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Morphological Evolution of Sinocyclocheilus cave fish
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2020-04-22
相关数据集
Table_1_Comparative Transcriptomics Reveals the Molecular Genetic Basis of Cave Adaptability in Sinocyclocheilus Fish Species.XLS
Cavefish evolved a series of distinct survival mechanisms for adaptation to cave habitat. Such mechanisms include loss of eyesight and pigmentation, sensitive sensory organs, unique dietary preference
NIAID Data Ecosystem80
Reduction in the metabolic levels due to phenotypic plasticity in the Pyrenean newt, Calotriton asper, during cave colonization
According to theories on cave adaptation, cave organisms are expected to develop a lower metabolic rate compared to surface organisms as an adaptation to food scarcity in the subterranean environments
DataONE2020-09-17 更新50
Data_Sheet_1_Comparative Transcriptomics Reveals the Molecular Genetic Basis of Cave Adaptability in Sinocyclocheilus Fish Species.PDF
Cavefish evolved a series of distinct survival mechanisms for adaptation to cave habitat. Such mechanisms include loss of eyesight and pigmentation, sensitive sensory organs, unique dietary preference
NIAID Data Ecosystem10
Results of Bayes Factor hypothesis testing.
Notes: Single origin hypothesis - all cave-modified samples (including Cyptobunus and troglomorphic Sclerobunus) constrained to form a clade. Two origins hypothesis - troglomorphic Sclerobunus constra
NIAID Data Ecosystem50
Ancient climate changes and relaxed selection shape cave colonisation in North American cavefishes
Extreme environments serve as natural laboratories for studying evolutionary processes, with caves offering replicated instances of independent colonisations. The timing, mode, and genetic underpinnin
NIAID Data Ecosystem10



