U.S. flag

An official website of the United States government

Format
Items per page
Sort by

Send to:

Choose Destination

Search results

Items: 1 to 20 of 216

1.

Mammalian Methylation Consortium

(Submitter supplied) The Mammalian Methylation Consortium aimed to characterize the relationship between cytosine methylation levels and a) species characteristics such as maximum lifespan and b) individual sample characteristics such as age, sex, tissue type. Both supervised machine learning approaches and unsupervised machine learning approaches were applied to the data as described in the citations. To facilitate comparative analyses across species, the mammalian methylation consortium applied a single measurement platform (the mammalian methylation array, GPL28271) to n=15216 DNA samples derived from 70 tissue types of 348 different mammalian species (331 eutherian-, 15 marsupial-, and 2 monotreme species). more...
Organism:
Osphranter robustus; Bradypus variegatus; Echinops telfairi; Blarina brevicauda; Desmodus rotundus; Pan troglodytes; Lycaon pictus; Vulpes vulpes; Felis catus; Zalophus californianus; Orcinus orca; Tursiops truncatus; Balaenoptera borealis; Balaenoptera musculus; Trichechus manatus; Equus grevyi; Sus scrofa; Giraffa camelopardalis; Capra hircus; Ovis aries; Tragelaphus strepsiceros; Oryctolagus cuniculus; Marmota monax; Cricetulus griseus; Ondatra zibethicus; Acomys cahirinus; Apodemus sylvaticus; Hystrix cristata; Bathyergus janetta; Georychus capensis; Eulemur coronatus; Eulemur fulvus; Vicugna pacos; Eulemur macaco; Microcebus murinus; Chinchilla lanigera; Erethizon dorsatum; Eumetopias jubatus; Caenolestes fuliginosus; Peromyscus eremicus; Peromyscus polionotus; Eulemur fulvus collaris; Lepus californicus; Tamandua tetradactyla; Talpa occidentalis; Myotis lucifugus; Rhinolophus ferrumequinum; Arvicanthis niloticus; Sorex caecutiens; Sorex isodon; Litocranius walleri; Scalopus aquaticus; Equus asinus somalicus; Ceratotherium simum simum; Callospermophilus lateralis; Mustela altaica; Napaeozapus insignis; Apodemus peninsulae; Ochotona alpina; Scapanus orarius; Hemiechinus auritus; Orientallactaga sibirica; Rhynchonycteris naso; Gerbillus nanus; Tupaia gracilis; Sylvilagus bachmani; Alticola barakshin; Asellia tridens; Nothocricetulus migratorius; Didelphis virginiana; Didelphis marsupialis; Notamacropus agilis; Macropus fuliginosus; Choloepus hoffmanni; Amblysomus hottentotus; Artibeus jamaicensis; Varecia variegata; Cheirogaleus medius; Gorilla gorilla; Pongo pygmaeus; Homo sapiens; Crocuta crocuta; Phoca vitulina; Phocoena phocoena; Delphinapterus leucas; Physeter catodon; Diceros bicornis; Odocoileus virginianus; Muntiacus vaginalis; Bos taurus; Tragelaphus oryx; Sylvilagus floridanus; Peromyscus maniculatus; Microtus pennsylvanicus; Mus musculus; Cryptomys hottentotus; Hapalemur griseus; Nanger granti; Balaena mysticetus; Molossus molossus; Nycticeius humeralis; Elephantulus edwardii; Sylvilagus audubonii; Propithecus tattersalli; Nannospalax ehrenbergi; Sciurus niger; Sorex cinereus; Tupaia belangeri; Cavia aperea; Phascolarctos cinereus; Ochotona rufescens; Sorex palustris; Cabassous unicinctus; Myotis myotis; Aplodontia rufa; Pipistrellus pipistrellus; Saccopteryx bilineata; Addax nasomaculatus; Antidorcas marsupialis; Kobus megaceros; Chlorocebus sabaeus; Ctenomys opimus; Neomys fodiens; Sorex vagrans; Eidolon helvum; Pteropus rodricensis; Okapia johnstoni; Phyllostomus discolor; Lagenorhynchus obliquidens; Callospermophilus saturatus; Alexandromys fortis; Xanthonycticebus pygmaeus; Cephalorhynchus commersonii; Cuniculus paca; Myotis brandtii; Myotis nattereri; Elephantulus myurus; Rhabdomys pumilio; Pteropus vampyrus; Apodemus uralensis; Condylura cristata; Tamiasciurus douglasii; Neurotrichus gibbsii; Rhombomys opimus; Rhinolophus alcyone; Myotis evotis; Meriones rex; Hemicentetes semispinosus; Microgale cowani; Dendrohyrax arboreus; Propithecus coquereli; Hipposideros ruber; Alexandromys maximowiczii; Galea musteloides leucoblephara; Alexandromys