Pigliucci Massimo, Hayden Karen
Departments of Botany and of Ecology & Evolutionary Biology, University of Tennessee, Knoxville, TN 37966-1100, USA.
New Phytol. 2001 Dec;152(3):419-430. doi: 10.1046/j.0028-646X.2001.00275.x.
• The way in which novel genetic variation affects the patterns of phenotypic integration in natural populations is addressed here. • An experimental study is presented of the variability in integration caused by interpopulation hybridization and consequent genetic reshuffling, as well as by changes in the physical environment in the model system Arabidopsis thaliana (Brassicaceae). • Our results show a basic invariance of sets of covarying traits in A. thaliana, with changes in nutrient availability as the principal factor accounting for major departures from the general pattern and where differences in the genetic background of the recombinant lines are less important. In A. thaliana, the relationships among vegetative and reproductive traits form distinct clusters in multivariate space. A high degree of congruence was found between differences in the multivariate mean phenotype and the pattern of phenotypic integration, as expected on the basis of recent theoretical models. • This relationship might indicate strong selective constraints acting on the specialized life history of these populations, which are spring ephemerals inhabiting ruderal habitats and prone to competition avoidance.
• 本文探讨了新的基因变异影响自然种群表型整合模式的方式。
• 本文展示了一项实验研究,该研究涉及拟南芥(十字花科)模型系统中,种群间杂交及随之而来的基因重排,以及物理环境变化所导致的整合变异性。
• 我们的研究结果表明,拟南芥中协变性状集具有基本不变性,养分可利用性的变化是导致与一般模式出现重大偏差的主要因素,而重组系遗传背景的差异则不太重要。在拟南芥中,营养和生殖性状之间的关系在多变量空间中形成了不同的簇。正如基于近期理论模型所预期的那样,在多变量平均表型差异与表型整合模式之间发现了高度一致性。
• 这种关系可能表明,对这些种群的特殊生活史存在强大的选择限制,这些种群是栖息于杂草丛生栖息地且倾向于避免竞争的春季短命植物。