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Data from: Key innovations and island colonization as engines of evolutionary diversification: a comparative test with the Australasian
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关键词:
Amphibians & reptiles;Diplodactyloid geckos;Comparative studies;phylogenetics
DOI:
doi:10.5061/dryad.56vf1
摘要:
The acquisition of key innovations and the invasion of new areas constitute two major processes that facilitate ecological opportunity and subsequent
Data from: Head shape modulates diversification of a classic cichlid pharyngeal jaw innovation
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关键词:
Macroevolution;adaptive radiation;morphology;Fish;Coevolution
DOI:
doi:10.5061/dryad.q5846sq
摘要:
within clades that share a key innovation, highlighting the possibility that the impact of the innovation is mediated by other traits. Pharyngognathy is a wide
Data from: Repeatability and contingency in the evolution of a key innovation in phage lambda
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关键词:
historical contingency;novelty;Coevolution;Escherichia coli;Key innovation;Phage lambda
DOI:
doi:10.5061/dryad.sh7rm2pt
摘要:
The processes responsible for the evolution of key innovations, whereby lineages acquire qualitatively new functions that expand their ecological
The perception of innovation in the delivery of services for Hawaiian students
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关键词:
innovation Education Hawaiian education Hawaiian worldview perceptions of innovation QLCC Liliuokalani Hawaii's queen
DOI:
doi:10.25549/usctheses-c3-92285
摘要:
as an organizational innovation. This study also queries whether the use of Hawaiian cultural practices and values within the delivery of services are considered to be innovative
Data from: Disentangling the effects of key innovations on the diversification of Bromelioideae (Bromeliaceae)
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关键词:
Neogene;Macroevolution;speciation extinction rates;Key innovation;Bromeliaceae;Bromelioideae;Bromelioideae alignment;BiSSE
DOI:
doi:10.5061/dryad.0dm16
摘要:
The evolution of key innovations, novel traits that promote diversification, is often seen as major driver for the unequal distributi
Data from: Morphological innovation and the evolution of hadrosaurid dinosaurs
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关键词:
Innovation;Hadrosauridae;evolutionary rates;Ornithischia;disparity;Dinosauria;Cretaceous
DOI:
doi:10.5061/dryad.0dt2h6c
摘要:
r, they show important innovations in the skull, including disparate crests that functioned as socio-sexual display structures, and a complex feeding apparatus
Data from: A single evolutionary innovation drives the deep evolution of symbiotic N2-fixation in angiosperms
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关键词:
Legumes;Rosales;Evolution;Fabales;Frankia;Fabaceae;Cucurbitales;rhizobia;rhizobia;Leguminosae;symbiosis;Fagales;trait evolution;phylogenetics;symbiotic nitrogen fixation;nodulation;ancestral state reconstruction;mutualism
DOI:
doi:10.5061/dryad.05k14
摘要:
suggests deep homology in symbiotic N2-fixation. Identifying cryptic innovations on the tree of life is key to understanding the evolution of complex traits
Data from: Host coevolution alters the adaptive landscape of a virus
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关键词:
Key innovation;Viruses;Adaptive landscape;Experimental evolution;Coevolution
DOI:
doi:10.5061/dryad.2tj43
摘要:
The origin of new and complex structures and functions is fundamental for shaping the diversity of life. Such key innovations are rare because
Data from: C4 photosynthesis promoted species diversification during the Miocene grassland expansion
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关键词:
Key innovation;extinction;Poaceae;C4 photosynthesis;diversification;grassland;speciation
DOI:
doi:10.5061/dryad.74b5d
摘要:
on, coincident with the global development of extensive, open biomes in both warm and cool climates. As is likely true for most “key innovations”, the C4 effec
Data from: Comparative evolution of an archetypal adaptive radiation: innovation and opportunity in Anolis lizards
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关键词:
adaptive radiation;Island
DOI:
doi:10.5061/dryad.6v5hq
摘要:
on may be triggered by environmental opportunities resulting from dispersal to new areas or via the evolution of traits, called key innovations, that al

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