mongolicus; Nannospalax galili; Lasiopodomys gregalis; Tachyglossus aculeatus; Sarcophilus harrisii; Macropus giganteus; Tamandua mexicana; Dasypus novemcinctus; Erinaceus europaeus; Atelerix albiventris; Sorex hoyi; Pteropus poliocephalus; Pteropus hypomelanus; Rousettus aegyptiacus; Phyllostomus hastatus; Lemur catta; Otolemur crassicaudatus; Loris tardigradus; Callithrix jacchus; Papio hamadryas; Canis lupus familiaris; Ursus americanus; Martes americana; Odobenus rosmarus divergens; Elephas maximus; Loxodonta africana; Rhinoceros unicornis; Procavia capensis; Sus scrofa domesticus; Capreolus capreolus; Cervus elaphus; Aepyceros melampus; Ochotona princeps; Peromyscus leucopus; Mus minutoides; Rattus norvegicus; Rattus rattus; Cavia porcellus; Myocastor coypus; Heterocephalus glaber; Monodelphis domestica; Choloepus didactylus; Eptesicus fuscus; Chaetophractus villosus; Vombatus ursinus; Galago moholi; Acinonyx jubatus; Dromiciops gliroides; Eulemur mongoz; Suricata suricatta; Phoca groenlandica; Ictidomys tridecemlineatus; Glaucomys sabrinus; Lepus americanus; Mesoplodon bidens; Sylvilagus nuttallii; Nyctalus noctula; Castor canadensis; Trachypithecus francoisi; Cynopterus brachyotis; Lynx rufus; Plecotus auritus; Ctenomys steinbachi; Sorex minutissimus; Sorex tundrensis; Sorex trowbridgii; Nanger dama; Tragelaphus eurycerus; Tragelaphus spekii; Gazella leptoceros; Tupaia tana; Microtus ochrogaster; Propithecus diadema; Cyclopes didactylus; Eulemur flavifrons; Equus quagga; Marmota flaviventris; Parascalops breweri; Connochaetes taurinus albojubatus; Eozapus setchuanus; Phodopus roborovskii; Eulemur sanfordi; Tamias townsendii; Rhinopoma hardwickii; Ochotona dauurica; Ochotona hyperborea; Ochotona pallasi; Cavia tschudii; Myotis thysanodes; Myotis yumanensis; Neophoca cinerea; Zapus princeps; Tolypeutes matacus; Myotis vivesi; Tupaia longipes; Paraechinus aethiopicus; Microtus guentheri; Smutsia temminckii; Mirza zaza; Alticola semicanus; Lasiopodomys brandtii; Neogale vison; Crocidura cyanea; Micaelamys namaquensis; Clethrionomys gapperi; Galeopterus variegatus; Sylvilagus brasiliensis; Cephalorhynchus hectori hectori; Cephalorhynchus hectori maui; Paraechinus hypomelas; Microgale thomasi; Cervus canadensis; Ornithorhynchus anatinus; Notamacropus eugenii; Osphranter rufus; Suncus murinus; Tadarida brasiliensis; Antrozous pallidus; Nycticebus coucang; Perodicticus potto; Macaca mulatta; Canis latrans; Mustela putorius furo; Panthera leo; Panthera tigris; Puma concolor; Delphinus delphis; Megaptera novaeangliae; Equus caballus; Orycteropus afer; Tragelaphus imberbis; Tamiasciurus hudsonicus; Cricetulus longicaudatus; Mesocricetus auratus; Meriones unguiculatus; Cricetomys gambianus; Galea musteloides; Hydrochoerus hydrochaeris; Bathyergus suillus; Lagenorhynchus albirostris; Macroscelides proboscideus; Sciurus carolinensis; Daubentonia madagascariensis; Eulemur rubriventer; Oreamnos americanus; Enhydra lutris; Hippotragus equinus; Hippotragus niger; Globicephala macrorhynchus; Apodemus agrarius; Carollia perspicillata; Peromyscus californicus; Tamias striatus; Steno bredanensis; Phodopus campbelli; Hylomys suillus; Urocitellus columbianus; Jaculus jaculus; Callithrix geoffroyi; Mustela frenata; Ctenomys lewisi; Sorex roboratus; Tamias amoenus; Tragelaphus angasii; Chrysocyon brachyurus; Nanger soemmerringii; Eudorcas thomsonii; Dipus sagitta; Tursiops aduncus; Tenrec ecaudatus; Neotoma cinerea; Microtus richardsoni; Pteropus giganteus; Pteropus pumilus; Mops pumilus; Meriones libycus; Setifer setosus; Ellobius talpinus; Cricetulus barabensis; Suncus varilla; Lasiopodomys mandarinus; Aonyx cinereus; Myodes rufocanus; Varecia rubra; Leptonycteris yerbabuenae; Eulemur rufus; Fukomys damarensis; Eulemur albifrons; Gerbillus cheesmani; Microgale drouhardi; Notamacropus rufogriseus; Microtus oeconomus; Nesogale talazaci
Type:
Methylation profiling by array
Platform:
GPL28271
15043 Samples
Download data: CSV, DOCX, IDAT
Series
Accession:
GSE223748
ID:
200223748
2.

