Related Symbionts

95 records

Symbiont records associated with Spodoptera genus

Classification Host Function Function Tags Reference
Bacteria

Enterococcus mundtii actively secretes a stable class IIa bacteriocin (mundticin KS) against invading bacteria, including opportunistic pathogens (E.…

Antimicrobial Activity
Bacteria

Enterococcus mundtii is a pathogenic bacterium whose ingestion negatively affects the development and nutritional physiology of Spodoptera litura. It…

Other
Serratia marcescens

Pseudomonadota

Bacteria

Serratia marcescens is a pathogenic bacterium whose ingestion negatively affects the development and nutritional physiology of Spodoptera litura. Its…

Other
Bacteria

Bifidobacterium asteroides strain wkB204 grew in the presence of amygdalin as the sole carbon source, suggesting it degrades amygdalin and is not sus…

Detoxification Enzymes
Bacteria

Enterococcus mundtii actively secretes a stable class IIa bacteriocin (mundticin KS) against invading bacteria, but not against other gut residents, …

Antimicrobial Activity
Lactobacillus

Bacillota

Bacteria

Lactobacillus has functions including nutrient absorption, energy metabolism, degradation of the plant's secondary metabolites, and insect immunity r…

Growth Regulation Plant Secondary Metabolites
Enterococcus

Bacillota

Bacteria

Enterococcus has functions including nutrient absorption, energy metabolism, degradation of the plant's secondary metabolites, and insect immunity re…

Growth Regulation Plant Secondary Metabolites
Enterobacteriaceae

Pseudomonadota

Bacteria

Enterobacteriaceae modulates plant defense by downregulating polyphenol oxidase (POX) and trypsin proteinase inhibitor (trypsin PI) activity but upre…

Plant Defense Modulation
Pantoea ananatis

Pseudomonadota

Bacteria

Pantoea ananatis modulates plant defense by downregulating polyphenol oxidase (POX) and trypsin proteinase inhibitor (trypsin PI) activity but upregu…

Plant Defense Modulation
Pantoea dispersa

Pseudomonadota

Bacteria

Pantoea dispersa acts as a probiotic for the fall armyworm (Spodoptera frugiperda), helping to detoxify benzoxazinoids (maize secondary metabolites) …

Detoxification Enzymes
Bacteria

Enterococcus sp. FAW13-5 mediates assaults by maize defenses on the fall armyworm's digestive and immune systems, resulting in reduced growth and ele…

Plant Defense Modulation
Bacteria

Enterobacter sp. FAW4-1 mediates assaults by maize defenses on the fall armyworm's digestive and immune systems, resulting in reduced growth and elev…

Plant Defense Modulation
Bacteria

Klebsiella sp. FAW8-1 mediates assaults by maize defenses on the fall armyworm's digestive and immune systems, resulting in reduced growth and elevat…

Plant Defense Modulation
Bacteria

Enterococcus FAW 2-1 can enhance the growth of Spodoptera frugiperda, but this effect is contingent on dietary conditions, isolate availability, and …

Growth Regulation
Wolbachia

Pseudomonadota

Bacteria

Wolbachia infection in Spodoptera frugiperda induces cytoplasmic incompatibility (CI), thereby manipulating host reproduction to facilitate its verti…

Cytoplasmic Incompatibility
Bacteria

Bacillus thuringiensis is a widely used bacterial entomopathogen that produces insecticidal toxins, some of which are expressed in insect-resistant t…

Toxin Production
Saccharomyces

Ascomycota

Fungi

Saccharomyces are important fungi for insects in terms of nutrient supply and may be involved in insect development in the larval midgut of Spodopter…

Growth Regulation Nutrient Provision
Bacteria

Enterococcus mundtii secretes a stable class II bacteriocin, mundticin KS, against invading bacteria, facilitating the normal development of host gut…

Antimicrobial Activity
Apiotrichum

Basidiomycota

Fungi

Apiotrichum could be involved in lipid biosynthesis, and the degradation and detoxification of toxic substances in the larval midgut of Spodoptera fr…

