Culicidae (Family)
Species List
24 species in Culicidae
Aedes aegypti
yellow fever mosquito
Aedes albopictus
tiger mosquito or forest mosquito
Aedes fluviatilis
Anopheles arabiensis
Anopheles barbirostris
Anopheles coluzzii
Anopheles gambiae
Anopheles merus
Anopheles quadriannulatus
Anopheles sinensis
Anopheles stephensi
Culex pipiens
Culex quinquefasciatus
southern house mosquito
Culex tritaeniorhynchus
Culex usquatus
Haemagogus janthinomys
Ochlerotatus fluviatilis
Ochlerotatus scapularis
Ochlerotatus serratus
Ochlerotatus trivittatus
Sabethes chloropterus
Sabethes glaucodaemon
Sabethes quasicyaneus
Xyleborus pubescens
Related Symbionts
91 recordsSymbiont records associated with Culicidae family
Classification | Host | Function | Function Tags | Reference | |
---|---|---|---|---|---|
Asaia sp. W12
Pseudomonadota |
Bacteria
|
Two complete operons encoding cytochrome bo3-type ubiquinol terminal oxidases (cyoABCD-1 and cyoABCD-2) were found in most Asaia genomes, possibly of… |
- | ||
Pseudomonas
Pseudomonadota |
Bacteria
|
Pseudomonas is the most prevalent microbiota in the Plasmodium-negative groups and protects mosquitoes from the invasion of malaria parasites.A low p… |
Pathogen interaction
|
||
Wolbachia pipientis
Pseudomonadota |
Bacteria
|
The presence of Wolbachia pipientis improves energy performance in A. fluviatilis cells; it affects the regulation of key energy sources such as lipi… |
Immune priming
|
||
Spiroplasma
Mycoplasmatota |
Bacteria
|
may have reproductive interactions with their mosquito hosts,either providing an indirect fitness advantage to females by inducing male killing or by… |
Reproductive manipulation
Pathogen interaction
|
||
Spiroplasma
Mycoplasmatota |
Bacteria
|
may have reproductive interactions with their mosquito hosts,either providing an indirect fitness advantage to females by inducing male killing or by… |
Reproductive manipulation
Pathogen interaction
|
||
Zancudomyces culisetae
Zoopagomycota |
Fungi
|
larval fungal exposure significantly decreased overall microbial community diversity, altered microbiome composition and structure, and decreased wit… |
Nutrient provision
|
||
Wolbachia
Pseudomonadota |
Bacteria
|
Wolbachia strain wAlbB displays the ability to induce high levels of cytoplasmic incompatibility, wAlbB conferred resistance in the mosquito to the h… |
Reproductive manipulation
|
||
Serratia marcescens
Pseudomonadota |
Bacteria
|
facilitates arboviral infection through a secreted protein named SmEnhancin, which digests membrane-bound mucins on the mosquito gut epithelia, there… |
Pathogen interaction
|
||
Zancudomyces culisetae
Zoopagomycota |
Fungi
|
fungal colonization reduced microbial community variation across individuals and differentially impacted the outcomes of transstadial transmission fo… |
- | ||
Wolbachia
Pseudomonadota |
Bacteria
|
Wolbachia induce resistance to a number of human pathogens, including dengue virus (DENV), Plasmodium, and filarial nematodes, but the molecular mech… |
Pathogen interaction
|
||
Asaia
Pseudomonadota |
Bacteria
|
The bacterium Asaia is considered a highly promising candidate for arboviral control in Aedes mosquitoes.Asaia could play a role in inhibiting CHIKV … |
Pathogen interaction
|
||
Acinetobacter
Pseudomonadota |
Bacteria
|
Acinetobacter species increase the resistance of An. gambiae to Plasmodium development partly by the induction of anti-Plasmodium factors in Imd path… |
Pathogen interaction
Immune priming
|
||
Wolbachia wAnga
Pseudomonadota |
Bacteria
|
wAnga may influence or interact with the Anopheles microbiota, which may contribute to the impact of wAnga on Anopheles biology and vectorial capacity |
Pathogen interaction
|
||
Asaia sp
Pseudomonadota |
Bacteria
|
Asaia sp. strain effectively lodged in the female gut and salivary glands, sites that are crucial for Plasmodium sp. development and transmission |
- | ||
Wolbachia
Pseudomonadota |
Bacteria
|
Wolbachia symbiont in Aedes aegypti limits infection with dengue, Chikungunya, and Plasmodium; Wolbachia also halves adult lifespan |
Pathogen interaction
|
||
Wolbachia strain wMel
Pseudomonadota |
Bacteria
|
induce cytoplasmic incompatibility and control the spread of arboviruses around the world through blockage of viral transmission |
Reproductive manipulation
|
||
Azospira
Pseudomonadota |
Bacteria
|
may be related with mediating adaptation to different ecological niches or in shaping specific adult behaviors including mating |
- | ||
Azospira
