耐受性传递防御性共生体和寄生虫毒性的演变
Cameron A Smith1, Ben Ashby1,2,3,4
1Department of Mathematical Sciences, University of Bath, Bath, Somerset, United Kingdom.
Evolution letters
|July 21, 2023
概括
引入防御性共生体来控制寄生虫可能会反作用. 虽然最初有帮助,但寄生虫和共生体的长期进化可能会伤害宿主种群,这表明生物控制潜力不佳.
科学领域:
- 进化生态学的进化生态学
- 微生物组研究 微生物组研究
- 理论生物学 理论生物学
背景情况:
- 宿主微生物组中的防御性共生体可以防止寄生虫,使它们成为潜在的生物控制剂.
- 之前的研究探讨了共生生物与宿主共同进化,但忽视了对共生生物引入的反应中的寄生虫进化.
研究的目的:
- 调查引入耐受性传递防御性共生体进入宿主寄生系统的生态和进化后果.
- 了解寄生虫和防御性共生体之间的共同进化动态.
主要方法:
- 用引入的防御性共生体对宿主寄生体系统的理论建模.
- 对生态和进化影响的分析,包括寄生虫毒性和共生动物保护.
主要成果:
- 防御性共生体最初有利于宿主种群,但长期导致寄生虫毒性增加.
- 寄生虫进化,由共生体的存在驱动,可以导致毒性多样化和对宿主的净负面影响.
- 即使是增强的共生体保护也可以选择增加寄生虫的毒性,从而否定好处.
结论:
- 具有耐受性的防御性共生体可能不是有效的生物控制剂,用于人口层面的疾病管理.
- 寄生虫对防御性共生体的共同进化反应可能会破坏它们预期的保护作用.
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