Detoxification Enzymes
Bacteria

Enterococcus spodopteracolus IIL-Luf18 (a newly identified species) functions to metabolize different pesticides within the gut of Spodoptera\ frugip…

Pesticide Metabolization
Bacteria

Enterococcus spodopteracolus IIL-SusEm (a newly identified species) functions to metabolize different pesticides within the gut of Spodoptera\ frugip…

Pesticide Metabolization
Bacteria

Enterococcus entomosocium IIL-ClNone5 (a newly identified species) functions to metabolize different pesticides within the gut of Spodoptera\ frugipe…

Pesticide Metabolization
Bacteria

Enterococcus entomosocium IIL-DmNone1 (a newly identified species) functions to metabolize different pesticides within the gut of Spodoptera\ frugipe…

Pesticide Metabolization
Bacteria

Enterococcus entomosocium IIL-SpNone6 (a newly identified species) functions to metabolize different pesticides within the gut of Spodoptera\ frugipe…

Pesticide Metabolization
Bacteria

Enterococcus spodopteracolus IIL-Cl25 (a newly identified species) functions to metabolize different pesticides within the gut of Spodoptera\ frugipe…

Pesticide Metabolization
Bacteria

Enterococcus spodopteracolus IIL-Sp24 (a newly identified species) functions to metabolize different pesticides within the gut of Spodoptera\ frugipe…

Pesticide Metabolization
Bacteria

Enterococcus entomosocium IIL-SusEc (a newly identified species) functions to metabolize different pesticides within the gut of Spodoptera\ frugiperd…

Pesticide Metabolization
Bacteria

Enterococcus entomosocium IIL-Lc32 (a newly identified species) functions to metabolize different pesticides within the gut of Spodoptera\ frugiperda.

Pesticide Metabolization
Bacteria

Klebsiella sp. EMBL-1 is able to depolymerize and utilize Polyvinyl chloride (PVC) as a sole energy source in the gut of Spodoptera frugiperda larvae.

Plastic Degration
Bacteria

Gut microbiomes of Spodoptera exigua are mainly involved in membrane transport, carbohydrate metabolism, replication, and amino acid metabolism.

Carbohydrate Metabolism
Bacteria

Arthrobacter nicotinovorans is involved in the degradation of lambda-cyhalothrin, deltamethrin, chlorpyrifos ethyl, lufenuron, and spinosyn.

Pesticide Metabolization
Bacteria

Pseudomonas psychrotolerans is involved in the degradation of lambda-cyhalothrin, deltamethrin, chlorpyrifos ethyl, lufenuron, and spinosyn.

Pesticide Metabolization
Bacteria

Microbacterium arborescens is involved in the degradation of lambda-cyhalothrin, deltamethrin, chlorpyrifos ethyl, lufenuron, and spinosyn.

Pesticide Metabolization
Bacteria

Leclercia adecarboxylata is involved in the degradation of lambda-cyhalothrin, deltamethrin, chlorpyrifos ethyl, lufenuron, and spinosyn.

Pesticide Metabolization
Penicillium

Ascomycota

Fungi

Penicillium is well known for its ability to degrade cellulose, hemicellulose, and lignin in the larval midgut of Spodoptera frugiperda.

Cellulose Hydrolysis
Paenibacillus

Bacillota

Bacteria

Paenibacillus strains can be pathogens of arthropods, as noted in a study examining gut bacterial communities of Spodoptera frugiperda.

Other
Pseudomonas stutzeri

Pseudomonadota

Bacteria

Pseudomonas stutzeri is involved in the degradation of lambda-cyhalothrin, deltamethrin, chlorpyrifos ethyl, lufenuron, and spinosyn.

Pesticide Metabolization
Klebsiella

Pseudomonadota

Bacteria

Klebsiella downregulates polyphenol oxidase (POX) but upregulates trypsin proteinase inhibitor (trypsin PI) in this plant species.

Immune Priming
Raoultella

Pseudomonadota

Bacteria

Raoultella downregulates polyphenol oxidase (POX) but upregulates trypsin proteinase inhibitor (trypsin PI) in this plant species.