Pseudomonadota |
Bacteria
|
may be related with mediating adaptation to different ecological niches or in shaping specific adult behaviors including mating |
- | ||
Pseudomonas
Pseudomonadota |
Bacteria
|
may be related with mediating adaptation to different ecological niches or in shaping specific adult behaviors including mating |
- | ||
Pseudomonas
Pseudomonadota |
Bacteria
|
may be related with mediating adaptation to different ecological niches or in shaping specific adult behaviors including mating |
- | ||
Rhodocyclacea
Pseudomonadota |
Bacteria
|
may be related with mediating adaptation to different ecological niches or in shaping specific adult behaviors including mating |
- | ||
Rhodocyclacea
Pseudomonadota |
Bacteria
|
may be related with mediating adaptation to different ecological niches or in shaping specific adult behaviors including mating |
- | ||
Shewanella
Pseudomonadota |
Bacteria
|
may be related with mediating adaptation to different ecological niches or in shaping specific adult behaviors including mating |
- | ||
Shewanella
Pseudomonadota |
Bacteria
|
may be related with mediating adaptation to different ecological niches or in shaping specific adult behaviors including mating |
- | ||
Chromobacterium sp.
Pseudomonadota |
Bacteria
|
aminopeptidase secreted by a Chromobacterium species suppresses DENV infection by directly degrading the DENV envelope protein |
Pathogen interaction
|
||
Enterobacteriaceae
Pseudomonadota |
Bacteria
|
be identified in each part of the hyperendemic area of this study has a potential role to interact with malaria parasites. |
Pathogen interaction
|
||
Erwinia
Pseudomonadota |
Bacteria
|
be identified in each part of the hyperendemic area of this study has a potential role to interact with malaria parasites. |
Pathogen interaction
|
||
Pantoea
Pseudomonadota |
Bacteria
|
be identified in each part of the hyperendemic area of this study has a potential role to interact with malaria parasites. |
Pathogen interaction
|
||
Staphylococcus
Bacillota |
Bacteria
|
be identified in each part of the hyperendemic area of this study has a potential role to interact with malaria parasites. |
Pathogen interaction
|
||
Serratia sp.
Pseudomonadota |
Bacteria
|
produce lipodepsipeptides, stephensiolides A-K, that have antibiotic activity and facilitate bacterial surface motility. |
Chemical biosynthesis
|
||
Beauveria bassiana
Ascomycota |
Fungi
|
stimulates the expression of Toll and JAK-STAT-associated effectors to suppress DENV infection of A. aegypti |
Pathogen interaction
Immune priming
|
||
Proteus sp.
Pseudomonadota |
Bacteria
|
upregulates AMP gene expression, resulting in suppression of DENV infection in the mosquito gut epithelium |
Pathogen interaction
|
||
Serratia
Pseudomonadota |
Bacteria
|
Serratia marcescens is known to block the sporogonic development of P. vivax parasites in An. albimanus |
Pathogen interaction
|
||
Wolbachia
Pseudomonadota |
Bacteria
|
antibiotics induced histopathological damage and reactive oxygen species production in the ovaries |
Immune priming
|
||
Penicillium
Ascomycota |
Fungi
|
mycobiota abundance and composition change in the midgut as a response to blood intake |
Natural enemy resistance
Fertility
|
||
Wolbachia wAlbA
Pseudomonadota |
Bacteria
|
induces cytoplasmic incompatibility and blocks dengue transmission in Aedes albopictus |
Reproductive manipulation
|
||
Wolbachia wAlbB
Pseudomonadota |
Bacteria
|
induces cytoplasmic incompatibility and blocks dengue transmission in Aedes albopictus |
Reproductive manipulation
|
||
Leptosphaerulina persists
Ascomycota |
Fungi
|
induces a distinctive melanotic phenotype across the developmental stages of mosquito |
Pigmentation alteration
|
||
Gluconobacter
Pseudomonadota |
Bacteria
|
Gluconobacter might increase the susceptibility of Ae. aegypti to CHIKV infection. |
Pathogen interaction
|
||
Wolbachia strain wAlbB
Pseudomonadota |
Bacteria
|
Dengue reduction increased with Wolbachia frequency to a predicted 75.8% at 100% |
Pathogen interaction
|
||
Serratia Y1
Pseudomonadota |
Bacteria
|
inhibits Plasmodium development through stimulation of the mosquito immunity |
Immune priming
|
||
Serratia Y1
Pseudomonadota |
Bacteria
|
inhibits Plasmodium development through stimulation of the mosquito immunity |
Immune priming
|
||
Asaia
Pseudomonadota |
Bacteria
|
play a beneficial role in the normal development of An. stephensi larvae |
Growth and Development
|
||
Bacillus sp.
