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
remove_circle_outline
remove_circle_outline

Journals

remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline

Article Types

Countries / Regions

remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline

Search Results (303)

Search Parameters:
Keywords = offspring survival

Order results
Result details
Results per page
Select all
Export citation of selected articles as:
38 pages, 2754 KB  
Review
Emerging Environmental Toxicants Undermine Reproductive Success in Aquatic Animals: A Narrative Review
by Yuchen Du, Hua Chang, Qiuyue Wang, Yaqin Liang, Liqian Shang, Chun Yang, Ling Li and Xun Xiang
J. Xenobiot. 2026, 16(4), 137; https://doi.org/10.3390/jox16040137 - 27 Jul 2026
Abstract
Aquatic animals are increasingly exposed to complex mixtures of emerging environmental toxicants, including microplastics, nanoplastics, per- and polyfluoroalkyl substances (PFAS), and endocrine-disrupting chemicals (EDCs). This raises serious concerns for reproductive health, offspring survival rates, and long-term population stability. This narrative review synthesizes the [...] Read more.
Aquatic animals are increasingly exposed to complex mixtures of emerging environmental toxicants, including microplastics, nanoplastics, per- and polyfluoroalkyl substances (PFAS), and endocrine-disrupting chemicals (EDCs). This raises serious concerns for reproductive health, offspring survival rates, and long-term population stability. This narrative review synthesizes the available peer-reviewed evidence on the reproductive and developmental effects of these contaminant groups in aquatic animals. Growing evidence indicates that these contaminants adversely affect reproductive processes, impair offspring development, and reduce survival and fitness across a wide range of aquatic species. Their effects are mediated through interconnected pathways involving oxidative stress, endocrine disruption, inflammation, mitochondrial dysfunction, and epigenetic alterations, ultimately leading to reproductive and developmental abnormalities. These changes may weaken wild fish populations, reduce aquaculture productivity, and compromise aquatic biodiversity. However, interpretation of the available evidence is constrained by substantial heterogeneity in species, contaminant properties and concentrations, exposure durations, and reproductive endpoints, together with the predominance of laboratory-based single-contaminant studies. This review integrates current knowledge on the reproductive and developmental impacts of emerging contaminants by connecting mechanistic toxicity pathways with population-level and ecosystem consequences. Overall, this review emphasizes that protecting aquatic reproductive health requires an integrated framework linking contaminant monitoring, mechanistic biomarkers, reproductive performance, and ecosystem-level risk assessment. Full article
Show Figures

Graphical abstract

15 pages, 2433 KB  
Article
Proteomic Characterization of the Salivary Microenvironment Associated with Mouthbrooding in Nile Tilapia (Oreochromis niloticus)
by Yan Zhou, Xinyi Lv, Songqian Huang, Yuxuan Liang, Ruiqin Hu and Jigang Lu
Fishes 2026, 11(8), 440; https://doi.org/10.3390/fishes11080440 - 26 Jul 2026
Abstract
Mouthbrooding is a specialized parental care strategy that enhances offspring survival in many cichlid fishes; however, the molecular characteristics of the maternal buccal environment remain poorly understood. In this study, we compared embryonic performance between artificial incubation and natural mouthbrooding in Nile tilapia [...] Read more.
Mouthbrooding is a specialized parental care strategy that enhances offspring survival in many cichlid fishes; however, the molecular characteristics of the maternal buccal environment remain poorly understood. In this study, we compared embryonic performance between artificial incubation and natural mouthbrooding in Nile tilapia (Oreochromis niloticus) and characterized the buccal fluid proteome associated with mouthbrooding using LC–MS/MS-based proteomics. Naturally mouthbrooded embryos exhibited significantly higher survival rates and lower morphological abnormality rates than artificially incubated embryos. Proteomic analysis revealed extensive remodeling of buccal fluid protein composition during mouthbrooding and identified numerous differentially abundant proteins among mouthbrooding females, pre-mouthbrooding females, and males. Functional enrichment analyses showed that mouthbrooding-associated proteins were predominantly involved in immune regulation, epithelial organization, and host–pathogen interaction pathways. Proteins enriched during mouthbrooding were mainly associated with epithelial barrier maintenance and immune defense functions. These findings suggest that mouthbrooding females establish a distinct buccal microenvironment that may contribute to embryonic survival and developmental success. This study provides new insights into the molecular basis of parental care in mouthbrooding fishes and offers potential targets for improving artificial incubation strategies in tilapia aquaculture. Full article
(This article belongs to the Special Issue Advances in Tilapia Aquaculture)
Show Figures