Immune Priming
Bacteria

Gut bacteria (microbiome) performs detoxifying processes, including dehalogenation and aromatic hydrocarbon degradation.

Detoxification Enzymes
Bacteria

Gut bacteria (midgut bacterial overload) confers an advantage against certain entomopathogens such as B. thuringiensis.

Pathogen Resistance
Bacteria

Gut bacteria (Metagenome data) may be essential for improving the efficiency of food utilization in Spodoptera litura.

Digestive Enzymes
Bacteria

Gut bacteria (Amplicon data) may be essential for improving the efficiency of food utilization in Spodoptera litura.

Digestive Enzymes
Pseudomonas japonica

Pseudomonadota

Bacteria

Pseudomonas japonica facilitates the degradation of flubendiamide and chlorantraniliprole in Spodoptera frugiperda.

Pesticide Metabolization
Serratia marcescens

Pseudomonadota

Bacteria

Serratia marcescens facilitates the degradation of flubendiamide and chlorantraniliprole in Spodoptera frugiperda.

Pesticide Metabolization
Acinetobacter soli

Pseudomonadota

Bacteria

Acinetobacter soli facilitates the degradation of flubendiamide and chlorantraniliprole in Spodoptera frugiperda.

Pesticide Metabolization
Bacteria

Enterococcus mundti is involved in energy and nucleotide metabolism, transcription, and translation pathways.

Other
Bacteria

Bombilactobacillus bombi BI-1.1 can degrade the plant toxin amygdalin in the gut of Spodoptera frugiperda.

Detoxification Enzymes
Bacteria

Bombilactobacillus bombi BI-2.5 can degrade the plant toxin amygdalin in the gut of Spodoptera frugiperda.

Detoxification Enzymes
Bacteria

Bombilactobacillus bombi LV-8.1 can degrade the plant toxin amygdalin in the gut of Spodoptera frugiperda.

Detoxification Enzymes
Enterococcus

Bacillota

Bacteria

Enterococcus protects the host Spodoptera exigua against pathogens and noncommensal microbes from outside.

Antimicrobial Activity
Sphingomonas sp.

Pseudomonadota

Bacteria

Sphingomonas sp. provides a protective effect to Spodoptera frugiperda against chlorantraniliprole stress.

Pesticide Metabolization
Bacteria

Lactobacillus bombicola BI-4G can degrade the plant toxin amygdalin in the gut of Spodoptera frugiperda.

Detoxification Enzymes
Bacteria

Lactobacillus bombicola L5-31 can degrade the plant toxin amygdalin in the gut of Spodoptera frugiperda.

Detoxification Enzymes
Bacteria

Lactobacillus bombicola OCC3 can degrade the plant toxin amygdalin in the gut of Spodoptera frugiperda.

Detoxification Enzymes
Fungi

Epichloë schardlii protects its host by deterring feeding and having negative effects on development.

Developmental Modulation
Bacteria

Xenorhabdus rhabduscin gene cluster products inhibit Spodoptera frugiperda phenoloxidase activity.

Immune Priming
Bacteria

Enterococcus mundtii is involved in producing an antimicrobial peptide in Spodoptera littoralis.

Antimicrobial Activity
Bacteria

Staphylococcus sciuri subsp. sciuri may influence the metabolization of pesticides in insects.

Pesticide Metabolization
Wolbachia

Pseudomonadota

Bacteria

Wolbachia causes male-killing and drives a selective sweep on armyworm haplotype diversity.

Male Killing
Bacteria

Gut bacteria (microbiome) includes the suppression and detoxification of plant defenses.

Detoxification Enzymes
Gilliamella

Pseudomonadota

Bacteria

Gilliamella can degrade the plant toxin amygdalin in the gut of Spodoptera frugiperda.

Detoxification Enzymes
Bacteria

Pseudomonas psychrotolerans may influence the metabolization of pesticides in insects.

Pesticide Metabolization
Bacteria

Enterococcus casseliflavus may influence the metabolization of pesticides in insects.

Pesticide Metabolization
Bacteria

Microbacterium arborescens may influence the metabolization of pesticides in insects.

