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首页> 外文期刊>American Journal of Physiology >A plastic interval timer synchronizes pubertal development of summer- and fall-born hamsters.
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A plastic interval timer synchronizes pubertal development of summer- and fall-born hamsters.

机译:一个塑料间隔计时器可以同步夏季和秋季出生的仓鼠的青春期发育。

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摘要

Summer and fall decreases in day length induce reproductive regression in adult hamsters and delay reproductive maturation of their young. The following year pubertal development is triggered by an interval timer (IT) that renders animals refractory to inhibitory short day lengths after approximately 25 wk. Timing of gonadal and somatic development was examined among offspring born to Siberian hamsters in early-August vs. late-September day lengths. Pubertal maturation was delayed in both groups until late winter. Gonadal growth occurred at significantly later ages among August- vs. September-born males as did late-winter spurts in ponderal growth of both sexes. Timing of reproductive and somatic development depended on postnatal rather than prenatal photoperiod exposure and was unrelated to the circadian entrainment status of dams. When developmental patterns were assessed in relation to time of year, group differences were largely eliminated. Because the IT triggers these developmental events, its duration must be plastic. This plasticity facilitates a relative synchronization or entrainment of developmental milestones in hamsters born into different late-summer/early-fall photoperiods.
机译:夏季和秋季日间长度的减少会导致成年仓鼠繁殖退化,并延缓其幼龄繁殖的成熟。次年的青春期发育是由间隔计时器(IT)触发的,该间隔计时器使动物在约25周后难以忍受抑制性短日长。在8月上旬与9月下旬之间,研究了西伯利亚仓鼠所生后代的性腺和躯体发育时间。两组的青春期成熟都推迟到了冬季末。在8月和9月出生的男性中,性腺的生长明显晚于年龄,而冬末的男女两性pond突生长也是如此。生殖和躯体发育的时间取决于产后而不是产前的光周期暴露,并且与大坝的昼夜节律状态无关。当评估与一年中的时间相关的发展模式时,群体差异就被消除了。因为IT触发了这些发展事件,所以它的持续时间必须是可塑的。这种可塑性促进了出生在不同夏末/早秋光周期中的仓鼠中发育里程碑的相对同步或夹带。

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