Figure 1

19 pages, 5503 KB  
Article
From Maternal Exposure to F1 Development: Unveiling Cyclophosphamide-Induced Reproductive Toxicity
by Xiaolin Meng, Fengyuan Liu, Na Xu, Jihui Ai, Jie Yang, Hualin Bai, Qiuyue Liao, Yan Zhang, Jianliu Wang, Jianbo Wei and Kezhen Li
Biomedicines 2026, 14(6), 1353; https://doi.org/10.3390/biomedicines14061353 - 16 Jun 2026
Viewed by 426
Abstract
Background: Various controversial conclusions exist regarding the reproductive toxicity of cyclophosphamide, creating uncertainties about the recovery timeline of maternal reproductive capacity and offspring health. Methods: Using a mouse model with a clinically relevant cyclophosphamide dosing regimen, we examined the recovery of [...] Read more.
Background: Various controversial conclusions exist regarding the reproductive toxicity of cyclophosphamide, creating uncertainties about the recovery timeline of maternal reproductive capacity and offspring health. Methods: Using a mouse model with a clinically relevant cyclophosphamide dosing regimen, we examined the recovery of female reproductive function after exposure and the long-term survival and development of their offspring. Results: Our findings revealed that cyclophosphamide exposure shortened the maternal reproductive lifespan, characterized by early fertility impairment at one week (p < 0.05), transient recovery at two weeks (p > 0.05), a subsequent decline at four weeks with further deterioration, and eventual progression to infertility at six months (p < 0.01). F1 pups from the cyclophosphamide group exhibited growth restriction, higher mortality rates, delayed pubertal onset, and impaired neurodevelopment during long-term follow-up. Although some parameters transiently improved at 2 weeks post-withdrawal, these abnormalities persisted or recurred at 4 and 8 weeks, indicating that developmental defects were not lessened by prolonging the medication withdrawal period. Conclusions: These findings demonstrate irreversible gonadotoxicity and developmental toxicity following cyclophosphamide exposure in this mouse model. Full article
(This article belongs to the Section Endocrinology and Metabolism Research)
Show Figures

Figure 1

11 pages, 798 KB  
Article
Influence of Different Legume Seeds on the Development, Oviposition, and Digestive Enzyme Activity of Callosobruchus chinensis L. (Coleoptera: Chrysomelidae)
by Tao Zhang, Keying Wang, Maria K. Sakka, Rongrong Yuan, Lingyan Jian, Xinshuo Hu, Chun Wang, Christos G. Athanassiou and Yu Cao
Insects 2026, 17(6), 556; https://doi.org/10.3390/insects17060556 - 28 May 2026
Viewed by 367
Abstract
In this study, the effects of five bean seeds (Vigna radiata, Pisum sativum, Vigna unguiculata, Vicia faba, and Glycine max) on the development, survival, oviposition, and digestive enzyme activities of C. chinensis were investigated. The duration of [...] Read more.
In this study, the effects of five bean seeds (Vigna radiata, Pisum sativum, Vigna unguiculata, Vicia faba, and Glycine max) on the development, survival, oviposition, and digestive enzyme activities of C. chinensis were investigated. The duration of C. chinensis development from egg to adult was shortest when reared on V. radiata (26.97 d) and longest on G. max (30.92 d) (p < 0.01). Similarly, the emergence rate of C. chinensis was highest on V. radiata (66.11%) and lowest on G. max (33.89%) (p < 0.01). Significant differences in the fecundity of C. chinensis were also detected, with the highest values on V. radiata (63.36 eggs/female), followed by P. sativum (54.27 eggs/female), V. unguiculata (51.30 eggs/female), V. faba (42.47 eggs/female), and G. max (37.29 eggs/female) (p < 0.01). For an equal initial insect number, after continuous rearing for 30, 60, or 90 d, there were significantly more offspring on V. radiata than on the other species, with the fewest offspring detected on G. max (p < 0.01). Although CL activity (p = 0.33) in C. chinensis did not differ significantly among the different legume species, activities of PEP (p < 0.01) and α-AMS (p < 0.01) in C. chinensis were all highest on V. radiata and lowest on G. max, and activities of LPS (p < 0.01) were highest on G. max and lowest on V. radiata. The differences in population dynamics associated with different bean seeds may be related to the activity of particular digestive enzymes, which play important roles in insect nutrient metabolism and growth. Our results indicated that V. radiata is the most suitable host diet, whereas G. max is the least suitable for the development of C. chinensis. Full article
(This article belongs to the Section Insect Physiology, Reproduction and Development)
Show Figures