Pesticide Metabolization
Wolbachia

Pseudomonadota

Bacteria

Wolbachia (in Spodoptera exempta) makes the host more susceptible to viral infection.

Virus Interaction
Bacteria

Microbacterium paraoxydan may influence the metabolization of pesticides in insects.

Pesticide Metabolization
Bacteria

Leclercia adecarboxylata may influence the metabolization of pesticides in insects.

Pesticide Metabolization
Pantoea

Pseudomonadota

Bacteria

Pantoea is involved in degrading and utilizing different types of plant materials.

Plant Biomass Digestion
Bacteria

Enterococcus mundtii may influence the metabolization of pesticides in insects.

Pesticide Metabolization
Pseudomonas stutzeri

Pseudomonadota

Bacteria

Pseudomonas stutzeri may influence the metabolization of pesticides in insects.

Pesticide Metabolization
Bacteria

Gut bacteria affect energy and metabolic homeostasis in Spodoptera frugiperda.

Carbohydrate Metabolism
Delftia lacustris

Pseudomonadota

Bacteria

Delftia lacustris may influence the metabolization of pesticides in insects.

Pesticide Metabolization
Bacteria

Enterococcus spp. may play a protective role against insect pathogens.

Pathogen Resistance
Fungi

Epichloë alsodes protects its host by causing larval mortality.

Stress Resistance
Klebsiella spp.

Pseudomonadota

Bacteria

Klebsiella spp. may have positive effects on insect fecundity.

Fertility
Bacteria

Enterococcus casseliflavus degrades flubendiamide.

Pesticide Metabolization
Bacteria

Enterococcus mundtii degrades flubendiamide.