Bacillota |
Bacteria
|
without this midgut flora showed delayed development to become adult |
Growth and Development
|
||
Wolbachia
Pseudomonadota |
Bacteria
|
modulates metabolism and immunity during Aedes fluviatilis oogenesis |
Growth and Development
Immune priming
|
||
Wolbachia pipientis
Pseudomonadota |
Bacteria
|
A. fluviatilis and Wolbachia may be modulated by glycogen metabolism |
- | ||
Wolbachia
Pseudomonadota |
Bacteria
|
Wolbachia can inhibit the presence of Thorsellia and Serratia |
Pesticide metabolization
|
||
Klebsiella sp. MC1F
Pseudomonadota |
Bacteria
|
could impact larval development (e.g., spermidine) |
Growth and Development
|
||
Microsporidia sp. MB
Microsporidia |
Fungi
|
a malaria-blocking microsporidian symbiont |
Pathogen interaction
|
||
Serratia ureilytica Su_YN1
Pseudomonadota |
Bacteria
|
mediate mosquito resistance to Plasmodium |
Natural enemy resistance
|
||
Wolbachia
Pseudomonadota |
Bacteria
|
induces cytoplasmic incompatibility (CI) |
Reproductive manipulation
|
||
Wolbachia pipientis
Pseudomonadota |
Bacteria
|
induces cytoplasmic incompatibility |
Reproductive manipulation
|
||
Wolbachia pipientis
Pseudomonadota |
Bacteria
|
induces cytoplasmic incompatibility |
Reproductive manipulation
|
||
Wolbachia
Pseudomonadota |
Bacteria
|
alter host reproductive behavior |
- | ||
Microsporidia MB
Microsporidia |
Fungi
|
impairs Plasmodium transmission |
Pathogen interaction
|
||
Acinetobacter sp. KCNone61-AaNBF
Pseudomonadota |
Bacteria
|
axenic larvae cannot develop |
Growth and Development
|
||
Acinetobacter sp. KCNone61-AaNBF
Pseudomonadota |
Bacteria
|
axenic larvae cannot develop |
Growth and Development
|
||
Aeromonas sp. KCNone1None-AaL
Pseudomonadota |
Bacteria
|
axenic larvae cannot develop |
Growth and Development
|
||
Aeromonas sp. KCNone1None-AaL
Pseudomonadota |
Bacteria
|
axenic larvae cannot develop |
Growth and Development
|
||
Aquitalea sp. KCNoneNone2-AaL
Pseudomonadota |
Bacteria
|
axenic larvae cannot develop |
Growth and Development
|
||
Aquitalea sp. KCNoneNone2-AaL
Pseudomonadota |
Bacteria
|
axenic larvae cannot develop |
Growth and Development
|
||
Chryseobacterium sp. KCNoneNone3-AaL
Bacteroidota |
Bacteria
|
axenic larvae cannot develop |
Growth and Development
|
||
Chryseobacterium sp. KCNoneNone3-AaL
Bacteroidota |
Bacteria
|
axenic larvae cannot develop |
Growth and Development
|
||
Microbacterium sp. KCNone38-AaL
Actinomycetota |
Bacteria
|
axenic larvae cannot develop |
Growth and Development
|
||
Microbacterium sp. KCNone38-AaL
Actinomycetota |
Bacteria
|
axenic larvae cannot develop |
Growth and Development
|
||
Paenibacillus sp. KCNone16-AaL
Bacillota |
Bacteria
|
axenic larvae cannot develop |
Growth and Development
|
||
Paenibacillus sp. KCNone16-AaL
Bacillota |
Bacteria
|
axenic larvae cannot develop |
Growth and Development
|
||
Wolbachia
Pseudomonadota |
Bacteria
|
Increase dopamine levels |
- | ||
Achromobacter
Pseudomonadota |
Bacteria
|
gut microbiome |
- | ||
Acinetobacter
Pseudomonadota |
Bacteria
|
gut microbiome |
- | ||
Alcaligenes
Pseudomonadota |
Bacteria
|
gut microbiome |
- | ||
Bacillus cereus
Bacillota |
Bacteria
|
gut microbiome |
- | ||
Bacillus simplex
Bacillota |
Bacteria
|
gut microbiome |
- | ||
Chromobacterium aquaticum
Pseudomonadota |
Bacteria
|
gut microbiome |
- | ||
Chryseobacterium
Bacteroidota |
Bacteria
|
gut microbiome |
- | ||
Comamonas testosteroni
Pseudomonadota |
Bacteria
|
gut microbiome |
- | ||
Leucobacter
Actinomycetota |
Bacteria
|
gut microbiome |
- | ||
Pseudomonas protegens
Pseudomonadota |
Bacteria
|
gut microbiome |
- | ||
Serratia marcescens
Pseudomonadota |
Bacteria
|
gut microbiome |
- | ||
Sphingobium
Pseudomonadota |
Bacteria
|
gut microbiome |
- | ||
Staphylococcus hominis
Bacillota |
Bacteria
|
gut microbiome |
- | ||
bacteria
- |
Bacteria
|
- |
- | ||
Chryseobacterium
Bacteroidota |
Bacteria
|
- |
- | ||
Bacteria
|
- |
- | |||
Serratia
Pseudomonadota |
Bacteria
|
- |
- | ||
Serratia marcescens
Pseudomonadota |
Bacteria
|
- |
- | ||
Smittium culisetae
Zoopagomycota |
Fungi
|
- |
- | ||
Thorsellia
Pseudomonadota |
Bacteria
|
- |
- | ||
Wickerhamomyces anomalus
Ascomycota |
Fungi
|
- |
- | ||
Wolbachia
Pseudomonadota |
Bacteria
|
- |
- | ||
Wolbachia pipientis
Pseudomonadota |
Bacteria
|
- |
- |
Metagenome Information
95 recordsMetagenome sequencing data associated with Culicidae family
Run | Platform | Host | Location | Date | BioProject |
---|---|---|---|---|---|
SRR21195524
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195488
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195489
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195490
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195491
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195492
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195493
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195494
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195495
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195496
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195497
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195498
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195499
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195500
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195501
