首页> 外文期刊>BMC Evolutionary Biology >Hidden paths to endless forms most wonderful: Complexity of bacterial motility shapes diversification of latent phenotypes
【24h】

Hidden paths to endless forms most wonderful: Complexity of bacterial motility shapes diversification of latent phenotypes

机译:隐藏的路径为无尽的形式最精彩:细菌运动的复杂性形状潜在表型的多样化

获取原文
           

摘要

Evolution in one?selective environment often latently generates phenotypic change that is?manifested only later in different environments, but the complexity of behavior important to fitness in the original environment might influence the character of such latent-phenotype evolution. Using Myxococcus xanthus, a bacterium possessing two motility systems differing in effectiveness on hard vs. soft surfaces, we test (i) whether and how evolution while swarming on one surface—the selective surface—latently alters motility on the alternative surface type and (ii) whether patterns of such latent-phenotype evolution depend on the complexity of ancestral motility, specific ancestral motility genotypes and/or the selective surface of evolution. We analysze an experiment in which populations established from three ancestral genotypes—one with both motility systems intact and two others with one system debilitated—evolved while swarming across either hard or soft agar in six evolutionary treatments. We then compare motility-phenotype patterns across selective vs. alternative surface types. Latent motility evolution was pervasive but varied in character as a function of the presence of one or two functional motility systems and, for some individual-treatment comparisons, the specific ancestral genotype and/or selective surface. Swarming rates on alternative vs. selective surfaces were positively correlated generally among populations with one functional motility system but not among those with two. This suggests that opportunities for pleiotropy and epistasis generated by increased genetic complexity underlying behavior can alter the character of latent-phenotype evolution. No tradeoff between motility performance across surface types was detected in the dual-system treatments, even after adaptation on a surface on which one motility system dominates strongly over the other in driving movement, but latent-phenotype evolution was instead idiosyncratic in these treatments. We further find that the magnitude of stochastic diversification at alternative-surface swarming among replicate populations greatly exceeded diversification of selective-surface swarming within some treatments and varied across treatments. Collectively, our results suggest that increases in the genetic and mechanistic complexity of behavior can increase the complexity of latent-phenotype?evolution outcomes and illustrate that diversification manifested during evolution in one environment can be augmented greatly by diversification of latent phenotypes manifested later.
机译:在一个?选择性环境通常潜在地产生表型变化?仅在不同环境中表现出来,但对原始环境中的适应性重要的行为的复杂性可能会影响这种潜在的表型进化的特征。使用麦克松Xanthus,一种具有两种在硬质表面的有效性不同的动机系统的细菌,我们测试(i)是否以及如何进化,同时蜂拥而至 - 选择性表面潜伏在替代表面类型上的运动性和(II )这种潜在表型进化的模式是否取决于祖先运动,特异性祖先运动基因型和/或进化选择性表面的复杂性。我们分析了一种实验,其中从三个祖先基因型 - 一种与两种动机系统建立的人群完整,另外两种系统在六个进化治疗中蜂拥而至的,同时肿瘤肿胀。然后,我们比较选择性与替代表面类型的运动性表型模式。潜在的动力进化是普遍性的,但在具有一个或两个功能运动系统的存在的函数中,具有变化的特征,并且对于某些个体治疗比较,特定的祖先基因型和/或选择性表面。替代与选择性表面上的蜂拥而至的速率通常在具有一个功能性运动系统的人群中呈正相关,但不存在两种功能。这表明通过增加的遗传复杂性产生的胸肉复杂和超越的机会可以改变潜在表型进化的特征。在双系统治疗中,在双系统处理中没有在双系统处理中检测到运动性能之间的权衡,即使在驾驶运动中强烈占据了一个动机系统的表面,仍然是潜在的,但在这些处理中的特异性。我们进一步发现,在一些处理中,重复群体中替代表面蜂拥而至的替代表面蜂拥的随机多样化的大小大大超过了各种治疗中的选择性表面蜂拥而道,并且各种处理变化。我们的结果表明,行为的遗传和机械复杂性的增加可以增加潜在表型的复杂性吗?进化结果,并说明在一个环境中的进化期间表现出的多样化可以通过潜在表型的多样化来增强。

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