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Data from: Taller plants have lower rates of molecular evolution
负责人:
关键词:
DOI:
doi:10.5061/dryad.43mg3
摘要:
on in species richness, temperature, ultraviolet radiation, latitude and growth form. Our observations can be explained by a link between height and rates of genome
Data from: Parental exposure modulates the effects of UV-B on offspring in guppies
负责人:
Seebacher, Frank
关键词:
developmental plasticity locomotion antioxidants metabolism
DOI:
doi:10.5061/dryad.61rq8
摘要:
hough reversible acclimation within individuals could counteract a developmental mismatch. 2.UV-B radiation damages cells di
Data from: The evolution of bipedal running in lizards suggests a consequential origin may be exploited in later lineages.
负责人:
关键词:
Adaptive Radiations;Morphological Evolution;Selection - Natural;Exaptation;rates of evolution;co-opted traits
DOI:
doi:10.5061/dryad.14mb6
摘要:
on of bipedalism was also associated with increased rates of phenotypic diversity, suggesting exploiting bipedalism may promote adaptive radiation.
Data from: Foraging environment determines the genetic architecture and evolutionary potential of trophic morphology in cichlid fishes
负责人:
关键词:
Tropheops;Haplochromus;QTL;Plasticity;Labeotropheus;Genetic assimilation
DOI:
doi:10.5061/dryad.m2j85
摘要:
ve diversification. Here, we investigate the genetic basis of phenotypic plasticity in a textbook adaptive radiation, Lake Malawi cichlid fishes. Spe
Data from: Contrasting population genetic structure among freshwater-resident and anadromous lampreys: the role of demographic history, differentia
负责人:
关键词:
Life history;microsatellite;Lampetra planeri;Lampetra;Lampetra fluviatilis;Petromyzontidae;barriers to migration;anadromy;speciation
DOI:
doi:10.5061/dryad.v105s
摘要:
in promoting species radiation by both allopatric and sympatric mechanisms. Anadromy inherently offers an opportunity for the colonizati
Data from: Correlated evolution of body and fin morphology in the cichlid fishes
负责人:
关键词:
correlated evolution;anal fin;dorsal fin;adaptive radiation;caudal fin;locomotion;Cichlidae;Geometric morphometrics
DOI:
doi:10.5061/dryad.h4k6f
摘要:
on of ecomorphology. This study measured body, caudal and median fin morphology from radiographs of 131 cichlid genera, using morphometrics
Data from: Specific leaf area predicts dryland litter decomposition via two mechanisms
负责人:
关键词:
litter decomposition rate;photodegradation;sand burial;Functional traits;microbial decomposition;A desert ecosystem;Holocene
DOI:
doi:10.5061/dryad.60ns6
摘要:
of litter decomposition rate as related either to solar radiation or the environment below the soil surface. Furthermore, the interspecific di
Data from: A phylogenetic analysis of macroevolutionary patterns in fermentative yeasts
负责人:
关键词:
Zygosaccharomyces bisporus;Zygosaccharomyces mellis;Zygosaccharomyces bailii;Kluyveromyces nonfermentans;Kazachstania turicensis;Naumovozyma castellii;Lachancea waltii;Saccharomycodes ludwigii;Saccharomyces cariocanus;Saccharomyces pastorianus;Tetrapisispora phaffii;Saccharomyces bayanus;Kazachstania barnettii;Vanderwaltozyma polyspora;Hanseniaspora occidentalis;comparative method;Hanseniaspora vineae;Saccharomyces mikatae;Kazachstania spencerorum;Kazachstania exigua;Zygosaccharomyces kombuchaensis;Kazachstania kunashirensis;Saccharomicotina;Schizosaccharomyces pombe;Eremothecium cymbalariae;Kluyveromyces marxianus;Wickerhamomyces anomalus;Naumovozyma dairenensis;Saccharomyces paradoxus;Hanseniaspora valbyensis;Torulaspora franciscae;Zygosaccharomyces rouxii;Kazachstania viticola;Kazachstania telluris;Hanseniaspora guilliermondii;Candida glabrata;Torulaspora delbrueckii;Zygotorulaspora florentina;Eremothecium coryli;Lachancea kluyveri;Kazachstania servazzii;Lachancea fermentati;Kluyveromyces aestuarii;Eremothecium gossypii;Saccharomyces kudriavzevii;Kluyveromyces lactis;fermentation;Hanseniaspora osmophila;Kazachstania lodderae;Kazachstania unispora;Saccharomyces cerevisiae;phylogenetic signal;Tetrapisispora blattae;Kluyveromyces dobzhanskii;Torulaspora globosa;Kazachstania rosinii;Candida humilis;Kloeckera lindneri;Vanderwaltozyma yarrowii;Lachancea cidri;adaptive radiation;Tetrapisispora nanseiensis;Torulaspora microellipsoides;Kazachstania piceae;Lachancea thermotolerans;Kazachstania martiniae;Tetrapisispora iriomotensis;Kazachstania sinensis;Kluyveromyces wickerhamii;Kazachstania bulderi;Eremothecium ashbyi;Tetrapisispora arboricola;Kazachstania africana;Hanseniaspora uvarum;Zygotorulaspora mrakii;Nakaseomyces bacillisporus;Nakaseomyces delphensis;Zygosaccharomyces lentus;Eremothecium sinecaudum;Torulaspora pretoriensis;Candida castellii;Kazachstania transvaalensis
DOI:
doi:10.5061/dryad.2hf06
摘要:
When novel sources of ecological opportunity are available, physiological innovations can trigger adaptive radiations. This could be the cas

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