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Data from: Growth hormone deficiency and excess alter the gut microbiome in adult male mice
负责人:
关键词:
Gut microbiome;Growth hormone
DOI:
doi:10.5061/dryad.73n5tb2sr
摘要:
while excess GH increases microbial maturity. Several common bacterial genera were shared, although in opposing directions, between the two mouse lines
Data from: Population density and climate shape early-life survival and recruitment in a long-lived pelagic seabird
负责人:
关键词:
Capture-mark-recapture Juvenile vital rates Population dynamics Wandering albatross
DOI:
doi:10.5061/dryad.p62h7
摘要:
species with a long immature period (9–10 years), to test for sex and age effects on these parameters and to identify the environmental factors enc
Data from: Demographic drivers of age-dependent sexual selection
负责人:
关键词:
drivers of selection;linear selection;sexual selection;Ovis canadensis;selection analysis;sexually selected characters;target of selection
DOI:
doi:10.5061/dryad.43nj8
摘要:
how demographic changes influenced the intensity, direction and form of sexual selection and whether selective pressures varied with age. We tested whether breeder
Data from: Utility of pooled sequencing for association mapping in non-model organisms
负责人:
关键词:
conservation genetics;Genomics\/Proteomics;Oncorhynchus tshawytscha;Evolution of Sex;Fish;Bioinfomatics\/Phyloinfomatics;Adaptation
DOI:
doi:10.5061/dryad.85q6j
摘要:
s for each sex to discover novel genes involved with age at maturity in O. tshawytscha such as opsin4 and transmembrane protein19. While not app
Data from: Leaf size in three generations of a dioecious tropical tree, Ocotea tenera (Lauraceae): sexual dimorphism and changes with age
负责人:
关键词:
Ocotea tenera;leaf size and shape;Lauraceae;Holocene;sexual dimorphism;heritability
DOI:
doi:10.5061/dryad.271cs
摘要:
ae), a dioecious understory tree in Monteverde, Costa Rica, to explore leaf size differences between genders and age classes across generations. METHODS: We measured leaf si
Data from: Effects of polyploidy and reproductive mode on life history trait expression
负责人:
关键词:
Asexuality genomic variation mating system organismal ecology phenotypic variation ploidy level
DOI:
doi:10.5061/dryad.432d1
摘要:
. We detected a strong negative correlation between the rate of growth and age at reproductive maturity, suggesting that the relatively early maturation
Data from: Genomic signatures of fine?scale local selection in Atlantic salmon suggest involvement of sexual maturation, energy homeostasi
负责人:
关键词:
sockeye salmon;microgeographic adaptation;Salmo salar;salmonid;Atlantic salmon;ecotype;Holocene;local selection
DOI:
doi:10.5061/dryad.463n4v7
摘要:
selection around genes associated with variation in sexual maturation, energy homeostasis, and immune defence. These included the large-effect age-at-maturity
Data from: Positive selection in development and growth rate regulation genes involved in species divergence of the genus Radix
负责人:
关键词:
RNA-seq;Radix;Adaptive sequence evolution;Transcriptomics;Adaptation;Radix balthica;positive selection;mollusks;reproductive isolation
DOI:
doi:10.5061/dryad.1d49q
摘要:
Background: Life history traits like developmental time, age and size at maturity are directly related to fitness in all organisms and play a ma
Data from: Living near the edge: being close to mature forest increases the rate of succession in beetle communities
负责人:
关键词:
Sogdini SEAGO Gen A;Macroplectus CHANDLER Type 1;within Aleocharinae TFIC sp 066;Acallistus longus;Percosoma carenoides;Geomela TFIC sp 01;Sogdini ANIC gen B;Rhabdotus reflexus;Palimbolus victoriae;Falagria TFIC sp 01;Pentagonica vittipenis;Zyras TFIC sp 01;Zyras TFIC sp 05;within Pselaphinae TFIC sp 06;Zyras TFIC sp 04;within Pselaphinae TFIC sp 05;Zyras TFIC sp 03;Zyras TFIC sp 02;Ciconissus gibbicollis;Poropterus alboscutellaris;Arsipoda bifrons;Microsilpha TFIC sp 03;Quedius subopaceous;Clambus bornemisszai;Quedius baldiensis;Exithius TFIC sp 01;Aridius nodifer;Colon TFIC sp 17;Arsipoda TFIC sp 04;Dryophthorus ECZ sp 02;Nargomorphus globulus;Sagola CHANDLER Tasmania 1;Myrmicholeva ligulata;Hobartius eucalypti;Austronemadus TFIC sp 03;Lissotes cancroides;Rybaxis parvidens;Telura vitticollis;Anotylus TFIC sp 03;Xynotropis TFIC sp 01;Anotylus TFIC sp 02;within Aleocharinae TFIC sp 161;within Aleocharinae TFIC sp 162;Phyllochlaenia TFIC sp 