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Will cultural and regulatory forest services provide enough balance to provisioning services in forest enterprise portfolios in future? Marketing case studies of selected forest enterprises in SlovakiaOriginal PaperAlex Bumbera, Daniel Halaj, Iveta HajdúchováJ. For. Sci., 2025, 71(2):59-71 | DOI: 10.17221/68/2024-JFS The study aims to identify the difference between the current and future strategic management of forest ecosystem services (FES) portfolios in public enterprises of Slovakia. The case studies focus on forest enterprises in Ko¹ice, Banská ©tiavnica, Kremnica, and Bratislava, representing the best practice examples of providing cultural services in the country. A marketing decision-making model, Boston Consulting Group (BCG) matrix, was used to analyse each company's current FES portfolio. Content analysis assessed the data collected from interviews with managers of the public forest enterprises. Duncker's forest management approaches classification was applied to evaluate the future strategic management of the FES portfolio, and a horizon of 10 years was set. According to the results, the urban forest enterprise in Bratislava is an example of receiving a subsidy from the capital for building and reconstructing recreational facilities. Therefore, this FES portfolio is and will be the most balanced. The portfolio of the forest enterprises in Ko¹ice, Kremnica, and Banská ©tiavnica will remain unchanged for the next decade, and they plan to use a combination management approach that caters to economic, ecological, and social needs and objectives. Urban forests in Bratislava will focus even more on close-to-nature forestry. |
List of reviewers 2024List of reviewersEditorial DepartmentJ. For. Sci., 2025, 71(1):I-II |
List of reviewers 2024Editorial DepartmentAgric. Econ. - Czech, 2025, 71(1):I-III |
Bridging credit gaps for sustainable agriculture: The role of rural savings and credit cooperatives among smallholder farmersOriginal PaperGershom Endelani Mwalupaso, Shangao Wang, Xianhui Geng, Shadrack KipkogeiAgric. Econ. - Czech, 2025, 71(5):254-272 | DOI: 10.17221/436/2024-AGRICECON Despite the recognised benefits of climate smart agriculture (CSA) in enhancing farmers' adaptive capacity to climate risks, adoption rates remain low in Sub-Saharan Africa. This disparity can be attributed, in part, to the significant challenges smallholder farmers face in accessing credit from the formal financial sector. In response, Rural Saving and Credit Cooperatives (RUSACCOs) have emerged as crucial sources of funding for both household expenses and agricultural activities. However, despite their increasing importance in improving financial inclusion, little is known about whether participation in RUSACCOs can help alleviate existing credit constraints and promote the adoption of CSA among smallholder farmers. To address this knowledge gap, we employ a recursive bivariate probit (RBP) and propensity score matching (PSM) analysis using data from 400 randomly selected smallholder farmers in Zambia. The analysis controls for three main sources of endogeneity: program placement, endogenous covariates, and self-selection. Our findings indicate that participation in RUSACCOs has the potential to mitigate farmers' credit constraints by 42% and facilitate CSA adoption by 25%. Notably, the alleviation of existing credit constraints is associated with a 14% increase in CSA adoption. These results underscore the previously overlooked role of RUSACCOs in promoting agricultural sustainability. By effectively addressing financial inclusion barriers and providing access to practical agricultural knowledge, RUSACCOs can contribute to reducing the vulnerability of agriculture while fostering sustainable production. Our study suggests that repurposing RUSACCOs to emphasise financial inclusion and promote access to agricultural learning platforms can yield triple benefits: agricultural, environmental, and livelihood sustainability. |
Revealing the challenges and prospects of Asian rice gall midge resistance in riceReviewSivasubramaniyan Sathishkumar, Loganathan Arul, Swaminathan Manonmani, Sheela Venugopal, Jagadeesan RamalingamPlant Protect. Sci., 2025, 61(4):305-325 | DOI: 10.17221/159/2024-PPS
