Miryeganeh Matin
Plant Epigenetics Unit, Okinawa Institute of Science and Technology Graduate University, Okinawa, Japan.
Front Plant Sci. 2022 Feb 22;13:851518. doi: 10.3389/fpls.2022.851518. eCollection 2022.
In the adaptation market, plants cash in the changes of their DNA (either genetic or epigenetic) to purchase fitness. Fitness is negatively affected by stressful conditions caused by climate change and well-designed studies are required to investigate the fine-tuning cooperation of epigenetic and genetic changes in response to those stresses. Mangrove trees are promising model systems for studying climate change because the effects of environmental changes are already evident in their natural habitats where they are exposed to different salinity levels ranging from saltwater to freshwater. In addition, as mangrove species are known to have very low genetic diversity caused by their stressful living conditions, epigenetic variation is likely to be a vital source for them to respond to environmental changes. This mini review aims to provide an overview of available studies on epigenetic regulation and adaptation of mangroves.
在适应市场中,植物利用其DNA的变化(遗传或表观遗传)来获取适应性。气候变化导致的压力条件会对适应性产生负面影响,因此需要精心设计的研究来调查表观遗传和遗传变化在应对这些压力时的精细协同作用。红树林是研究气候变化的理想模式系统,因为环境变化的影响在其自然栖息地中已经很明显,在那里它们暴露于从盐水到淡水的不同盐度水平。此外,由于已知红树林物种因生存条件恶劣而遗传多样性极低,表观遗传变异可能是它们应对环境变化的重要来源。本综述旨在概述关于红树林表观遗传调控和适应性的现有研究。