Probing and manipulating embryogenesis via nanoscale thermometry and temperature control

Author:

Choi Joonhee,Zhou HengyunORCID,Landig Renate,Wu Hai-Yin,Yu Xiaofei,Von Stetina Stephen E.,Kucsko Georg,Mango Susan E.ORCID,Needleman Daniel J.,Samuel Aravinthan D. T.ORCID,Maurer Peter C.ORCID,Park HongkunORCID,Lukin Mikhail D.

Abstract

Understanding the coordination of cell-division timing is one of the outstanding questions in the field of developmental biology. One active control parameter of the cell-cycle duration is temperature, as it can accelerate or decelerate the rate of biochemical reactions. However, controlled experiments at the cellular scale are challenging, due to the limited availability of biocompatible temperature sensors, as well as the lack of practical methods to systematically control local temperatures and cellular dynamics. Here, we demonstrate a method to probe and control the cell-division timing inCaenorhabditis elegansembryos using a combination of local laser heating and nanoscale thermometry. Local infrared laser illumination produces a temperature gradient across the embryo, which is precisely measured by in vivo nanoscale thermometry using quantum defects in nanodiamonds. These techniques enable selective, controlled acceleration of the cell divisions, even enabling an inversion of division order at the two-cell stage. Our data suggest that the cell-cycle timing asynchrony of the early embryonic development inC. elegansis determined independently by individual cells rather than via cell-to-cell communication. Our method can be used to control the development of multicellular organisms and to provide insights into the regulation of cell-division timings as a consequence of local perturbations.

Funder

National Science Foundation

DOD | United States Army | RDECOM | Army Research Office

Gordon and Betty Moore Foundation

Samsung

DOD | United States Navy | Office of Naval Research

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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