探索表观遗传机制的进化史:我们能从海洋硅藻中学到什么

Achal Rastogi, Xin Lin, Bérangère Lombard, D. Loew, L. Tirichine
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引用次数: 18

摘要

近年来表观遗传学研究的进展揭示了层桩、植物和动物等深分支物种的表观遗传特征的保守性。这表明它们在不同进化时间尺度上塑造物种基因组的基本作用。硅藻是一种非常成功和多样化的浮游植物,有大约1.9亿年前的化石记录。它们与其他真核生物超级类群有远亲关系,并保留了哺乳动物和植物中发现的一些表观遗传特征,表明它们的起源很古老。三角藻(Phaeodactylum tricornutum)和海藻(Thalassiosira pseudonana)、pennate硅藻和中心硅藻分别作为模式物种出现,以解决表观遗传现象的进化问题,例如在当代物种中丢失了什么、保留了什么或进化了什么。在目前的工作中,我们将讨论如何研究非模式或新兴模式生物,如硅藻,帮助理解表观遗传机制的进化史,特别关注DNA甲基化和组蛋白修饰。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Probing the evolutionary history of epigenetic mechanisms: what can we learn from marine diatoms
Abstract Recent progress made on epigenetic studies revealed the conservation of epigenetic features in deep diverse branching species including Stramenopiles, plants and animals. This suggests their fundamental role in shaping species genomes across different evolutionary time scales. Diatoms are a highly successful and diverse group of phytoplankton with a fossil record of about 190 million years ago. They are distantly related from other super-groups of Eukaryotes and have retained some of the epigenetic features found in mammals and plants suggesting their ancient origin. Phaeodactylum tricornutum and Thalassiosira pseudonana, pennate and centric diatoms, respectively, emerged as model species to address questions on the evolution of epigenetic phenomena such as what has been lost, retained or has evolved in contemporary species. In the present work, we will discuss how the study of non-model or emerging model organisms, such as diatoms, helps understand the evolutionary history of epigenetic mechanisms with a particular focus on DNA methylation and histone modifications.
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来源期刊
AIMS Genetics
AIMS Genetics GENETICS & HEREDITY-
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