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Search Results (221)

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Keywords = reproduction biotechnology

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15 pages, 3772 KB  
Review
Environmental Risk Assessment and Confinement of Genetically Engineered Trees with an Emphasis on Vegetative Reproduction
by Yongil Yang and C. Neal Stewart
Plants 2026, 15(16), 2496; https://doi.org/10.3390/plants15162496 - 18 Aug 2026
Viewed by 195
Abstract
Genetic engineering (GE) and gene editing may endow traits to trees such as increased biomass and the production of novel biomaterials. Long-lived organisms such as trees might be subject to biotechnology-related risks that could be different than those of annual row crops. Those [...] Read more.
Genetic engineering (GE) and gene editing may endow traits to trees such as increased biomass and the production of novel biomaterials. Long-lived organisms such as trees might be subject to biotechnology-related risks that could be different than those of annual row crops. Those risks could be relevant to production in engineered plantations and beyond plantations to natural forests. Therefore, appropriate risk regulation is important to assure biosafety of commercialized engineered trees. In addition to gene flow via sexual reproduction, vegetative reproduction might play an additional role in environmental “exposure” risk relative to transgene dispersal in GE tree plantations. While vegetative reproduction is beneficial for preserving desired genetic traits during tree propagation, it may lead to proximal clonal spread in the field. Although the environmental risks associated with vegetative reproduction of GE trees are recognized in commercial forestry, there are few field-based environmental risk assessment (ERA) studies on dispersal risks of self-propagated GE trees. GE or gene editing of target genes involved in the vegetative propagation processes may be useful to mitigate environmental risks of clonal spread through vegetative reproduction. This review provides updates for recent field test results of GE and gene edited trees. Gene candidates related to vegetative reproduction including adventitious shooting (AS) and adventitious rooting (AR) are discussed herein as a means to mitigate unintended clonal spread from GE tree plantations. Full article
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14 pages, 7487 KB  
Article
Follicular Growth Evaluation, Oviposition and Egg Hatching in the Ball Python (Python regius)
by Alessandra Rota, Michele Lorini, Francesco De Filippo, Cristiana Manetti and Matteo Tesi
Animals 2026, 16(16), 2555; https://doi.org/10.3390/ani16162555 - 16 Aug 2026
Viewed by 214
Abstract
Reproductive performance and follicular dynamics in captive female ball pythons (Python regius) were investigated to evaluate reproductive efficiency, assess the usefulness of ultrasonography, and examine the relationship between follicular size and ovulation timing. Reproductive parameters included follicular development, ovulation rate, ovulation-to-oviposition [...] Read more.
Reproductive performance and follicular dynamics in captive female ball pythons (Python regius) were investigated to evaluate reproductive efficiency, assess the usefulness of ultrasonography, and examine the relationship between follicular size and ovulation timing. Reproductive parameters included follicular development, ovulation rate, ovulation-to-oviposition interval, egg quality, and hatching success. Monthly ultrasonographic examinations were performed from March to August using a 7.5 MHz linear probe, and the findings were compared with manual palpation. Overall, 58.3% of females ovulated and laid eggs. Ovulation occurred mainly between April and August, whereas egg laying took place from June to November. The median clutch size was six eggs, and incubation lasted approximately 58 days. Ultrasonography effectively monitored follicular development, showing progressive changes in echogenicity and significant increases in follicular diameter throughout the breeding season. A strong negative correlation was found between follicular size and days to ovulation (r = −0.88; p < 0.001). Follicles measuring ≥20 mm showed a median growth rate of 0.38 mm/day. Manual palpation showed lower diagnostic accuracy, with a 25% false-negative rate. This study provides baseline reproductive data that may improve captive breeding management, animal welfare, and future reproductive research, including the development of reproductive biotechnologies in this species. Full article
(This article belongs to the Special Issue Advances in Reproduction of Reptiles and Amphibians)
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40 pages, 6616 KB  
Review
Catfish Transgenesis and Gene Editing: Overview, Recent Advances, and Future Perspectives
by Ahmed H. Elaswad, Karim M. Khalil and Rex A. Dunham
Biology 2026, 15(16), 1365; https://doi.org/10.3390/biology15161365 - 11 Aug 2026
Viewed by 267
Abstract
Transgenesis and gene editing offer a promising approach for more efficient and sustainable aquaculture by generating high-performance fish to enhance global food security. This article provides a comprehensive review of the history, current status, and future perspectives of employing transgenesis and gene-editing technologies [...] Read more.
