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High-Resolution Mapping of Quantitative Trait Loci Affecting Increased Life Span in Drosophila melanogaster

机译:影响果蝇寿命延长的数量性状位点的高分辨率定位。

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摘要

Limited life span and senescence are near-universal characteristics of eukaryotic organisms, controlled by many interacting quantitative trait loci (QTL) with individually small effects, whose expression is sensitive to the environment. Analyses of mutations in model organisms have shown that genes affecting stress resistance and metabolism affect life span across diverse taxa. However, there is considerable segregating variation for life span in nature, and relatively little is known about the genetic basis of this variation. Replicated lines of Drosophila that have evolved increased longevity as a correlated response to selection for postponed senescence are valuable resources for identifying QTL affecting naturally occurring variation in life span. Here, we used deficiency complementation mapping to identify at least 11 QTL on chromosome 3 that affect variation in life span between five old (O) lines selected for postponed senescence and their five base (B) population control lines. Most QTL were sex specific, and all but one affected multiple O lines. The latter observation is consistent with alleles at intermediate frequency in the base population contributing to the response to selection for postponed senescence. The QTL were mapped with high resolution and contained from 12 to 170 positional candidate genes.
机译:有限的寿命和衰老是真核生物的近乎普遍的特征,它受许多相互作用的数量性状基因座(QTL)的控制,而单个位点的影响很小,其表达对环境敏感。对模型生物的突变进行的分析表明,影响抗逆性和新陈代谢的基因会影响整个分类单元的寿命。但是,自然界中存在相当大的隔离变异,并且对该变异的遗传基础知之甚少。果蝇的复制品系已经延长了寿命,这是对选择延缓衰老的相关反应,是鉴定影响寿命中自然发生变化的QTL的宝贵资源。在这里,我们使用了缺陷互补图谱来识别3号染色体上的至少11个QTL,这些QTL影响为延缓衰老而选择的五个旧(O)品系与其五个基本(B)种群控制品系之间的寿命差异。大多数QTL是针对性别的,除一个外,其他所有QTL都影响多个O系。后者的观察结果与基础人群中频的等位基因一致,这有助于选择衰老。 QTL高分辨率定位,包含12至170个位置候选基因。

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