Comparative analysis of innate immune responses to viral infection among animals

(Submitter supplied) Bats harbour various viruses without severe symptoms and act as natural reservoirs. This tolerance of bats toward viral infections is assumed to be originated from the uniqueness of their immune system. However, how the innate immune response varies between primates and bats remains unclear. To illuminate differences in innate immune responses among animal species, we performed a comparative single-cell RNA-sequencing analysis on peripheral blood mononuclear cells (PBMCs) from four species including Egyptian fruit bats inoculated with various infectious stimuli.
Organism:
Macaca mulatta; Homo sapiens; Rousettus aegyptiacus; Pan troglodytes
Type:
Expression profiling by high throughput sequencing
4 related Platforms
16 Samples
Download data: H5
Series
Accession:
GSE218199
ID:
200218199
3.

Landscape and age dynamics of immune cells in the Egyptian Rousette Bat

(Submitter supplied) Bats harbor high-impact zoonotic viruses in absence of clinical disease, which has been recently associated with unique features of their immune system. They seem to restrict inflammation and possibly limit disease manifestation to a minimum. In-depth characterization of cellular immunity in bats is yet largely missing, and imprinting of age and development on immune cell compartments remains unexplored. more...
Organism:
Rousettus aegyptiacus
Type:
Expression profiling by high throughput sequencing
Platform:
GPL30616
4 Samples
Download data: MTX, TSV, TXT
Series
Accession:
GSE183925
ID:
200183925
4.

