recognized by antibodies, including JIM5 (low methylesterified homogalacturonans), CCRC-M38 (low methylesterified homogalacturonans), LM5 (galactan), and CCRC-M48 (xyloglucan), which contrasted with the cell walls of the cells in the inner layer. In terms of the occurrence of pectic homogalacturonans, cell wall ingrowths constitute cell wall microdomains. The digestive glands of Dionaea muscipula exhibit pronounced cell wall microdomain organization, with distinct distributions of pectins, hemicelluloses, and arabinogalactan proteins across different glandular layers. These compositional differences reflect functional specialization in secretion, absorption, and structural support. Full article
(This article belongs to the Special Issue Plant Cell/Organ Structure and Function Research)
Show Figures

Figure 1

19 pages, 561 KB  
Review
Carnivore Diet: A Scoping Review of the Current Evidence, Potential Benefits and Risks
by Almiera Lietz, Janina Dapprich and Tobias Fischer
Nutrients 2026, 18(2), 348; https://doi.org/10.3390/nu18020348 - 21 Jan 2026
Cited by 2 | Viewed by 37493
Abstract
Background: The Carnivore Diet (CD) is an almost exclusively animal-based dietary pattern that has gained increasing popularity on social media. Despite numerous health-related claims, a standardized definition is lacking, and scientific evidence regarding the long-term effects of this diet remains unclear. Methods [...] Read more.
Background: The Carnivore Diet (CD) is an almost exclusively animal-based dietary pattern that has gained increasing popularity on social media. Despite numerous health-related claims, a standardized definition is lacking, and scientific evidence regarding the long-term effects of this diet remains unclear. Methods: The literature search for this scoping review was conducted in accordance with PRISMA guidelines (PRISMA-ScR) using the databases PubMed, LIVIVO, Web of Science, and the Cochrane Library. Results: Nine human studies were included. Individual publications reported positive effects of the CD, such as weight reduction, increased satiety, and potential improvements in inflammatory or metabolic markers. At the same time, potential risks of nutrient deficiencies, particularly in vitamins C and D, calcium, magnesium, iodine, and dietary fiber, as well as elevated low-density-lipoprotein (LDL-) and total cholesterol (TC) levels, were identified, along with one case describing a deterioration in health status. Overall, the quality of evidence is very limited due to small sample sizes, short study durations, and the absence of control groups. Conclusions: The CD may offer short-term health benefits but carries substantial risks of nutrient deficiencies, reduced intake of health-promoting phytochemicals, and the development of cardiovascular disease. At this time, long-term adherence to a CD cannot be recommended. Full article
(This article belongs to the Section Nutrition and Metabolism)
Show Figures

Figure 1

Back to TopTop