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Detection and pH-Thermal Characterization of Proteinases Exclusive of Honeybee Worker-Fate Larvae ( L.). | LitMetric

AI Article Synopsis

  • The study explores how diet influences the development of honeybee larvae into different castes, focusing on the expression of specific water-soluble proteases during this process.
  • The researchers identified a protease called PS4, which peaks in activity at 72 hours after hatching and seems crucial for the development of worker bees.
  • Interestingly, PS4 was not found in royal jelly or pollen, but royal jelly was shown to inhibit its activity in worker-fate larvae, indicating its potential role in determining bee castes.

Article Abstract

The occurrence of the honeybee caste polyphenism arises when a change in diet is transduced into cellular metabolic responses, resulting in a developmental shift mediated by gene expression. The aim of this investigation was to detect and describe the expression profile of water-soluble proteases during the ontogenesis of honeybee worker-fate larvae. The extraction of insect homogenates was followed by the electrophoretic separation of the protein extract in polyacrylamide gels under semi-denaturing condition, precast with gelatin, pollen, or royal jelly protein extracts. The worker-fate honeybee larva showed a proteolytic pattern that varied with aging, and a protease with the highest activity at 72 h after hatching was named PS4. PS4 has a molecular weight of 45 kDa, it remained active until cell sealing, and its enzymatic properties suggest a serine-proteinase nature. To define the process that originates a queen-fate larvae, royal jelly and pollen were analysed, but PS4 was not detected in either of them. The effect of food on the PS4 was investigated by mixing crude extracts of queen and worker-fate larvae with pollen and royal jelly, respectively. Only royal jelly inhibited PS4 in worker-fate larvae. Taken together, our data suggest that PS4 could be involved in caste differentiation.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9779378PMC
http://dx.doi.org/10.3390/ijms232415546DOI Listing

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