Figure 1

14 pages, 2484 KB  
Article
Analysis of the Sublethal Effects of Spinetoram on Megalurothrips usitatus Across Multiple Generations Using the Age-Stage, Two-Sex Life Table Method
by Rui Gong, Lifei Huang, Wenjie Huang, Enhai Chen, Hongquan Liu and Lang Yang
Agriculture 2026, 16(11), 1164; https://doi.org/10.3390/agriculture16111164 - 26 May 2026
Viewed by 389
Abstract
Megalurothrips usitatus (Bagnall) is a major pest of cowpeas that severely affects their yield and quality. Spinetoram (a semi-synthetic derivative of natural spinosyns, modified to improve potency, residual activity, and stability) is currently one of the primary insecticides used for its control; however, [...] Read more.
Megalurothrips usitatus (Bagnall) is a major pest of cowpeas that severely affects their yield and quality. Spinetoram (a semi-synthetic derivative of natural spinosyns, modified to improve potency, residual activity, and stability) is currently one of the primary insecticides used for its control; however, prolonged or repeated exposure to this insecticide may lead to sublethal effects and the development of resistance. This study aimed to clarify the transgenerational effects of sublethal spinetoram stress on the development, reproduction, and population parameters of M. usitatus, with F4 offspring reared on untreated pods to assess maternal effects. The LC25 of spinetoram against M. usitatus was determined using an improved leaf-tube residual film method, and the thrips were successively selected for three generations (F1–F3) at this concentration. An age-stage, two-sex life table was constructed to systematically analyze the developmental duration, adult longevity, fecundity, and population life table parameters of the F4 generation. The results showed that after three consecutive generations of LC25 stress, the resistance ratio of M. usitatus to spinetoram reached 2.7. Compared with the water control, the F4 generation from the treated group exhibited significantly shortened 1st and 2nd instar nymphal durations, as well as the total egg-to-adult period, while the prepupal duration was significantly prolonged. Adult longevity in females decreased from 23.65 ± 1.05 days to 16.07 ± 1.40 days (32.1% reduction), and male longevity decreased from 18.78 ± 0.96 days to 15.40 ± 0.82 days (18.0% reduction). Mean fecundity per female decreased from 247.15 ± 30.47 to 34.53 ± 6.02 eggs (86.0% decrease). Regarding population parameters, the net reproductive rate (R0) decreased from 98.80 ± 0.07 to 10.36 ± 0.01 (89.5% decrease), the intrinsic rate of increase (r) decreased from 0.2506 ± 0.0001 to 0.1452 ± 0.0001 (40.0% decrease), the finite rate of increase (λ) decreased from 1.2849 ± 0.0001 to 1.1564 ± 0.0001 (10.1% decrease), and the mean generation time (T) was shortened from 18.24 ± 0.001 days to 15.84 ± 0.001 days (13.2% reduction). Age-stage-specific life expectancy (exj) was significantly reduced across all developmental stages, indicating a shorter survival time. The peak age stage-specific reproductive value (vxj) was significantly lower and occurred earlier. The peak values of the age-specific survival rate (lx) and fecundity (fx, mx) curves were significantly lower in the treated group. These findings indicate that multigenerational sublethal exposure to spinetoram can induce low-level resistance in M. usitatus and suppress the population growth potential by shortening developmental duration, reducing life expectancy, and reproductive contribution, and significantly inhibiting fecundity and survival. These results reveal the transgenerational sublethal effects of spinetoram and provide a theoretical basis for the integrated pest management (IPM) and resistance control of M. usitatus. Full article
(This article belongs to the Section Crop Protection, Diseases, Pests and Weeds)
Show Figures

