A stem cell zoo uncovers intracellular scaling of developmental tempo across mammals

Author:

Lázaro JorgeORCID,Costanzo MariaORCID,Sanaki-Matsumiya MarinaORCID,Girardot CharlesORCID,Hayashi MasafumiORCID,Hayashi Katsuhiko,Diecke Sebastian,Hildebrandt Thomas B.ORCID,Lazzari Giovanna,Wu Jun,Petkov Stoyan,Behr Rüdiger,Trivedi VikasORCID,Matsuda Mitsuhiro,Ebisuya MikiORCID

Abstract

AbstractDifferential speeds in biochemical reactions have been proposed to be responsible for the differences in developmental tempo between mice and humans. However, the underlying mechanism controlling the species-specific kinetics remains to be determined. Usingin vitrodifferentiation of pluripotent stem cells, we recapitulated the segmentation clocks of diverse mammalian species varying in body weight and taxa: marmoset, rabbit, cattle and rhinoceros. Together with the mouse and human, the segmentation clock periods of the six species did not scale with the animal body weight, but were rather grouped according to phylogeny. The biochemical kinetics of the core clock gene HES7 displayed clear scaling with the species-specific segmentation clock period. However, the cellular metabolic rates did not show an evident correlation. Instead, genes involving biochemical reactions showed an expression pattern that scales with the segmentation clock period. Altogether, our stem cell zoo uncovered general scaling laws governing species-specific developmental tempo.*

Publisher

Cold Spring Harbor Laboratory

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