Transgenesis and gene editing offer a promising approach for more efficient and sustainable aquaculture by generating high-performance fish to enhance global food security. This article provides a comprehensive review of the history, current status, and future perspectives of employing transgenesis and gene-editing technologies to improve fish production and welfare, focusing on catfishes, which represent a diverse group of economically important fish. We discussed the application of various genetic technologies, including gene transfer (transgenesis) and gene editing, to boost fish economic traits and achieve genetic confinement. We also reviewed the progress on integrating transgenesis and gene-editing techniques for multiple gene editing, an approach that can speed up and make the genetic modification of fish more efficient. This review also highlights several research gaps in the current literature on gene transfer and gene editing in catfishes. Specifically, it provides directions for future catfish research, including the employment of transcriptomics in phenotypic assessment of transgenic and gene-edited fish, addressing compensatory mechanisms when selecting the gene-editing targets, and accounting for gene-environment and gene-nutrition interactions. It also highlights the application of advanced gene-editing tools, integration of genomic selection and artificial intelligence with gene editing, transparent public education about the benefits and risks of genetic biotechnology, and the development of effective reproductive confinement strategies. Full article
(This article belongs to the Special Issue Molecular Genetics and Immunogenomics of Fishes)
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31 pages, 39361 KB  
Article
Application of Microbial Cold Recovery Technology in Shallow Low-Temperature High-Viscosity In Situ Oil Sands: A Case Study of the Upper Cretaceous Oil Sands in the Central–Southern Part of the Western Slope of the Songliao Basin
by Lihua Tong, Yaohua Li, Jie Li, Yantong Liu, Lei Shi, Caiqin Bi, Wenjie Xia, Yinbo Xu, Yuan Yuan and Yue Tang
Processes 2026, 14(15), 2517; https://doi.org/10.3390/pr14152517 - 5 Aug 2026
Viewed by 367
Abstract
The Cretaceous shallow oil sands in the Dagang area, located on the western slope of the Songliao Basin, are characterized by a burial depth of ≤182 m, an average reservoir temperature of 11.8 °C, an extremely high crude oil viscosity of 1,750,000 mPa·s [...] Read more.
The Cretaceous shallow oil sands in the Dagang area, located on the western slope of the Songliao Basin, are characterized by a burial depth of ≤182 m, an average reservoir temperature of 11.8 °C, an extremely high crude oil viscosity of 1,750,000 mPa·s at 15 °C, and water-bearing layers in both the roof and floor. Conventional thermal recovery methods such as SAGD and CSS are geologically unsuitable for this deposit and suffer from high energy consumption and carbon emissions. As microbial oil recovery is a technically advanced enhanced oil recovery technology that leverages microbial growth, reproduction and metabolism in the reservoir to alter the properties of oil, rock, gas and water through interaction with these components, and petroleum biotechnology research confirms that microorganisms can degrade high-molecular-weight petroleum hydrocarbons to reduce crude oil viscosity and improve its fluidity, this study explores the technical feasibility of microbial cold recovery for in situ extraction of such low-temperature, high-viscosity oil sands. The study adopts a five-well pilot pattern (one injector and four producers) with an integrated approach combining reservoir unblocking, microbial viscosity reduction, and vibration-assisted production. Systematic screening identified Pseudomonas, Chryseobacterium, and Citrobacter as the most efficient indigenous microbial strains. Pseudomonas exhibited a crude oil degradation rate of 32.17%, reducing asphaltene content from 7.47% to 3.56%, and achieved large-scale proliferation (2.5 × 108 cfu/mL) at 15 °C. It also achieved a 40.8% reduction in crude oil viscosity and a desulfurization rate, alongside 56.6% denitrification. With the optimal activator No. 3, the viscosity reduction rate reached 45.18%, and the viable cell count exceeded 9.45 × 108 cfu/mL. The synergistic action of Pseudomonas and an A-type nano-microemulsion surfactant reduced the oil–water interfacial tension