Figure 1

25 pages, 15227 KB  
Article
NFAT5: A Metabolic Time Capsule Encoding the History of Paternal Metabolic Oxidative Stress Within the Male Reproductive Tract
by Nicola Mosca, Antonella Migliaccio, Teresa Chioccarelli, Donato Cappetta, Antonella De Angelis, Marialucia Telesca, Liberato Berrino, Danila Valletta, Alice Luddi, Chiara Donati, Paola Piomboni, Charles Coutton, Guillaume Martinez, Gilda Cobellis, Chiara Schiraldi, Nicoletta Potenza, Rosanna Chianese and Francesco Manfrevola
Antioxidants 2026, 15(5), 645; https://doi.org/10.3390/antiox15050645 - 20 May 2026
Viewed by 1526
Abstract
Leydig cells (LCs) represent a somatic testicular population responsible for testosterone synthesis, a hormone essential for spermatogenesis and male fertility. The obesity condition impairs LC steroidogenic activity, contributing to testicular oxidative stress and male reproductive dysfunctions. Using a high-fat-diet (HFD) murine model, we [...] Read more.
Leydig cells (LCs) represent a somatic testicular population responsible for testosterone synthesis, a hormone essential for spermatogenesis and male fertility. The obesity condition impairs LC steroidogenic activity, contributing to testicular oxidative stress and male reproductive dysfunctions. Using a high-fat-diet (HFD) murine model, we investigated the regulatory role of the nuclear factor of activated T cells 5 (NFAT5s) in the obesity-induced LC damage and the resulting alterations in intergenerationally inherited sperm circRNA cargo. Our findings reveal a significant upregulation of both circNFAT5 and NFAT5 protein levels in HFD testis. This molecular signature correlated with decreased antioxidant defense system, increased LC apoptosis, and impaired steroidogenesis. In vitro experiments, performed in TM3 cells, confirmed that NFAT5 nuclear shuttling drives proapoptotic gene activation, while NFAT5 silencing promotes LC survival. The analysis of HFD progeny (F1H) revealed a full recovery of testis oxidative status and LC apoptosis, linked with the recovery of NFAT5 expression. However, a steroidogenic deficiency persisted in F1H offspring. Notably, HFD and F1H epididymides exhibited NFAT5 overexpression concomitantly with impaired sperm morphology, motility, viability, and altered sperm circRNA profiles alongside a deregulated 4-hydroxy-2-nonenal (4HNE) profile, a marker of sperm oxidative stress. Lastly, an enhanced FUS-related amplification of circRNA perturbations was highlighted in F1H spermatozoa. Collectively, our findings reveal a dual functional role of NFAT5 as a testicular regulator of LC fate and an epididymal sentinel of metabolic stress, in turn linking paternal obesity to the persistent transmission of sperm epigenetic anomalies across the offspring. Full article
Show Figures

Figure 1

15 pages, 2253 KB  
Article
Breeding Biology of the Twite Linaria flavirostris in the North-Eastern Qinghai–Tibet Plateau, with Special Reference to Life-History Variation Across Latitudes and Altitudes
by Shuai Yan, Bowen Zhang and Shaobin Li
Animals 2026, 16(9), 1395; https://doi.org/10.3390/ani16091395 - 2 May 2026
Viewed by 941
Abstract
In 2024 and 2025, researchers investigated the breeding ecology of the Twite Linaria flavirostris in riparian shrubland habitats at an elevation of 3400 m in the northeastern Qinghai–Tibet Plateau. This species lays eggs from late June to mid-July, capitalizing on the region’s brief [...] Read more.
In 2024 and 2025, researchers investigated the breeding ecology of the Twite Linaria flavirostris in riparian shrubland habitats at an elevation of 3400 m in the northeastern Qinghai–Tibet Plateau. This species lays eggs from late June to mid-July, capitalizing on the region’s brief warm season. Nests are typically open-cup structures built in Hippophae spp. shrubs. The population predominantly exhibits monogamous mating, with a mean clutch size of 4.7 ± 0.49 (3~5). Incubation is performed solely by the female and lasts 11.52 ± 1.65 days. Both parents provision the nestlings, and the nestling period lasts 12.43 ± 2.39 days. Morphological measurements of nestling body mass and external organs all fit well to the Logistic growth curve equation. By fledging, tarsus length and bill length reach over 90% of adult values, conferring substantial terrestrial mobility. However, flight-related feathers, primaries and rectrices, remain markedly underdeveloped compared to adults, resulting in extremely poor flight capability; further post-fledging development is thus required. Based on reproductive outcomes from this single breeding season, a total of 121 eggs were laid, of which 81 successfully hatched, and ultimately 79 fledglings survived to leave the nest. The overall hatching success was 66.94%, fledging success (among hatchlings) was 97.53%, and overall offspring survival (from eggs to fledglings) was 65.29%. The apparent nesting success rate was 76.0%, based on a total of 50 nests monitored over two years. Daily nest survival rates were estimated using Mayfield’s method and program MARK, resulting in nest success probabilities of 0.587 and 0.219, respectively. Comparing populations across different geographic regions, the results indicate that Twites breeding in environments with higher levels of environmental stress produce smaller clutch sizes and larger eggs, and exhibit a prolonged nestling period. This life-history strategy likely represents an evolutionary adaptation to spatially variable environmental conditions. Full article
(This article belongs to the Section Animal Reproduction)
Show Figures