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Role of glycine betaine in mitigating salt-induced oxidative stress in Vigna radiataOriginal PaperKhalid H. AlamerPlant Soil Environ., 2026, 72(1):1-15 | DOI: 10.17221/451/2025-PSE The impact of exogenously applied glycine betaine (GB; 0, 5, 10, 20 and 50 mmol) was evaluated in preventing Vigna radiata from the adverse effects of salt (100 mmol NaCl) stress. Salinity reduced growth parameters, such as plant height and fresh and dry weight of plants, while GB application significantly alleviated the decline. Salinity stress led to a decline in total chlorophylls and carotenoids, as well as a reduction in the net photosynthetic rate and gas exchange attributes, including stomatal conductance, transpiration rate, and intercellular CO2. However, GB supplementation significantly alleviated this decline. Salinity stress increased the accumulation of hydrogen peroxide, superoxide and methylglyoxal, while as applied GB reduced their accumulation, causing a significant decline in the lipid peroxidation. Application of GB, at all concentrations, increased the activity of the antioxidant enzymes under normal and salinity stress treatments with 10 and 20 mmol concentrations, imparting the highest increase. Increase in the radical scavenging activity due to GB application was also supported by increased total antioxidant activity assays measured as percent DPPH and ABTS radical scavenging. In addition, GB-supplemented plants exhibited an apparent increase in the activities of glyoxalase I and glyoxalase II enzymes. Accumulation of osmotic compounds like proline, sugars and GB increased significantly due to GB application and showed a further increase in salt-stressed plants. More importantly, the GB-treated plants exhibited a considerable decline in sodium accumulation, causing a decline Na/K in them. Glycine betaine was effective in mitigating the deleterious effects of salinity. |
List of Reviewers 2024List of reviewersEditorial OfficeHort. Sci. (Prague), 2025, 52(1) |
List of varieties registered in the Czech Republic in 2024New VarietiesTomá¹ MezlíkCzech J. Genet. Plant Breed., 2025, 61(2):110-112 | DOI: 10.17221/16/2025-CJGPB |
The role of seed transmission in the spread of cereal viruses: Global challenges and prevalent threats in UkraineReviewHalyna Snihur, Tetiana Shevchenko, Oleksiy Shevchenko, Anhelina KyrychenkoPlant Protect. Sci., 2025, 61(3):201-221 | DOI: 10.17221/51/2025-PPS The transmission of plant viruses through seed plays a fundamental role in virus spread, persistence, and survival, particularly in economically important crops. Besides its considerable ecological significance, seed transmission influences plant and virus evolution. Virus contamination of the seed also has critical epidemiological implications, especially when combined with subsequent or additional insect vector spread. Plants grown from contaminated seeds serve as primary viral inoculum sources, facilitating the introduction of viruses into new regions and triggering disease outbreaks with substantial economic losses for growers. Changes in environmental conditions increasingly influence plant virus epidemiology by affecting vector populations, host susceptibility, and transmission dynamics, thus increasing virus transmission risks in cereal crops. This review explores the mechanisms of seed transmission and its consequences, with a focus on key cereal viruses in Ukraine: barley stripe mosaic virus, wheat streak mosaic virus, High Plains wheat mosaic virus, sugarcane mosaic virus, and maize dwarf mosaic virus. Hereby, the biological properties of these viruses, the risks posed by seed transmission, and the economic impact on crop production are discussed. Given the widespread distribution of these pathogens, presented data will also be valuable for other cereal-growing regions, particularly those bordering Ukraine and engaged in seed import/export. This review underscores the global need to manage seed-transmitted viruses to safeguard cereal crop productivity and food security. Future research should focus on developing resistant cultivars and advanced diagnostics to control their spread. |