from 49.56 to 1.25 mN/m (a 97.48% reduction) and lowered the crude oil viscosity at 25 °C from 302,000 to 11,023 mPa·s (a 96.35% reduction). Core flooding tests demonstrated an incremental oil recovery of 7.38% compared with the water-flooded control, with interfacial tension dropping from 48.21 to 1.18 mN/m. In the field trial, composite perforation (32 shots/m, 1610 mm penetration) and two cycles of oil-based fermentation fluid huff-n-puff reduced injection pressure from 2.0 to 2.5 MPa to 1.0–1.8 MPa. A total of 1489 m3 of microbial agent was injected into five wells, followed by a 125-day shut-in period. Nano-microemulsion single-well huff-n-puff (579 m3 over 87 days) further decreased injection pressure to 0 MPa. A downhole harmonic vibration source (≤20 Hz) was also applied during the trial. During the production phase, Pseudomonas was found to dominate the produced fluid, with its peak relative abundance exceeding 70%. Cumulative fluid production reached 4114 m3, yielding 21 m3 of oil sand oil. Wells with vibration assistance showed significantly higher oil content and better emulsification performance than wells without vibration assistance. Full article
(This article belongs to the Special Issue Advances in Heavy Oil Reservoir Development)
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21 pages, 309 KB  
Review
Integrated Conservation Strategies for the Oravka Chicken: Advances in Cryopreservation Technologies for Endangered Poultry Genetic Resources—A Literature Review
by Andrea Svoradová, Jaromír Vašíček, Lenka Kuželová, Petr Sláma, Ľubomír Ondruška, Peter Chrenek and Francesco Vizzarri
Animals 2026, 16(15), 2377; https://doi.org/10.3390/ani16152377 - 3 Aug 2026
Viewed by 405
Abstract
Local poultry breeds represent an essential component of agricultural biodiversity and play an important role in ensuring the resilience of livestock production systems under changing environmental conditions. The Slovak national chicken breed Oravka is a dual-purpose genotype adapted to mountain and sub-mountain production [...] Read more.
Local poultry breeds represent an essential component of agricultural biodiversity and play an important role in ensuring the resilience of livestock production systems under changing environmental conditions. The Slovak national chicken breed Oravka is a dual-purpose genotype adapted to mountain and sub-mountain production environments and classified as an endangered genetic resource. The conservation of this breed therefore requires integration of traditional breeding programmes with modern reproductive biotechnologies. The present literature review summarises the origin, breeding characteristics and adaptive potential of the Oravka breed and provides a comprehensive overview of current ex situ conservation strategies based on cryopreservation of reproductive and stem cells. Special attention is devoted to the cryopreservation of primordial germ cells, mesenchymal stem cells and rooster spermatozoa, which represent key biological material stored within national gene bank infrastructure. Differences in cryosurvival between blastodermal cells and germline stem cells are discussed together with methodological limitations of avian embryo cell preservation. The review highlights the importance of combining in situ and ex situ conservation approaches and emphasises the role of poultry gene banks as strategic tools for safeguarding genetic diversity under climate change conditions. The Oravka breed represents a valuable model for integrated conservation strategies linking biodiversity protection, reproductive biotechnology and sustainable poultry production in Europe. Full article
(This article belongs to the Special Issue Genetic Diversity and Conservation of Local Poultry Breeds)
22 pages, 2875 KB  
Review
Current Applications and Future Prospects of High-Throughput Omics Technologies in Animal Reproductive Biology
by Tlou C. Kujoana and Nthabiseng A. Sebola
Animals 2026, 16(15), 2367; https://doi.org/10.3390/ani16152367 - 3 Aug 2026
Viewed by 356
Abstract
Recent developments and applications of high-throughput omics technologies have modernised animal biotechnology, offering extraordinary comprehension of animal reproduction. The current review discusses the applications and advancement of high-throughput omics technologies in animal reproductive biology. The data for this review were sourced from old [...] Read more.
