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As one of the most important vegetables globally, peppers have garnered significant attention from breeders due to their diverse agronomic traits, including plant type, leaf shape, and maturity. Understanding the genetic mechanisms underlying these traits is crucial for systematic advancements in sweet pepper breeding. In this study, leveraging the PepperSNP50K liquid breeding chip, we conducted a comprehensive analysis of horticultural traits and genetic diversity using sweet pepper germplasm samples. Initially, the sweet pepper populations were analyzed using SNP-based liquid chip technology. Subsequently, phenotypic surveys were performed on 217 sweet pepper samples, and the collected phenotypic data were integrated with SNP markers to conduct a genome-wide association study (GWAS) of key agronomic traits. Among the 25 horticultural traits evaluated, 11 exhibited significant associations with 54 SNP polymerization regions and 193 candidate genes. These findings provide a robust foundation for the utilization of sweet pepper germplasm resources and the development of new, improved varieties. Furthermore, in this study, we identified Caz06g05770 (Lycopene beta-cyclase) as a candidate gene responsible for the color of mature ripe fruits. This research not only enhances our understanding of the genetic basis of sweet pepper traits but also offers a practical roadmap for advancing breeding programs and boosting agricultural productivity. By bridging the gap between genetic research and practical breeding applications, this study paves the way for the development of high-yield, high-quality sweet pepper varieties tailored to meet the growing demands of global agriculture.
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http://dx.doi.org/10.3390/plants14101506 | DOI Listing |
Food Res Int
November 2025
Department of Food Analysis and Nutrition, Faculty of Food and Biochemical Technology, University of Chemistry and Technology Prague, Technická 5, 166 28, Prague 6 - Dejvice, Prague, Czech Republic.
Chili peppers have been under the spotlight of bioactivity research as they feature a diverse and rich phytochemical profile with multiple health promoting effects. These beneficial properties are related to the chemical composition of chili peppers and is of utmost importance to identify varieties with the strongest bioprospecting potential. In this study, 19 chili pepper varieties were investigated originating from Capsicum annuum L.
View Article and Find Full Text PDFFood Res Int
November 2025
School of Pharmacy, Jiangsu University, Zhenjiang 212013, People's Republic of China; School of Food and Biological Engineering, Jiangsu University, Zhenjiang 212013, People's Republic of China. Electronic address:
Intense pulsed light (IPL) is an emerging surface antimicrobial technology characterized by prominent efficiency but the performance in the decontamination of granular foods is yet to be improved. Using S. Enteritidis as a model bacterium, this article attempted to resolve the confusion on bactericidal mechanism of IPL treatment on spice products.
View Article and Find Full Text PDFMicrobiol Resour Announc
September 2025
Netherlands Institute for Vectors, Invasive plants and Plant health (NIVIP), National Plant Protection Organization (NPPO), Netherlands Food and Consumer Product Safety Authority (NVWA), Wageningen, the Netherlands.
We report two complete genome sequences of a putative novel orthotospovirus species in pepper fruits ( sp.) from South Africa, provisionally named (Capsicum orthotospovirus 1; CaV1). Its nucleocapsid protein shows less than 88% amino acid identity with other orthotospoviruses.
View Article and Find Full Text PDFJ Sci Food Agric
September 2025
Department of Soil and Water Conservation and Organic Wastes Management, CEBAS-CSIC, Campus Universitario de Espinardo - 25, Murcia, Spain.
Background: Sweet pepper (Capsicum annuum) is of considerable socio-economic importance and is among the most widely cultivated vegetables worldwide, occupying more than 20 000 km. Light-emitting diodes (LEDs), applied in continuous or pulsed modes, can increase yield and improve the phytochemical composition in indoor production systems. However, effective methodologies to define the optimal LED spectrum for maximizing growth across the full cultivation cycle - from seedling to fruit production - under controlled photoperiod conditions (14 h light/10 h dark) with pulsed lighting are lacking.
View Article and Find Full Text PDFAnim Nutr
September 2025
Center of Applied Research in Biosystems (CARB-CIAB), Biosystems Engineering Group, School of Engineering Campus Amazcala, Autonomous University of Querétaro, Querétaro 76260, Mexico.
Population growth and income increase have promoted a greater consumption of animal-based food. To increase the yield of livestock animals, antibiotic growth promoters (AGPs) have been provided at sub-therapeutic doses in water and feed for production animals. Unfortunately, the misuse of antibiotics has been associated with antimicrobial resistance (AMR), resulting in their ban as animal growth promoters in different countries.
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