Flavonoids as bio-insecticides: Harnessing plant metabolites as a biochemical shield against insectsReviewThamaraikannan Sivakumar, Sunilkumar Devanathan, Parthasarathi Ganesan, Kavithamani Duraisamy, Murugan Marimuthu, Vellaikumar Sampathrajan, Karthikeyan Adhimoolam, Senthil Natesan (ORCIPlant Protect. Sci., 2026, 62(3):191-209 | DOI: 10.17221/56/2025-PPS The global decline in crop production poses a significant threat to food security, particularly in the context of a growing human population. Among various environmental constraints on agriculture, biotic stress, particularly that caused by insect pests, remains a major reason for yield losses. Traditionally, synthetic pesticides have been used to manage insect infestations; however, their excessive and non-targeted application has raised serious concerns regarding environmental pollution, adverse health effects, and the accelerated development of pesticide-resistant pest populations. In this context, plant-derived biocactive compounds, particularly flavonoids, have emerged as promising bioinsecticides due to their potent insecticidal properties. Flavonoids, a diverse group of secondary metabolites found abundantly in plants, exhibit strong insecticidal activity by disrupting insect digestion, interfering with nutrient absorption, and inhibiting growth and metamorphosis. These bioactive compounds act through multiple mechanisms, reducing the likelihood of resistance development while offering an eco-friendly alternative to conventional chemical pesticides. Additionally, flavonoids contribute to integrated pest management strategies by enhancing plant defence responses and synergising with other bioinsecticides. Despite their potential, research on flavonoid-based insect control remains limited, particularly in terms of their formulation, stability, and large-scale applicability. Further studies are needed to investigate their interactions with insect physiology, optimise delivery methods, and assess their environmental impact. Advancing flavonoid-based bioinsecticides can contribute significantly to sustainable pest management in modern agriculture, reducing dependence on synthetic pesticides while preserving ecosystem balance. This review examines the potential role of flavonoids as biopesticides in pest management, highlighting the existing research gaps and prospects. |
Consumer perceptions of lab-grown cells: Awareness, barriers, and the power of information. A reviewReviewKatalin SzendrõCzech J. Anim. Sci., 2025, 70(6):203-222 | DOI: 10.17221/31/2025-CJAS
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Toxicity of oxalic acid and its toxic effect on antioxidative enzymes in honey bee larvaeOriginal PaperT Majchrak, M Ratvaj, L Sabova, J Toporcak, L MolnarVet Med - Czech, 2025, 70(7):261-271 | DOI: 10.17221/18/2025-VETMED The production of food of plant origin is critically dependent on the pollination ability of honey bees, whose health has been deteriorating for a long time, and whose population is declining. In our in vivo experiment on a honey bee brood at the 4-day larval stage, we tested the following concentrations of oxalic acid: 0% (control – applied distilled water), 0.87%, 1.75%, 3.5% and 7%, corresponding to doses of 0 mg, 2.61 mg, 5.25 mg, 10.5 mg, and 21 mg of oxalic acid per dm2 of honeycomb with the brood. The LC50 values (72 h) ranged between 3.17% and 3.33%. The different LC50 values obtained resulted from three different methods used to calculate this indicator. The therapeutic index (TI) of oxalic acid was set to be 1.1, indicating a high risk to the honey bee brood. We observed an increased gene expression for the detoxifying enzyme glutathione-S-transferase (GST), but did not detect an increased gene expression for superoxide dismutase (SOD1 and SOD2), which protects the organism from oxidative stress. A decrease in gene expression was observed for prophenoloxidase and hymenoptaecin, while defensin and lysozyme did not show significant changes. These results emphasise the need for the accurate dosage and application of oxalic acid in the treatment of varroosis. |
