首页> 外文期刊>The journals of gerontology.Series A. Biological sciences and medical sciences >Multiple Metazoan Life-span Interventions Exhibit a Sex-specific Strehler-Mildvan Inverse Relationship Between Initial Mortality Rate and Age-dependent Mortality Rate Acceleration
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Multiple Metazoan Life-span Interventions Exhibit a Sex-specific Strehler-Mildvan Inverse Relationship Between Initial Mortality Rate and Age-dependent Mortality Rate Acceleration

机译:多种美立的寿命干预措施在初始死亡率和年龄依赖性死亡率加速之间表现出一种性别特异性的智慧 - 季度反比关系

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The Gompertz equation describes survival in terms of initial mortality rate (parameter a), indicative of health, and age-dependent acceleration in mortality rate (parameter b), indicative of aging. Gompertz parameters were analyzed for several published studies. In Drosophila females, mating increases egg production and decreases median life span, consistent with a trade-off between reproduction and longevity. Mating increased parameter a, causing decreased median life span, whereas time parameter b was decreased. The inverse correlation between parameters indicates the Strehler-Mildvan (S-M) relationship, where loss of low-vitality individuals yields a cohort with slower age-dependent mortality acceleration. The steroid hormone antagonist mifepristone/RU486 reversed these effects. Mating and mifepristone showed robust S-M relationships across genotypes, and dietary restriction showed robust S-M relationship across diets. Because nutrient optima differed between females and males, the same manipulation caused opposite effects on mortality rates in females versus males across a range of nutrient concentrations. Similarly, p53 mutation in Drosophila and mTOR mutation in mice caused increased median life span associated with opposite direction changes in mortality rate parameters in females versus males. The data demonstrate that dietary and genetic interventions have sex-specific and sometimes sexually opposite effects on mortality rates consistent with sexual antagonistic pleiotropy.
机译:Gompertz方程以初始死亡率(参数a)和年龄相关的死亡率加速(参数b)来描述存活率,前者表示健康,后者表示衰老。对几项已发表的研究进行了Gompertz参数分析。在果蝇雌性中,交配会增加产卵量,降低平均寿命,这与繁殖和寿命之间的权衡是一致的。交配增加了参数a,导致中位寿命缩短,而时间参数b则降低。参数之间的负相关表明了Strehler-Mildvan(S-M)关系,即缺乏活力的个体会产生一个年龄依赖性死亡率加速较慢的队列。类固醇激素拮抗剂米非司酮/RU486逆转了这些效应。交配和米非司酮在不同基因型中表现出稳健的S-M关系,而饮食限制在不同饮食中表现出稳健的S-M关系。由于雌性和雄性之间的营养最佳值不同,在不同的营养浓度范围内,相同的操作对雌性和雄性的死亡率产生了相反的影响。类似地,果蝇中的p53突变和小鼠中的mTOR突变导致中位寿命增加,这与雌性与雄性死亡率参数的相反方向变化有关。数据表明,饮食和基因干预对死亡率有性别特异性影响,有时甚至是性别相反的影响,与性拮抗多效性一致。

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