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Genomic integrity in the male germ line: evidence in support of the disposable soma hypothesis

机译:雄性生殖系的基因组完整性:支持一次性体细胞假说的证据

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The Big Blue lambda Select-cII selection system has been employed along with whole-exome sequencing to examine the susceptibility of the male germ line to mutation in two challenging situations (i) exposure to a chemotherapeutic regime including bleomycin, etoposide and cis-platinum (BEP) and (ii) the ageing process. A 3-week exposure to BEP induced complete azoospermia associated with a loss of developing germ cells and extensive vacuolization of Sertoli cell cytoplasm. Following cessation of treatment, spermatozoa first appeared in the caput epididymis after 6 weeks and by 12 weeks motile spermatozoa could be recovered from the cauda, although the count (P 0.001) and motility (P 0.01) of these cells were significantly reduced and superoxide generation was significantly elevated (P 0.001). Despite this increase in free radical generation, no evidence of chromatin instability was detected in these spermatozoa. Furthermore, embryos obtained from females mated at this 12-week time point showed no evidence of an increased mutational load. Similarly, progressive ageing of Big Blue mice had no impact on the quality of the spermatozoa, fertility or mutation frequency in the offspring despite a significant increase in the mutational load carried by somatic tissues such as the liver (P 0.05). We conclude that the male germ line is highly resistant to mutation in keeping with the disposable soma hypothesis, which posits that genetic integrity in the germ cells will be maintained at the expense of the soma, in light of the former's sentinel position in safeguarding the stability of the genome.
机译:Big Blue lambda Select-cII 选择系统已与全外显子组测序一起用于检查雄性生殖系在两种具有挑战性的情况下对突变的易感性 (i) 暴露于化疗方案,包括博来霉素、依托泊苷和顺式铂 (BEP) 和 (ii) 衰老过程。暴露于 BEP 3 周会诱导完全无精子症,伴有发育中的生殖细胞丢失和支持细胞质的广泛空泡化。停止治疗后,精子在6周后首次出现在附睾中,到12周时,可以从尾部恢复运动精子,尽管这些细胞的计数(P<0.001)和运动(P < 0.01)显着减少,超氧化物生成显着升高(P<0.001)。尽管自由基的产生有所增加,但在这些精子中没有检测到染色质不稳定的证据。此外,从这12周时间点交配的雌性获得的胚胎没有显示出突变负荷增加的证据。同样,尽管体细胞组织(如肝脏)携带的突变负荷显着增加,但Big Blue小鼠的逐渐衰老对后代的精子质量,生育力或突变频率没有影响(P<0.05)。我们得出的结论是,雄性生殖系对突变具有高度抵抗力,这与一次性体细胞假说一致,该假说假设生殖细胞的遗传完整性将以牺牲体细胞为代价来维持,因为前者在维护基因组稳定性方面的哨兵地位。

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