有证据表明,毒素编码的共感染驱动了天然酵母种群中的等位基因表型之间的不过渡动力学
Tommy J Travers-Cook1,2,3, Emmy Gonzalez-Gonzalez2,3, Jukka Jokela2,3
1Department of Zoology, University of British Columbia, Vancouver, Canada.
Journal of evolutionary biology
|December 17, 2025
概括
竞争的不过渡性,就像石头纸剪刀一样,维持生物多样性. 在酵母菌种群中,随着耐药菌株的演变,杀手菌株的数量下降,使敏感菌株重新出现,证明了这种生态动态.
科学领域:
- 生态生态学 生态生态学
- 进化生物学 进化生物学
- 微生物学 微生物学
背景情况:
- 竞争性不过渡性,即没有单一的竞争者占主导地位,理论上是为了保持生物多样性.
- 对自然种群中不过渡性的作用的经验证据很少.
- 酵母菌种群 (Saccharomyces cerevisiae) 呈现出由毒素编码共感染驱动的杀手-敏感-耐药动态.
研究的目的:
- 调查自然酵母种群中竞争性不过渡性的经验证据.
- 了解杀手,耐药和易感酵母菌株的动态.
- 探索毒素生产和耐药性在维持酵母生物多样性的作用.
主要方法:
- 来自新西兰葡萄园的酵母分离物的多年收集.
- 时空转移竞争试验用于评估酵母菌株相互作用.
- 杀手酵母基因型动态的分析和耐药和易感菌株的出现.
主要成果:
- 一种常见的杀手酵母基因型在几年内显著下降.
- 相同的酵母菌株主要对杀手毒素有抗性,与全方位菌株不同.
- 杀手酵母的灭绝促进了对毒素敏感的酵母菌株的重新出现.
结论:
- 酵母杀菌毒素的竞争优势被进化的耐药性所削弱.
- 杀手-耐药-易受性多态是通过岩石-纸-剪刀的进化动态来维持的.
- 酵母种群表现出不过渡的相互作用,有助于维持生物多样性.
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