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195502
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195503
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195504
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195505
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195506
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195507
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195508
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195509
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195510
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195511
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195512
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195513
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195514
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195515
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195516
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195517
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195518
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195519
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195520
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195521
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195522
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195523
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195466
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195467
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195468
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195469
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195470
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195471
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195472
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195473
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195474
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195475
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195476
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195477
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195478
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195479
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195480
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195481
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195482
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195483
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195484
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195485
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195486
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR21195487
WGS |
ILLUMINA
Illumina HiSeq 2500 |
China
39.54 N 116.25 E |
2022-05-18
|
PRJNA873190 | |
SRR24065788
WGS |
ILLUMINA
NextSeq 500 |
Brazil
|
2021-10-27
|
PRJNA947063 | |
SRR24065790
WGS |
ILLUMINA
NextSeq 500 |
Brazil
|
2021-10-27
|
PRJNA947063 | |
SRR24049322
WGS |
ILLUMINA
NextSeq 500 |
Brazil
|
2021-10-26
|
PRJNA947063 | |
SRR24049321
WGS |
ILLUMINA
NextSeq 500 |
Brazil
|
2021-10-26
|
PRJNA947063 | |
SRR24049320
WGS |
ILLUMINA
NextSeq 500 |
Brazil
|
2021-10-26
|
PRJNA947063 | |
SRR24065792
WGS |
ILLUMINA
NextSeq 500 |
Brazil
|
2021-10-26
|
PRJNA947063 | |
SRR24065791
WGS |
ILLUMINA
NextSeq 500 |
Brazil
|
2021-10-26
|
PRJNA947063 | |
SRR24065789
WGS |
ILLUMINA
NextSeq 500 |
Brazil
|
2021-10-26
|
PRJNA947063 | |
SRR24019318
WGS |
ILLUMINA
NextSeq 500 |
Brazil
|
2021-10-25
|
PRJNA947063 | |
SRR24049323
WGS |
ILLUMINA
NextSeq 500 |
Brazil
|
2021-10-25
|
PRJNA947063 | |
SRR24049324
WGS |
ILLUMINA
NextSeq 500 |
Brazil
|
2021-10-25
|
PRJNA947063 | |
SRR24019322
WGS |
ILLUMINA
NextSeq 500 |
Brazil
|
2021-10-25
|
PRJNA947063 | |
SRR24019321
WGS |
ILLUMINA
NextSeq 500 |
Brazil
|
2021-10-25
|
PRJNA947063 | |
SRR24019320
WGS |
ILLUMINA
NextSeq 500 |
Brazil
|
2021-10-25
|
PRJNA947063 | |
SRR24019319
WGS |
ILLUMINA
NextSeq 500 |
Brazil
|
2021-10-25
|
PRJNA947063 | |
SRR24019323
WGS |
ILLUMINA
NextSeq 500 |
Brazil
|
2021-10-21
|
PRJNA947063 | |
SRR24019324
WGS |
ILLUMINA
NextSeq 500 |
Brazil
|
2021-10-21
|
PRJNA947063 | |
SRR24019325
WGS |
ILLUMINA
NextSeq 500 |
Brazil
|
2021-10-21
|
PRJNA947063 | |
SRR24019326
WGS |
ILLUMINA
NextSeq 500 |
Brazil
|
2021-10-20
|
PRJNA947063 | |
SRR24019327
WGS |
ILLUMINA
NextSeq 500 |
Brazil
|
2021-10-19
|
PRJNA947063 | |
SRR24358075
WGS |
ILLUMINA
Illumina NovaSeq 6000 |
Germany
50.104510 N 8.216475 E |
2020-07-21
|
PRJNA952898 | |
SRR24358073
WGS |
ILLUMINA
Illumina NovaSeq 6000 |
Germany
50.104510 N 8.216475 E |
2020-07-21
|
PRJNA952898 | |
SRR24358074
WGS |
ILLUMINA
Illumina NovaSeq 6000 |
Germany
50.104510 N 8.216475 E |
2020-07-21
|
PRJNA952898 | |
SRR19577180
WGS |
ILLUMINA
Illumina HiSeq 4000 |
China
23.54 N 113.52 E |
2020-06-01
|
PRJNA846076 | |
SRR24762870
WGS |
ILLUMINA
NextSeq 500 |
Brazil
5.949390 S 49.658962 W |
2019-12
|
PRJNA918574 | |
SRR24762872
WGS |
ILLUMINA
NextSeq 500 |
Brazil
5.666424 S 50.665002 W |
2019-11
|
PRJNA918574 | |
SRR24762873
WGS |
ILLUMINA
NextSeq 500 |
Brazil
6.450333 S 50.341827 W |
2019-11
|
PRJNA918574 | |
SRR24762874
WGS |
ILLUMINA
NextSeq 500 |
Brazil
6.267730 S 49.710321 W |
2019-10
|
PRJNA918574 | |
SRR24762877
WGS |
ILLUMINA
NextSeq 500 |
Brazil
5.666424 S 50.665002 W |
2019-04
|
PRJNA918574 | |
SRR24762878
WGS |
ILLUMINA
NextSeq 500 |
Brazil
6.538529 S 49.854874 W |
2019-02
|
PRJNA918574 | |
SRR24762863
