10-hydroxy-2E-decenoic acid (10HDA) does not promote caste differentiation in Melipona scutellaris stingless bees
In bees from genus Melipona , differential feeding is not enough to fully explain female polyphenism. In these bees, there is a hypothesis that in addition to the environmental component (food), a genetic component is also involved in caste differentiation. This mechanism has not yet been fully eluc...
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Veröffentlicht in: | Scientific reports 2021-05, Vol.11 (1), p.9882-10, Article 9882 |
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Sprache: | eng |
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Zusammenfassung: | In bees from genus
Melipona
, differential feeding is not enough to fully explain female polyphenism. In these bees, there is a hypothesis that in addition to the environmental component (food), a genetic component is also involved in caste differentiation. This mechanism has not yet been fully elucidated and may involve epigenetic and metabolic regulation. Here, we verified that the genes encoding histone deacetylases HDAC1 and HDAC4 and histone acetyltransferase KAT2A were expressed at all stages of
Melipona scutellaris
, with fluctuations between developmental stages and castes. In larvae, the HDAC genes showed the same profile of Juvenile Hormone titers—previous reported—whereas the HAT gene exhibited the opposite profile. We also investigated the larvae and larval food metabolomes, but we did not identify the putative queen-fate inducing compounds, geraniol and 10-hydroxy-2E-decenoic acid (10HDA). Finally, we demonstrated that the histone deacetylase inhibitor 10HDA—the major lipid component of royal jelly and hence a putative regulator of honeybee caste differentiation—was unable to promote differentiation in queens in
Melipona scutellaris
. Our results suggest that epigenetic and hormonal regulations may act synergistically to drive caste differentiation in
Melipona
and that 10HDA is not a caste-differentiation factor in
Melipona scutellaris
. |
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ISSN: | 2045-2322 2045-2322 |
DOI: | 10.1038/s41598-021-89212-5 |