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垂直和水平传递的记忆——涡虫再生与遗传之间逐渐模糊的界限

Vertically- and horizontally-transmitted memories - the fading boundaries between regeneration and inheritance in planaria.

作者信息

Neuhof Moran, Levin Michael, Rechavi Oded

机构信息

Department of Neurobiology, Wise Faculty of Life Sciences, Tel Aviv University, Tel Aviv 69978, Israel

Allen Discovery Center, Tufts University, 200 Boston Avenue, Suite 4600, Medford, MA 02155, USA

出版信息

Biol Open. 2016 Sep 15;5(9):1177-88. doi: 10.1242/bio.020149.

Abstract

The Weismann barrier postulates that genetic information passes only from the germline to the soma and not in reverse, thus providing an obstacle to the inheritance of acquired traits. Certain organisms such as planaria - flatworms that can reproduce through asymmetric fission - avoid the limitations of this barrier, thus blurring the distinction between the processes of inheritance and development. In this paper, we re-evaluate canonical ideas about the interaction between developmental, genetic and evolutionary processes through the lens of planaria. Biased distribution of epigenetic effects in asymmetrically produced parts of a regenerating organism could increase variation and therefore affect the species' evolution. The maintenance and fixing of somatic experiences, encoded via stable biochemical or physiological states, may contribute to evolutionary processes in the absence of classically defined generations. We discuss different mechanisms that could induce asymmetry between the two organisms that eventually develop from the regenerating parts, including one particularly fascinating source - the potential capacity of the brain to produce long-lasting epigenetic changes.

摘要

魏斯曼屏障假说认为,遗传信息仅从生殖细胞传递到体细胞,而不会反向传递,从而为后天获得性状的遗传设置了障碍。某些生物,如涡虫(一种可以通过不对称分裂进行繁殖的扁虫),规避了这一屏障的限制,从而模糊了遗传和发育过程之间的区别。在本文中,我们通过涡虫这一视角,重新评估了关于发育、遗传和进化过程之间相互作用的经典观点。再生生物体不对称产生的部分中表观遗传效应的偏向分布可能会增加变异,进而影响物种的进化。通过稳定的生化或生理状态编码的体细胞经历的维持和固定,可能在缺乏经典定义的世代的情况下促进进化过程。我们讨论了可能导致最终从再生部分发育而来的两个生物体之间产生不对称的不同机制,包括一个特别引人入胜的来源——大脑产生持久表观遗传变化的潜在能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de20/5051648/69510b1a2c6f/biolopen-5-020149-g1.jpg

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