WGS |
ILLUMINA
NextSeq 500 |
Brazil
5.949390 S 49.658962 W |
2019-02
|
PRJNA918574 | |
SRR24762866
WGS |
ILLUMINA
NextSeq 500 |
Brazil
6.526068 S 50.155226 W |
2019-02
|
PRJNA918574 | |
SRR24762867
WGS |
ILLUMINA
Illumina MiniSeq |
Brazil
6.450333 S 50.341827 W |
2016-04
|
PRJNA918574 | |
SRR24762869
WGS |
ILLUMINA
Illumina MiniSeq |
Brazil
5.666424 S 50.665002 W |
2015-03
|
PRJNA918574 | |
SRR24762880
WGS |
ILLUMINA
Illumina MiniSeq |
Brazil
5.666424 S 50.665002 W |
2014-10
|
PRJNA918574 | |
SRR24762879
WGS |
ILLUMINA
Illumina MiniSeq |
Brazil
6.267730 S 49.710321 W |
2014-10
|
PRJNA918574 |
Amplicon Information
251 recordsAmplicon sequencing data associated with Culicidae family
Run | Classification | Host | Platform | Location | Environment |
---|---|---|---|---|---|
SRR21195467
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195524
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195523
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195522
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195521
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195520
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195519
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195518
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195517
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195516
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195515
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195514
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195513
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195512
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195511
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195510
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195509
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195508
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195507
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195506
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195505
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195504
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195503
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195502
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195501
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195500
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195499
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195498
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195497
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195496
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195495
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195494
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195493
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195492
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195491
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195490
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195489
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195488
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195487
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195486
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195485
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195484
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195483
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195482
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195481
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195480
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195479
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195478
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195477
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195476
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195475
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195466
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195474
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195473
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195472
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195471
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195470
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195469
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR21195468
WGS |
16S
|
-
|
China
39.54 N 116.25 E |
-
|
|
SRR22566617
AMPLICON |
16S
|
-
|
USA
41.664662 N 91.584727 W |
-
|
|
SRR15305586
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305512
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305513
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305514
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305515
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305516
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305517
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305518
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305519
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305520
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305521
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305522
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305523
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305524
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305525
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305526
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305527