Recent developments and applications of high-throughput omics technologies have modernised animal biotechnology, offering extraordinary comprehension of animal reproduction. The current review discusses the applications and advancement of high-throughput omics technologies in animal reproductive biology. The data for this review were sourced from old and recently published work in different journals. The internet databases used to access the manuscripts were ResearchGate, Google Scholar, ScienceDirect, Web of Science, PubMed, and the Directory of Open Access Journals. The results showed that omics technologies have been previously used in human biology, and with time, have come to be introduced in animal reproductive biology. Studies using these technologies showed that genomics analysis identified at least 180 CNVs and 49 candidate genes enriched in vital fertility pathways, including retinol metabolism, steroid hormone biosynthesis, and Hippo signalling, while transcriptomics analysis screened the molecular dynamics of reproductive indicators at both the cellular and molecular levels. Pig oocytes matured in vitro or in vivo were subjected to transcriptome analysis. These analyses generate large amounts of ‘Big Data’. As a result, omics can handle large amounts of data generated through the analyses, but it needs bioinformatics experts and advanced computers, making it less affordable at the farm level. However, widely utilised technologies, including assisted reproductive technologies (ARTs), have hit their limit after years of use. To break this plateau of traditional ARTs, future research must give integrative ARTs and high-throughput omics technologies top priority, as they have clearly been shown to improve farm animals’ reproductive success. The synergy of increased reproductive efficiency and a smaller ecological footprint is crucial for improving the accuracy and sustainability of livestock systems, ultimately promoting global food security. Full article
(This article belongs to the Section Animal Reproduction)
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12 pages, 14579 KB  
Article
Putrescine-Mediated Modulation of Morphological and Reproductive Differentiation During Direct In Vitro Regeneration of Rosa chinensis cv. Old Blush
by Arash Zahedi, Mahyar Gerami and Mahboubeh Davoudi Pahnekolayi
Biology 2026, 15(15), 1266; https://doi.org/10.3390/biology15151266 - 2 Aug 2026
Viewed by 278
Abstract
In vitro regeneration and flowering systems provide valuable platforms for rose breeding and biotechnological applications. Although the effects of plant growth regulators (PGRs) on Rose regeneration have been extensively studied, the contribution of growth additives, either alone or in combination with PGRs, remains [...] Read more.
In vitro regeneration and flowering systems provide valuable platforms for rose breeding and biotechnological applications. Although the effects of plant growth regulators (PGRs) on Rose regeneration have been extensively studied, the contribution of growth additives, either alone or in combination with PGRs, remains insufficiently understood in Rosa chinensis. This study investigated the effects of PGRs (6-Benzylaminopurine (BAP), 1-Naphthaleneacetic acid (NAA), and indole-butyric acid (IBA)) combined with three growth additives, putrescine (Put), phloroglucinol (PG), and casein hydrolysate (CH), at different concentrations on the vegetative and reproductive responses of R. chinensis in an in vitro system. No flowering occurred in media without PGRs, regardless of the growth additive treatment, highlighting the essential role of PGRs in floral induction. However, the integration of growth additives with PGRs significantly enhanced regeneration and flowering performance. Among the tested additives, Put showed the strongest stimulatory effect, increasing in vitro flower production and improving floral characteristics. PG promoted several morphological traits, including shoot regeneration and flower stem elongation, but was less effective than Put. CH exhibited limited effects on both vegetative growth and reproductive development. These findings indicate that Put supplementation in PGR-based media is an effective approach for improving regeneration and flowering efficiency in R. chinensis, with potential applications in rose biotechnology and breeding programs. Full article
(This article belongs to the Section Plant Science)
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39 pages, 6195 KB  
Review
Current Advances in Cetacean Semen Cryopreservation and Their Application to Yangtze Finless Porpoise Conservation
by Qingyue Wang, Congping Ying, Chu Wang, Jialu Zhang, Danqing Lin, Kai Liu and Shengyan Su
Animals 2026, 16(14), 2191; https://doi.org/10.3390/ani16142191 - 14 Jul 2026
Viewed by 520
Abstract
Cryopreservation of semen is an important interdisciplinary field at the intersection of reproductive biotechnology and cryobiology, and holds significant value for the genetic rescue of endangered species, long-term preservation of germplasm resources, and management of reproduction in livestock and aquaculture. Although this technology [...] Read more.
