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Background: Exceptional and extreme feeding behaviour makes the Burmese python (Python bivittatus) an interesting model to study physiological remodelling and metabolic adaptation in response to refeeding after prolonged starvation. In this study, we used transcriptome sequencing of five visceral o...
ORGANISM(S): Python bivittatus 
2018-10-24 | PXD006665 | Pride
As ambush-hunting predators that consume large prey after long intervals of fasting, Burmese pythons evolved with unique adaptations for regulating organ structure and function. Among these is cardiac hypertrophy that develops within three days following a meal (1, 2), which we previously showed was...
ORGANISM(S): Python bivittatus 
2024-09-12 | PXD054079 | Pride
A transcriptome resource for the Burmese python
Python bivittatus overview
Transcriptome Analysis of Burmese Python in Response to Digestion and Identification of the Major Digestive Enzymes
Digesting Burmese pythons display increased cardiac mass and function in response to a drastic elevation in metabolic demands. DIA proteome and PTM analyses (ubiquitinome, phosphoproteome, and acetylome) were used to characterize molecular changes in heart tissue at the peak of digestion (3 days pos...
ORGANISM(S): Python bivittatus 
2026-08-26 | PXD073863 | Pride
Python bivittatus Transcriptome or Gene expression
Invasive Florida Python bivittatus RAD-seq reads sequence reads
Sequences obtained from Python hearts during fasting and fed states
As ambush-hunting predators that consume large prey after long intervals of fasting, Burmese pythons evolved with unique adaptations for regulating organ structure and function. Among these is cardiac hypertrophy that develops within three days following a meal (1, 2), which we previously showed was...
ORGANISM(S): Python bivittatus 
2024-07-16 | GSE271793 | GEO
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