首页> 外文期刊>Evolution: International Journal of Organic Evolution >Costs of selfing prevent the spread of a self-compatibility mutation that causes reproductive assurance
【24h】

Costs of selfing prevent the spread of a self-compatibility mutation that causes reproductive assurance

机译:自我的成本阻止了自我兼容性突变的传播,导致生殖保障

获取原文
获取原文并翻译 | 示例
       

摘要

In flowering plants, shifts from outcrossing to partial or complete self-fertilization have occurred independently thousands of times, yet the underlying adaptive processes are difficult to discern. Selfing’s ability to provide reproductive assurance when pollination is uncertain is an oft-cited ecological explanation for its evolution, but this benefit may be outweighed by costs diminishing its selective advantage over outcrossing. We directly studied the fitness effects of a self-compatibility mutation that was backcrossed into a self-incompatible (SI) population of Leavenworthia alabamica, illuminating the direction and magnitude of selection on the mating-system modifier. In array experiments conducted in two years, self-compatible (SC) plants produced 17–26% more seed, but this advantage was counteracted by extensive seed discounting—the replacement of high-quality outcrossed seeds by selfed seeds. Using a simple model and simulations, we demonstrate that SC mutations with these attributes rarely spread to high frequency in natural populations, unless inbreeding depression falls below a threshold value (0.57 ≤ δ_(threshold) ≤ 0.70) in SI populations. A combination of heavy seed discounting and inbreeding depression likely explains why outcrossing adaptations such as self-incompatibility are maintained generally, despite persistent input of selfing mutations, and frequent limits on outcross seed production in nature.
机译:在开花植物中,从数千次发生了从突出到部分或完全自我施肥的转变,但潜在的自适应过程难以辨别。自我授粉时提供繁殖保证的能力是不确定的,这是一个引用的生态学解释,但这种益处可能会超过其在外交的选择性优势减少其选择性优势。我们直接研究了自相容性突变的健身效果,其被回复的leadvorthia alabamica的自我不相容(Si)群体,照亮了配合系统改性剂上的选择方向和幅度。在两年内进行的阵列实验中,自相容(SC)植物产生的种子更多17-26%,但这种优势被广泛的种子折扣 - 通过自带种子更换高质量的销售种子。使用简单的模型和模拟,我们证明了具有这些属性的SC突变很少蔓延到天然群体中的高频,除非近亲繁殖低于Si群体中的阈值(0.57≤Δ_(阈值)≤0.70)。沉重的种子折扣和近亲繁殖的组合可能解释了为什么通常对自行性突变的持续输入持续输入,并且频繁限制了自然界的频繁限制了诸如自我不相容性的诸如自我不相容的适应。

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