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女王万岁,国王万岁,平民万岁?老幼白蚁Cryptotermes secundus 转录表达差异。

Long live the queen, the king and the commoner? Transcript expression differences between old and young in the termite Cryptotermes secundus.

机构信息

Evolutionary Biology and Ecology, Albert-Ludwigs-Universität Freiburg, Freiburg, Baden-Württemberg, Germany.

出版信息

PLoS One. 2019 Feb 13;14(2):e0210371. doi: 10.1371/journal.pone.0210371. eCollection 2019.

Abstract

Social insects provide promising new avenues for aging research. Within a colony, individuals that share the same genetic background can differ in lifespan by up to two orders of magnitude. Reproducing queens (and in termites also kings) can live for more than 20 years, extraordinary lifespans for insects. We studied aging in a termite species, Cryptotermes secundus, which lives in less socially complex societies with a few hundred colony members. Reproductives develop from workers which are totipotent immatures. Comparing transcriptomes of young and old individuals, we found evidence for aging in reproductives that was especially associated with DNA and protein damage and the activity of transposable elements. By contrast, workers seemed to be better protected against aging. Thus our results differed from those obtained for social insects that live in more complex societies. Yet, they are in agreement with lifespan estimates for the study species. Our data are also in line with expectations from evolutionary theory. For individuals that are able to reproduce, it predicts that aging should only start after reaching maturity. As C. secundus workers are immatures with full reproductive options we expect them to invest into anti-aging processes. Our study illustrates that the degree of aging can differ between social insects and that it may be associated with caste-specific opportunities for reproduction.

摘要

社会性昆虫为衰老研究提供了有前景的新途径。在一个群体中,具有相同遗传背景的个体的寿命差异可以达到两个数量级。有生殖能力的蚁后(白蚁中也有蚁王)可以活 20 多年,这对昆虫来说是非常长的寿命。我们研究了一种生活在社会结构简单、只有几百个成员的白蚁物种——隐尾白蚁的衰老。生殖蚁是由具有全能性的未成熟工蚁发育而来。通过比较年轻个体和老年个体的转录组,我们发现生殖蚁存在衰老的证据,这与 DNA 和蛋白质损伤以及转座元件的活性特别相关。相比之下,工蚁似乎受到了更好的衰老保护。因此,我们的结果与生活在更复杂社会中的社会性昆虫的研究结果不同。然而,它们与研究物种的寿命估计值一致。我们的数据也符合进化理论的预期。对于能够繁殖的个体来说,衰老应该只有在达到成熟后才会开始。由于 C. secundus 的工蚁是具有完全生殖选择的未成熟个体,我们期望它们会投入到抗衰老过程中。我们的研究表明,社会性昆虫之间的衰老程度可能存在差异,并且可能与特定的生殖机会有关。

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