Figure 1

18 pages, 1719 KB  
Article
Effects of Rearing Temperatures on Key Biological Parameters of the Egg Parasitoids Trichogramma cocoeciae and Trichogramma bourarachae (Hymenoptera: Trichogrammatidae): Implications for Biological Control
by Nihel Ben Saad, Mehdia Fraj, Ramzi Mansour, Anis Zouba, Kaouthar Grissa Lebdi, Sahar Zougari, Ahmed Mahmoud Ismail, Hossam S. El-Beltagi, Saleh Mbark Alturki, Saad N. Al-Kahtani, Mohamed J. Hajjar, Tarek A. Shalaby, Husameldin Mahmoud and Sabrine Attia
Insects 2026, 17(5), 456; https://doi.org/10.3390/insects17050456 - 27 Apr 2026
Viewed by 874
Abstract
The field effectiveness of Trichogramma parasitoids (Hymenoptera: Trichogrammatidae) against lepidopteran pests is strongly influenced by temperature, which affects their development, survival, parasitism and reproductive performance. Understanding thermal requirements is therefore essential for optimizing mass rearing and release strategies. The present study evaluated the [...] Read more.
The field effectiveness of Trichogramma parasitoids (Hymenoptera: Trichogrammatidae) against lepidopteran pests is strongly influenced by temperature, which affects their development, survival, parasitism and reproductive performance. Understanding thermal requirements is therefore essential for optimizing mass rearing and release strategies. The present study evaluated the effects of five constant temperatures (25, 30, 33, 35, and 40 °C) on biological parameters of Trichogramma bourarachae Pintureau & Babault and two strains (S1 and S2) of T. cacoeciae Marchal reared on Ephestia kuehniella Zeller eggs. Emergence rates were higher between 25 °C and 33 °C for all tested parasitoids, decreased markedly at 35 °C for T. cacoeciae, whereas T. bourarachae emergence showed higher tolerance at 35 °C, and no emergence was recorded for all parasitoids at 40 °C. Parasitism capacity was strongly influenced by both temperature and parental thermal history. Trichogramma bourarachae exhibited its highest parasitism rate at 25 °C; however, females originating from the parental generation that developed at 30 °C maintained relatively high parasitism rates at elevated temperatures (30 to 35 °C). For T. cacoeciae S1, parental development at 30 °C enhanced offspring parasitism over a broader temperature range. Conversely, T. cacoeciae S2 achieved maximum parasitism when the parental generation developed at 25 °C, with high parasitism maintained at 25 °C, 30 °C, and 33 °C. At the species level, parasitism was highest between 25 °C and 33 °C, declined at 35 °C, and no parasitism was recorded at 40 °C due to the absence of survival. Within each species, however, strain-specific differences were observed, particularly at 35 °C, indicating variability in thermal tolerance and reproductive performance. Female longevity decreased with increasing temperature in all species and strains. However, individuals originating from parental generation that developed at 30 °C exhibited improved survival when exposed to elevated oviposition temperatures, indicating thermal acclimation. Increasing temperature induced a male-biased sex ratio in T. bourarachae, whereas T. cacoeciae maintained stable thelytokous reproduction across all treatments. These results emphasize the importance of thermal tolerance and parental thermal history for selecting suitable Trichogramma species and strains for mass rearing and field application for biological control under warming climatic conditions. Full article
(This article belongs to the Special Issue The Role of Beneficial Insects in Pest Control)
Show Figures

Figure 1

19 pages, 1235 KB  
Review
Neonatal Gut Microbiota in Puppies and Kittens: From Maternal Transmission to Immune Development
by Raquel Rodríguez-Trujillo, Miguel Batista-Arteaga, Kseniia Isupova, Sara Alonso-Santana, Alberto Acosta-Urbano, Xiomara Lucas-Arjona and Soraya Déniz-Suárez
Animals 2026, 16(9), 1307; https://doi.org/10.3390/ani16091307 - 24 Apr 2026
Viewed by 1008
Abstract
Neonatal puppies and kittens face a critical period after birth, during which their health depends heavily on the microorganisms they acquire from their mothers and environment. These microorganisms, known as the gut microbiota, help newborns develop their immune systems, digest nutrients, and protect [...] Read more.
Neonatal puppies and kittens face a critical period after birth, during which their health depends heavily on the microorganisms they acquire from their mothers and environment. These microorganisms, known as the gut microbiota, help newborns develop their immune systems, digest nutrients, and protect against disease. This review explores how these microorganisms are transferred from the mother to her offspring before, during, and after birth, including the process of delivery, nursing, and maternal care. It also examines how factors such as birth type, hygiene, feeding, and maternal health can influence the development of these microbial communities. When this process is disrupted, it may lead to health problems such as infections, diarrhea, and immune disorders. Understanding how and when these microbes are passed to newborns, and how to support this process, is essential to improving survival rates and long-term health in puppies and kittens. Full article
Show Figures

