首页> 外文期刊>Evolution: International Journal of Organic Evolution >PLEIOTROPY CAUSES LONG-TERM GENETIC CONSTRAINTS ON LIFE-HISTORY EVOLUTION IN BRASSICA RAPA
【24h】

PLEIOTROPY CAUSES LONG-TERM GENETIC CONSTRAINTS ON LIFE-HISTORY EVOLUTION IN BRASSICA RAPA

机译:肥育性导致芸苔长期生活进化的遗传约束

获取原文
获取原文并翻译 | 示例
       

摘要

Fundamental, long-term genetic trade-offs constrain life-history evolution in wild crucifer populations. I studied patterns of genetic constraint in Brassica rapa by estimating genetic correlations among life-history components by quantitative genetic analyses among ten wild populations, and within four populations. Genetic correlations between age and size at first reproduction were always greater than +0.8 within and among all populations studied. Although quantitative genetics might provide insight about genetic constraints if genetic parameters remain approximately constant, little evidence has been available to determine the constancy of genetic correlations. I found strong and consistent estimates of genetic correlations between life-history components, which were very similar within four natural populations. Population differentiation also showed these same trade-offs, resulting from long-term genetic constraint. For some traits, evolutionary changes among populations were incompatible with a model of genetic drift. Historical patterns of natural selection were inferred from population differentiation, suggesting that correlated response to selection has caused some traits to evolve opposite to the direct forces of natural selection. Comparison with Arabidopsis suggests that these life-history trade-offs are caused by genes that regulate patterns of resource allocation to different components of fitness. Ecological and energetic models may correctly predict these trade-offs because there is little additive genetic variation for rates of resource acquisition, but resource allocation is genetically variable. [References: 54]
机译:基本的长期遗传权衡取舍限制了野生十字花科植物种群的生活史进化。我通过对10个野生种群和4个种群的定量遗传分析,通过估计生活史成分之间的遗传相关性,研究了甘蓝型油菜的遗传限制模式。在所研究的所有种群之中和之中,首次繁殖的年龄与大小之间的遗传相关性始终大于+0.8。尽管如果遗传参数保持大致恒定,定量遗传学可能会提供有关遗传限制的见解,但很少有证据可确定遗传相关性的恒定性。我发现了生命历史成分之间遗传相关性的强而一致的估计,这在四个自然种群中非常相似。人口分化也显示出相同的权衡,这是由于长期遗传限制所致。对于某些特征,种群之间的进化变化与遗传漂移模型不兼容。自然选择的历史模式是根据人口分化推论的,这表明对选择的相关反应已导致某些性状与自然选择的直接作用力相反。与拟南芥的比较表明,这些生命历史的权衡取舍是由调节适应性不同组成部分资源分配方式的基因引起的。生态和能量模型可以正确预测这些折衷,因为资源获取率几乎没有附加遗传变异,但是资源分配在遗传上是可变的。 [参考:54]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号