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- Correction: Live
Correction: Live Akkermansia muciniphila boosts dendritic cell retinoic acid synthesis to modulate IL-22 activity and mitigate colitis in mice Hongbin Liu1†, Ruo Huang1†, Binhai Shen1†, Chongyang Huang2, Qian Zhou1, Jiahui Xu3, Shengbo Chen4, Xinlong Lin1, Jun Wang2, Xinmei Zhao1, Yandong Guo1, Xiuyun Ai5, Yangyang Liu6, Ye Wang6, Wendi Zhang1* and Fachao Zhi1*
- Alterations of the gut microbiome in HIV infection highlight human . . .
In addition to CD4 T cell counts, anellovirus sequence detection might be useful to predict and monitor immune recovery This study confirms data on the bacteriome and expands our knowledge on the viral component of the gut microbiome in HIV-1 infection
- Absolute quantification of the living skin microbiome overcomes relic . . .
Overall, our study demonstrates a characterization of the skin microbiome that overcomes relic-DNA bias to provide a baseline for live microbiota that will further improve mechanistic studies of infection, disease progression, and the design of therapies for the skin
- Correction: Host genotype-specific rhizosphere fungus enhances drought . . .
Correction: Host genotype-specific rhizosphere fungus enhances drought resistance in wheat Hong Yue1†, Xuming Sun1†, Tingting Wang1, Ali Zhang1, Dejun Han1, Gehong Wei2,3*, Weining Song1* and Duntao Shu2,3*
- Correction: Phages are unrecognized players in the ecology of the oral . . .
Reference 1 Matrishin CB, Haase EM, Dewhirst FE, et al Phages are unrecognized players in the ecology of the oral pathogen Porphyromonas gingivalis Microbiome 2023;11:161 https: doi org 10 1186 s40168‐ 023‐ 01607‐w
- Longitudinal host-microbiome dynamics of metatranscription identify . . .
Results To identify the host‐microbiome interactions in the subgingival milieu that lead to periodontitis progression, we conducted a longitudinal analysis of the host‐microbiome metatranscriptome from clinically stable and progress‐ ing sites in 15 participants over 1 year Our research uncovered a distinct timeline of activities of microbial and host responses linked to disease
- Porcine nasal organoids to model interactions between the swine nasal . . .
Nevertheless, the mechanisms involved in these host-microbiome interactions are dificult to study in a systematic way and could profit from a sim-plified and convenient model like nasal organoids Our approach with PNOs to study bacterial colonization aligns with other works that describe the in vivo situa-tion
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