Cryopreservation of semen is an important interdisciplinary field at the intersection of reproductive biotechnology and cryobiology, and holds significant value for the genetic rescue of endangered species, long-term preservation of germplasm resources, and management of reproduction in livestock and aquaculture. Although this technology is relatively well established in fish and terrestrial mammals, it still faces numerous challenges in marine mammals, particularly cetaceans. The Yangtze finless porpoise (Neophocaena asiaeorientalis asiaeorientalis), a rare and endemic freshwater porpoise of China, remains at an early stage of research regarding semen cryopreservation, and there is an urgent need to develop a technical system tailored to its unique physiological characteristics. Literature was searched in PubMed, Web of Science, and CNKI from database inception to May 2025. This structured narrative review was based on 77 core publications, including eight original studies on cetacean semen cryopreservation. This structured narrative review synthesizes evidence from cetacean semen cryopreservation research, with particular emphasis on technical insights from the bottlenose dolphin (Tursiops truncatus), Pacific white-sided dolphin (Lagenorhynchus obliquidens), killer whale (Orcinus orca), and beluga (Delphinapterus leucas). Additionally, it incorporates advances in extender formulations and cryoprotectants from studies on other species to summarize key technical parameters suitable for the cryopreservation of Yangtze finless porpoise semen, aiming to provide a theoretical basis and practical framework for establishing an efficient and safe cryopreservation system for this species. Full article
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21 pages, 8152 KB  
Review
Genomics and Reproductive Biotechnologies in Goat Production Systems in Peru
by Yolanda Romero, Emmanuel Alexander Sessarego, René Pinazo-Herencia and Juancarlos Cruz-Luis
Ruminants 2026, 6(2), 37; https://doi.org/10.3390/ruminants6020037 - 1 Jun 2026
Viewed by 3172
Abstract
Goat production in Peru is primarily carried out under extensive systems shaped by climatic variability, forage seasonality, infrastructure limitations, and persistent sanitary pressure. In this context, Creole goats represent a strategic animal genetic resource due to their capacity to adapt to arid and [...] Read more.
