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Zinc supplementation modifies brain tissue transcriptome of Apis mellifera honeybees.
Camilli, Marcelo Polizel; Kadri, Samir Moura; Alvarez, Marcus Vinícius Niz; Ribolla, Paulo Eduardo Martins; Orsi, Ricardo Oliveira.
Affiliation
  • Camilli MP; Center of Education, Science and Technology in Rational Beekeeping (NECTAR), College of Veterinary Medicine and Animal Sciences, UNESP São Paulo State University, São Paulo, Botucatu, Brazil. marcelo.camilli@unesp.br.
  • Kadri SM; Center of Education, Science and Technology in Rational Beekeeping (NECTAR), College of Veterinary Medicine and Animal Sciences, UNESP São Paulo State University, São Paulo, Botucatu, Brazil.
  • Alvarez MVN; Institute of Biotechnology, UNESP - São Paulo State University, São Paulo, Botucatu, Brazil.
  • Ribolla PEM; Institute of Biotechnology, UNESP - São Paulo State University, São Paulo, Botucatu, Brazil.
  • Orsi RO; Center of Education, Science and Technology in Rational Beekeeping (NECTAR), College of Veterinary Medicine and Animal Sciences, UNESP São Paulo State University, São Paulo, Botucatu, Brazil.
BMC Genomics ; 23(1): 282, 2022 Apr 08.
Article in En | MEDLINE | ID: mdl-35395723
BACKGROUND: Bees are the most important group of pollinators worldwide and their populations are declining. In natural conditions, Apis mellifera depends exclusively on food from the field to meet its physiological demands. In the period of scarcity, available resources are insufficient and artificial supplementation becomes essential for maintaining the levels of vitamins, proteins, carbohydrates, and minerals of colonies. Among these minerals, zinc is essential in all living systems, particularly for the regulation of cell division and protein synthesis, and is a component of more than 200 metalloenzymes. RESULTS: The total RNA extracted from the brain tissue of nurse bees exposed to different sources and concentrations of zinc was sequenced. A total of 1,172 genes in the treatment that received an inorganic source of zinc and 502 genes that received an organic source of zinc were found to be differentially expressed among the control group. Gene ontology enrichment showed that zinc can modulate important biological processes such as nutrient metabolism and the molting process. CONCLUSIONS: Our results indicate that zinc supplementation modulates the expression of many differentially expressed genes and plays an important role in the development of Apis mellifera bees. All the information obtained in this study can contribute to future research in the field of bee nutrigenomics.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Zinc / Transcriptome Limits: Animals Language: En Journal: BMC Genomics Journal subject: GENETICA Year: 2022 Document type: Article Affiliation country: Brazil Country of publication: United kingdom

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Zinc / Transcriptome Limits: Animals Language: En Journal: BMC Genomics Journal subject: GENETICA Year: 2022 Document type: Article Affiliation country: Brazil Country of publication: United kingdom