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1.
Biogerontology ; 25(2): 205-226, 2024 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-37610666

RESUMEN

Studies on human telomeres have established that telomeres exert a significant influence on lifespan and health of organisms. However, recent research has indicated that the original idea that telomeres affect lifespan in a universal and central manner across all eukaryotic species is an oversimplification. Indeed, findings from a variety of animal species revealed that the role of telomere biology in aging is more subtle and intricate than previously recognized. Here, we show how telomere biology varies depending on the taxon. We also show how telomere biology corresponds to basic life history traits and affects the life table of a species and investments in growth, body size, reproduction, and lifespan; telomeres are hypothesized to shape evolutionary perspectives for species in an active but complex manner. Our evaluation is based on telomere biology data from many examples from throughout the animal kingdom that vary according to the degree of organismal complexity and life history strategies.


Asunto(s)
Telomerasa , Animales , Humanos , Telomerasa/genética , Envejecimiento/genética , Longevidad , Evolución Biológica , Telómero
2.
J Insect Physiol ; 146: 104504, 2023 04.
Artículo en Inglés | MEDLINE | ID: mdl-36935036

RESUMEN

The anatomical, physiological, and behavioral characteristics of honey bees are affected by the season as well as division of labor. In this study, we examined the structure, ultrastructure, and gene expression of fat body cells in both long-lived winter and short-lived summer worker bees (the youngest stage of hive bees and forager bees). In contrast to hive bees, foragers and winter bees have a higher metabolism due to intensive muscle activity during their flight (foragers) or endothermic heat production (winter bees). These workers differ from hive bees in the biology of their mitochondria, peroxisomes, and lysosomes as well as in the expression of the genes involved in lipid, carbohydrate, amino acid metabolism, insulin, and TGF- ß signaling. Additionally, the expression of genes related to phospholipid metabolism was higher in the hive bees. However, we found no differences between workers in the expression of genes controlling cell organelles, such as the Golgi apparatus, endoplasmic reticulum, ribosomes, nucleus, and vacuoles, as well as genes for DNA replication, cell cycle control, and autophagy. Furthermore, lysosomes, autophagic processes and lipofuscin particles were more frequently observed in winter bees using electron microscopy.


Asunto(s)
Abejas , Expresión Génica , Animales , Abejas/genética , Abejas/ultraestructura , Cuerpo Adiposo/metabolismo , Cuerpo Adiposo/ultraestructura , Estaciones del Año
3.
Sci Rep ; 11(1): 592, 2021 01 12.
Artículo en Inglés | MEDLINE | ID: mdl-33436732

RESUMEN

In honeybees (Apis mellifera), the rate of aging is modulated through social interactions and according to caste differentiation and the seasonal (winter/summer) generation of workers. Winter generation workers, which hatch at the end of summer, have remarkably extended lifespans as an adaptation to the cold season when the resources required for the growth and reproduction of colonies are limited and the bees need to maintain the colony until the next spring. In contrast, the summer bees only live for several weeks. To better understand the lifespan differences between summer and winter bees, we studied the fat bodies of honeybee workers and identified several parameters that fluctuate in a season-dependent manner. In agreement with the assumption that winter workers possess greater fat body mass, our data showed gradual increases in fat body mass, the size of the fat body cells, and Vg production as the winter season proceeded, as well as contrasting gradual decreases in these parameters in the summer season. The differences in the fat bodies between winter and summer bees are accompanied by respective increases and decreases in telomerase activity and DNA replication in the fat bodies. These data show that although the fat bodies of winter bees differ significantly from those of summer bees, these differences are not a priori set when bees hatch at the end of summer or in early autumn but instead gradually evolve over the course of the season, depending on environmental factors.


Asunto(s)
Abejas/genética , Abejas/metabolismo , Tamaño de la Célula , Replicación del ADN/fisiología , Cuerpo Adiposo/metabolismo , Telomerasa/metabolismo , Adaptación Fisiológica , Envejecimiento/fisiología , Fenómenos Fisiológicos Nutricionales de los Animales/fisiología , Animales , Abejas/citología , Abejas/fisiología , Conducta Animal/fisiología , Longevidad , Estaciones del Año , Interacción Social
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