Amdam Gro V, Aase Anne Lene T O, Seehuus Siri-Christine, Kim Fondrk M, Norberg Kari, Hartfelder Klaus
School of Life Sciences, Arizona State University, P.O. Box 874501, Tempe, AZ 85287, USA.
Exp Gerontol. 2005 Dec;40(12):939-47. doi: 10.1016/j.exger.2005.08.004. Epub 2005 Oct 5.
A striking example of immunosenescence is seen in the honey bee (Apis mellifera) worker caste. The bees' age-associated transition from hive duties to more risky foraging activities is linked to a dramatic decline in immunity. Explicitly, it has been shown that an increase in the juvenile hormone (JH) level, which accompanies onset of foraging behavior, induces extensive hemocyte death through nuclear pycnosis. Here, we demonstrate that foragers that are forced to revert to hive-tasks show reversal of immunosenescence, i.e. a recovery of immunity with age. This recovery, which is triggered by a social manipulation, is accompanied by a drop in the endogenous JH titer and an increase in the hemolymph vitellogenin level. Vitellogenin is a zinc binding glycolipoprotein that has been implicated in the regulation of honey bee immune integrity. We also establish that worker immunosenescence is mediated by apoptosis, corroborating that reversal of immunosenescence emerges through proliferation of new cells. The results presented here, consequently, reveal a unique flexibility in honey bee immunity--a regulatory plasticity that may be of general biological interest.
免疫衰老的一个显著例子见于蜜蜂(西方蜜蜂)的工蜂群体。蜜蜂从蜂巢职责向风险更高的觅食活动的与年龄相关的转变与免疫力的急剧下降有关。具体而言,研究表明,伴随觅食行为开始的保幼激素(JH)水平升高会通过核固缩诱导大量血细胞死亡。在此,我们证明,被迫恢复蜂巢任务的觅食者会出现免疫衰老的逆转,即免疫力随年龄增长而恢复。这种由社会操纵引发的恢复伴随着内源性JH滴度的下降和血淋巴中卵黄原蛋白水平的升高。卵黄原蛋白是一种锌结合糖脂蛋白,与蜜蜂免疫完整性的调节有关。我们还证实工蜂的免疫衰老由细胞凋亡介导,从而确证免疫衰老的逆转是通过新细胞的增殖实现的。因此,这里呈现的结果揭示了蜜蜂免疫中一种独特的灵活性——一种可能具有普遍生物学意义的调节可塑性。