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Mariano-Martins, P.

Publications and source records attributed to Mariano-Martins, P..

2 recordsLinked to original sources

Neuropeptide F regulates adult female response to diet, larval locomotion and several larval physiological processes in Lucilia cuprina cuprina

The blowfly Lucilia cuprina dorsalis is a highly detrimental ectoparasite of sheep responsible for causing flystrike, a condition that can result in severe morbidity and potentially lead to death if left untreated. In contrast, Lucilia cuprina cuprina is necrophagous and not a pest. We have been interested in identifying the genes that may play a role in the evolution of a parasitic lifestyle in blowflies. The objective of the present work was to explore the physiological role of the L. cuprina long neuropeptide F gene (LcNPF) in L. c. cuprina. We used CRISPR/Ca9 to generate a strain carrying a loss-of-function knock-in mutation for LcNPF. An RNA-Seq analysis was performed, and physiological and behavioral assays were conducted to evaluate the role of LcNPF in larvae and adult flies. Our findings indicate that functional disruption of the LcNPF gene significantly impairs egg hatching, larval survival, weight gain, crawling speed and larval time to pupariation. These phenotypic changes were corroborated by RNA-Seq analysis, which revealed downregulation of transcripts in LcNPF null mutated larvae associated with the respective physiological processes. In contrast, the foraging behavior of the larvae under the tested conditions was not affected. Interestingly, NPF appears to be essential for the oviposition preference of females for rotten meat but not for male mating behavior or fertility. Our results suggest that NPF signaling plays a central regulatory role in multiple physiological processes across both the larval and adult stages. Highlights{square} A loss-of-function knock-in mutation of the LcNPF gene was obtained using CRISPR/Cas9. {square}LcNPF-homozygous mutant larvae showed decreased weight gain, locomotion and survival on rotten meat. {square}Disruption of the LcNPF gene eliminated the female preference for oviposition in rotten meat. {square}LcNPF does not appear to be essential for normal fertility or male mating behavior as homozygotes were comparable to wild type

molecular biology↗

Insights from Melipona bicolor hybrid genome assembly: A stingless bee genome with chromosome-level scaffold

BackgroundThe highly eusocial stingless bees are crucial pollinators of native and agricultural ecosystems. Nevertheless, genomic studies within this bee tribe remain scarce. We present the genome assembly of the stingless bee Melipona bicolor. This bee is a remarkable exception to the typical single-queen colony structure, since in this species, multiple queens may coexist and share reproductive duties, resulting in genetically diverse colonies with weak kinship connections. As the only known genuinely polygynous bee, M. bicolors genome provides a valuable resource for investigating sociality beyond kin selection. ResultsThe genome was assembled employing a hybrid approach combining short and long reads, resulting in 241 contigs spanning 259 Mb (N50 of 6.2 Mb and 97.5% complete BUSCOs). Comparative analyses shed light on some evolutionary aspects of stingless bee genomics, including multiple chromosomal rearrangements in Melipona. Additionally, we explored the evolution of venom genes in M. bicolor and other stingless bees, revealing that, apart from two genes, the conserved repertoire of venom components remains under purifying selection in this clade. ConclusionThis study advances our understanding of stingless bee genomics, contributing to the conservation efforts of these vital pollinators and offering insights into the evolutionary mechanisms driving their unique adaptations.

genomics↗