Literature DB >> 18083317

Dietary restriction by bacterial deprivation increases life span in wild-derived nematodes.

George L Sutphin1, Matt Kaeberlein.   

Abstract

Dietary restriction is known to promote longevity in a variety of eukaryotic organisms. Most studies of dietary restriction have been performed on animals bred for many generations under conditions that differ substantially from their natural environment, raising the possibility that some apparent beneficial effects of dietary restriction are due to adaptation to laboratory conditions. To address this question in an invertebrate model, we determined the effect of dietary restriction by bacterial deprivation on life span in five different wild-derived Caenorhabditis elegans strains and two strains of the related species Caenorhabditis remanei. Longevity was enhanced in each of the wild-derived C. elegans strains, in most cases to a degree similar to that observed in N2, the standard laboratory strain. Both strains of C. remanei were substantially longer lived any of the C. elegans isolates, produced larger brood sizes, and retained the ability to produce offspring for a longer period of time. Dietary restriction failed to increase mean life span in one C. remanei isolate, but significantly increased the maximum life span of both C. remanei strains. Thus, we find no evidence that adaptation to laboratory conditions has significantly altered the aging process in C. elegans under either standard or food-restricted conditions.

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Year:  2007        PMID: 18083317     DOI: 10.1016/j.exger.2007.10.019

Source DB:  PubMed          Journal:  Exp Gerontol        ISSN: 0531-5565            Impact factor:   4.032


  35 in total

Review 1.  Dietary restriction in rats and mice: a meta-analysis and review of the evidence for genotype-dependent effects on lifespan.

Authors:  William R Swindell
Journal:  Ageing Res Rev       Date:  2011-12-23       Impact factor: 10.895

2.  Life-span extension from hypoxia in Caenorhabditis elegans requires both HIF-1 and DAF-16 and is antagonized by SKN-1.

Authors:  Scott F Leiser; Marissa Fletcher; Anisoara Begun; Matt Kaeberlein
Journal:  J Gerontol A Biol Sci Med Sci       Date:  2013-02-18       Impact factor: 6.053

3.  Novel EGF pathway regulators modulate C. elegans healthspan and lifespan via EGF receptor, PLC-gamma, and IP3R activation.

Authors:  Hiroaki Iwasa; Simon Yu; Jian Xue; Monica Driscoll
Journal:  Aging Cell       Date:  2010-05-22       Impact factor: 9.304

4.  Age-associated vulval integrity is an important marker of nematode healthspan.

Authors:  Scott F Leiser; Gholamali Jafari; Melissa Primitivo; George L Sutphin; Jingyi Dong; Alison Leonard; Marissa Fletcher; Matt Kaeberlein
Journal:  Age (Dordr)       Date:  2016-08-26

5.  Manipulation of behavioral decline in Caenorhabditis elegans with the Rag GTPase raga-1.

Authors:  Matthew A Schreiber; Jonathan T Pierce-Shimomura; Stefan Chan; Dianne Parry; Steven L McIntire
Journal:  PLoS Genet       Date:  2010-05-27       Impact factor: 5.917

6.  DDS promotes longevity through a microbiome-mediated starvation signal.

Authors:  Haeri Choi; Sung Chun Cho; Young Wan Ha; Billie Ocampo; Shirley Park; Shiwen Chen; Christopher F Bennett; Jeehae Han; Ryan Rossner; Jong-Sun Kang; Yun-Ll Lee; Sang Chul Park; Matt Kaeberlein
Journal:  Transl Med Aging       Date:  2019-07-03

7.  Validated Liquid Culture Monitoring System for Lifespan Extension of Caenorhabditis elegans through Genetic and Dietary Manipulations.

Authors:  Myat Thu Thu Win; Yasuhiko Yamamoto; Seiichi Munesue; Dong Han; Shin-Ichi Harada; Hiroshi Yamamoto
Journal:  Aging Dis       Date:  2013-06-17       Impact factor: 6.745

8.  Antidepressants of the serotonin-antagonist type increase body fat and decrease lifespan of adult Caenorhabditis elegans.

Authors:  Kim Zarse; Michael Ristow
Journal:  PLoS One       Date:  2008-12-29       Impact factor: 3.240

9.  Measuring Caenorhabditis elegans life span on solid media.

Authors:  George L Sutphin; Matt Kaeberlein
Journal:  J Vis Exp       Date:  2009-05-12       Impact factor: 1.355

10.  Effect of a standardised dietary restriction protocol on multiple laboratory strains of Drosophila melanogaster.

Authors:  Richard C Grandison; Richard Wong; Timothy M Bass; Linda Partridge; Matthew D W Piper
Journal:  PLoS One       Date:  2009-01-01       Impact factor: 3.240

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