Goat production in Peru is primarily carried out under extensive systems shaped by climatic variability, forage seasonality, infrastructure limitations, and persistent sanitary pressure. In this context, Creole goats represent a strategic animal genetic resource due to their capacity to adapt to arid and high-Andean environments. This review integrates the available evidence on production typologies in the main goat-producing regions of the country, the major sanitary and structural bottlenecks, and the state of the art of genomic, multi-omics, and reproductive biotechnology tools applicable to goats. It discusses how the transition from traditional markers to SNP genotyping, together with functional approaches such as microbiome analysis, transcriptomics, and proteomics, can contribute to understanding the biological basis of complex traits related to resilience, feed efficiency, and reproductive performance. Likewise, the potential of precision livestock farming to generate longitudinal phenotypes and strengthen genetic improvement programs in low-input systems is highlighted. Finally, priorities and considerations are outlined to advance the integration of phenotyping, genomics, and reproductive biotechnologies in extensive contexts, with emphasis on the generation of systematic data, interinstitutional coordination, and technology transfer aimed at the sustainability and conservation of goat resources. These insights may also inform genetic improvement strategies in other developing countries facing similar environmental and structural constraints in low-input goat production systems, particularly in arid and semi-arid regions. Full article
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23 pages, 2566 KB  
Review
Fertility Management in Pollinators: Queen Storage, Transport, and Reproductive Resilience in Apis mellifera Under Commercial and Environmental Stressors
by Zunair Ahsan, Faouzi Haouala, Usama Abdullah, Umar Sajid Kayani and Mokhtar Rejili
Insects 2026, 17(6), 557; https://doi.org/10.3390/insects17060557 - 28 May 2026
Viewed by 660
Abstract
As the only reproductive female in the colony, the honey bee queen (Apis mellifera) is essential to colony survival, productivity, and the sustainability of pollination services that underpin food security and global agriculture. The biological, physiological, molecular, and commercial elements that [...] Read more.
As the only reproductive female in the colony, the honey bee queen (Apis mellifera) is essential to colony survival, productivity, and the sustainability of pollination services that underpin food security and global agriculture. The biological, physiological, molecular, and commercial elements that affect queen fertility throughout the commercial lifecycle, from mating and development to sperm storage, banking, transportation, and colony establishment, are examined in this review. According to available data, successful queen reproduction depends on effective mating, long-term sperm viability in the spermatheca, stable hormonal regulation, and adequate nutritional and environmental support. However, a number of interrelated stressors, including temperature changes during storage and transportation, confinement, inadequate nutrition, pesticides, pathogens, parasites, and climate-related pressures, can reduce sperm viability, impair ovarian function, and increase colony losses. Precision apiculture, cryopreservation, instrumental insemination, and omics-based biomarkers are examples of emerging technologies that offer promising techniques to enhance queen resilience and commercial management. However, there are still significant information gaps, especially in the areas of integrated multi-omics techniques across the commercial lifespan and standardized queen-quality evaluation. Future advancements are needed to preserve queen fertility and protect pollination services. This will require integrating reproductive physiology, biotechnology, and commercial management to build climate-resilient, biosecure, and sustainable systems. Full article
(This article belongs to the Section Social Insects and Apiculture)
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32 pages, 3024 KB  
Article
Salinity Mitigation in Tomato Using a Halophilic Endophytic Consortium by Seed Priming: From Germination to Production
by Ma. del Carmen Ángeles González-Chávez, Jesús Adrián Barajas González, Rogelio Carrillo-González and Yazmín Stefany Perea Vélez
Agronomy 2026, 16(11), 1039; https://doi.org/10.3390/agronomy16111039 - 24 May 2026
Viewed by 356
Abstract
Salinity is a critical agricultural threat that reduces the productivity of several crops. Tomato (Solanum lycopersicum) is the world’s second most significant horticultural commodity, which struggles due to salt concentrations in irrigation water, even in hydroponic systems. This research evaluated seed [...] Read more.