Key features for forest bathing development: A Q-methodology study applied in ItalyOriginal PaperSofia Baldessari, Alessandro Paletto, Giorgia Di Domenico, Valerio Di Stefano, Sandro SacchelliJ. For. Sci., 2025, 71(7):347-357 | DOI: 10.17221/37/2025-JFS Forest bathing is gaining attention for its health and well-being benefits, leading to growing interest among academics, policymakers, and practitioners. While most studies have focused on its physiological and psychological effects, less is known about how different stakeholders perceive the characteristics that make forest bathing effective and meaningful. This study explored expert and non-expert perspectives on forest bathing in Italy through the Q-methodology, aiming to identify shared and divergent views on key aspects such as site features, accessibility, and perceived benefits. The results highlighted four distinct viewpoints: a scientific-health-oriented perspective emphasising medical efficacy (mainly experts); a preference for more naturalness and ecological integrity (mainly non-experts); a possible socio-economic opportunity (mainly non-experts); and a preference for a more managed forest environment with supporting structures (mainly experts). Despite differences, consensus emerged on several points, including the cultural and physical relevance of forest bathing and the importance of inclusive accessibility while preserving low-impact environments. The findings highlighted the potential of Q-methodology to capture the plurality of stakeholder voices, offering a basis for more inclusive planning and policy development in the context of nature-based well-being initiatives. |
Wheat (C3) and maize (C4) adaptive responses to soil thallium toxicity under elevated CO2 conditionsOriginal PaperWael A. Obaid, Samy Selim, Seham M. Hamed, Emad A. Alsherif, Shereen Magdy Korany, Hana Sonbol, Danyah A. Aldailami, Soad K. Al JaouniPlant Soil Environ., 2025, 71(8):534-552 | DOI: 10.17221/239/2025-PSE This study investigated how wheat (C3) and maize (C4) respond to soil thallium (Tl) contamination and elevated CO2 (eCO2), aiming to understand strategies for mitigating oxidative stress. Under eCO2, both crops showed higher biomass production. However, high Tl concentration (120 mg/kg) significantly decreased fresh and dry weights by 31–59%, which translated directly to compromised yield. This growth decline is linked to impaired photosynthesis, evidenced by a 54–57% drop in net photosynthetic rate under elevated Tl. Such photosynthetic inhibition intensifies oxidative stress, marked by increased membrane damage and hydrogen peroxide (H2O2). Furthermore, photorespiration contributed to oxidative stress by generating H2O2, with increased activities of glycolate oxidase and hydroxypyruvate reductase rising by 122% and 201%, in wheat and by 179% and 39% in maize, respectively, in response to 120 mg/kg TI under eCO2 conditions. Simultaneously, to mitigate oxidative damage, antioxidant defences were significantly enhanced, resulting in increased activity of the ascorbate (ASC)/glutathione (GSH) cycle, along with elevated levels of metallothionein and phytochelatin for Tl sequestration, as well as augmented glutathione S-transferase activity. Overall, findings reveal complex interactions between CO2 and Tl, highlighting species-specific adaptive responses of C3 and C4 plants. C3 plants use photorespiration to combat oxidative stress, while C3 and C4 plants have strong antioxidant systems to reduce the effects of oxidative stress, promoting crop resilience and growth despite Tl toxicity. |
Soil macroarthropod dynamics in response to environmental disturbances in a forest remnant ecosystem: A case study at Cibodas Botanical GardenOriginal PaperAnita Rianti, Fenky Marsandi, Taufikurrahman Nasution, Musyarofah Zuhri, Muhammad Efendi, Hari Prayogi, Setyawan Agung Danarto, Hidayatul Fajri, Vivin Silvaliandra Sihombing (ORCJ. For. Sci., 2026, 72(1):1-13 | DOI: 10.17221/38/2025-JFS
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Assessment of genetic diversity and population structure of almond germplasm in Van Province, Türkiye, using iPBS-retrotransposon-based markersOriginal PaperBerna Sarman, Metin KoçakCzech J. Genet. Plant Breed., 2026, 62(3):135-145 | DOI: 10.17221/12/2026-CJGPB The genetic characterisation of naturally occurring almond genotypes can guide the selection of genetic resources to be used in the breeding programme. Therefore, this study aims to assess the genetic diversity and population structure of almond germplasm comprising 50 accessions naturally occurring in Van, Türkiye, along with two commercial varieties (Pabuç and Dokuzoğuz). Thirteen inter-primer binding site (iPBS) retrotransposon markers generated a total of 102 