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DOI10.1002/dneu.22374
Age-Related and Light-Induced Plasticity in Opsin Gene Expression and in Primary and Secondary Visual Centers of the Nectar-Feeding Ant Camponotus rufipes
Yilmaz, Ayse; Lindenberg, Annekathrin; Albert, Stefan; Gruebel, Kornelia; Spaethe, Johannes; Roessler, Wolfgang; Groh, Claudia
通讯作者Yilmaz, Ayse
来源期刊DEVELOPMENTAL NEUROBIOLOGY
ISSN1932-8451
EISSN1932-846X
出版年2016
卷号76期号:9页码:1041-1057
英文摘要

Camponotus rufipes workers are characterized by an age-related polyethism. In the initial weeks of adult life, young workers perform tasks inside the nest before they switch to multimodal foraging tasks outside. We tested the hypothesis that this transition is accompanied by profound adaptations in the peripheral and central visual systems. Our results show that C. rufipes workers of all tested ages (between 1 and 42 days) express three genes encoding for ultraviolet (UV), blue (BL), and long-wavelength (LW1) sensitive opsins in their retina, which are likely to provide the substrate for trichromatic color vision. Expression levels of all three opsin genes increased significantly within the first two weeks of adulthood and following light exposure. Interestingly, the volumes of all three optic neuropils (lamina, medulla, and lobula) showed corresponding volume increases. Tracing of connections to higher visual centers in the mushroom bodies (MBs) revealed only one optic pathway, the anterior superior optic tract, emerging from the medulla and sending segregated input to the MB-calyx collar. The MB collar volumes and densities of synaptic complexes (microglomeruli, MGs) increased with age. Exposure to light for 4 days induced a decrease in MG densities followed by an increase after extended light exposure. This shows that plasticity in retinal opsin gene expression and structural neuroplasticity in primary and secondary visual centers comprise both "experience-independent" and "experience-dependent" elements. We conclude that both sources of plasticity in the visual system represent important components promoting optimal timing of the interior-forager transition and flexibility of age-related division of labor. (C) 2016 Wiley Periodicals, Inc.


英文关键词Camponotus rufipes visual opsin gene optic lobe visual pathway mushroom body
类型Article
语种英语
国家Germany
收录类别SCI-E
WOS记录号WOS:000383859000008
WOS关键词HONEY-BEE BRAIN ; MUSHROOM BODY CALYX ; DESERT ANT ; CATAGLYPHIS-BICOLOR ; APIS-MELLIFERA ; COLOR-VISION ; COMPOUND EYE ; DROSOPHILA-MELANOGASTER ; SPECTRAL SENSITIVITIES ; SYNAPTIC ORGANIZATION
WOS类目Developmental Biology ; Neurosciences
WOS研究方向Developmental Biology ; Neurosciences & Neurology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/192266
作者单位Univ Wurzburg, Dept Behav Physiol & Sociobiol, D-97074 Wurzburg, Germany
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Yilmaz, Ayse,Lindenberg, Annekathrin,Albert, Stefan,et al. Age-Related and Light-Induced Plasticity in Opsin Gene Expression and in Primary and Secondary Visual Centers of the Nectar-Feeding Ant Camponotus rufipes[J],2016,76(9):1041-1057.
APA Yilmaz, Ayse.,Lindenberg, Annekathrin.,Albert, Stefan.,Gruebel, Kornelia.,Spaethe, Johannes.,...&Groh, Claudia.(2016).Age-Related and Light-Induced Plasticity in Opsin Gene Expression and in Primary and Secondary Visual Centers of the Nectar-Feeding Ant Camponotus rufipes.DEVELOPMENTAL NEUROBIOLOGY,76(9),1041-1057.
MLA Yilmaz, Ayse,et al."Age-Related and Light-Induced Plasticity in Opsin Gene Expression and in Primary and Secondary Visual Centers of the Nectar-Feeding Ant Camponotus rufipes".DEVELOPMENTAL NEUROBIOLOGY 76.9(2016):1041-1057.
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