Figure 1

10 pages, 879 KB  
Article
Characterization of the Alfalfa Pollen Virome
by Lev G. Nemchinov, Sam Grinstead, Olga A. Postnikova and Brian M. Irish
Viruses 2026, 18(4), 408; https://doi.org/10.3390/v18040408 - 25 Mar 2026
Viewed by 1926
Abstract
Vertical transmission of plant pathogenic viruses is an important component of viral persistence, survival, and spread in agricultural production systems. This type of transmission is of considerable economic significance as it can cause major crop losses by serving as the initial focus of [...] Read more.
Vertical transmission of plant pathogenic viruses is an important component of viral persistence, survival, and spread in agricultural production systems. This type of transmission is of considerable economic significance as it can cause major crop losses by serving as the initial focus of infection for future epidemics. Vertical transmission occurs when a virus is passed on to offspring either by direct invasion of the developing seed embryo from infected mother plants or through infected pollen grains after fertilization. We have recently demonstrated via high-throughput sequencing that mature seeds of the agriculturally important forage crop alfalfa (Medicago sativa L.) are associated with a broad range of viruses, some of which could potentially spread over long distances via seed. With the exception of the alfalfa mosaic virus, little is currently known about viral transmission through alfalfa pollen and its subsequent impact on the disease epidemiology of the crop. The objective of this study was to screen pollen from diverse alfalfa genotypes for pathogenic viruses and assess their risk of transmission. The pollen was collected from alfalfa genotypes selected for fungal disease resistance and agronomic performance in the USDA ARS pre-breeding program in Prosser, WA. Full article
(This article belongs to the Special Issue Plant Virus Surveillance and Metagenomics 2026)
Show Figures

Figure 1

15 pages, 278 KB  
Article
Effect of Colostrum Components on Early Inflammatory Response, IgG Concentration and Weight Gain in Lambs
by Marina Erm, Maëlle Beck, Joanna Bajzert, Ants Kuks, Tadeusz Stefaniak, Kristel Peetsalu and Toomas Orro
Animals 2026, 16(6), 952; https://doi.org/10.3390/ani16060952 - 18 Mar 2026
Viewed by 863
Abstract
Newborn sheep rely on passive transfer of immunity via colostrum as well as innate immunity for survival and adaptation to the extrauterine environment. This study examined associations between immunomodulatory constituents of colostrum, namely, immunoglobulin G (IgG), acute-phase proteins (APPs; serum amyloid A (SAA), [...] Read more.
Newborn sheep rely on passive transfer of immunity via colostrum as well as innate immunity for survival and adaptation to the extrauterine environment. This study examined associations between immunomodulatory constituents of colostrum, namely, immunoglobulin G (IgG), acute-phase proteins (APPs; serum amyloid A (SAA), and haptoglobin) and interleukin-6 (IL-6), and their corresponding concentrations in serum of 2–3-day-old offspring in a cohort of 296 Dorper lambs across three consecutive years. It also assessed the effects of these immunological markers on average daily weight gain (ADWG) during the first four months of life. IgG, APP, and IL-6 concentrations were measured, and mixed linear regression models were used for all analyses. Colostrum and serum concentrations of IgG and IL-6 were positively associated, whereas SAA levels in colostrum were negatively associated with IgG concentrations in serum. Serum IL-6 concentration was negatively associated with colostrum concentrations of IgG and SAA. Serum IgG concentration was positively associated with ADWG, while SAA and IL-6 concentrations were negatively associated with ADWG. These results show the importance of immunomodulating factors in colostrum other than IgG and emphasize the long-term effect of the serum concentrations of these factors on growth performance. Full article
(This article belongs to the Section Small Ruminants)
13 pages, 756 KB  
Article
Geographic Divergence in Heat Tolerance and Cross-Generational Responses of the Invasive Mealybug Dysmicoccus neobrevipes
by Yusha Wang, Dewei Li, Huiwen Huang, Andrew G. S. Cuthbertson, Zhongshi Zhou and Zhenqiang Qin
Insects 2026, 17(3), 328; https://doi.org/10.3390/insects17030328 - 17 Mar 2026
Viewed by 602
Abstract
As a result of global climate change, insects are increasingly being exposed to extreme temperature events; yet population-level variation in heat tolerance and its underlying mechanisms remain poorly understood. In this study, we investigated thermal adaptation in four geographically distinct populations of the [...] Read more.
As a result of global climate change, insects are increasingly being exposed to extreme temperature events; yet population-level variation in heat tolerance and its underlying mechanisms remain poorly understood. In this study, we investigated thermal adaptation in four geographically distinct populations of the invasive mealybug Dysmicoccus neobrevipes from southern China. The populations were subjected to acute heat stress across a gradient of temperatures where survival, fecundity, offspring viability, and sex ratio were quantified. We found pronounced geographic divergence in upper thermal limits: populations from warmer regions (Guangdong and Hainan) exhibited better survival, more stable reproductive output, and greater tolerance in offspring compared with populations from cooler regions (Guangxi and Yunnan). Thermal responses followed a nonlinear pattern, with moderate heat often enhancing performance, while temperatures above physiological thresholds triggered abrupt declines. Under heat stress, life-history strategies differed among populations, with some exhibiting stress-induced reproductive investment and others showing vulnerability across all traits. Importantly, acute heat exposure produced cross-generational effects, highlighting that parental thermal history can influence offspring performance. These results demonstrate that population-specific climatic adaptation, nonlinear physiological limits, and life-history trade-offs jointly shape thermal tolerance. Understanding these mechanisms provides a predictive framework for anticipating invasive pest expansion under future climatic warming and informs region-specific pest management strategy development. Full article
(This article belongs to the Section Insect Physiology, Reproduction and Development)
Show Figures

