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Data from: The origins of novelty from within the confines of homology: the developmental evolution of the digging tibia of dung beetles
负责人:
关键词:
cooption;tibial teeth;Recruitment;leg development;Onthophagus;Onthophagus taurus
DOI:
doi:10.5061/dryad.460hn37
摘要:
nuously revises our understanding of what constitutes homology. Here, we executed a case study to explore the earliest stages of innovation by examining the ti
Data from: Functional innovation through vestigialisation in a modular marine invertebrate
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关键词:
Bugula flabellata;Modularity;avicularia;Bryozoa;polymorphism;vestigial organs
DOI:
doi:10.5061/dryad.p13s6
摘要:
Few studies show how morphological vestigialisation may facilitate functional innovation. Fewer still describe the co-occurrence of the derived
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: Evolutionary routes to biochemical innovation revealed by integrative analysis of a plant-defense related specialized metabolic pathway
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关键词:
Solanum quitoense;Solanum nigrum;RNA-seq;Salpiglossis sinuata;specialized metabolism;phylogenetics;enzyme evolution;Hyoscyamus niger
DOI:
doi:10.5061/dryad.t7r64
摘要:
The diversity of life on Earth is a result of continual innovations in molecular networks influencing morphology and physiology. Plant
Data from: Dispersal is associated with morphological innovation, but not increased diversification, in Cyphostemma (Vitaceae)
负责人:
关键词:
growth habit;Key innovation;Cyphostemma;adaptive radiation;Biogeography;divergence times;Dispersal;last 100 million years;diversification;Vitaceae;succulence
DOI:
doi:10.5061/dryad.r3707
摘要:
Multiple processes - including dispersal, morphological innovation, and habitat change - are frequently cited as catalysts for increased
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: Is foraging innovation lost following colonisation of a less variable environment? a case study in surface- vs. cave-dwelling
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DOI:
doi:10.5061/dryad.1g1jwstrz
摘要:
Behavioural innovation is a key process for successful colonisation of new habitat types. However, it is costly due to the necessary cogniti
Data from: Comparative evolution of an archetypal adaptive radiation: innovation and opportunity in Anolis lizards
负责人:
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
Data from: Phylogenetic ANCOVA: estimating changes in evolutionary rates as well as relationships between traits
负责人:
关键词:
parental care;Macroevolution;Life history: evolution;Phylogenetics: comparative;morphology;bird;telencephalon;Allometry;Aves;Phylogenetics: diversification;Phylogenetics: methods
DOI:
doi:10.5061/dryad.2r504
摘要:
the impact of a key innovation, colonization of a new habitat, or environmental change. The approach is optimized with maximum likelihood and is formulated
Data from: Divergent evolutionary morphology of the axial skeleton as a potential key innovation in modern cetaceans
负责人:
关键词:
ecomorphology;morphological diversity;Key innovation;Vertebral column;Cetacea;Marine mammals
DOI:
doi:10.5061/dryad.7dj6850
摘要:
ve analyses provide evidence these vertebral modifications have potentially operated as key innovations. These novelties contributed to their explosive radiation, res

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