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饮食限制下秀丽隐杆线虫代谢生活方式改变的特征:发育延迟与寿命延长

Delayed development and lifespan extension as features of metabolic lifestyle alteration in C. elegans under dietary restriction.

作者信息

Szewczyk Nathaniel J, Udranszky Ingrid A, Kozak Elena, Sunga June, Kim Stuart K, Jacobson Lewis A, Conley Catharine A

机构信息

NASA Ames Research Center, M/S 239-11, Moffett Field, CA 94035-1000, USA.

出版信息

J Exp Biol. 2006 Oct;209(Pt 20):4129-39. doi: 10.1242/jeb.02492.

Abstract

Studies of the model organism Caenorhabditis elegans have almost exclusively utilized growth on a bacterial diet. Such culturing presents a challenge to automation of experimentation and introduces bacterial metabolism as a secondary concern in drug and environmental toxicology studies. Axenic cultivation of C. elegans can avoid these problems, yet past work suggests that axenic growth is unhealthy for C. elegans. Here we employ a chemically defined liquid medium to culture C. elegans and find development slows, fecundity declines, lifespan increases, lipid and protein stores decrease, and gene expression changes relative to that on a bacterial diet. These changes do not appear to be random pathologies associated with malnutrition, as there are no developmental delays associated with starvation, such as L1 or dauer diapause. Additionally, development and reproductive period are fixed percentages of lifespan regardless of diet, suggesting that these alterations are adaptive. We propose that C. elegans can exist as a healthy animal with at least two distinct adult life histories. One life history maximizes the intrinsic rate of population increase, the other maximizes the efficiency of exploitation of the carrying capacity of the environment. Microarray analysis reveals increased transcript levels of daf-16 and downstream targets and past experiments demonstrate that DAF-16 (FOXO) acting on downstream targets can influence all of the phenotypes we see altered in maintenance medium. Thus, life history alteration in response to diet may be modulated by DAF-16. Our observations introduce a powerful system for automation of experimentation on healthy C. elegans and for systematic analysis of the profound impact of diet on animal physiology.

摘要

对模式生物秀丽隐杆线虫的研究几乎完全采用在细菌培养基上生长的方式。这种培养方式给实验自动化带来了挑战,并且在药物和环境毒理学研究中引入了细菌代谢这一次要问题。秀丽隐杆线虫的无菌培养可以避免这些问题,但过去的研究表明无菌生长对秀丽隐杆线虫不健康。在这里,我们使用化学限定的液体培养基培养秀丽隐杆线虫,发现相对于在细菌培养基上生长,其发育减缓、繁殖力下降、寿命增加、脂质和蛋白质储备减少,以及基因表达发生变化。这些变化似乎并非与营养不良相关的随机病变,因为不存在与饥饿相关的发育延迟,如L1或 dauer 滞育。此外,无论饮食如何,发育和生殖期在寿命中所占的百分比是固定的,这表明这些改变是适应性的。我们提出秀丽隐杆线虫可以作为一种健康的动物存在,具有至少两种不同的成年生活史。一种生活史使种群内在增长率最大化,另一种使对环境承载能力的利用效率最大化。微阵列分析显示daf - 16及其下游靶标的转录水平增加,过去的实验表明作用于下游靶标的DAF - 16(FOXO)可以影响我们在维持培养基中看到的所有改变的表型。因此,对饮食的生活史改变可能由DAF - 16调节。我们的观察结果引入了一个强大的系统,用于对健康秀丽隐杆线虫进行实验自动化,以及系统分析饮食对动物生理学的深远影响。

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