Pesticide Metabolization
Bacteria

-

-
Enterobacter

Pseudomonadota

Bacteria

-

-
Enterococcus

Bacillota

Bacteria

-

-
Enterococcus

Bacillota

Bacteria

-

-
Bacteria

-

-
Bacteria

-

-
Bacteria

-

-
Bacteria

-

-
Bacteria

-

-
Bacteria

-

-
Bacteria

-

-
Kaistia

Pseudomonadota

Bacteria

-

-
Bacteria

-

-
Providencia

Pseudomonadota

Bacteria

-

-
Pseudomonas

Pseudomonadota

Bacteria

-

-
Ralstonia

Pseudomonadota

Bacteria

-

-
Sediminibacterium

Bacteroidota

Bacteria

-

-
Back to Table

Metagenome Information

3 records

Metagenome sequencing data associated with Spodoptera species

Run Platform Host Location Date BioProject
ILLUMINA

Illumina HiSeq 2500

China

26.08 N 119.28 E

Mar-24
PRJNA401061
ILLUMINA

Illumina HiSeq 2500

China

26.08 N 119.28 E

Mar-24
PRJNA401061
ILLUMINA

Illumina HiSeq 2500

China

26.08 N 119.28 E

Mar-24
PRJNA401061

Amplicon Information

208 records

Amplicon sequencing data associated with Spodoptera species

Run Classification Host Platform Location Environment
SRR21079098

AMPLICON

16S
-
China

missing

-
SRR21079099

AMPLICON

16S
-
China

missing

-
SRR21079100

AMPLICON

16S
-
China

missing

-
SRR21079101

AMPLICON

16S
-
China

missing

-
SRR21079102

AMPLICON

16S
-
China

missing

-
SRR21079115

AMPLICON

16S
-
China

missing

-
SRR21079114

AMPLICON

16S
-
China

missing

-
SRR21079113

AMPLICON

16S
-
China

missing

-
SRR21079112

AMPLICON

16S
-
China

missing

-
SRR21079111

AMPLICON

16S
-
China

missing

-
SRR21079110

AMPLICON

16S
-
China

missing

-
SRR21079109

AMPLICON

16S
-
China

missing

-
SRR21079108

AMPLICON

16S
-
China

missing

-
SRR21079107

AMPLICON

16S
-
China

missing

-
SRR21079106

AMPLICON

16S
-
China

missing

-
SRR21079105

AMPLICON

16S
-
China

missing

-
SRR21079104

AMPLICON

16S
-
China

missing

-
SRR21079103

AMPLICON

16S
-
China

missing

-
SRR8268657

AMPLICON

16S
-
USA

not collected

-
SRR8268660

AMPLICON

16S
-
USA

not collected

-
SRR8268661

AMPLICON

16S
-
USA

not collected

-
SRR8268662

AMPLICON

16S
-
USA

not collected

-
SRR8268663

AMPLICON

16S
-
USA

not collected

-
SRR8268664

AMPLICON

16S
-
USA

not collected

-
SRR8268665

AMPLICON

16S
-
USA

not collected

-
SRR8268666

AMPLICON

16S
-
USA

not collected

-
SRR8268667

AMPLICON

16S
-
USA

not collected

-
SRR8268668

AMPLICON

16S
-
USA

not collected

-
SRR8268669

AMPLICON

16S
-
USA

not collected

-
SRR8268671

AMPLICON

16S
-
USA

not collected

-
SRR8268672

AMPLICON

16S
-
USA

not collected

-
SRR8268673

AMPLICON

16S
-
USA

not collected

-
SRR8268674

AMPLICON

16S
-
USA

not collected

-
SRR8268675

AMPLICON

16S
-
USA

not collected

-
SRR8268676

AMPLICON

16S
-
USA

not collected

-
SRR8268677

AMPLICON

16S
-
USA

not collected

-
SRR8268682

AMPLICON

16S
-
USA

not collected

-
SRR8268680

AMPLICON

16S
-
USA

not collected

-
SRR8268679

AMPLICON

16S
-
USA

not collected

-
SRR8268678

AMPLICON

16S
-
USA

not collected

-
SRR8268640

AMPLICON

16S
-
USA

not collected

-
SRR8268641

AMPLICON

16S
-
USA

not collected

-
SRR8268642

AMPLICON

16S
-
USA

not collected

-
SRR8268643

AMPLICON

16S
-
USA

not collected

-
SRR8268644

AMPLICON

16S
-
USA

not collected

-
SRR8268645

AMPLICON

16S
-
USA

not collected

-
SRR8268646

AMPLICON

16S
-
USA

not collected

-
SRR8268647

AMPLICON

16S
-
USA

not collected

-
SRR8268648

AMPLICON

16S
-
USA

not collected

-
SRR8268649

AMPLICON

16S
-
USA

not collected

-
SRR8268653

AMPLICON

16S
-
USA

not collected

-
SRR8268654

AMPLICON

16S
-
USA

not collected

-
SRR8268655

AMPLICON

16S
-
USA

not collected

-
SRR8268656

AMPLICON

16S
-
USA

not collected

-
SRR8268686

AMPLICON

16S
-
USA

not collected

-
SRR8268685

AMPLICON

16S
-
USA

not collected

-
SRR8268684

AMPLICON

16S
-
USA

not collected

-
SRR8268683

AMPLICON

16S
-
USA

not collected

-
SRR8268681

AMPLICON

16S
-
USA

not collected

-
SRR8268691

AMPLICON

16S
-
USA

not collected

-
SRR8268690

AMPLICON

16S
-
USA

not collected

-
SRR8268688

AMPLICON

16S
-
USA

not collected

-
SRR8268687

AMPLICON

16S
-
USA

not collected

-
SRR20429493

AMPLICON

16S
-
India

28.6913 N 77.2113 E

Host Environment

Irradiated Gut at 130Gy F1

SRR20429494

AMPLICON

16S
-
India

28.6913 N 77.2113 E

Host Environment

Irradiated Gut at 130Gy parent

SRR20429495

AMPLICON

16S
-
India

28.6913 N 77.2113 E

Host Environment

Normal Gut at 0Gy

SRR20408779

AMPLICON

16S
-
India

28.6913 N 77.2113 E

Host Environment

Irradiated Gut at 130Gy

SRR20408781

AMPLICON

