Department of Genetics and W.M. Keck Center for Behavioral Biology, North Carolina State University, Raleigh, NC 27695-7614, United States.
Mech Ageing Dev. 2013 Mar;134(3-4):79-88. doi: 10.1016/j.mad.2012.11.003. Epub 2012 Dec 21.
Limited lifespan and senescence are quantitative traits, controlled by many interacting genes with individually small and environmentally plastic effects, complicating genetic analysis. We performed genome wide analysis of gene expression for two Drosophila melanogaster lines selected for postponed senescence and one control, unselected line to identify candidate genes affecting lifespan as well as variation in lifespan. We obtained gene expression profiles for young flies of all lines, all lines at the time only 10% of the control lines survived, and the time at which 10% of the selected lines survived. Transcriptional responses to aging involved 19% of the genome. The transcriptional signature of aging involved the down-regulation of genes affecting proteolysis, metabolism, oxidative phosphorylation, and mitochrondrial function; and the up-regulation of genes affecting protein synthesis, immunity, defense responses, and the detoxification of xenobiotic substances. The transcriptional signature of postponed senescence involved the up-regulation of proteases and phosphatases and genes affecting detoxification of xenobiotics; and the down-regulation of genes affecting immunity, defense responses, metabolism and muscle function. Functional tests of 17 mutations confirmed 12 novel genes affecting Drosophila lifespan. Identification of genes affecting longevity by analysis of gene expression changes in lines selected for postponed senescence thus complements alternative genetic approaches.
寿命和衰老都是数量性状,受许多相互作用的基因控制,这些基因的影响单独较小,且具有环境可塑性,这使得遗传分析变得复杂。我们对两个经过选择以延迟衰老的黑腹果蝇(Drosophila melanogaster)品系和一个未经选择的对照品系进行了全基因组基因表达分析,以鉴定影响寿命和寿命变化的候选基因。我们获得了所有品系的年轻果蝇的基因表达谱,所有品系在只有 10%的对照品系存活的时间点,以及 10%的选择品系存活的时间点。衰老的转录反应涉及基因组的 19%。衰老的转录特征涉及到影响蛋白质水解、代谢、氧化磷酸化和线粒体功能的基因下调;以及影响蛋白质合成、免疫、防御反应和外来物质解毒的基因上调。推迟衰老的转录特征涉及到蛋白酶和磷酸酶以及影响外来物质解毒的基因上调;以及影响免疫、防御反应、代谢和肌肉功能的基因下调。对 17 个突变的功能测试证实了 12 个影响果蝇寿命的新基因。通过分析推迟衰老选择的品系中基因表达变化来鉴定影响长寿的基因,这补充了替代的遗传方法。