鸢尾(Iris pseudacorus L.)在原生和引进的地中海气候范围内功能特征的遗传和表型差异

IF 2.8 3区 环境科学与生态学 Q1 BIODIVERSITY CONSERVATION Biological Invasions Pub Date : 2024-05-29 DOI:10.1007/s10530-024-03350-1
B. Gallego-Tévar, B. J. Grewell, J. F. Gaskin, J. M. Castillo
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引用次数: 0

摘要

原生与引入植物物种之间功能特征的种内变异可能是引入物种的恢复力和入侵性的基础。我们探讨了在原生与外来物种之间观察到的鸢尾表型差异是否来自遗传分化和/或表型可塑性。种子采集自瓜达尔基维尔河口(西班牙安达卢西亚)和旧金山湾-三角洲河口(美国加利福尼亚州)种群内沿河口压力梯度的种群。对每个供种群体的植物叶片组织进行了遗传分析。发芽植物(n = 48:6 株植物 × 4 个群体 × 2 个范围)在普通花园实验(CGE)中生长了 12 个月。然后,我们评估了 25 个性状,包括生长、生物量分配、形态和生化反应。地理范围解释了相对的种内性状变异,将本地表型与引进表型分离开来。与引入植物相比,本地植物的比叶面积(-34%)和根茎中的碳水化合物浓度(-63%)较低,这为遗传分化提供了证据。原生植物与引进植物相比,遗传多样性更高,表型变异(CGE)高出 27%,这表明原生地有较长期的适应过程。引入种群(野外)的遗传距离随着表型距离(CGE)的增加而增加,表明遗传分化迅速。表型可塑性也解释了在野外条件下观察到的一些范围间差异,而这些差异在 CGE 中的植物中没有表现出来。应立即对引进的 I. pseudacorus 种群进行管理,因为它们代表了具有关键功能特征的新基因型,可通过提高竞争能力和对海平面上升的生理压力耐受性来支持入侵。
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Genetic and phenotypic differentiation in functional traits of Iris pseudacorus L. in native and introduced Mediterranean climate ranges

Intraspecific variation in functional traits between native and introduced plant species may underlie resilience and invasiveness of introduced species. We explored if observed phenotypic variation of Iris pseudacorus L. between populations in the native vs. introduced ranges results from genetic differentiation and/or phenotypic plasticity. Seeds were collected from populations along estuarine stress gradients within populations in both Guadalquivir Estuary (Andalusia, Spain) and San Francisco Bay-Delta Estuary (California, USA). Genetic analysis was performed on leaf tissue from plants in each seed donor population. Germinants (n = 48: 6 plants × 4 populations × 2 ranges) were grown for 12 months in a common garden experiment (CGE). We then evaluated 25 traits including growth, biomass allocation, morphological and biochemical responses. Geographic range explained relative intraspecific trait variation segregating native from introduced phenotypes. Native plants had lower specific leaf area (− 34%) and carbohydrate concentrations in rhizomes (− 63%) than introduced plants, providing evidence of genetic differentiation. Higher genetic diversity and 27% higher phenotypic variation (CGE) of native vs. introduced plants indicated longer-term adaptive processes in the native range. Genetic distance of introduced populations (field) increased along with their phenotypic distance (CGE), suggesting rapid genetic differentiation. Phenotypic plasticity also explained some observed inter-range differences under field conditions not expressed by plants in the CGE. Management of the introduced I. pseudacorus populations should be established urgently since they represent novel genotypes with key functional traits that can support invasiveness through increased competitive ability and physiological stress tolerances to sea level rise.

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来源期刊
Biological Invasions
Biological Invasions 环境科学-生态学
CiteScore
6.00
自引率
6.90%
发文量
248
审稿时长
3 months
期刊介绍: Biological Invasions publishes research and synthesis papers on patterns and processes of biological invasions in terrestrial, freshwater, and marine (including brackish) ecosystems. Also of interest are scholarly papers on management and policy issues as they relate to conservation programs and the global amelioration or control of invasions. The journal will consider proposals for special issues resulting from conferences or workshops on invasions.There are no page charges to publish in this journal.
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