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Increasing global climate change and frequent extreme weather have posed a serious threat to the survival and reproduction of marine organisms.
Genetic differentiation and phenotypic plasticity are two important driving forces of evolution, and their interrelationship has always been a hot and difficult point in the field of adaptive evolution
The results provide an important reference for predicting the potential of marine organisms to adapt to climate change, and at the same time lay a theoretical foundation for the creation of excellent new germplasm
The evolutionary compensation of energy metabolism is an important molecular mechanism for oysters to adapt to the north-south environment
This research was co-funded by the National Key Research and Development Program, the Chinese Academy of Sciences' Pilot Project, the Outstanding Youth Fund of the Key Laboratory of Experimental Marine Biology, the Postdoctoral Fund and the Key Deployment Project of the Chinese Academy of Sciences University Science Center
Original link: https://academic.
Li AO (Liao) , Li Li * (Li Li) , Ziyan Zhang (Zhang Zi Yan) , Shiming Li (Li Shiming) , Wei Wang (Wang Wei) , Ximing Guo (Guo Ximing) , Guofan Zhang * (Zhang Guofan) .