Suppr超能文献

提高果蝇寿命的突变的定量和分子遗传学分析。

Quantitative and molecular genetic analyses of mutations increasing Drosophila life span.

机构信息

Department of Genetics and W. M. Keck Center for Behavioral Biology, North Carolina State University, Raleigh, North Carolina, United States of America.

出版信息

PLoS Genet. 2010 Jul 29;6(7):e1001037. doi: 10.1371/journal.pgen.1001037.

Abstract

Understanding the genetic and environmental factors that affect variation in life span and senescence is of major interest for human health and evolutionary biology. Multiple mechanisms affect longevity, many of which are conserved across species, but the genetic networks underlying each mechanism and cross-talk between networks are unknown. We report the results of a screen for mutations affecting Drosophila life span. One third of the 1,332 homozygous P-element insertion lines assessed had quantitative effects on life span; mutations reducing life span were twice as common as mutations increasing life span. We confirmed 58 mutations with increased longevity, only one of which is in a gene previously associated with life span. The effects of the mutations increasing life span were highly sex-specific, with a trend towards opposite effects in males and females. Mutations in the same gene were associated with both increased and decreased life span, depending on the location and orientation of the P-element insertion, and genetic background. We observed substantial--and sex-specific--epistasis among a sample of ten mutations with increased life span. All mutations increasing life span had at least one deleterious pleiotropic effect on stress resistance or general health, with different patterns of pleiotropy for males and females. Whole-genome transcript profiles of seven of the mutant lines and the wild type revealed 4,488 differentially expressed transcripts, 553 of which were common to four or more of the mutant lines, which include genes previously associated with life span and novel genes implicated by this study. Therefore longevity has a large mutational target size; genes affecting life span have variable allelic effects; alleles affecting life span exhibit antagonistic pleiotropy and form epistatic networks; and sex-specific mutational effects are ubiquitous. Comparison of transcript profiles of long-lived mutations and the control line reveals a transcriptional signature of increased life span.

摘要

了解影响寿命和衰老的遗传和环境因素对人类健康和进化生物学具有重要意义。多种机制影响寿命,其中许多机制在物种间是保守的,但每种机制的遗传网络及其网络间的串扰尚不清楚。我们报告了一项影响果蝇寿命的突变筛选结果。在评估的 1332 个纯合 P 元件插入系中,有三分之一对寿命有定量影响;减少寿命的突变是增加寿命的突变的两倍。我们确认了 58 个具有延长寿命的突变,其中只有一个突变是以前与寿命相关的基因。增加寿命的突变的影响具有高度的性别特异性,在雄性和雌性中呈现出相反的趋势。在同一基因中的突变与寿命的增加和减少都有关,这取决于 P 元件插入的位置和方向,以及遗传背景。我们观察到在具有增加寿命的十个突变中存在大量的、且具有性别特异性的上位性。所有增加寿命的突变都至少对压力抵抗或一般健康有一个有害的多效性影响,在雄性和雌性中具有不同的多效性模式。七个突变系和野生型的全基因组转录谱显示有 4488 个差异表达的转录物,其中 553 个转录物在四个或更多的突变系中是共同的,这些突变系包括以前与寿命相关的基因和本研究中涉及的新基因。因此,寿命有很大的突变靶点大小;影响寿命的基因具有可变的等位基因效应;影响寿命的等位基因表现出拮抗多效性,并形成上位性网络;性别特异性的突变效应是普遍存在的。比较长寿命突变和对照系的转录谱揭示了增加寿命的转录特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef68/2912381/2e12a0e059a1/pgen.1001037.g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验