bands, of which 95 were polymorphic. The average polymorphic band number per marker was 7.3, with a range of 5 to 13. A formula yielding a maximum of 0.5 resulted in polymorphic information content (PIC) values between 0.27 and 0.43, with a mean value of 0.36. Unweighted pair group method algorithm (UPGMA), principal coordinate analysis (PCoA), and STRUCTURE analysis, based on Bayesian clustering analysis, yielded consistent results, indicating that local populations (Akdamar and Çarpanak) were distinctly grouped, while commercial accessions were clustered with Çarpanak accessions. The diversity metrics and classification analysis utilising 13 iPBS-retrotransposon markers demonstrated that the iPBS-retrotransposon marker system possesses significant promise for evaluating the genetic variety and population structure of almonds. |
Beta-hydroxy-beta-methylbutyrate in functional food ingredients: An overview of biosynthesis, metabolic mechanisms and applicationsReviewXizi Zhang, Huijing Zhang, Jiaxing Li, Chenchen Qi, Di Zhang, Wei Chen, Chengtao WangCzech J. Food Sci., 2026, 44(1):1-15 | DOI: 10.17221/88/2025-CJFS β-Hydroxy-β-methylbutyrate (HMB) is a metabolite of the essential amino acid leucine, which can be produced naturally in mammals and is also found in trace amounts in citrus fruits and fish. Studies have shown that HMB plays an important role in maintaining human health by improving muscle health and inhibiting muscle catabolism. This review summarises the synthesis and metabolism of HMB and discusses its potential use as a nutrient, highlighting and analysing the importance of HMB supplementation for athletes' physical recovery and the treatment of muscular dystrophy-related diseases between 2019 and 2025. This study will help us to deepen our understanding of the application of HMB as a dietary supplement for the treatment of different diseases, providing the latest insights into its sustainability. |
Discovering complex pesticide pollution in river water irrigated soil/groundwater systems: From targeted analyses to non-targeted screening and backOriginal PaperAlina Sadchenko, Petra Nováková, Ale¹ Klement, Miroslav Fér, Antonín Nikodem, Vít Kode¹, Radka Kode¹ová, Roman Grabic[Ahead of Print]CAAS Agricultural Journals, X:X | DOI: 10.17221/30/2026-SWR Pesticides and their transformation products are increasingly detected in agricultural soils and surface waters, raising concerns about their persistence, mobility, and ecological impacts. Irrigation with river water contaminated by agricultural runoff represents a significant but understudied pathway contributing to soil pollution. In this study, we investigated pesticide occurrence across soils, irrigation water, and groundwater in three intensively cultivated river basins. Soil samples from vegetable-producing fields exhibited complex contamination profiles, with 12–40 co-occurring compounds and total residues frequently exceeding levels reported for European arable soils. Several pesticides, including pendimethalin, mandipropamid, and azoxystrobin, were found at notably high concentrations, with some soils surpassing 5 000 µg/kg. Comparison of detection frequencies across matrices revealed diverse transport and retention behaviour: while certain legacy compounds (e.g., atrazine metabolites) were ubiquitous in both surface and groundwater, others showed strong soil accumulation with limited mobility. Irrigation water was identified as a non-negligible contamination source, particularly for persistent and mobile substances, although direct field applications remained the dominant contributor to peak soil concentrations. By integrating targeted and non-target screening, this study provides the most comprehensive assessment to date of pesticide burdens in riverirrigated agricultural soils and highlights the need for improved monitoring strategies in systems where soil and water pollution are tightly interconnected. |
