Literature DB >> 33339826

Comparison of Japanese and Indian intestinal microbiota shows diet-dependent interaction between bacteria and fungi.

Siddhika Pareek1,2,3, Takashi Kurakawa1,2, Bhabatosh Das4, Daisuke Motooka5, Shuuichi Nakaya6, Temsunaro Rongsen-Chandola7, Nidhi Goyal7, Hisako Kayama1,2,3, Dylan Dodd8, Ryu Okumura1,2,3, Yuichi Maeda1,2,9, Kosuke Fujimoto1,9, Takuro Nii1,2,9, Takao Ogawa1,2,9, Tetsuya Iida5,10, Nita Bhandari7, Toshiyuki Kida11, Shota Nakamura5, G Balakrish Nair4, Kiyoshi Takeda12,13,14.   

Abstract

The bacterial species living in the gut mediate many aspects of biological processes such as nutrition and activation of adaptive immunity. In addition, commensal fungi residing in the intestine also influence host health. Although the interaction of bacterium and fungus has been shown, its precise mechanism during colonization of the human intestine remains largely unknown. Here, we show interaction between bacterial and fungal species for utilization of dietary components driving their efficient growth in the intestine. Next generation sequencing of fecal samples from Japanese and Indian adults revealed differential patterns of bacterial and fungal composition. In particular, Indians, who consume more plant polysaccharides than Japanese, harbored increased numbers of Prevotella and Candida. Candida spp. showed strong growth responses to the plant polysaccharide arabinoxylan in vitro. Furthermore, the culture supernatants of Candida spp. grown with arabinoxylan promoted rapid proliferation of Prevotella copri. Arabinose was identified as a potential growth-inducing factor in the Candida culture supernatants. Candida spp. exhibited a growth response to xylose, but not to arabinose, whereas P. copri proliferated in response to both xylose and arabinose. Candida spp., but not P. copri, colonized the intestine of germ-free mice. However, P. copri successfully colonized mouse intestine already harboring Candida. These findings demonstrate a proof of concept that fungal members of gut microbiota can facilitate a colonization of the intestine by their bacterial counterparts, potentially mediated by a dietary metabolite.

Year:  2019        PMID: 33339826     DOI: 10.1038/s41522-019-0110-9

Source DB:  PubMed          Journal:  NPJ Biofilms Microbiomes        ISSN: 2055-5008            Impact factor:   7.290


  56 in total

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Journal:  Lancet       Date:  2003-02-08       Impact factor: 79.321

2.  Impact of diet in shaping gut microbiota revealed by a comparative study in children from Europe and rural Africa.

Authors:  Carlotta De Filippo; Duccio Cavalieri; Monica Di Paola; Matteo Ramazzotti; Jean Baptiste Poullet; Sebastien Massart; Silvia Collini; Giuseppe Pieraccini; Paolo Lionetti
Journal:  Proc Natl Acad Sci U S A       Date:  2010-08-02       Impact factor: 11.205

3.  Gut microbiota composition correlates with diet and health in the elderly.

Authors:  Marcus J Claesson; Ian B Jeffery; Susana Conde; Susan E Power; Eibhlís M O'Connor; Siobhán Cusack; Hugh M B Harris; Mairead Coakley; Bhuvaneswari Lakshminarayanan; Orla O'Sullivan; Gerald F Fitzgerald; Jennifer Deane; Michael O'Connor; Norma Harnedy; Kieran O'Connor; Denis O'Mahony; Douwe van Sinderen; Martina Wallace; Lorraine Brennan; Catherine Stanton; Julian R Marchesi; Anthony P Fitzgerald; Fergus Shanahan; Colin Hill; R Paul Ross; Paul W O'Toole
Journal:  Nature       Date:  2012-08-09       Impact factor: 49.962

4.  In vivo induction of neutrophilia, lymphopenia, and diminution of neutrophil adhesion by stable analogs of prostaglandins E1, E2, and F2 alpha.