01;Homethes elegans;Sloaneana tasmaniae;Exithius capucinus;Anotylus TFIC sp 07;Quedius inaequalipennis;Cryptamorpha victoriae;Anotylus TFIC sp 05;Anotylus TFIC sp 04;Paropsisterna bimaculata;Quedius stenocephalus;Decilaus nigronotatus;within Pselaphinae TFIC sp 12;Philothermus tasmanicus;PselaphineTFIC sp 06;Rentoniinae TFIC sp 01;Eboo elongata;Seriocoderus TFIC sp 05;Osirius TFIC sp 01;Mecyclothorax ambiguus;Agonochula curtula;Cyphon TFIC sp 05;Quedius TFIC sp 07;within Ptillidae TFIC sp 21;Zeadolopus TFIC sp 01;Zeadolopus TFIC sp 02;within Ptillidae TFIC sp 16;Sepedophilus TFIC sp 07;Sepedophilus TFIC sp 01;Quedius TFIC sp 03;Tasmanityrus newtoni;Quedius TFIC sp 04;within Aleocharinae TFIC sp 156;within Cryptorhynchinae TFIC sp 20;within Aleocharinae TFIC sp 032;Hymaea succinfera;Spanioda carissima;Chylnus ater;Scopodes sigillatus;Nagomorphus globulus;Diemenoma commoda;within Ptillidae TFIC sp 01;Decilaus bryophilus;Cryptamorpha TFIC sp 01;Chichester CHANDLER Tasmania 1;within Ptillidae TFIC sp 07;within Ptillidae TFIC sp 06;within Pselaphine TFIC sp 20;Conoderus australasiae;Beetle abundance;Adelium abbreviatum;within Aleocharinae TFIC sp 004;Aulaxus CHANDLER Type 1;Catoposchema tasmaniae;Thalycrodes pulchrum;Heteronyx tasmanicus;Rybaxis variabilis;Brycopia coeloides;within Aleocharinae TFIC sp 127;within Aleocharinae TFIC sp 007;within Cryptorhynchinae TFIC sp 07;Austrorhysus TFIC sp 01;within Aleocharinae TFIC sp 014;within Aleocharinae TFIC sp 015;within Aleocharinae TFIC sp 132;Notonomus politulus;Paraplectus CHANDLER Tasmania 1;Microchaetes scoparius;Baeocera TFIC sp 02;Baeocera TFIC sp 01;Spaerothorax tasmani;Tyrogetus TFIC sp 01;Talayra TFIC sp 01;Leptopius TFIC sp 01;Ascara sublineata;Prostomus murinus;litter depth;Mandalotus blackburni;Quedius TFIC sp 10;Stichonotus piceus;Hyperomma bryophilum;within Aleocharinae TFIC sp 100;Pterocyrtus striatulus;Decilaus TFIC sp 22;Microchaetes hystricosus;Euconnus TFIC sp 07;Atheta TFIC sp 02;Lissotes subcaeruleus;Atheta TFIC sp 03;Atheta TFIC sp 04;Ischnosoma TFIC sp 01;Arsipoda variegata;Atheta TFIC sp 01;Horaemorphus TFIC sp 12;Ryzobius nr alphabetica;Horaemorphus TFIC sp 10;Hyperomma TFIC sp 05;within Eucnemidae TFIC sp 02;Enhypnon punctatus;Microsilpha ANIC Thayer sp 15;Philonthus TFIC sp 01;Heteronyx pubescens;Philonthus TFIC sp 06;Enhypnon tuberculatus;Decilaus lateralis;Thalycrodes cylindricum;Blepharhymenus sp nr apicornis;Anabaxis CHANDLER type 1;Mandalotus muscivorus;Nargiotes gordoni (ID uncertain);Soil variables;with Aleocharinae TFIC sp 163;Sagola TFIC sp 01;Sagola TFIC sp 02;Tetrabothrus claviger;Orchesia alphabetica;vegetation cover and diversity;Dapleuros tasmaniensis;Quedius duplopunctatus;Spaerothorax pubientris;Pachyporopterus satyrus;Leaf Area Index;Dinichus terreus;Aspidiphorus humeralis;Chameloscyphon huonensis;Orchesia TFIC sp 19;Heterothops TFIC sp 03;Lestignathus cursor;Colenisia TFIC sp 01;Enicmus priopterus;Trechistus terricola;Decilaus striatus;Orchesia TFIC sp 08;Orchesia TFIC sp 07;Choleva TFIC sp 02;Choleva TFIC sp 01;Lestignathus foveatus;Holopsis TFIC sp 01;Quediomimus TFIC sp 03;Orchesia TFIC sp 06;Orchesia TFIC sp 01;Roptoperus tasmaniensis;Heteromastix nigripes;Mandalotus arciferus;Pselaphaulax CHANDLER Tasmania 1;Decilaus TFIC sp 03;Decilaus TFIC sp 04;Decilaus TFIC sp 01;Decilaus TFIC sp 02;Phyllochlaenia villosa;Sagola rugicornis;Eublackburniella TFIC sp 01;Trechinae TFIC sp 08;Euplectops TFIC sp 01;Falagria TFIC sp 05;distance from mature forest;litter cover;Pseudoceneus solicitus;within Oxypodiini TFIC sp 06;within Oxypodiini TFIC sp 05;within Oxypodiini TFIC sp 04;within Oxypodiini TFIC sp 03;Exeiratus TFIC sp 07;Notocercyon TFIC sp 01;Pedilophorus griffithi;Exeiratus TFIC sp 04;Euplectops CHANDLER Tasmania 1;Coripera deplanata;Orchesia TFIC sp 23
DOI:
doi:10.5061/dryad.10c30
摘要:
ross boundaries between mature and secondary forest at 15 sites, sampling a chronosequence of three forest age classes (5-10, 23-29 and 42-46 years since
Data from: Genetic architecture of threshold reaction norms for male alternative reproductive tactics in Atlantic salmon (Salmo salar L.)
负责人:
关键词:
DOI:
doi:10.5061/dryad.4h0d0
摘要:
on chromosome 25 and encompassing a locus previously shown to be linked to sea age at maturity in anadromous Atlantic salmon. These results provide new empirical

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