Decoupling of stomatal and mesophyll recovery drives photosynthetic resilience to water deficit in sugar beet: evidence from multiscale structural and functional traitsOriginal PaperYangyang Li, Zengyuan Tian, Jixia Su, Kaiyong Wang, Pengpeng Zhang, Hua FanPlant Soil Environ., 2026, 72(1):49-65 | DOI: 10.17221/564/2025-PSE Water deficit severely constrains sugar beet productivity by impairing photosynthetic capacity. However, the underlying structure-function mechanisms conferring photosynthetic resilience remain poorly characterised. This study investigates the temporal dynamics of photosynthetic limitations and structural adaptations in sugar beet during water deficit and subsequent rehydration. We found that water deficit significantly reduced the maximum net CO2 assimilation rate (ANmax) and the Rubisco carboxylation rate (Vcmax) by impairing CO2 diffusion and biochemical processes. The reduction in photosynthetic capacity is primarily and stably attributed to mesophyll limitation, while contributions from stomatal and biochemical limitations flexibly change with deficit degree and rehydration. Severe water deficit caused irreversible structural damage that hinders recovery even after rehydration, while moderate water deficit allows partial restoration of leaf and chloroplast function. Partial least squares structural equation modelling (PLS-SEM) demonstrated that CO2 diffusion was governed by the volume fraction of intercellular air space (fias, β = 0.28) and surface areas of the chloroplasts exposed to leaf intercellular air spaces (Sc/S, β = 0.35), with Sc/S indirectly influencing mesophyll conductance (gm) through fias mediation (β = 0.53). Severe water deficit caused irreversible fias reduction and chloroplast interface damage (59% cell volume loss). These findings establish that resilience to water deficit in sugar beet depends on mesophyll structural integrity, with fias and Sc/S as key modulators of gm recovery. The study advances understanding of stress recovery mechanisms in sugar beet and provides a framework for multiscale crop improvement in the context of climate change. |
Coppice forests: Between management, conversion and restorationReviewValeriu-Norocel Nicolescu, Gavriil Spyroglou, Sanja Periæ, Martina Ðodan, Cornelia Buzatu-Goanțã, Milun Krstic, Joao Carvalho, Iryna Matsiakh, Halil Bariº Özel (ORCID:J. For. Sci., 2026, 72(2):57-72 | DOI: 10.17221/5/2026-JFS
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Effect of bacteriophages on growth performance and health indicators in broiler chickens in the absence of bacterial challenge – A reviewReviewMA Mohd Shaufi, SL Chia, H Abu Hassim, MT Yusof, MA Akbar, AAL Song, S MustafaVet Med - Czech, 2026, 71(2):35-53 | DOI: 10.17221/5/2025-VETMED This review examines bacteriophages as alternatives to antibiotic growth promoters (AGPs) in broiler chickens, with a unique focus on effects observed in studies without experimental bacterial challenges. Driven by global antimicrobial resistance (AMR) concerns and sustainable poultry production demands, phage supplementation, a targeted strategy, potentially improves growth performance and gut health by preserving beneficial microbiota. This literature analysis assesses phage efficacy in healthy broilers under non-challenge conditions, evaluating key variables such as phage concentration, delivery, and targets, as well as outcomes such as feed conversion ratio (FCR) and gut health markers. Crucially, this review extends beyond efficacy to explore phage immunomodulatory capabilities, outlines optimisation strategies, and addresses risks and mitigation. Key findings show mixed efficacy of phages in non-challenged broilers: significant improvements in FCR and gut health were generally observed with high phage concentrations (e.g., ≥108 PFU/g) and continuous delivery protocols, whereas lower doses yielded inconsistent or minimal benefits. Furthermore, choosing which bacteria phages target – for example, aiming at pathogens like Salmonella or managing common gut bacteria such as E. coli – greatly impacts outcomes. While phages show considerable potential as AGP alternatives, the review highlights that further research is vital to resolve inconsistencies, standardise protocols, and understand host genetic and environmental influences to optimise their commercial application. |