Salinity is a critical agricultural threat that reduces the productivity of several crops. Tomato (Solanum lycopersicum) is the world’s second most significant horticultural commodity, which struggles due to salt concentrations in irrigation water, even in hydroponic systems. This research evaluated seed priming treatments (hydro-, halo-, bacterio-, and halo-bacteriopriming) at different phenological stages under two salinity conditions (0 and 16 mM NaCl) to improve crop production. After evaluating physiological variables and multivariate statistical analyses, this study’s main breakthroughs are: Priming treatments modified the physiological, nutritional, and productive metabolism of tomato plants. Bacterio- and halo-bacteriopriming using an endophytic and halophytic bacterial consortium reduced germination time, enhancing uniformity and synchronizing seedling emergence. Bacteriopriming enhanced N, P, Ca and Zn absorption in seedlings. In the vegetative and reproductive stages, bacteriopriming consistently increased concentrations of K, Mg, and Zn in leaves and fruits but depleted Na uptake. Improving the nutritional balance resulted in not only a higher concentration of chlorophyll but also an increase in the yield and beta-carotene concentration in tomato fruits. The results demonstrated that halo-bacteriopriming may be a biotechnological strategy for mitigating saline stress, optimizing tomato growth and nutraceutical quality, because it outperformed the plant response in all stages of development compared to the control and hydro- and haloprimed treatments. Full article
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19 pages, 9831 KB  
Article
Effect of Low-Temperature Plasma on Porcine Oocytes In Vitro Primary Culture
by Yuhan Wang, Panpan Guo, Haoyu Fang, Tingting Lu and Wencheng Song
Antioxidants 2026, 15(5), 609; https://doi.org/10.3390/antiox15050609 - 12 May 2026
Viewed by 641
Abstract
The effective growth and maturation of porcine oocytes in vitro are critical for advancing reproductive biotechnologies. In this study, we explored low-temperature plasma (LTP) treatment as a redox modulation strategy to enhance the survival and maturation of denuded porcine oocytes during in vitro [...] Read more.
The effective growth and maturation of porcine oocytes in vitro are critical for advancing reproductive biotechnologies. In this study, we explored low-temperature plasma (LTP) treatment as a redox modulation strategy to enhance the survival and maturation of denuded porcine oocytes during in vitro primary culture in order to improve animal cellular health through innovative interventions. Freshly isolated oocytes were exposed to plasma treatment for different lengths of time and subsequently cultured under established in vitro conditions. Morphological and redox-related analyses showed that LTP treatment was associated with increased oocyte diameter, a higher first polar body extrusion rate, mitochondrial membrane potential changes, and altered intracellular and extracellular redox-related parameters. These beneficial effects exhibited a distinct time-dependent dose–response pattern. Furthermore, Western blot analysis showed altered expression of the EGFR/ERK signaling cascade and proteins such as Nrf2, suggesting that LTP treatment might participate in the regulation of maturation-related responses in porcine oocytes cultured in vitro by inducing redox-associated changes, along with alterations in EGFR/ERK-related signaling, Nrf2 expression, and molecules involved in maturation and apoptosis. Collectively, these findings highlight the positive role of LTP in supporting porcine oocyte maturation during in vitro primary culture and provide a promising approach for optimizing the in vitro primary culture of porcine oocytes. Full article
(This article belongs to the Special Issue Redox Homeostasis in Poultry/Animal Production―2nd Edition)
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12 pages, 857 KB  
Article
Comparative Evaluation of Methods of DNA Extraction from Cryopreserved Bovine Semen for Molecular Diagnostic Applications
by Carlos A. Ramos-Jonapá, Lily X. Zelaya-Molina, Luis Felipe Guzmán, Edgar I. González-Jiménez, David Urbán-Duarte, Horacio Álvarez-Gallardo and Francisco J. Padilla-Ramírez
Methods Protoc. 2026, 9(3), 75; https://doi.org/10.3390/mps9030075 - 9 May 2026
Viewed by 899
Abstract
Cryopreserved bovine semen represents an accessible source of genetic material due to its widespread use in assisted reproductive technologies and the conservation of genetically valuable animals. However, DNA extraction from spermatozoa within this type of sample remains challenging due to the high protein [...] Read more.