Vocal learning-associated convergent evolution in mammalian regulatory elements and proteins

(Submitter supplied) This represents the first transcriptomic and epigenomic characterization of the vocalization-associated brain circuits of a non-human mammalian vocal learner (Egyptian fruit bat), yielding fundamental insights into the regulatory and molecular pathways underlying the evolution of complex vocal behavior in mammals.
Organism:
Rousettus aegyptiacus
Type:
Expression profiling by high throughput sequencing; Genome binding/occupancy profiling by high throughput sequencing
Platform:
GPL30616
32 Samples
Download data: BIGWIG, NARROWPEAK, SF
Series
Accession:
GSE187366
ID:
200187366
5.

Genome Methylation Predicts Age and Longevity of Bats

(Submitter supplied) An Infinium microarray platform (GPL28271, HorvathMammalMethylChip40) was used to generate DNA methylation data from several tissues in several bat species. Tissues: skin (wing punches), liver, brain, skeletal muscle.
Organism:
Rousettus aegyptiacus; Desmodus rotundus; Rattus norvegicus; Myotis lucifugus; Rhynchonycteris naso; Pteropus poliocephalus; Pteropus hypomelanus; Phyllostomus hastatus; Eptesicus fuscus; Nyctalus noctula; Cynopterus brachyotis; Rhinolophus ferrumequinum; Myotis vivesi; Artibeus jamaicensis; Antrozous pallidus; Homo sapiens; Mus musculus; Molossus molossus; Nycticeius humeralis; Myotis myotis; Saccopteryx bilineata; Phyllostomus discolor; Pteropus vampyrus; Tadarida brasiliensis; Carollia perspicillata; Eidolon helvum; Pteropus rodricensis; Myotis brandtii; Pteropus giganteus; Pteropus pumilus; Leptonycteris yerbabuenae
Type:
Methylation profiling by array
Platform:
GPL28271
908 Samples
Download data: DOCX, IDAT, TXT
Series
Accession:
GSE164127
ID:
200164127
6.

Different Egyptian rousette interferon omega proteins elicit an overlapping but not identical transcriptional response in bat cells.

(Submitter supplied) Abstract from accompanying publication: "Bats host a number of viruses that cause severe disease in humans without experiencing overt symptoms of disease themselves. While the mechanisms underlying this ability to avoid sickness are not known, deep sequencing studies of bat genomes have uncovered genetic adaptations that may have functional importance in the antiviral response of these animals. Egyptian rousette bats (Rousettus aegyptiacus) are the natural reservoir hosts of Marburg virus (MARV). more...
Organism:
Rousettus aegyptiacus
Type:
Expression profiling by high throughput sequencing
Platform:
GPL24487
66 Samples
Download data: TXT
Series
Accession:
GSE145761
ID:
200145761
7.

Infection of RoNi cells with Sendai Cantell virus, MARV371bat virus, and VP35 mutant MARV371bat-R301A virus at MOI of 1.0

(Submitter supplied) Study was performed in order to determine the scope of antiviral response of Rousettus aegyptiacus-derived fibroblasts to Sendai and Marburg virus infection. This study aids in understanding the function of the expanded immune repertoire of Rosettus aegyptiacus.
Organism:
Rousettus aegyptiacus
Type:
Expression profiling by high throughput sequencing
Platform:
GPL24487
36 Samples
Download data: GFF, H5
Series
Accession:
GSE117367
ID:
200117367
8.

Infection of RoNi cells with Sendai Cantell virus at MOI of 1.0

(Submitter supplied) Study was performed in order to determine the type and scope of interferon response of Rousettus aegyptiacus-derived fibroblasts to Sendai virus infection. This study helps to understand the function of the expanded immune repertoire of Rosettus aegyptiacus.
Organism:
Rousettus aegyptiacus
Type:
Expression profiling by high throughput sequencing
Platform:
GPL24487
18 Samples
Download data: GFF, H5
Series
Accession:
GSE108941
ID:
200108941
9.

