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昆虫及其他动物后天获得性状的遗传以及突破魏斯曼屏障的表观遗传机制。

Inheritance of Acquired Traits in Insects and Other Animals and the Epigenetic Mechanisms That Break the Weismann Barrier.

作者信息

Gowri V, Monteiro Antónia

机构信息

Department of Biological Sciences, National University of Singapore, Singapore 117543, Singapore.

Science Division, Yale-NUS College, Singapore 138609, Singapore.

出版信息

J Dev Biol. 2021 Oct 7;9(4):41. doi: 10.3390/jdb9040041.

Abstract

The credibility of the Weismann barrier has come into question. Several studies in various animal systems, from mice to worms, have shown that novel environmental stimuli can generate an altered developmental or behavioral trait that can be transmitted to offspring of the following generation. Recently, insects have become ideal models to study the inheritance of acquired traits. This is because insects can be reared in high numbers at low cost, they have short generation times and produce abundant offspring. Numerous studies have shown that an insect can modify its phenotype in response to a novel stimulus to aid its survival, and also that this modified phenotypic trait can be inherited by its offspring. Epigenetic mechanisms are likely at play but, most studies do not address the mechanisms that underlie the inheritance of acquired traits in insects. Here we first review general epigenetic mechanisms such as DNA methylation, histone acetylation and small noncoding RNAs that have been implicated in the transmission of acquired traits in animals, then we focus on the few insect studies in which these mechanisms have been investigated.

摘要

魏斯曼屏障的可信度已受到质疑。在从老鼠到蠕虫等各种动物系统中进行的多项研究表明,新的环境刺激能够产生一种可改变的发育或行为特征,并能传递给下一代的后代。最近,昆虫已成为研究获得性性状遗传的理想模型。这是因为昆虫可以低成本大量饲养,它们的世代周期短且繁殖量大。大量研究表明,昆虫能够响应新的刺激改变其表型以帮助生存,并且这种改变的表型性状能够被其后代遗传。表观遗传机制可能在其中起作用,但是大多数研究并未探讨昆虫获得性性状遗传背后的机制。在这里,我们首先回顾一般的表观遗传机制,如DNA甲基化、组蛋白乙酰化和小非编码RNA,这些机制与动物获得性性状的传递有关,然后我们聚焦于少数已对这些机制进行研究的昆虫研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/70dc/8544363/ebf45aa15c16/jdb-09-00041-g001.jpg

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