Figure 1

30 pages, 6304 KB  
Review
The α-Gal Epitope (Galα1-3Galβ1-4GlcNAc) as Therapeutic Agent in Cancer Immunotherapy, Vaccine Effectiveness Amplification and Injured Tissue Regeneration
by Uri Galili
Int. J. Mol. Sci. 2026, 27(6), 2737; https://doi.org/10.3390/ijms27062737 - 17 Mar 2026
Viewed by 1376
Abstract
The α-gal epitope is synthesized in non-primate mammals and New-World monkeys by the glycosylation enzyme α1,3galactosyltransferase (α1,3GT), encoded by the GGTA1 gene. Ancestral Old-World monkeys and apes synthesizing α-gal epitopes underwent extinction 20–30 million years ago. Their mutated offspring, with the inactivated GGTA1 [...] Read more.
The α-gal epitope is synthesized in non-primate mammals and New-World monkeys by the glycosylation enzyme α1,3galactosyltransferase (α1,3GT), encoded by the GGTA1 gene. Ancestral Old-World monkeys and apes synthesizing α-gal epitopes underwent extinction 20–30 million years ago. Their mutated offspring, with the inactivated GGTA1 gene, survived and produced the natural anti-Gal antibody, specifically binding α-gal epitopes. Anti-Gal protected the surviving offspring from lethal viruses presenting α-gal epitopes, which killed α-gal-synthesizing parental primates. Anti-Gal constitutes ~1% of human immunoglobulins and is also produced in Old-World monkeys and apes. α-Gal epitopes can serve as therapeutic agents in several clinical disciplines: 1. Cancer immunotherapy: Engineering cancer cells to express α-gal epitopes results in anti-Gal binding to these cells and localized activation of the complement system that kills these cancer cells and recruits the antigen-presenting cells (APCs) dendritic cells and macrophages. Anti-Gal bound to cancer cells targets them for robust uptake by APCs, which process internalized tumor antigens (TAs) and transport them to lymph nodes for activation of cytotoxic T-cells. These T-cells kill TA-presenting metastatic tumor cells. Clinical trials demonstrated that such engineering is achieved by intra-tumoral injection of α-gal glycolipids, the use of recombinant α1,3GT, or the use of oncolytic viruses containing the GGTA1 gene. 2. Viral vaccines: Inactivated whole-virus vaccines presenting α-gal epitopes bind anti-Gal, which targets them for extensive uptake by APCs, thereby increasing their immunogenicity by ~100-fold. 3. Injured-tissue regeneration: Anti-Gal binding to α-gal-presenting nanoparticles administered to wounds, into the post-myocardial infarction (MI) injured myocardium and into injured spinal cord, activates the complement system that recruits pro-regenerative macrophages, which orchestrate regeneration by recruiting stem cells and the secretion of pro-regenerative cytokines. All these findings suggest that α-gal/anti-Gal antibody interaction can serve as a novel therapeutic approach, applicable to various clinical settings. Full article
(This article belongs to the Special Issue Latest Insights into Glycobiology)
Show Figures

