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The paradox of longer sperm telomeres in older men’s testes: a birth-cohort effect caused by transgenerational telomere erosion in the female germline

机译:老年男性睾丸中较长的精子端粒的悖论:女性生殖系中的世代端粒侵蚀导致的出生队列效应

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摘要

Longer telomeres in the somatic cells of an individual have been regarded as a marker of youth and biological fitness within a population. Yet, several research groups have reported the surprising findings of longer telomeres in the germ cells of older men, which translated into longer leukocyte telomere length in their offspring. Although all these studies were purely cross-sectional, a longitudinal trend in the aging testes of individual males was taken for granted. Recently, a high-profile study reported a negative birth-cohort effect on leukocyte mean telomere length in human populations, namely the progressive loss of telomeric sequence between healthy human generations. This is what I based my theory of telomere-driven macroevolution on, 12 years ago. On the basis of published data on telomere length inheritance, I identified the source of human intergenerational telomere erosion in the female germline. Accordingly, because of the resulting birth-cohort effect, there is no need for any paradoxical telomere lengthening in older men’s gonads to interpret the old-father-long-telomered-offspring data.
机译:个体的体细胞中较长的端粒被认为是年轻人和生物适应性的标志。然而,一些研究小组报告了令人惊奇的发现,即在老年人的生殖细胞中端粒更长,这些端粒在其后代中转化为更长的白细胞端粒长度。尽管所有这些研究都是纯粹的横断面研究,但认为男性雄性睾丸老化的纵向趋势是理所当然的。最近,一项引人注目的研究报告了出生队列对人类人群白细胞平均端粒长度的负面影响,即健康人类世代之间端粒序列的逐步丧失。这是我12年前基于端粒驱动的宏观进化论的基础。根据有关端粒长度遗传的公开数据,我确定了雌性种系中人代间端粒侵蚀的根源。因此,由于由此产生的出生队列效应,不需要在老年男性的性腺中加长任何反常的端粒来解释老父亲长端粒的后代数据。

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