通过干细胞的去分化/分化或转分化循环对后天性状进行表观遗传。

IF 3.9 4区 生物学 Q4 Biochemistry, Genetics and Molecular Biology Cells and Development Pub Date : 2024-05-18 DOI:10.1016/j.cdev.2024.203928
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引用次数: 0

摘要

后天特征遗传是一种曾经被广泛接受的观点,即生物体在其生命过程中获得的多种改变可以遗传给后代。这种观点至少与希波克拉底一样古老,在 19 世纪初开始流行,导致拉马克提出了他的进化论。查尔斯-达尔文(Charles Darwin)与当时的其他思想家一起,试图通过提出泛基因理论来解释后天性状的遗传机制。虽然后来这一理论和类似理论因缺乏确凿证据而被否定,但旨在揭示体细胞信息向生殖细胞传递机制的研究一直持续至今。在本文中,我们提出了一个新理论,并提供了相关文献来解释这一现象。我们假设存在多能成体干细胞,它们可作为新表观遗传特征的收集者和载体,通过血液循环进入不同的发育活跃器官/组织区,并通过分化/脱分化或转分化周期获得新的表观遗传标记。在配子发生过程中,这些经过表观遗传修饰的细胞被性腺吸引,转分化为生殖细胞,并将从全身体细胞收集到的表观遗传修饰传递给后代。
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Epigenetic inheritance of acquired traits via stem cells dedifferentiation/differentiation or transdifferentiation cycles

Inheritance of acquired characteristics is the once widely accepted idea that multiple modifications acquired by an organism during its life, can be inherited by the offspring. This belief is at least as old as Hippocrates and became popular in early 19th century, leading Lamarck to suggest his theory of evolution. Charles Darwin, along with other thinkers of the time attempted to explain the mechanism of acquired traits' inheritance by proposing the theory of pangenesis. While later this and similar theories were rejected because of the lack of hard evidence, the studies aimed at revealing the mechanism by which somatic information can be passed to germ cells have continued up to the present. In this paper, we present a new theory and provide supporting literature to explain this phenomenon. We hypothesize existence of pluripotent adult stem cells that can serve as collectors and carriers of new epigenetic traits by entering different developmentally active organ/tissue compartments through blood circulation and acquiring new epigenetic marks though cycles of differentiation/dedifferentiation or transdifferentiation. During gametogenesis, these epigenetically modified cells are attracted by gonads, transdifferentiate into germ cells, and pass the acquired epigenetic modifications collected from the entire body's somatic cells to the offspring.

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来源期刊
Cells and Development
Cells and Development Biochemistry, Genetics and Molecular Biology-Developmental Biology
CiteScore
2.90
自引率
0.00%
发文量
33
审稿时长
41 days
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