社会对抗性促进了的超基因扩张
Giulia Scarparo1, Marie Palanchon2, Alan Brelsford2
1Department of Entomology, University of California, Riverside, 165 Entomology Bldg. Citrus Drive, Riverside, CA 92521, USA.
Current biology : CB
|November 18, 2023
概括
性染色体进化模型解释了基因组结构. 在中,在9号染色体上重新排列的超基因变体 (9r) 驱动了女王的小型化,可能会产生初始的社会寄生虫.
科学领域:
- 进化遗传学的进化遗传学
- 社会昆虫生物学 社会昆虫生物学
- 基因组学就是基因组学.
背景情况:
- 敌对的选择驱动性染色体进化和抑制的重组.
- 自体超基因与性染色体有相似之处,这表明了类似的进化模型.
研究的目的:
- 调查性染色体进化模型是否可以解释基因组结构和重组在其他情况下,特别是在.
- 为了确定社会组织的遗传基础和女王大小二态性在Formica.
主要方法:
- 福米卡物种的基因组分析.
- 在染色体3和9上识别超基因哈普洛类型.
- 调查变体之间的链接不平衡.
主要成果:
- 3号染色体上的四个超基因单基因类型会影响殖民地的社会组织和性别比例.
- 在9号染色体上,一种新的重排列超基因变异 (9r) 导致女王微型化.
- 9r变异与染色体3上的多妻制相关的哈普洛型存在强烈的链接不平衡,这表明社会对抗.
结论:
- 单性和多性殖民地之间的差异性选择可能导致了9号染色体上的多形态的出现.
- 一个祖先的哈普洛型可能已经扩大,抑制了9号染色体的重组,并将其与3号染色体联系起来.
- 这个过程反映了新性染色体的形成,小型化女王可能代表初始的社会寄生虫.
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