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305528
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305529
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305530
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305531
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305532
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305533
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305534
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305535
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305536
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305537
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305538
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305539
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305543
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305544
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305545
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305546
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305547
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305548
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305549
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305550
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305551
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305552
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305553
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305554
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
not applicable
not applicable |
|
SRR15305555
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
not applicable
not applicable |
|
SRR15305560
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305561
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305562
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305563
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305564
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305565
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305566
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305567
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305568
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305569
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305570
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305571
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305572
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305573
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305574
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305575
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305576
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305577
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305578
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305579
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305580
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305581
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305582
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
laboratory water
tap water |
|
SRR15305583
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305584
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15305585
AMPLICON |
16S
|
-
|
USA
38.55519976 N 121.72640651 W |
environmental water
cemetery water |
|
SRR15304780
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304783
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304784
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304785
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304786
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304787
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304763
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304764
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304765
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304766
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304767
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304768
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304769
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304770
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304771
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304772
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304773
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304774
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304775
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304776
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304777
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304778
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304779
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304782
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304756
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304757
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304758
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304759
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304760
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304761
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR15304762
AMPLICON |
16S
|
-
|
USA
38.52786856 N 121.75629510 W |
environmental water
cemetery water |
|
SRR18090723
AMPLICON |
16S
|
-
|
USA
not applicable |
insect microbiome
temperature |
|
SRR17221658
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221659
