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iMetaOmics

Wiley (John Wiley & Sons)

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Your prioritized action plan

Ordered by how many DOIs each fix touches — start here, not with every error at once.

1

Add abstracts to 91 articles

Abstracts are what surface your work in Google Scholar, Dimensions, and OpenAlex.

Medium impact91 DOIs
2

Attach ORCID iDs across 28 articles

ORCID iDs strengthen author disambiguation and institutional reporting.

Low impact28 DOIs
3

Deposit reference lists for 19 records

Deposited references power Crossref's Cited-by links between your articles and the literature.

Low impact19 DOIs

DOIs for this ISSN

Showing the top 5 of 178 DOIs, ordered by correction priority.

# Title Missing Priority Citations
1 CPStools: A package for analyzing chloroplast genome sequenc… (10.1002/imo2.25)
Abstract
48.61 87
2 STAGER checklist: Standardized testing and assessment guidel… (10.1002/imo2.7)
ORCID
36.93 29
3 Linkages between soil nutrient turnover and above‐ground cro… (10.1002/imo2.55)
ORCID
35.37 25
4 iMetaOmics: Advancing human and environmental health through… (10.1002/imo2.21)
Abstract
31.97 18
5 Transcriptomic and metabolomic responses of maize under conv… (10.1002/imo2.48)
ORCID
31.97 18
6 The active effect of <i>Rhizophagus irregularis</i> inoculan… (10.1002/imo2.23)
Abstract
29.40 14
7 HiFi based metagenomic assembly strategy provides accuracy n… (10.1002/imo2.70041)
Abstract
29.40 14
8 A super pan‐genome map provides genomic insights into evolut… (10.1002/imo2.15)
Abstract
21.13 6
9 CGAS (Chloroplast Genome Analysis Suite): An automated pytho… (10.1002/imo2.70093)
Abstract
19.45 5
10 Insights into the evolution and fruit color change‐related g… (10.1002/imo2.13)
Abstract
17.47 4
11 <i>Salmonella</i>—Host–microbiota interactions: Immunity and… (10.1002/imo2.16)
Abstract
17.47 4
12 Cohort profile: A longitudinal multi‐omics cohort of patient… (10.1002/imo2.18)
Abstract
17.47 4
13 Circulating metabolomic profile of the MIND diet and its rel… (10.1002/imo2.61)
Abstract
17.47 4
14 BioMGCore: A toolkit for detection of biological metabolites… (10.1002/imo2.70036)
Abstract
17.47 4
15 Saliva MicroAge: A salivary microbiome based machine learnin… (10.1002/imo2.70040)
Abstract
17.47 4
16 From burden to hope: Noncommunicable diseases in India and t… (10.1002/imo2.11)
Abstract
15.05 3
17 TCfinder: Robust tumor cell discrimination in scRNA‐seq base… (10.1002/imo2.22)
Abstract
15.05 3
18 <i>Arabidopsis</i> multiomics reveals the role of autophagy… (10.1002/imo2.28)
Abstract
15.05 3
19 Pep2TCR: Accurate prediction of CD4 T cell receptor binding… (10.1002/imo2.43)
Abstract
15.05 3
20 Comparative genomic analysis of Chinese <i>Erwinia amylovora… (10.1002/imo2.44)
Abstract
15.05 3
21 Gut microbiota and OMVs: Unveiling novel regulatory mechanis… (10.1002/imo2.70001)
Abstract
15.05 3
22 Identification of potential SARS‐CoV‐2 genomic regions repre… (10.1002/imo2.70019)
Abstract ORCID
15.05 1
23 Genome assembly and genomic architecture of a prominent cold… (10.1002/imo2.32)
Abstract
11.93 2
24 Key species drive community and functional stability of segm… (10.1002/imo2.51)
Abstract
11.93 2
25 Functional and evolutionary characterization of potential au… (10.1002/imo2.70002)
Abstract
11.93 2
26 The role of <i>Akkermansia muciniphila</i> in cancer: Mechan… (10.1002/imo2.70010)
Abstract
11.93 2
27 40 years after the discovery of <i>Helicobacter Pylori</i>:… (10.1002/imo2.70017)
Abstract
11.93 2
28 Towards tick virome and emerging tick‐borne viruses: Protoco… (10.1002/imo2.70022)
Abstract
11.93 2
29 Distinctive metabolic disturbances associated with redox hom… (10.1002/imo2.70043)
Abstract
11.93 2
30 GISDD: A comprehensive global integrated sequence and genoty… (10.1002/imo2.70048)
Abstract
11.93 2
31 Convergent evolution of metabolic functions: Evidence from t… (10.1002/imo2.70059)
Abstract
11.93 2
32 Host–microbiota interaction drives 5‐hydroxyindole‐3‐acetic… (10.1002/imo2.70062)
Abstract
11.93 2
33 Ribosomal RNA operon copy number: A trait‐informed framework… (10.1002/imo2.70071)
Abstract
11.93 2
34 Role of soil microbes in enhancing crop heterosis (10.1002/imo2.20)
Abstract
7.53 1
35 Commentary on LRAs targeting NF‐κB with epigenetic and mutat… (10.1002/imo2.31)
Abstract
7.53 1
36 Friend for the host foe for the guest: Evidence from probiot… (10.1002/imo2.47)
Abstract
7.53 1
37 ViOTUcluster: A high‐speed, All‐in‐one pipeline for viromic… (10.1002/imo2.70023)
Abstract
7.53 1
38 A cautionary tale of batch corrections on confounded microbi… (10.1002/imo2.70025)
Abstract
7.53 1
39 Dual‐pronged genome engineering: Enhancing crop resistance t… (10.1002/imo2.70030)
Abstract
7.53 1
40 The gut microbiome promotes the growth performance of black… (10.1002/imo2.70070)
Abstract
7.53 1
41 Metabolomic and lipidomic signatures of… (10.1002/imo2.70088)
Abstract
7.53 1
42 Beyond “you are what you eat”: Unlocking gut microbiota‐medi… (10.1002/imo2.70097)
Abstract
7.53 1
43 Pioneering the canine model in microbiota–gut–brain research… (10.1002/imo2.70113)
Abstract
7.53 1
44 Issue Information (10.1002/imo2.1)
Abstract References ORCID
0.00 0
45 Developing glycoproteomics reveals the role of posttranslati… (10.1002/imo2.10)
0.00 11
46 Emerging nanomedicine strategies for hepatocellular carcinom… (10.1002/imo2.12)
0.00 7
47 Combined detection of inflammatory proteins is beneficial fo… (10.1002/imo2.14)
0.00 3
48 Ocular microbiota types and longitudinal microbiota alterati… (10.1002/imo2.17)
0.00 2
49 A glimpse into the future: Integrating artificial intelligen… (10.1002/imo2.19)
0.00 14
50 Issue Information (10.1002/imo2.2)
Abstract References ORCID
0.00 0