Javascript must be enabled to continue!
Tissue-specific transcriptional patterns underlie seasonal phenotypes in honey bees (Apis mellifera)
View through CrossRef
Faced with adverse conditions, such as winter in temperate regions or
hot and dry conditions in tropical regions, many insect species enter a
state of diapause, a period of dormancy associated with a reduction or
arrest of physical activity, development, and reproduction. Changes in
common physiological pathways underlie diapause phenotypes in different
insect species. However, most transcriptomic studies of diapause have
not simultaneously evaluated and compared expression patterns in
different tissues. Honey bees (Apis mellifera) represent a unique model
system to study the mechanisms underpinning diapause. In winter, honey
bees exhibit a classic diapause phenotype, with reduced metabolic
activity, increased physiological nutritional resources, and altered
hormonal profiles. However, winter bees actively heat their colony by
vibrating their wing muscles; thus, this tissue is not quiescent. Here,
we evaluated the transcriptional profiles of flight muscle tissue and
fat body tissue (involved in nutrient storage, metabolism and immune
function) of winter bees. We also evaluated two behavioral phenotypes of
summer bees: nurses, which exhibit high nutritional stores and low
flight activity, and foragers, which exhibit low nutritional stores and
high flight activity. We found winter bees and nurses have similar fat
body transcriptional profiles compared to foragers, whereas winter bees
and foragers have similar flight muscle transcriptional profiles
compared to nurses. Additionally, differentially expressed genes were
enriched in diapause-related GO terms. Thus, honey bees exhibit
tissue-specific transcriptional profiles associated with diapause,
laying the groundwork for future studies evaluating the mechanisms,
evolution, and consequences of this tissue-specific regulation.
Title: Tissue-specific transcriptional patterns underlie seasonal phenotypes in honey bees (Apis mellifera)
Description:
Faced with adverse conditions, such as winter in temperate regions or
hot and dry conditions in tropical regions, many insect species enter a
state of diapause, a period of dormancy associated with a reduction or
arrest of physical activity, development, and reproduction.
Changes in
common physiological pathways underlie diapause phenotypes in different
insect species.
However, most transcriptomic studies of diapause have
not simultaneously evaluated and compared expression patterns in
different tissues.
Honey bees (Apis mellifera) represent a unique model
system to study the mechanisms underpinning diapause.
In winter, honey
bees exhibit a classic diapause phenotype, with reduced metabolic
activity, increased physiological nutritional resources, and altered
hormonal profiles.
However, winter bees actively heat their colony by
vibrating their wing muscles; thus, this tissue is not quiescent.
Here,
we evaluated the transcriptional profiles of flight muscle tissue and
fat body tissue (involved in nutrient storage, metabolism and immune
function) of winter bees.
We also evaluated two behavioral phenotypes of
summer bees: nurses, which exhibit high nutritional stores and low
flight activity, and foragers, which exhibit low nutritional stores and
high flight activity.
We found winter bees and nurses have similar fat
body transcriptional profiles compared to foragers, whereas winter bees
and foragers have similar flight muscle transcriptional profiles
compared to nurses.
Additionally, differentially expressed genes were
enriched in diapause-related GO terms.
Thus, honey bees exhibit
tissue-specific transcriptional profiles associated with diapause,
laying the groundwork for future studies evaluating the mechanisms,
evolution, and consequences of this tissue-specific regulation.
Related Results
Red mason bees cannot compete with honey bees for floral resources in a cage experiment
Red mason bees cannot compete with honey bees for floral resources in a cage experiment
AbstractIntensive beekeeping to mitigate crop pollination deficits and habitat loss may cause interspecific competition between bees. Studies show negative correlations between flo...
Tissue-specific transcriptional patterns underlie seasonal phenotypes in honey bees (Apis mellifera)
Tissue-specific transcriptional patterns underlie seasonal phenotypes in honey bees (Apis mellifera)
Faced with adverse conditions, such as winter in temperate regions or
hot and dry conditions in tropical regions, many insect species enter a
state of diapause, a period of dormanc...
Pemberdayaan Petani Lebah Madu Desa Kutosari melalui Diversifikasi Madu
Pemberdayaan Petani Lebah Madu Desa Kutosari melalui Diversifikasi Madu
One of the advantages of Kutosari Village is that it is a village that produces pure honey, because many of its people work as honey bee farmers. Honey bee farmers use existing for...
Multi-host viruses in Argentine ants and honey bees: Increased viral disease in honey bees is associated with Argentine ants
Multi-host viruses in Argentine ants and honey bees: Increased viral disease in honey bees is associated with Argentine ants
<p><b>Emerging infectious diseases threaten public health, livestock economies, and wildlife. Human-mediated species introductions can alter host and pathogen communiti...
The Secure Computation Application Programming Interface Using The ARAS Method
The Secure Computation Application Programming Interface Using The ARAS Method
An Application Programming Interface (API) entails guidelines, Principles and an
array of utilities, it stands as distinct software Applications interacting with one another
commun...
Apis Mellifera Animal Study in a Role Perspective Using the Bibliometrix Tools (SLNA Method Application)
Apis Mellifera Animal Study in a Role Perspective Using the Bibliometrix Tools (SLNA Method Application)
There is no research on the study of Apis mellifera using bibliometrix tools. This study aims to determine the results of the study of Apis mellifera in a role perspective using Bi...
Microbial and antibiotic contaminants in imported and locally produced honey in the Tamale metropolis of the northern region of Ghana
Microbial and antibiotic contaminants in imported and locally produced honey in the Tamale metropolis of the northern region of Ghana
Honey remains a valued natural product and has been used by humans as an important food source, disease treatment, and a healthy sugar source since ancient times. However, recent r...
Antioxidant Properties and Characterization of Heterotrigona itama Honey from Various Botanical Origins according to Their Polyphenol Compounds
Antioxidant Properties and Characterization of Heterotrigona itama Honey from Various Botanical Origins according to Their Polyphenol Compounds
Stingless bee honey is a good source of antioxidants, which is attributed to the phenolic compounds. The type and concentration of phenolic compounds in honey can be affected by bo...

