The Native Microbiome Member Chryseobacterium sp. CHNTR56 MYb120 Induces Trehalose Production via a Shift in Central Carbon Metabolism during Early Life in C. elegans

被引:1
作者
Shiri, Tanisha Jean [1 ]
Viau, Charles [1 ]
Gu, Xue [1 ]
Xu, Lei [1 ]
Lu, Yao [2 ]
Xia, Jianguo [1 ,2 ]
机构
[1] McGill Univ, Inst Parasitol, Ste Anne De Bellevue, PQ H9X 3V9, Canada
[2] McGill Univ, Dept Microbiol & Immunol, Montreal, PQ H3A 2B4, Canada
关键词
aging; microbiome; metabolomics; CAENORHABDITIS-ELEGANS; ESCHERICHIA-COLI; SPAN; LONGEVITY; DAF-2; PATHWAY; FOLATE; GENES;
D O I
10.3390/metabo13080953
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Aging is the system-wide loss of homeostasis, eventually leading to death. There is growing evidence that the microbiome not only evolves with its aging host, but also directly affects aging via the modulation of metabolites involved in important cellular functions. The widely used model organism C. elegans exhibits high selectivity towards its native microbiome members which confer a range of differential phenotypes and possess varying functional capacities. The ability of one such native microbiome species, Chryseobacterium sp. CHNTR56 MYb120, to improve the lifespan of C. elegans and to promote the production of Vitamin B6 in the co-colonizing member Comamonas sp. 12022 MYb131 are some of its beneficial effects on the worm host. We hypothesize that studying its metabolic influence on the different life stages of the worm could provide further insights into mutualistic interactions. The present work applied LC-MS untargeted metabolomics and isotope labeling to study the impact of the native microbiome member Chryseobacterium sp. CHNTR56 MYb120 on the metabolism of C. elegans. In addition to the upregulation of biosynthesis and detoxification pathway intermediates, we found that Chryseobacterium sp. CHNTR56 MYb120 upregulates the glyoxylate shunt in mid-adult worms which is linked to the upregulation of trehalose, an important metabolite for desiccation tolerance in older worms.
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页数:14
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共 56 条
  • [1] Metabolomics Signatures of Aging: Recent Advances
    Adav, Sunil S.
    Wang, Yulan
    [J]. AGING AND DISEASE, 2021, 12 (02): : 646 - 661
  • [2] The DrugAge database of aging-related drugs
    Barardo, Diogo
    Thornton, Daniel
    Thoppil, Harikrishnan
    Walsh, Michael
    Sharifi, Samim
    Ferreira, Susana
    Anzic, Andreja
    Fernandes, Maria
    Monteiro, Patrick
    Grum, Tjasa
    Cordeiro, Rui
    De-Souza, Evandro Araujo
    Budovsky, Arie
    Araujo, Natali
    Gruber, Jan
    Petrascheck, Michael
    Fraifeld, Vadim E.
    Zhavoronkov, Alexander
    Moskalev, Alexey
    de Magalhaes, Joao Pedro
    [J]. AGING CELL, 2017, 16 (03): : 594 - 597
  • [3] Metformin Retards Aging in C. elegans by Altering Microbial Folate and Methionine Metabolism
    Cabreiro, Filipe
    Au, Catherine
    Leung, Kit-Yi
    Vergara-Irigaray, Nuria
    Cocheme, Helena M.
    Noori, Tahereh
    Weinkove, David
    Schuster, Eugene
    Greene, Nicholas D. E.
    Gems, David
    [J]. CELL, 2013, 153 (01) : 228 - 239
  • [4] A cross-platform toolkit for mass spectrometry and proteomics
    Chambers, Matthew C.
    Maclean, Brendan
    Burke, Robert
    Amodei, Dario
    Ruderman, Daniel L.
    Neumann, Steffen
    Gatto, Laurent
    Fischer, Bernd
    Pratt, Brian
    Egertson, Jarrett
    Hoff, Katherine
    Kessner, Darren
    Tasman, Natalie
    Shulman, Nicholas
    Frewen, Barbara
    Baker, Tahmina A.
    Brusniak, Mi-Youn
    Paulse, Christopher
    Creasy, David
    Flashner, Lisa
    Kani, Kian
    Moulding, Chris
    Seymour, Sean L.
    Nuwaysir, Lydia M.
    Lefebvre, Brent
    Kuhlmann, Frank
    Roark, Joe
    Rainer, Paape
    Detlev, Suckau
    Hemenway, Tina
    Huhmer, Andreas
    Langridge, James
    Connolly, Brian
    Chadick, Trey
    Holly, Krisztina
    Eckels, Josh
    Deutsch, Eric W.
    Moritz, Robert L.
    Katz, Jonathan E.
    Agus, David B.
    MacCoss, Michael
    Tabb, David L.
    Mallick, Parag
    [J]. NATURE BIOTECHNOLOGY, 2012, 30 (10) : 918 - 920
  • [5] Dietary Trehalose as a Bioactive Nutrient
    Chen, Anqi
    Gibney, Patrick A.
    [J]. NUTRIENTS, 2023, 15 (06)
  • [6] Metabolome and proteome changes with aging in Caenorhabditis elegans
    Copes, Neil
    Edwards, Clare
    Chaput, Dale
    Saifee, Mariam
    Barjuca, Iosif
    Nelson, Daniel
    Paraggio, Alyssa
    Saad, Patrick
    Lipps, David
    Stevens, Stanley M., Jr.
    Bradshaw, Patrick C.
    [J]. EXPERIMENTAL GERONTOLOGY, 2015, 72 : 67 - 84
  • [7] Metabolic regulation of lifespan from a C. elegans perspective
    Dall, Kathrine B.
    Faergeman, Nils J.
    [J]. GENES AND NUTRITION, 2019, 14 (01)
  • [8] Fluorodeoxyuridine affects the identification of metabolic responses to daf-2 status in Caenorhabditis elegans
    Davies, Sarah K.
    Leroi, Armand M.
    Bundy, Jacob G.
    [J]. MECHANISMS OF AGEING AND DEVELOPMENT, 2012, 133 (01) : 46 - 49
  • [9] CeMbio-TheCaenorhabditis elegansMicrobiome Resource
    Dirksen, Philipp
    Assie, Adrien
    Zimmermann, Johannes
    Zhang, Fan
    Tietje, Adina-Malin
    Marsh, Sarah Arnaud
    Felix, Marie-Anne
    Shapira, Michael
    Kaleta, Christoph
    Schulenburg, Hinrich
    Samuel, Buck S.
    [J]. G3-GENES GENOMES GENETICS, 2020, 10 (09): : 3025 - 3039
  • [10] The native microbiome of the nematode Caenorhabditis elegans: gateway to a new host-microbiome model
    Dirksen, Philipp
    Marsh, Sarah Arnaud
    Braker, Ines
    Heitland, Nele
    Wagner, Sophia
    Nakad, Rania
    Mader, Sebastian
    Petersen, Carola
    Kowallik, Vienna
    Rosenstiel, Philip
    Felix, Marie-Anne
    Schulenburg, Hinrich
    [J]. BMC BIOLOGY, 2016, 14