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Sex‐ And tissue‐specific differences in telomere length in a reptile

机译:爬行动物端粒长度的性别和组织特异性差异

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摘要

The usage of telomere length (TL) in blood as a proxy for the TL of other tissues relies on the assumption that telomere dynamics across all tissues are similar. However, telomere attrition can be caused by reactive oxygen species (ROS) which may vary with metabolic rate, which itself varies across organs depending upon the life history strategy of an organism. Thus, we chose to measure the telomeres of various cell types in juvenile painted dragon lizards, Ctenophorus pictus, given their unusual life history strategy. Individuals typically only experience a single mating season. We measured the TL of male and female dragons using qPCR and observed that TL varied with tissue type and sex. Telomeres of blood cells were longer than those of liver, heart, brain, and spleen, and females had longer telomeres than males. Brain telomeres in males were approximately half the length of those in females. Telomeric attrition in the male brain may be due to the need for rapid learning of reproductive tactics (territory patrol and defense, mate‐finding). Significant correlations between the TL of tissue types suggest that blood TL may be a useful proxy for the TL of other tissues. Our comparison of organ‐specific telomere dynamics, the first in a reptile, suggests that the usage of blood TL as a proxy requires careful consideration of the life history strategy of the organism.
机译:血液中端粒长度(TL)替代其他组织的TL的使用依赖于以下假设:所有组织的端粒动力学相似。但是,端粒磨损可能是由活性氧(ROS)引起的,活性氧可能随代谢率而变化,而代谢率本身又随器官的变化而变化,具体取决于生物的生命史策略。因此,考虑到它们的不寻常的生活史策略,我们选择测量幼绘的龙蜥蜴Ctenophorus pictus中各种细胞类型的端粒。个人通常只经历一个交配季节。我们使用qPCR测量了雄性和雌性龙的TL,并观察到TL随组织类型和性别而变化。血细胞的端粒比肝脏,心脏,大脑和脾脏的端粒长,女性的端粒比男性长。男性的大脑端粒大约是女性的一半。男性大脑中端粒的磨损可能是由于需要快速学习生殖策略(区域巡逻和防御,寻找配偶)。组织类型的TL之间的显着相关性表明,血液TL可能是其他组织的TL的有用替代物。我们对爬行动物中第一个器官特异性端粒动力学的比较表明,使用血液TL作为替代物需要仔细考虑生物的生命史策略。

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