Jemielity Stephanie, Kimura Masayuki, Parker Karen M, Parker Joel D, Cao Xiaojian, Aviv Abraham, Keller Laurent
Department of Ecology and Evolution, University of Lausanne, Lausanne, Switzerland.
Aging Cell. 2007 Apr;6(2):225-33. doi: 10.1111/j.1474-9726.2007.00279.x. Epub 2007 Mar 7.
Telomere length regulation is an important aspect of cell maintenance in eukaryotes, since shortened telomeres can lead to a number of defects, including impaired cell division. Although telomere length is correlated with lifespan in some bird species, its possible role in aging and lifespan determination is still poorly understood. Here we investigate telomere dynamics (changes in telomere length and attrition rate) and telomerase activity in the ant Lasius niger, a species in which different groups of individuals have evolved extraordinarily different lifespans. We found that somatic tissues of the short-lived males had dramatically shorter telomeres than those of the much longer-lived queens and workers. These differences were established early during larval development, most likely through faster telomere shortening in males compared with females. Workers did not, however, have shorter telomeres than the longer-lived queens. We discuss various molecular mechanisms that are likely to cause the observed sex-specific telomere dynamics in ants, including cell division, oxidative stress and telomerase activity. In addition, we discuss the evolutionary causes of such patterns in ants and in other species.
端粒长度调控是真核生物细胞维持的一个重要方面,因为缩短的端粒会导致许多缺陷,包括细胞分裂受损。虽然在一些鸟类物种中端粒长度与寿命相关,但其在衰老和寿命决定中的可能作用仍知之甚少。在这里,我们研究了黑蚁(Lasius niger)的端粒动态(端粒长度和损耗率的变化)和端粒酶活性,在该物种中,不同群体的个体进化出了极其不同的寿命。我们发现,短命雄性的体细胞组织中的端粒比寿命长得多的蚁后和工蚁的端粒短得多。这些差异在幼虫发育早期就已确立,很可能是因为雄性端粒缩短速度比雌性快。然而,工蚁的端粒并不比寿命更长的蚁后短。我们讨论了可能导致蚂蚁中观察到的性别特异性端粒动态的各种分子机制,包括细胞分裂、氧化应激和端粒酶活性。此外,我们还讨论了蚂蚁和其他物种中这种模式的进化原因。