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221660
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221661
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221662
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221663
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221664
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221657
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221666
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221667
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221668
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221669
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221670
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221671
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221656
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221655
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR9993018
AMPLICON |
16S
|
-
|
Taiwan
24.762085 N 121.5826 E |
-
|
|
SRR17221674
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221676
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221677
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221678
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221679
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221680
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221681
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221682
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221683
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221684
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221685
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221686
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221687
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221688
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221654
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221652
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221651
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221650
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221649
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221648
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221665
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221672
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221673
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR17221675
AMPLICON |
16S
|
-
|
USA
41.33132151 N 72.91913370 W |
animal associated
midgut |
|
SRR7890295
AMPLICON |
16S
|
-
|
USA
missing |
-
|
|
SRR7890293
AMPLICON |
16S
|
-
|
Zimbabwe
missing |
-
|
|
SRR7890292
AMPLICON |
16S
|
-
|
Pakistan
missing |
-
|
|
SRR7890291
AMPLICON |
16S
|
-
|
Pakistan
missing |
-
|
|
SRR7890290
AMPLICON |
16S
|
-
|
uncalculated
missing |
-
|
|
SRR7890289
AMPLICON |
16S
|
-
|
USA
missing |
-
|
|
SRR7890288
AMPLICON |
16S
|
-
|
USA
missing |
-
|
|
SRR7890287
AMPLICON |
16S
|
-
|
USA
missing |
-
|
|
SRR7890286
AMPLICON |
16S
|
-
|
USA
missing |
-
|
|
SRR7890285
AMPLICON |
16S
|
-
|
Pakistan
missing |
-
|
|
SRR7890284
AMPLICON |
16S
|
-
|
USA
missing |
-
|
|
SRR7890283
AMPLICON |
16S
|
-
|
USA
missing |
-
|
|
SRR7890282
AMPLICON |
16S
|
-
|
Pakistan
missing |
-
|
|
SRR7890281
AMPLICON |
16S
|
-
|
Zimbabwe
missing |
-
|
|
SRR7890280
AMPLICON |
16S
|
-
|
South Africa
missing |
-
|
|
SRR7890279
AMPLICON |
16S
|
-
|
USA
missing |
-
|
|
SRR7890278
AMPLICON |
16S
|
-
|
Pakistan
missing |
-
|
|
SRR7890277
AMPLICON |
16S
|
-
|
Mali
12.41 N 7.50 W |
-
|
|
SRR7890276
AMPLICON |
16S
|
-
|
uncalculated
missing |
-
|
|
SRR7890275
AMPLICON |
16S
|
-
|
Kenya
missing |
-
|
|
SRR7890274
AMPLICON |
16S
|
-
|
South Africa
23.00 S 31.14 E |
-
|
|
SRR7890273
AMPLICON |
16S
|
-
|
Zimbabwe
missing |
-
|
|
SRR7890272
AMPLICON |
16S
|
-
|
USA
missing |
-
|
|
SRR7890271
AMPLICON |
16S
|
-
|
USA
missing |
-
|
|
SRR7890320
AMPLICON |
16S
|
-
|
USA
missing |
-
|
|
SRR7890319
AMPLICON |
16S
|
-
|
USA
missing |
-
|
|
SRR7890318
AMPLICON |
16S
|
-
|
Mali
12.41 N 7.50 W |
-
|
|
SRR7890317
AMPLICON |
16S
|
-
|
South Africa
missing |
-
|
|
SRR7890316
AMPLICON |
16S
|
-
|
South Africa
missing |
-
|
|
SRR7890315
AMPLICON |
16S
|
-
|
South Africa
missing |
-
|
|
SRR7890314
AMPLICON |
16S
|
-
|
South Africa
missing |
-
|
|
SRR7890313
AMPLICON |
16S
|
-
|
Mali
12.41 N 7.50 W |
-
|
|
SRR7890312
AMPLICON |
16S
|
-
|
South Africa
23.00 S 31.14 E |
-
|
|
SRR7890311
AMPLICON |
16S
|
-
|
South Africa
23.00 S 31.14 E |
-
|
|
SRR7890310
AMPLICON |
16S
|
-
|
Kenya
missing |
-
|
|
SRR7890309
AMPLICON |
16S
|
-
|
Kenya
missing |
-
|
|
SRR7890308
AMPLICON |
16S
|
-
|
uncalculated
missing |
-
|
|
SRR7890307
AMPLICON |
16S
|
-
|
uncalculated
missing |
-
|
|
SRR7890306
AMPLICON |
16S
|
-
|
Mali
12.41 N 7.50 W |
-
|
|
SRR7890305
AMPLICON |
16S
|
-
|
Mali
12.41 N 7.50 W |
-
|
|
SRR7890304
AMPLICON |
16S
|
-
|
uncalculated
missing |
-
|
|
SRR7890303
AMPLICON |
16S
|
-
|
Kenya
missing |
-
|
|
SRR7890302
AMPLICON |
16S
|
-
|
Kenya
missing |
-
|
|
SRR7890301
AMPLICON |
16S
|
-
|
Zimbabwe
missing |
-
|
|
SRR7890300
AMPLICON |
16S
|
-
|
South Africa
23.00 S 31.14 E |
-
|
|
SRR7890299
AMPLICON |
16S
|
-
|
South Africa
23.00 S 31.14 E |
-
|
|
SRR7890298
AMPLICON |
16S
|
-
|
USA
missing |
-
|
|
SRR7890297
AMPLICON |
16S
|
-
|
USA
missing |
-
|
|
SRR7890296
AMPLICON |
16S
|
-
|
USA
missing |
-
|
|
SRR7890294
AMPLICON |
16S
|
-
|
Zimbabwe
missing |
-
|