Vermeulen C J, Bijlsma R
Department of Genetics, University of Groningen, Kerklaan 30, NL-9751 NN Haren, The Netherlands.
Heredity (Edinb). 2004 Apr;92(4):275-81. doi: 10.1038/sj.hdy.6800412.
After an inbreeding event, lifespan can be curtailed through the expression of deleterious alleles. This will impact on both mortality patterns and interactions with the environment as visualised in reaction norms. We have established the effects of inbreeding on the temperature dependence of lifespan and on mortality patterns in Drosophila melanogaster. Four inbred lines displaying severely decreased lifespan and five outbred controls were assessed for male adult survival at three temperatures. As expected, all inbred lines showed a shorter lifespan than noninbred lines. The mechanisms behind this, however, appeared to be very diverse. Two inbred lines showed a significantly decreased temperature dependence of lifespan compared to the control lines. Analysis of variance on the mortality parameters over all lines showed that inbreeding changes the age-independent mortality but not the age-dependent mortality, whereas temperature does the opposite. This suggests that gene-by-environment interaction caused by inbreeding is the result of changes in the processes of lifespan determination. Importantly, for the two other inbred lines, a particular temperature regime triggered the expression of conditional lethal alleles. Mortality was concentrated in short lethal phases early in adult life. These conditionally expressed lethal alleles affecting lifespan demonstrate line specificity for inbreeding depression and will help ageing studies as such alleles may serve as candidate genes for ageing processes and age-related pathologies in humans.
在近亲繁殖事件发生后,有害等位基因的表达会缩短寿命。这将影响死亡率模式以及与环境的相互作用,如反应规范中所显示的那样。我们已经确定了近亲繁殖对黑腹果蝇寿命的温度依赖性和死亡率模式的影响。对四个寿命严重缩短的近交系和五个远交对照系的成年雄性果蝇在三种温度下的存活情况进行了评估。正如预期的那样,所有近交系的寿命都比非近交系短。然而,其背后的机制似乎非常多样。与对照系相比,两个近交系的寿命温度依赖性显著降低。对所有品系的死亡率参数进行方差分析表明,近亲繁殖改变了与年龄无关的死亡率,但没有改变与年龄相关的死亡率,而温度的影响则相反。这表明近亲繁殖引起的基因与环境的相互作用是寿命决定过程变化的结果。重要的是,对于另外两个近交系,特定的温度条件触发了条件致死等位基因的表达。死亡率集中在成年早期的短暂致死阶段。这些影响寿命的条件表达致死等位基因显示出近亲繁殖衰退的品系特异性,并且将有助于衰老研究,因为此类等位基因可能作为人类衰老过程和与年龄相关疾病的候选基因。