Cryopreserved bovine semen represents an accessible source of genetic material due to its widespread use in assisted reproductive technologies and the conservation of genetically valuable animals. However, DNA extraction from spermatozoa within this type of sample remains challenging due to the high protein content and the complex structure of the ejaculate, which can affect DNA yield and quality. The aim of this study was to identify and validate an efficient method for obtaining high-quality DNA from spermatozoa present in cryopreserved bovine semen for molecular diagnostic applications. Five DNA extraction protocols were evaluated: TRIzol™, MagMax™ Nucleic Acid Purification Kit, Rapid DNA™ Fecal/Soil Microbe Kit, a conventional phenol–chloroform protocol, and a modified phenol–chloroform–isoamyl alcohol protocol. All extracted genetic material was assessed by spectrophotometry (concentration and purity), and DNA integrity was evaluated by agarose gel electrophoresis. Statistical analysis revealed significant differences in DNA concentration among extraction methods (Friedman test, χ2 = 22.0, df = 4, p = 0.0002). Post hoc comparisons indicated that the modified phenol–chloroform–isoamyl alcohol protocol yielded significantly higher DNA concentrations compared to selected methods. This protocol showed the highest DNA concentration (1006.2 ± 829.4 ng/μL) and favorable purity values, and enabled consistent amplification in both conventional PCR and qPCR assays targeting the β-actin gene and Tritrichomonas foetus, respectively. These findings suggest that the modified protocol represents a suitable and promising approach for extracting genomic DNA from spermatozoa in cryopreserved bovine semen, with potential applications in molecular diagnostics and reproductive biotechnology. Full article
(This article belongs to the Section Molecular and Cellular Biology)
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14 pages, 1577 KB  
Review
GDSL Lipases/Esterases: Versatile Regulators of Plant Development and Stress Resilience
by Ke Dong, Rehman Sarwar, Yuanxue Liang, Wei Zhang, Rui Geng, Wenlong Jiang, Xiang Fan and Xiao-Li Tan
Int. J. Mol. Sci. 2026, 27(9), 3872; https://doi.org/10.3390/ijms27093872 - 27 Apr 2026
Viewed by 1004
Abstract
GDSL esterase/lipase (GELP) proteins constitute an evolutionarily conserved yet functionally diversified hydrolase family in land plants. They participate in cuticle and secondary cell wall biosynthesis, seed lipid remobilization, reproductive development, and hormone-mediated responses to biotic and abiotic stresses. Despite extensive genome-wide and comparative [...] Read more.
GDSL esterase/lipase (GELP) proteins constitute an evolutionarily conserved yet functionally diversified hydrolase family in land plants. They participate in cuticle and secondary cell wall biosynthesis, seed lipid remobilization, reproductive development, and hormone-mediated responses to biotic and abiotic stresses. Despite extensive genome-wide and comparative genomic studies that have categorized large GELPs across numerous crops and model species, only a fraction of members have been functionally characterized in plants, and their catalytic mechanisms and regulatory architectures remain poorly understood. Recent population genomics and cross-species orthogroup analyses in 46 angiosperms have uncovered substantial natural variation within GELP coding sequences and regulatory regions, providing a powerful framework to link allelic diversity to evolutionary trajectories and physiological functions. This review synthesizes current knowledge on GELP evolution, biochemical properties, and roles in development and stress adaptation, and critically evaluates how these insights can be translated into biotechnology and molecular breeding strategies. It highlights emerging resources and concepts from orthogroup-based classification and multi-species datasets that enable systematic discovery of GELP alleles affecting agronomic traits. It further outlines research exploiting GELPs in crop improvement, emphasizing the integration of reverse and forward genetics with multi-omics profiling, biochemical and structural characterization, and gene regulatory network reconstruction. Systematic assessment of the phenotypic impacts of single and combinatorial GELP perturbations on yield, quality, and stress resilience is proposed as a key step toward translating basic insights into breeding and engineering strategies. Full article
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10 pages, 231 KB  
Editorial
Topic “Application of Reproductive and Genomic Biotechnologies for Livestock Breeding and Selection”
by Pedro M. Aponte and Manuel Garcia-Herreros
Int. J. Mol. Sci. 2026, 27(8), 3439; https://doi.org/10.3390/ijms27083439 - 11 Apr 2026
Viewed by 1053
Abstract
The escalating global demand for animal products—meat, milk, and eggs—requires sustained advances in the efficiency, sustainability, and biological performance of livestock production systems [...] Full article
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