非适应性可塑性增强了自然界中基因表达的快速适应性进化
Cameron K Ghalambor1,2, Kim L Hoke1,2, Emily W Ruell1
1Department of Biology, Colorado State University, Fort Collins, Colorado 80523, USA.
Nature
|September 3, 2015
概括
现型可塑性,即随着环境的变化而改变特征的能力,可以阻碍或帮助进化. 这项研究表明非适应性可塑性加速了狗基因表达的适应性进化.
科学领域:
- 进化生物学
- 遗传学
- 生态学
背景情况:
- 表型可塑性允许基因型根据环境线索产生各种表型.
- 塑性的适应性价值受到争论,关于它在进化中的作用存在矛盾的理论.
- 很少有研究在经验上将初始可塑性与自然环境中的后续适应性进化联系起来.
研究的目的:
- 研究基因表达中的表型可塑性和适应性进化之间的关系.
- 确定可塑性是否限制或促进了对环境变化的进化变化.
- 为了测试移植到新环境的狗大脑基因表达的进化差异.
主要方法:
- 将特立尼达海 (Poecilia reticulata) 从存在捕食者的河流移植到没有捕食者的河流.
- 在三到四代间对大脑基因表达模式的分析,以评估进化差异.
- 进化基因表达变化与祖先群体的塑性反应的比较.
主要成果:
- 135个成绩单显示出平行表达的变化, 表明犬的快速适应性进化.
- 89%的这些进化转录在祖先群体中表现出非适应性可塑性 (与进化变化相反的方向).
- 适应性可塑性与人口差异减少有关,而非适应性可塑性则增强了进化.
结论:
- 非适应性表型可塑性可以通过增加方向选择来加速适应性进化.
- 适应性可塑性可能会限制进化,而选择会随着时间的推移对抗非适应性可塑性.
- 非适应性可塑性是预测新环境的进化反应的关键因素.
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