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减数分裂驱动的代谢成本。

The metabolic costs of meiotic drive.

作者信息

Bradshaw Sasha L, Rodríguez Enrique, Wang Hanting, Yu Cyn Thea, De Villiers De La Noue Cyril, Hafezjee Aadil, Pomiankowski Andrew, Camus M Florencia

机构信息

Genetics, Evolution, and Environment, University College London, London, UK.

出版信息

Proc Biol Sci. 2025 Jul;292(2050):20250779. doi: 10.1098/rspb.2025.0779. Epub 2025 Jul 2.

Abstract

Selfish genetic elements, such as meiotic drive genes, disrupt Mendel's law of equal segregation by biasing their own transmission, often at a detriment to the rest of the genome. Metabolic costs of the X-linked sex ratio (SR) meiotic drive were investigated in stalk-eyed flies (). The experiments demonstrate that individuals with SR have reduced capacity for ATP synthesis. The disruption in mitochondrial function leads to compensation exhibited in increased basal metabolic rate and greater food consumption across a range of diets. The range of metabolic costs of drive was evident in males and females at a similar magnitude. The likely cause lies in the accumulation of deleterious mutations within the series of large inversions on the drive X chromosome, subject to low recombination and weak natural selection. In females, the drive chromosome had a dominant effect, with a single copy causing substantial metabolic compromise. There was little evidence of male-specific metabolic costs, nor evidence of greater effects of drive chromosomes on female metabolism. This suggests that direct metabolic costs from meiotic drive on spermatogenesis and from sexually antagonistic selection are relatively weak. Our results underscore the broad physiological impacts that selfish genetic elements have on host metabolism and fitness.

摘要

自私的遗传元件,如减数分裂驱动基因,通过偏向自身传递来破坏孟德尔的等位基因分离定律,这通常会对基因组的其他部分造成损害。我们研究了在长脚蝇中X连锁性别比例(SR)减数分裂驱动的代谢成本。实验表明,携带SR的个体ATP合成能力下降。线粒体功能的破坏导致基础代谢率增加以及在一系列饮食条件下食物消耗量增加,以此作为补偿。驱动的代谢成本范围在雄性和雌性中表现出相似的程度。可能的原因在于驱动X染色体上一系列大的倒位区域内有害突变的积累,这些区域重组率低且自然选择较弱。在雌性中,驱动染色体具有显性效应,单个拷贝就会导致显著的代谢损伤。几乎没有证据表明存在雄性特异性的代谢成本,也没有证据表明驱动染色体对雌性代谢有更大的影响。这表明减数分裂驱动对精子发生以及性拮抗选择产生的直接代谢成本相对较弱。我们的研究结果强调了自私的遗传元件对宿主代谢和适应性具有广泛的生理影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/853a/12213003/b6e0fe726f8c/rspb.2025.0779.f001.jpg

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