The epigenetic origin of life history transitions in plants and algae.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2021-12-01 DOI:10.1007/s00497-021-00422-3
Jérômine Vigneau, Michael Borg
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引用次数: 12

Abstract

Plants and algae have a complex life history that transitions between distinct life forms called the sporophyte and the gametophyte. This phenomenon-called the alternation of generations-has fascinated botanists and phycologists for over 170 years. Despite the mesmerizing array of life histories described in plants and algae, we are only now beginning to learn about the molecular mechanisms controlling them and how they evolved. Epigenetic silencing plays an essential role in regulating gene expression during multicellular development in eukaryotes, raising questions about its impact on the life history strategy of plants and algae. Here, we trace the origin and function of epigenetic mechanisms across the plant kingdom, from unicellular green algae through to angiosperms, and attempt to reconstruct the evolutionary steps that influenced life history transitions during plant evolution. Central to this evolutionary scenario is the adaption of epigenetic silencing from a mechanism of genome defense to the repression and control of alternating generations. We extend our discussion beyond the green lineage and highlight the peculiar case of the brown algae. Unlike their unicellular diatom relatives, brown algae lack epigenetic silencing pathways common to animals and plants yet display complex life histories, hinting at the emergence of novel life history controls during stramenopile evolution.

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植物和藻类生活史转变的表观遗传起源。
植物和藻类有一个复杂的生命史,在不同的生命形式(孢子体和配子体)之间转换。170多年来,这种被称为“世代交替”的现象一直吸引着植物学家和心理学家。尽管植物和藻类描述了一系列令人着迷的生活史,但我们现在才开始了解控制它们的分子机制以及它们是如何进化的。表观遗传沉默在真核生物多细胞发育过程中调控基因表达中起着至关重要的作用,其对植物和藻类生活史策略的影响引起了人们的关注。在这里,我们追溯了整个植物界的表观遗传机制的起源和功能,从单细胞绿藻到被子植物,并试图重建在植物进化过程中影响生活史转变的进化步骤。这种进化场景的核心是表观遗传沉默从基因组防御机制到交替世代的抑制和控制的适应。我们将讨论扩展到绿色谱系之外,重点介绍了褐藻的特殊情况。与它们的单细胞硅藻亲戚不同,褐藻缺乏动物和植物共同的表观遗传沉默途径,但却表现出复杂的生活史,这暗示了在层流菌进化过程中出现了新的生活史控制。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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