Phenotypic Plasticity of Reproduction in Schizachyrium scoparium (Poaceae) Populations in Relation to Ecological History

Aliso Pub Date : 2007-01-01 DOI:10.5642/aliso.20072301.22
E. M. Obee, J. A. Quinn
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引用次数: 1

Abstract

Genetic differentiation in reproduction in the wide-ranging Schizachyrium scoparium (Poaceae) has been demonstrated in uniform gardens. However, the fine-tuning of flowering phenology and biomass allocation in relation to spatial and temporal fluctuations in the local environment is best accomplished by plastic responses to local variability. An earlier central New Jersey study suggested that S. scoparium populations in old fields of 2 to 40 years differed in plasticity. To test this apparent effect of ecological history on the development of different levels of plasticity, genotypes were collected from high- and low-fertility sites in New Jersey (forest biome) and in Oklahoma (grassland biome). Three greenhouse experiments manipulating light and nutrients were used to partition variation into genetic and environmental components. High light or high nutrients resulted in plasticity for increased biomass, greater reproductive allocation, and more tillers. Earlier flowering was induced by high light, but nutrient treatments had no effect. Populations were more likely to differ in plasticity across regions than within regions, and Oklahoma populations were consistently more plastic than New Jersey populations. In response to nutrients, populations from high-nutrient sites were often more plastic than those from low-nutrient sites. There were fewer differences in plasticity in response to light between high- and low-nutrient populations. The greater plasticity in Oklahoma populations is suggested to be the result of historically greater environmental unpredictability and K-selection factors such as density-dependent selection and greater competition for resources. A native grass population is more than just a Latin binomial. Evolutionary forces create an ecological unit unique and irreplaceable at the local level.
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与生态历史相关的荆芥群体生殖的表型可塑性
广泛分布的荆芥(禾本科)的生殖遗传分化已在统一园林中得到证实。然而,开花物候和生物量分配的微调与当地环境的时空波动有关,最好是通过对当地变率的塑性响应来完成的。早前在新泽西州中部进行的一项研究表明,在2至40年的老田中,东莨菪种群的可塑性存在差异。为了验证生态历史对不同程度可塑性发展的明显影响,从新泽西州(森林生物群系)和俄克拉何马州(草地生物群系)的高肥力和低肥力地点收集了基因型。三个操纵光和养分的温室实验将变异划分为遗传和环境成分。高光照或高营养导致生物量增加的可塑性,更大的生殖分配和更多的分蘖。强光诱导较早开花,但营养处理没有效果。人口的可塑性在不同地区之间比在不同地区之间更有可能存在差异,俄克拉荷马州的人口一直比新泽西州的人口更具可塑性。在对营养的反应中,来自高营养地区的种群往往比来自低营养地区的种群更具可塑性。在高营养种群和低营养种群之间,对光的可塑性反应差异较小。俄克拉何马州人口的更大可塑性被认为是历史上更大的环境不可预测性和k选择因素(如密度依赖选择和对资源的更大竞争)的结果。原生草种群不仅仅是一个拉丁二项式。进化的力量在地方层面上创造了一个独特的、不可替代的生态单位。
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