Figure 1

17 pages, 906 KB  
Article
Multiple Paternity, Mate Choice and Siring Success During Drought: Implications for a Semelparous Marsupial
by Marissa L. Parrott, Simon J. Ward, Peter D. Temple-Smith and Lynne Selwood
Diversity 2026, 18(3), 180; https://doi.org/10.3390/d18030180 - 17 Mar 2026
Cited by 1 | Viewed by 1303
Abstract
Multiple paternity in litters and a female’s choice of mate can significantly influence siring success and the success and survival of offspring. In captive agile antechinus (Antechinus agilis), a small, carnivorous marsupial that exhibits obligate semelparity, females choose to mate with [...] Read more.
Multiple paternity in litters and a female’s choice of mate can significantly influence siring success and the success and survival of offspring. In captive agile antechinus (Antechinus agilis), a small, carnivorous marsupial that exhibits obligate semelparity, females choose to mate with multiple males and mate choice is profoundly influenced by genetic dissimilarity between mates, not male size. However, female mate choice has not been examined in wild agile antechinus. Our study encompassed one year in which the operational sex ratio was at parity and a second in which the ratio was female biased, and animal weight, survival and litter size were significantly decreased due to severe drought conditions. Using genetic data from 204 pouch young, we show that genetically dissimilar males sired a higher proportion of young when the sex ratio was at parity, but there was no influence of relatedness on siring success during drought conditions. Larger males sired a higher proportion of young in both years, suggesting that female choice may be partially over-ridden by male behaviour. We highlight concerns for semelparous marsupials during increasingly frequent environmental disruptions, including drought, which could influence mate choice behaviours, reproductive success, genetic health and population survival. Full article
(This article belongs to the Special Issue Ecology, Evolution and Conservation of Marsupials)
Show Figures

Graphical abstract

16 pages, 1492 KB  
Article
Effects of Trichoderma harzianum Rifai and Chaetomium cupreum L.M. Ames on Biological Parameters of Myzus persicae (Sulzer) on Capia-Type Red Pepper (Capsicum annuum L.)
by Hilmi Kara
Insects 2026, 17(3), 323; https://doi.org/10.3390/insects17030323 - 17 Mar 2026
Viewed by 1000
Abstract
The green peach aphid, Myzus persicae (Sulzer), is a globally important agricultural pest whose management is increasingly challenged by widespread insecticide resistance, prompting interest in alternative and sustainable control strategies such as endophytic fungi. This study evaluated the effects of two endophytic fungi, [...] Read more.
The green peach aphid, Myzus persicae (Sulzer), is a globally important agricultural pest whose management is increasingly challenged by widespread insecticide resistance, prompting interest in alternative and sustainable control strategies such as endophytic fungi. This study evaluated the effects of two endophytic fungi, Trichoderma harzianum and Chaetomium cupreum, applied individually or as a 1:1 mixture, on the population ecology of M. persicae feeding on capia-type red pepper (Capsicum annuum L.). Aphid development, survival, and reproduction were assessed using age-stage, two-sex life table analysis. Contrary to expectations, T. harzianum significantly enhanced aphid population growth, resulting in a higher intrinsic rate of increase (r = 0.42 d−1), finite rate of increase (λ = 1.52 d−1), and net reproductive rate (R0 = 87.67 offspring) compared to the Control (r = 0.32 d−1, λ = 1.37 d−1, R0 = 42.90 offspring). The Mixture treatment also increased population parameters, whereas C. cupreum showed limited effects on aphid life table traits. Population projections indicated that T. harzianum treatment could produce aphid populations approximately 380 times larger than the Control after 60 days. These results suggest that T. harzianum may improve host plant quality in ways that indirectly favor M. persicae. The findings highlight the importance of evaluating plant–fungus–herbivore interactions before incorporating endophytic fungi into integrated pest management programs. Full article
Show Figures

Figure 1

Back to TopTop