Illumina NovaSeq 6000 (Rousettus aegyptiacus)

Organism:
Rousettus aegyptiacus
3 Series
40 Samples
Download data
Platform
Accession:
GPL30616
ID:
100030616
10.

Illumina HiSeq 2500 (Rousettus aegyptiacus)

Organism:
Rousettus aegyptiacus
3 Series
120 Samples
Download data
Platform
Accession:
GPL24487
ID:
100024487
11.

genomic DNA from Egyptian fruit bat Spleen 205600840008_R01C01

Organism:
Rousettus aegyptiacus
Source name:
Spleen
Platform:
GPL28271
Series:
GSE223748
Download data: IDAT
Sample
Accession:
GSM6993160
ID:
306993160
12.

genomic DNA from Egyptian fruit bat Liver 205600840001_R05C02

Organism:
Rousettus aegyptiacus
Source name:
Liver
Platform:
GPL28271
Series:
GSE223748
Download data: IDAT
Sample
Accession:
GSM6993135
ID:
306993135
13.

genomic DNA from Egyptian fruit bat Skin 203877620068_R02C01

Organism:
Rousettus aegyptiacus
Source name:
Skin
Platform:
GPL28271
Series:
GSE223748
Download data: IDAT
Sample
Accession:
GSM6983823
ID:
306983823
14.

genomic DNA from Egyptian fruit bat Skin 203877620074_R06C02

Organism:
Rousettus aegyptiacus
Source name:
Skin
Platform:
GPL28271
Series:
GSE223748
Download data: IDAT
Sample
Accession:
GSM6983821
ID:
306983821
15.

genomic DNA from Egyptian fruit bat Skin 203877620017_R04C02

Organism:
Rousettus aegyptiacus
Source name:
Skin
Platform:
GPL28271
Series:
GSE223748
Download data: IDAT
Sample
Accession:
GSM6983808
ID:
306983808
16.

genomic DNA from Egyptian fruit bat Skin 203877620017_R03C02

Organism:
Rousettus aegyptiacus
Source name:
Skin
Platform:
GPL28271
Series:
GSE223748
Download data: IDAT
Sample
Accession:
GSM6983807
ID:
306983807
17.

genomic DNA from Egyptian fruit bat Skin 203877620017_R04C01

Organism:
Rousettus aegyptiacus
Source name:
Skin
Platform:
GPL28271
Series:
GSE223748
Download data: IDAT
Sample
Accession:
GSM6983803
ID:
306983803
18.

genomic DNA from Egyptian fruit bat Skin 203877620029_R03C01

Organism:
Rousettus aegyptiacus
Source name:
Skin
Platform:
GPL28271
Series:
GSE223748
Download data: IDAT
Sample
Accession:
GSM6983792
ID:
306983792
19.

genomic DNA from Egyptian fruit bat Skin 203877620029_R02C01

Organism:
Rousettus aegyptiacus
Source name:
Skin
Platform:
GPL28271
Series:
GSE223748
Download data: IDAT
Sample
Accession:
GSM6983791
ID:
306983791
20.

genomic DNA from Egyptian fruit bat Skin 203877620003_R04C02

Organism:
Rousettus aegyptiacus
Source name:
Skin
Platform:
GPL28271
Series:
GSE223748
Download data: IDAT
Sample
Accession:
GSM6983788
ID:
306983788
Format
Items per page
Sort by

Send to:

Choose Destination

Supplemental Content

db=gds|term=txid9407[Organism]|query=1|qty=348|blobid=MCID_66dc2b4b08e11e1347833e17|ismultiple=true|min_list=5|max_list=20|def_tree=20|def_list=|def_view=|url=/Taxonomy/backend/subset.cgi?|trace_url=/stat?
   Taxonomic Groups  [List]
Tree placeholder
    Top Organisms  [Tree]

Find related data

Search details

See more...

Recent activity

Your browsing activity is empty.

Activity recording is turned off.

Turn recording back on

See more...
Support Center