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Data from: Genotype × environment interaction in the allometry of body, genitalia, and signal traits in Enchenopa treehoppers (Hemiptera: Membracidae)
负责人:
关键词:
mating signal;genetic architecture;Enchenopa binotata species complex;Phenotypic Plasticity;phytophagous insect
DOI:
doi:10.5061/dryad.1d67r
摘要:
for this effect in the static allometry (i.e., scaling on body size) of traits in advertisement signals, body and genitalia. We used a member of the Enchenopa
Data from: Fitness consequences of artificial selection on relative male genital size
负责人:
关键词:
Gambusia holbrooki;Poeciliidae
DOI:
doi:10.5061/dryad.10dk4
摘要:
. In contrast, there is often tight within-species allometric scaling, which suggests strong selection against genital–body size combinations that deviate from
al scaling law of ornament" data-category="" data-cropid="" data-dimen="" data-id="5385fe0e-81f8-11ea-ae96-0242ac110002"> Data from: Ornament complexity is correlated with sexual selection: (a comment on Raia et al., "Cope's rule and the universal scaling law of ornament
负责人:
Holman, Luke
关键词:
Allometry Sexual dimorphism Vertebrates
DOI:
doi:10.5061/dryad.ft70n
摘要:
size dimorphism) is positively correlated with size-corrected antler complexity and that the allometric slope of complexity is substantially greater than 0.25, contra Raia et al
Data from: One size fits all? Determinants of sperm transfer in a highly dimorphic orb-web spider
负责人:
关键词:
cryptic female choice;SSD;sexual selection;Argiope;Allometry;Araneae;Genital evolution;Araneidae;natural selection
DOI:
doi:10.5061/dryad.p7j2h
摘要:
The evolutionary significance of widespread hypo-allometric scaling of genital traits in combination with rapid interspecific genital
Data from: Weighing trees with lasers: advances, challenges and opportunities
负责人:
关键词:
carbon;tree;TLS;lidar;aboveground biomass;AGB;structure
DOI:
doi:10.5061/dryad.02dq2
摘要:
ow how TLS can address some of the key uncertainties and limitations of current approaches to estimating AGB based on empirical allometric scaling equations
Data from: Bone-to-body biometric relationships for Owens and Lahontan tui chubs and their hybrids in California
负责人:
关键词:
Siphateles bicolor snyderi;Bones;scales;Morphometry;Siphateles bicolor obesa
DOI:
doi:10.5061/dryad.5t42r
摘要:
yses. The coefficient of determination of linear regressions for scales, pharyngeal arches, dentaries, cleithra, and opercula against body length were consistently high (r2
Data from: Sizing ocean giants: patterns of intraspecific size variation in marine megafauna
负责人:
关键词:
marine megafauna body size allometry
DOI:
doi:10.5061/dryad.411mv
摘要:
, we analyze spatial and temporal intraspecific size variation. We also provide allometric scaling equations between different size measurements as resources
Data from: Allocation strategies for nitrogen and phosphorus in forest plants
负责人:
关键词:
allocation;limiting element;Ecological stoichiometry
DOI:
doi:10.5061/dryad.3h7q736
摘要:
for the N:P ratio. The elemental plasticity of root was higher than that of leaf. Furthermore, at the large scale, the allometric exponents of N and P were less tha
Data from: Predictable food supplies induce plastic shifts in avian scaled body mass
负责人:
关键词:
nutrition;passerines;Scaled Mass Index (SMI);Phenotypic Plasticity;Passer domesticus;body condition
DOI:
doi:10.5061/dryad.24610
摘要:
ler and lighter than their rural counterparts after allometric scaling, whereas 2 independent indices of nutritional (feather growth rates) and developmental
Data from: Complex constraints on allometry revealed by artificial selection on the wing of Drosophila melanogaster
负责人:
关键词:
Drosophila mauritiana;Drosophila sulfurigaster (albostrigata);Drosophila eugracilis;Drosophila greeni;Idiomyia mimica;Idiomyia crucigera;Zaprionus inermis;Drosophila ficusphila;Drosophila gaucha;Drosophila arizonae;Ephydridae;Drosophila saltans;Idiomyia gymnobasis;Drosophila bifasciata;Lauxaniidae;Drosophila busckii;Drosophila pseudoobscura (bogotana);Discocerina obscurella;Drosophila neocordata;Drosophila nigromelanica;Drosophila ananassae;Chymomyza procnemis;Zaprionus Sg. Anaprionus;Drosophila takahashii;drosophila simulans;Drosophila pictiventris;Leucophenga varia;Drosophila repleta;Drosophila emarginata;Zaprionus ghesquierei;Monochaetoscinella Sp.;Drosophila putrida;Drosophila mercatorum;Hirtodrosophila duncani;Drosophila mimetica;Scaptodrosophila lebanonensis (casteeli);Drosophila guttifera;Drosophila virilis;pleiotropy;Drosophila sulfurigaster (bilimbata);Drosophila pinicola;Drosophila sechellia;Drosophila tripunctata;Allometry;Scaptodrosophila latifasciaeformis;Drosophila americana (texana);Neogriphoneura sordida;Drosophila elegans;Drosophila cardini;Homoneura Sp.;Drosophila immigrans;Leucophenga Sp.;Drosophila yakuba;Artificial selection;Drosophila persimilis;Drosophila nikananu;Chloropidae;Scaptodrosophila lebanonensis (lebanonensis);Zaprionus sepsoides;Idiomyia biseriata;Drosophila paulistorum;Drosophila algonquin;Drosophila kikkawai;Drosophila nebulosa;Drosophila pseudoobscura (pseudoobscura);Drosophila paramelanica;Samoaia leonensis;Drosophila santomea;Drosophila sturtevanti;Drosophila acutilabella;Drosophila recens;Scaptomyza adusta;Drosophila aff. florae;Drosophila hydei;Drosophila robusta;Drosophila willistoni;Thaumatomyia Sp.;Drosophila guanche;Hirtodrosophila Sp.;Drosophila lucipennis;Drosophila occidentalis;Idiomyia grimshawi;Drosophila affinis;Drosophila mojavensis;Scaptomyza palmae;Drosophila falleni;Drosophilidae;Drosophila athabasca;Drosophila micromelanica;Drosophila mulleri;Drosophila malerkotliana;drosophila melanogaster;Drosophila funebris;Drosophila erecta;Hirtodrosophila thoracis;Drosophila sulfurigaster (sulfurigaster);Zaprionus indianus;Drosophila euronotus;Drosophila azteca;Drosophila testacea;Idiomyia eurypeza;Scaptodrosophila dorsocentralis;Dettopsomyia nigrovittata;Drosophila neotestacea;Drosophila subobscura;comparative analyses;Drosophila stalkeri;Drosophila equinoxialis;Scaptodrosophila deflexa;Developmental constraints;Drosophila melanica;Mycodrosophila claytonae;Drosophila peninsularis;Scaptodrosophila stonei;Drosophila macrospina;Drosophila americana (americana);Drosophila seguyi;Drosophila nasuta;Idiomyia soonae;Mycodrosophila dimidiata
DOI:
doi:10.5061/dryad.s270f
摘要:
Precise exponential scaling with size is a fundamental aspect of phenotypic variation. These allometric power laws are often invariant across taxa

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