16S
-
India

28.6913 N 77.2113 E

Host Environment

Normal Gut at 0Gy

SRR19521734

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521735

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521736

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521737

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521738

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521739

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521740

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521741

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521742

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521743

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521744

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521745

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521746

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521747

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521748

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521749

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521750

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521751

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521752

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521753

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521754

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521755

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521756

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521757

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521758

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521759

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521760

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521761

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521762

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521763

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521764

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521765

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521766

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521767

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521768

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR19521769

AMPLICON

16S
-
China

25.06 N 102.75 E

-
SRR11962733

AMPLICON

16S
-
China

43.27 N 123.36 E

-
SRR11962732

AMPLICON

16S
-
China

43.27 N 123.36 E

-
SRR11962729

AMPLICON

16S
-
China

43.27 N 123.36 E

-
SRR11962734

AMPLICON

16S
-
China

43.27 N 123.36 E

-
SRR11962730

AMPLICON

16S
-
China

43.27 N 123.36 E

-
SRR11962703

AMPLICON

16S
-
China

42.20 N 122.29 E

-
SRR11962713

AMPLICON

16S
-
China

41.53 N 122.55 E

-
SRR11962714

AMPLICON

16S
-
China

41.53 N 122.55 E

-
SRR11962715

AMPLICON

16S
-
China

41.53 N 122.55 E

-
SRR11962716

AMPLICON

16S
-
China

41.53 N 122.55 E

-
SRR11962717

AMPLICON

16S
-
China

41.53 N 122.55 E

-
SRR11962706

AMPLICON

16S
-
China

42.20 N 122.29 E

-
SRR11962705

AMPLICON

16S
-
China

42.20 N 122.29 E

-
SRR11962704

AMPLICON

16S
-
China

42.20 N 122.29 E

-
SRR11962702

AMPLICON

16S
-
China

42.20 N 122.29 E

-
SRR11962723

AMPLICON

16S
-
China

35.07 N 117.06 E

-
SRR11962720

AMPLICON

16S
-
China

36.15 N 117.26 E

-
SRR11962719

AMPLICON

16S
-
China

35.07 N 117.06 E

-
SRR11962701

AMPLICON

16S
-
China

36.15 N 117.26 E

-
SRR11962700

AMPLICON

16S
-
China

36.15 N 117.26 E

-
SRR11962699

AMPLICON

16S
-
China

36.15 N 117.26 E

-
SRR11962707

AMPLICON

16S
-
China

36.46 N 117.25 E

-
SRR11962708

AMPLICON

16S
-
China

36.46 N 117.25 E

-
SRR11962709

AMPLICON

16S
-
China

36.15 N 117.26 E

-
SRR11962710

AMPLICON

16S
-
China

36.46 N 117.25 E

-
SRR11962711

AMPLICON

16S
-
China

36.46 N 117.25 E

-
SRR11962712

AMPLICON

16S
-
China

36.46 N 117.25 E

-
SRR11962718

AMPLICON

16S
-
China

35.07 N 117.06 E

-
SRR11962721

AMPLICON

16S
-
China

35.07 N 117.06 E

-
SRR11962722

AMPLICON

16S
-
China

35.07 N 117.06 E

-
SRR11962697

AMPLICON

16S
-
China

38.31 N 115.33 E

-
SRR11962735

AMPLICON

16S
-
China

37.22 N 114.44 E

-
SRR11962736

AMPLICON

16S
-
China

37.22 N 114.44 E

-
SRR11962737

AMPLICON

16S
-
China

37.22 N 114.44 E

-
SRR11962738

AMPLICON

16S
-
China

37.22 N 114.44 E

-
SRR11962739

AMPLICON

16S
-
China

38.31 N 115.33 E

-
SRR11962740

AMPLICON

16S
-
China

38.31 N 115.33 E

-
SRR11962741

AMPLICON

16S
-
China

38.31 N 115.33 E

-
SRR11962698

AMPLICON

16S
-
China

38.31 N 115.33 E

-
SRR11962742

AMPLICON

16S
-
China

36.24 N 121.57 E

-
SRR11962731

AMPLICON

16S
-
China

36.24 N 121.57 E