Authors:  T R Ulich; E B Dakay; J H Williams; R X Ni
Journal:  Am J Pathol       Date:  1986-07       Impact factor: 4.307

5.  Human gut microbiome viewed across age and geography.

Authors:  Tanya Yatsunenko; Federico E Rey; Mark J Manary; Indi Trehan; Maria Gloria Dominguez-Bello; Monica Contreras; Magda Magris; Glida Hidalgo; Robert N Baldassano; Andrey P Anokhin; Andrew C Heath; Barbara Warner; Jens Reeder; Justin Kuczynski; J Gregory Caporaso; Catherine A Lozupone; Christian Lauber; Jose Carlos Clemente; Dan Knights; Rob Knight; Jeffrey I Gordon
Journal:  Nature       Date:  2012-05-09       Impact factor: 49.962

6.  Diet rapidly and reproducibly alters the human gut microbiome.

Authors:  Lawrence A David; Corinne F Maurice; Rachel N Carmody; David B Gootenberg; Julie E Button; Benjamin E Wolfe; Alisha V Ling; A Sloan Devlin; Yug Varma; Michael A Fischbach; Sudha B Biddinger; Rachel J Dutton; Peter J Turnbaugh
Journal:  Nature       Date:  2013-12-11       Impact factor: 49.962

Review 7.  Multi-omics of the gut microbial ecosystem in inflammatory bowel diseases.

Authors:  Ramnik J Xavier; Curtis Huttenhower; Jason Lloyd-Price; Cesar Arze; Ashwin N Ananthakrishnan; Melanie Schirmer; Julian Avila-Pacheco; Tiffany W Poon; Elizabeth Andrews; Nadim J Ajami; Kevin S Bonham; Colin J Brislawn; David Casero; Holly Courtney; Antonio Gonzalez; Thomas G Graeber; A Brantley Hall; Kathleen Lake; Carol J Landers; Himel Mallick; Damian R Plichta; Mahadev Prasad; Gholamali Rahnavard; Jenny Sauk; Dmitry Shungin; Yoshiki Vázquez-Baeza; Richard A White; Jonathan Braun; Lee A Denson; Janet K Jansson; Rob Knight; Subra Kugathasan; Dermot P B McGovern; Joseph F Petrosino; Thaddeus S Stappenbeck; Harland S Winter; Clary B Clish; Eric A Franzosa; Hera Vlamakis
Journal:  Nature       Date:  2019-05-29       Impact factor: 49.962

8.  The Firmicutes/Bacteroidetes ratio of the human microbiota changes with age.

Authors:  D Mariat; O Firmesse; F Levenez; Vd Guimarăes; H Sokol; J Doré; G Corthier; J-P Furet
Journal:  BMC Microbiol       Date:  2009-06-09       Impact factor: 3.605

9.  Predominant role of host genetics in controlling the composition of gut microbiota.

Authors:  Zaruhi A Khachatryan; Zhanna A Ktsoyan; Gayane P Manukyan; Denise Kelly; Karine A Ghazaryan; Rustam I Aminov
Journal:  PLoS One       Date:  2008-08-26       Impact factor: 3.240

10.  Human gut microbiota community structures in urban and rural populations in Russia.

Authors:  Alexander V Tyakht; Elena S Kostryukova; Anna S Popenko; Maxim S Belenikin; Alexander V Pavlenko; Andrey K Larin; Irina Y Karpova; Oksana V Selezneva; Tatyana A Semashko; Elena A Ospanova; Vladislav V Babenko; Igor V Maev; Sergey V Cheremushkin; Yuriy A Kucheryavyy; Petr L Shcherbakov; Vladimir B Grinevich; Oleg I Efimov; Evgenii I Sas; Rustam A Abdulkhakov; Sayar R Abdulkhakov; Elena A Lyalyukova; Maria A Livzan; Valentin V Vlassov; Renad Z Sagdeev; Vladislav V Tsukanov; Marina F Osipenko; Irina V Kozlova; Alexander V Tkachev; Valery I Sergienko; Dmitry G Alexeev; Vadim M Govorun
Journal:  Nat Commun       Date:  2013       Impact factor: 14.919

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