The multiple facets of Peto's paradox: a life-history model for the evolution of cancer suppression

被引:20
作者
Brown, Joel S. [1 ,2 ]
Cunningham, Jessica J. [2 ]
Gatenby, Robert A. [2 ]
机构
[1] Univ Illinois, Dept Biol Sci, Chicago, IL 60607 USA
[2] H Lee Moffitt Canc Ctr & Res Inst, Canc Biol & Evolut Program, Tampa, FL 33612 USA
关键词
Peto's paradox; life-history evolution; cancer; cancer suppression adaptation; life-history trade-off; wildlife cancer; TRADE-OFFS; HYPOTHESIS; DYNAMICS; LINK;
D O I
10.1098/rstb.2014.0221
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Large animals should have higher lifetime probabilities of cancer than small animals because each cell division carries an attendant risk of mutating towards a tumour lineage. However, this is not observed-a (Peto's) paradox that suggests large and/or long-lived species have evolved effective cancer suppression mechanisms. Using the Euler-Lotka population model, we demonstrate the evolutionary value of cancer suppression as determined by the 'cost' (decreased fecundity) of suppression verses the 'cost' of cancer (reduced survivorship). Bodysize per se will not select for sufficient cancer suppression to explain the paradox. Rather, cancer suppression should be most extreme when the probability of non-cancer death decreases with age (e.g. alligators), maturation is delayed, fecundity rates are low and fecundity increases with age. Thus, the value of cancer suppression is predicted to be lowest in the vole (short lifespan, high fecundity) and highest in the naked mole rat (long lived with late female sexual maturity). The life history of pre-industrial humans likely selected for quite low levels of cancer suppression. In modern humans that live much longer, this level results in unusually high lifetime cancer risks. The model predicts a lifetime risk of 49% compared with the current empirical value of 43%.
引用
收藏
页数:10
相关论文
共 37 条
[11]   Naturally occurring tumours in the basal metazoan Hydra [J].
Domazet-Loso, Tomislav ;
Klimovich, Alexander ;
Anokhin, Boris ;
Anton-Erxleben, Friederike ;
Hamm, Mailin J. ;
Lange, Christina ;
Bosch, Thomas C. G. .
NATURE COMMUNICATIONS, 2014, 5
[12]   Phylostratigraphic tracking of cancer genes suggests a link to the emergence of multicellularity in metazoa [J].
Domazet-Loso, Tomislav ;
Tautz, Diethard .
BMC BIOLOGY, 2010, 8
[13]   The evolutionary dynamics of cancer prevention [J].
Gatenby, Robert A. ;
Gillies, Robert J. ;
Brown, Joel S. .
NATURE REVIEWS CANCER, 2010, 10 (08) :526-527
[14]  
Gewin V, 2013, NAT NEWS, DOI [10.1038/nature.2013.12258, DOI 10.1038/NATURE.2013.12258]
[15]   How grandmother effects plus individual variation in frailty shape fertility and mortality: Guidance from human-chimpanzee comparisons [J].
Hawkes, Kristen .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2010, 107 :8977-8984
[16]   PARASITISM AS A CONSTRAINT ON THE RATE OF LIFE-HISTORY EVOLUTION [J].
HOCHBERG, ME ;
MICHALAKIS, Y ;
DEMEEUS, T .
JOURNAL OF EVOLUTIONARY BIOLOGY, 1992, 5 (03) :491-504
[17]   p53-a Jack of all trades but master of none [J].
Junttila, Melissa R. ;
Evan, Gerard I. .
NATURE REVIEWS CANCER, 2009, 9 (11) :821-829
[18]   Cancer selection [J].
Leroi, AM ;
Koufopanou, V ;
Burt, A .
NATURE REVIEWS CANCER, 2003, 3 (03) :226-231
[19]  
Lotka AJ., 1956, Elements of Mathematical Biology
[20]   Cell size and cancer: a new solution to Peto's paradox? [J].
Maciak, Sebastian ;
Michalak, Pawel .
EVOLUTIONARY APPLICATIONS, 2015, 8 (01) :2-8