Long-term effects of organic and mineral fertilisation on soil manganese dynamics and agricultural sustainabilityOriginal PaperSarfo Kwaku Obeng, Martin Kulhánek, Jiøí Balík, Jindøich Èerný, Ondøej SedláøPlant Soil Environ., 2026, 72(3):155-164 | DOI: 10.17221/562/2025-PSE Manganese (Mn) is often underestimated in plant nutrition. Its availability to plants is influenced by several factors, which can lead to Mn deficiency or toxicity. The objective was to evaluate the transformation of soil Mn over 21 years in a long-term field experiment. Fertilising with (i) sewage sludge 1 (SS1); (ii) sewage sludge 3 (3 times higher nitrogen (N) dose, SS3); (iii) farmyard manure (FYM); (iv) mineral nitrogen, phosphorus and potassium (NPK) and (v) mineral nitrogen in addition to straw (Nst) was studied to evaluate the transformations of Mn in soil using different extraction methods at the 5 locations. There was a general reduction in the pH during the experiment. Soil acidification caused by mineral N fertiliser increased the bioavailable Mn forms under NPK treatment. This Mn was mobilised from soil reserves, leading to depletion of Mn sources. Application of SS and FYM led to an increase in non-bioavailable Mn fractions, while the expected increase in biologically available Mn was not observed. As the high pH of soil limits Mn availability, foliar Mn application can be recommended for agricultural practice in high-pH soils. On the contrary, liming can be recommended for low-pH soil with high bioavailable Mn content to mitigate the risk of Mn toxicity. |
Research on the optimal design and process parameters of a castor seed cleaning machineOriginal PaperElchyn Aliiev, Valentyn Holovchenko, Olha AliievaRes. Agr. Eng., 2026, 72(1):41-58 | DOI: 10.17221/121/2025-RAE
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A reproducible rat model for warfarin studies: Prothrombin time assessment with minimal blood using the CoaguChek XS and determination of an effective warfarin dosageOriginal PaperET Akyol, MT Hekim, M ErolVet Med - Czech, 2026, 71(6):245-253 | DOI: 10.17221/4/2026-VETMED Warfarin research in rats is often challenged by methodological inconsistencies and large blood volume requirements. This study aimed to validate a refined, reproducible rat model for serial prothrombin time (PT) monitoring using the CoaguChek XS, in alignment with the 3R principles, and to determine an effective warfarin sodium dosage. Male Wistar albino rats received daily oral warfarin (0.125–0.750 mg/kg) for 5 days. PT was measured using the whole-blood CoaguChek XS and two laboratory plasma assays (Innovin, Thromborel S). Agreement was assessed using Bland–Altman and Passing–Bablok regression. The CoaguChek XS consistently yielded higher PT values than laboratory tests but showed strong agreement up to 25 seconds. A daily dose of 0.125 mg/kg resulted in a stable anticoagulant effect without mortality. Doses Doses of 0.250 mg/kg and higher were toxic, causing PT prolongation beyond the device’s range and high mortality within 4–7 days after the initiation of treatment. In conclusion, the CoaguChek XS is a reliable tool for experiments requiring repeated measurements. Values remain reliable up to 25 s, and 0.125 mg/kg is a safe dose for short-term studies, effectively supporting animal welfare and the 3R principles. |
An investigation of the presence of Xylella fastidiosa in Cicadomorpha specimens collected in different habitats in PolandOriginal PaperMonika Ka³u¿na, Gra¿yna Soika, Wojciech WarabiedaPlant Protect. Sci., 2026, 62(2):146-162 | DOI: 10.17221/207/2024-PPS
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Assessing the links between climate change resiliency and food security in northwestern region of BangladeshOriginal PaperAbhi Sarker, Salman Ibn Yasin, Bikash Chandra Ghosh, Gershom Endelani Mwalupaso, Asma Akter, Emmanuel Kiprop, Liu Zhenzhen, Farjana Eyasmin, Geng XianhuiAgric. Econ. - Czech, 2026, 72(6):358-380 | DOI: 10.17221/218/2025-AGRICECON Climate change is intensifying threats to food security across the developing countries, pushing vulnerable nations like Bangladesh towards a breaking point – where resilience is no longer an option but a survival imperative. Despite growing concerns, however limited empirical research exists on how climate resilience influences food security across rural and urban farming households. This study examines climate resilience in northwestern Bangladesh and its impact on farming households' food security. Using multistage random sampling, 498 households across 16 villages in extreme climate zones were surveyed. A climate resilience index (CRI) was developed to assess resilience, and a binary logistic model analysed its effect on food security; the findings indicate a positive association between them. Other key determinants of food security include household income, non-farm employment, crop diversity, education level of the household head and farm size. Also, urban households exhibit greater resilience than rural ones, with 38.7% and 32.8% classified as food secure, respectively. Enhancing climate resilience through adaptive strategies can improve food security, while off-farm activities provide critical financial support. Policy interventions, such as government or NGO-led agricultural financing, could further strengthen food security. |