-
SRR11962743

AMPLICON

16S
-
China

36.24 N 121.57 E

-
SRR11962728

AMPLICON

16S
-
China

41.49 N 123.32 E

-
SRR11962725

AMPLICON

16S
-
China

41.49 N 123.32 E

-
SRR11962724

AMPLICON

16S
-
China

41.49 N 123.32 E

-
SRR11962726

AMPLICON

16S
-
China

41.49 N 123.32 E

-
SRR11962727

AMPLICON

16S
-
China

41.49 N 123.32 E

-
SRR23304971

AMPLICON

16S
-
Egypt

31.2001 N 29.9187 E

Lepidopteran gut bacteriome

Noctuidae

SRR23304958

AMPLICON

16S
-
Egypt

31.2001 N 29.9187 E

Lepidopteran gut bacteriome

Noctuidae

SRR23304960

AMPLICON

16S
-
Egypt

31.2001 N 29.9187 E

Lepidopteran gut bacteriome

Noctuidae

SRR23304961

AMPLICON

16S
-
Egypt

31.2001 N 29.9187 E

Lepidopteran gut bacteriome

Noctuidae

SRR23304962

AMPLICON

16S
-
Egypt

31.2001 N 29.9187 E

Lepidopteran gut bacteriome

Noctuidae

SRR23304963

AMPLICON

16S
-
Egypt

31.2001 N 29.9187 E

Lepidopteran gut bacteriome

Noctuidae

SRR23304964

AMPLICON

16S
-
Egypt

31.2001 N 29.9187 E

Lepidopteran gut bacteriome

Noctuidae

SRR23304965

AMPLICON

16S
-
Egypt

31.2001 N 29.9187 E

Lepidopteran gut bacteriome

Noctuidae

SRR23304966

AMPLICON

16S
-
Egypt

31.2001 N 29.9187 E

Lepidopteran gut bacteriome

Noctuidae

SRR23304967

AMPLICON

16S
-
Egypt

31.2001 N 29.9187 E

Lepidopteran gut bacteriome

Noctuidae

SRR23304968

AMPLICON

16S
-
Egypt

31.2001 N 29.9187 E

Lepidopteran gut bacteriome

Noctuidae

SRR23304969

AMPLICON

16S
-
Egypt

31.2001 N 29.9187 E

Lepidopteran gut bacteriome

Noctuidae

SRR23304951

AMPLICON

16S
-
Egypt

31.2001 N 29.9187 E

Lepidopteran gut bacteriome

Noctuidae

SRR23304952

AMPLICON

16S
-
Egypt

31.2001 N 29.9187 E

Lepidopteran gut bacteriome

Noctuidae

SRR23304953

AMPLICON

16S
-
Egypt

31.2001 N 29.9187 E

Lepidopteran gut bacteriome

Noctuidae

SRR23304954

AMPLICON

16S
-
Egypt

31.2001 N 29.9187 E

Lepidopteran gut bacteriome

Noctuidae

SRR23304955

AMPLICON

16S
-
Egypt

31.2001 N 29.9187 E

Lepidopteran gut bacteriome

Noctuidae

SRR23304956

AMPLICON

16S
-
Egypt

31.2001 N 29.9187 E

Lepidopteran gut bacteriome

Noctuidae

SRR23304957

AMPLICON

16S
-
Egypt

31.2001 N 29.9187 E

Lepidopteran gut bacteriome

Noctuidae

SRR23304959

AMPLICON

16S
-
Egypt

31.2001 N 29.9187 E

Lepidopteran gut bacteriome

Noctuidae

SRR23304970

AMPLICON

16S
-
Egypt

31.2001 N 29.9187 E

Lepidopteran gut bacteriome

Noctuidae

SRR10738528

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738527

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738526

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738525

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738524

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738523

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738521

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738522

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738520

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738519

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738518

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738553

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738541

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738542

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738543

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738544

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738545

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738546

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738547

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738548

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738549

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738550

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738551

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738552

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738540

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738539

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738538

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738537

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738536

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738535

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738534

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738533

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738532

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738531

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738530

AMPLICON

16S
-
Brazil

not applicable

-
SRR10738529

AMPLICON

16S
-
Brazil

not applicable

-