The effect of cattle breed on the quality of intramuscular fatOriginal PaperNatalie Klessy, Eva StrakováCzech J. Anim. Sci., 2026, 71(4):170-179 | DOI: 10.17221/29/2026-CJAS
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Decision Support Systems in dairy cows farming: A 20-year scoping review of characteristics, applications, and future challengesReviewJan Saro, Jaromír Ducháèek, Ludìk Stádník, Helena Bro¾ováCzech J. Anim. Sci., 2026, 71(5):191-207 | DOI: 10.17221/40/2026-CJAS
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Effects of red oak (Quercus rubra L.) and Scots pine (Pinus sylvestris L.) on early soil development during afforestation of nutrient-poor post-mining sandsOriginal PaperOndøej ©pulákJ. For. Sci., 2026, 72(6):297-307 | DOI: 10.17221/29/2026-JFS The article aims to raise the knowledge on how the Northern red oak affects the soil formation and nutrient cycling compared to Scots pine during the early-stage reclamation of nutrient-poor mineral soil that originated in the deep soil layers in a former sand quarry. Furthermore, the aim is to also answer the question if the admixture of red oak helps to regenerate the soil properties more effectively than pure stands. Three treatments were established: pure red oak, pure pine, and a mixed stand, where organic [composite samples of L+F (litter and fermented), F+H (fermented and humic)] and mineral (A, C) soil horizons were analysed. The oak significantly outperformed the pine in the soil amelioration, showing elevated pH, higher base saturation, and enriched concentrations of basic cations in the humus horizons. The lower litter accumulation under the oak reflected the enhanced decomposability of its litter. A pattern of reduced cation exchange capacity, but the elevated base saturation of the oak soils suggested the development of a nutrient-rich microenvironment with a diminished risk of aluminium toxicity. Phosphorus remained critically limiting. The mixed stand exhibited intermediate properties closer to the pine stand, with the synergistic effects currently limited. Our results support red oak as an effective reclamation species for infertile post-mining soils, though sustained amelioration requires a decades-long perspective and integrated forest management strategies. |
Empowering farmers through agricultural supply chains: An ESR and IVQR analysis of income effects in ChinaOriginal PaperZhao Ding, Qianyu ZhangAgric. Econ. - Czech, 2026, 72(7):417-434 | DOI: 10.17221/366/2025-AGRICECON Integrating farmers into the modern agricultural industrial system is key to sustaining rural household income growth. Based on field survey data from rural areas in three western Chinese provinces, this study uses an endogenous switching regression (ESR) model to analyse the impact of farmers' participation in agricultural supply chains on their income, and explores the heterogeneous effects of credit constraints and agricultural loans on the incomes of participating and non-participating farmers. The results show that supply chain participation significantly increases farmers' total and operational income, while driving the modernisation of agricultural production methods. Specifically, supply chain participation enables farmers to use agricultural loans efficiently to drive income growth and alleviate income constraints caused by credit restrictions. Furthermore, the positive effect of supply chain participation on operational income is more prominent, especially for low- and middle-income farmers. In contrast, the income-increasing benefits of agricultural loans are more pronounced among middle- and high-income farmers, reflecting differences in loan utilisation capacity across income groups. |
